BOC Sciences 6 - Products

BOC Sciences provides a wide range of research chemicals and biochemicals including inhibitors, building blocks, GMP Products, impurities and metabolites, APIs for Veterinary, Natural Compounds, ADCs, Stem Cell Molecule and chiral compounds.

Product
3'-β-Amino-2',3'-dideoxy-5'-O-methoxytrityl-5-methyluridine 3'-β-Amino-2',3'-dideoxy-5'-O-methoxytrityl-5-methyluridine, an intriguing and formidable nucleoside derivative, triumphantly thrives in the biomedical realm where it valiantly combats viral infections and specific cancer forms. Astonishingly, this compound showcases remarkable antiviral prowess against RNA viruses, thereby sparking immense interest as a potential candidate for antitumor interventions. Alternative Names: 1-(3-Amino-2,3-dideoxy-5-O-methoxytrityl-β-D-threo-pentofuranosyl)-5-methyluracil; 3'-b-Amino-2',3'-dideoxy-5-methyl-5'-O-trityluridine; 1-(3-Amino-2,3-dideoxy-5-O-(triphenylmethyl)-β-D-threo-pentofuranosyl)-5-methyl-2,4(1H,3H)-pyrimidinedione. Grades: ≥95%. CAS No. 204688-08-4. Molecular formula: C29H29N3O4. Mole weight: 483.56. BOC Sciences 6
3'-β-Amino-2',3'-dideoxyuridine 3'-β-Amino-2',3'-dideoxyuridine, an influential biomedical compound, is widely recognized for its remarkable antiviral properties. With extraordinary efficacy, it exhibits immense potential in combating viral infections originating from herpes simplex virus (HSV) and human immunodeficiency virus (HIV). Functioning as a nucleoside analog, this potent drug serves as a significant obstacle in viral replication by intricately interfering with the process of DNA synthesis. Alternative Names: 1-(3-Amino-2,3-dideoxy-b-D-threo-pentafuranosyl)uracil; 1-((2R,4R,5S)-4-Amino-5-(hydroxymethyl)tetrahydrofuran-2-yl)pyrimidine-2,4(1H,3H)-dione; 2,4(1H,3H)-Pyrimidinedione, 1-(3-amino-2,3-dideoxy-β-D-threo-pentofuranosyl)-. Grades: ≥95%. CAS No. 101062-04-8. Molecular formula: C9H13N3O4. Mole weight: 227.22. BOC Sciences 6
3-β-D-Ribofuranosyl-6-hydroxymethyl-furano[2,3-d]-pyrimidin-2-one 3-β-D-Ribofuranosyl-6-hydroxymethyl-furano[2,3-d]-pyrimidin-2-one, a highly potent antiviral compound, stands out as an exceptional pharmaceutical agent in combating diverse viral infections. Its extraordinary range of action encompasses a multitude of DNA and RNA viruses, including the notorious herpesviruses and retroviruses. By impeding nucleic acid synthesis, this compound exerts a remarkable antiviral activity, effectively inhibiting viral replication. Alternative Names: 6-(Hydroxymethyl)-3-beta-D-ribofuranosylfuro[2,3-d]pyrimidin-2(3H)-one; 3-((2R,3R,4S,5R)-3,4-Dihydroxy-5-(hydroxymethyl)tetrahydrofuran-2-yl)-6-(hydroxymethyl)furo[2,3-d]pyrimidin-2(3H)-one. Grades: ≥95%. CAS No. 1058167-74-0. Molecular formula: C12H14N2O7. Mole weight: 298.25. BOC Sciences 6
3-N-Acetylneuraminyl-N-acetyllactosamine HSA 3-N-Acetylneuraminyl-N-acetyllactosamine HSA is also known as NANA, exhibiting remarkable potential in the research of targeted drug delivery, vaccine development and diagnostic tool manufacturing. Its pivotal role lies in its unparalleled ability to recognize and bind to specific receptors crucially implicated in the pathogenesis of nefarious afflictions such as cancer, viral infections and autoimmune disorders. Molecular formula: C25H42N2O20. Mole weight: 690.60. BOC Sciences 6
3-N-Boc-5'-O-DMT-3'-fluorothymidine 3-N-Boc-5'-O-DMT-3'-fluorothymidine is a remarkably endowed fluorinated nucleoside analog, exerting an undeniably formidable influence on the delicate process of DNA research and development inhibition and consequential infirmity of malignantly proliferating cells. CAS No. 138685-99-1. Molecular formula: C36H39FN2O8. Mole weight: 646.7. BOC Sciences 6
3-N-Glycolylneuraminyl-D-lactose sodium salt 3-N-Glycolylneuraminyl-D-lactose sodium salt is a remarkable biomedical compound, tailored to the research of combating aberrant sialic acid metabolism linked to diverse ailments like metabolic disorders and select cancers. Alternative Names: Neu5Gc-a-2-3-Gal-b-1-4-Glc. BOC Sciences 6
3'-NH2-ADP 3'-NH2-ADP is a ligand in affinity chromatography and can be modified with fluorophores or other markers. Alternative Names: 3'- Amino- 3'- deoxyadenosine- 5'- O- diphosphate. Grades: ≥ 95% by HPLC. CAS No. 4360-6-9. Molecular formula: C10H16N6O9P2 (free acid). Mole weight: 426.2 (free acid). BOC Sciences 6
3'-NH-Tr-2',3'-ddA(Bz)-5'-CE-Phosphoramidite 3'-NH-Tr-2',3'-ddA(Bz)-5'-CE-Phosphoramidite is a modified phosphoramidite used in oligonucleotide synthesis, particularly for introducing specific modifications into DNA sequences. Overall, this phosphoramidite can be used in custom oligonucleotide synthesis, where modifications like chain termination, functionalization, or base protection are required. Alternative Names: Adenosine, N-benzoyl-2',3'-dideoxy-3'-[(triphenylmethyl)amino]-, 5'-[2-cyanoethyl bis(1-methylethyl)phosphoramidite]; Adenosine, N-benzoyl-2',3'-dideoxy-3'-[(triphenylmethyl)amino]-, 5'-[2-cyanoethyl N,N-bis(1-methylethyl)phosphoramidite]; N6-Benzoyl-3'-(trityl)amino-2',3'-dideoxyadenosine-5'-cyanoethyl phosphoramidite; ((2S,3S,5R)-5-(6-Benzamido-9H-purin-9-yl)-3-(tritylamino)tetrahydrofuran-2-yl)methyl (2-cyanoethyl) diisopropylphosphoramidite; 3'-Tritylamino-N6-benzoyl-2',3'-dideoxyadenosine-5'-(2-cyanoethyl)-N,N-diisopropylphosphoramidite. Grades: ≥95%. CAS No. 195375-64-5. Molecular formula: C45H49N8O4P. Mole weight: 796.90. BOC Sciences 6
3'-NH-Tr-2',3'-ddG(iBu)-5'-CE Phosphoramidite 3'-NH-Tr-2',3'-ddG(iBu)-5'-CE Phosphoramidite is a modified phosphoramidite used in oligonucleotide synthesis. It contains a 2',3'-dideoxyguanosine (ddG) base, which lacks the 3'-hydroxyl group necessary for chain elongation, thus halting DNA strand elongation. This compound is useful for creating controlled-length DNA strands or for studying DNA replication mechanisms. Alternative Names: Guanosine, 2',3'-dideoxy-N-(2-methyl-1-oxopropyl)-3'-[(triphenylmethyl)amino]-, 5'-[2-cyanoethyl N,N-bis(1-methylethyl)phosphoramidite]; Guanosine, 2',3'-dideoxy-N-(2-methyl-1-oxopropyl)-3'-[(triphenylmethyl)amino]-, 5'-[2-cyanoethyl bis(1-methylethyl)phosphoramidite]; N2-Isobutyryl-3'-(trityl)amino-2',3'-dideoxyguanosine-5'-cyanoethyl Phosphoramidite; N2-Isobutyryl-2',3'-dideoxy-3'-methoxytritylaminoguanidine-5'-O-N,N-diisopropylaminocyanoethylphosphoramidite. Grades: ≥97%. CAS No. 195375-66-7. Molecular formula: C42H51N8O5P. Mole weight: 778.88. BOC Sciences 6
3-Nitrophenyl 2-acetamido-2-deoxy-b-D-glucopyranoside 3-Nitrophenyl 2-acetamido-2-deoxy-b-D-glucopyranoside is a well-known biochemical compound, serving as an essential substrate for the identification and quantification of β-N-acetylhexosaminidase activity within lysosomal storage diseases. Alternative Names: β-D-Glucopyranoside, 3-nitrophenyl 2-(acetylamino)-2-deoxy-; 3-Nitrophenyl 2-(acetylamino)-2-deoxy-β-D-glucopyranoside. CAS No. 61894-63-1. Molecular formula: C14H18N2O8. Mole weight: 342.30. BOC Sciences 6
3-Nitrophenyl a-D-galactopyranoside 3-Nitrophenyl α-D-galactopyranoside, an indispensable chemical compound within the biomedical sector, serves as a substrate analog for diverse glycosylation-related enzymes. This paramount product significantly contributes to the examination and assessment of glycosyltransferase activities, encompassing their intricate connection to afflictions including cancer, neurodegenerative disorders, and genetic anomalies. Alternative Names: (2R,3R,4S,5R,6R)-2-(Hydroxymethyl)-6-(3-nitrophenoxy)tetrahydro-2H-pyran-3,4,5-triol; 3-Nitrophenyl α-D-galactopyranoside; m-Nitrophenyl α-D-galactopyranoside; m-Nitrophenyl-α-D-galactoside. CAS No. 52571-71-8. Molecular formula: C12H15NO8. Mole weight: 301.25. BOC Sciences 6
3-Nitrophenyl b-D-galactopyranoside 3-Nitrophenyl b-D-galactopyranoside is a compound widely used in the biomedical industry. It acts as a substrate for β-galactosidase, an enzyme used in various applications such as detecting and measuring the expression of genes. This product plays a crucial role in pharmaceutical research, molecular biology, and genetic engineering to study the mechanisms and treatments of various diseases. Alternative Names: 3-Nitrophenyl β-D-galactopyranoside; Galactopyranoside, m-nitrophenyl, β-D-; m-Nitrophenyl β-D-galactopyranoside; m-Nitrophenyl β-D-galactoside; m-Nitrophenyl β-galactoside. CAS No. 3150-25-2. Molecular formula: C12H15NO8. Mole weight: 301.25. BOC Sciences 6
3-Nitrophenyl b-D-glucopyranoside 3-Nitrophenyl β-D-glucopyranoside is a prominent biochemical compound widely utilized in the biomedical industry, serving as an exceptional substrate for the discernment of β-glucosidase enzymes. Regarded as an unparalleled selection for enzymatic assays and protein labeling purposes, it concurrently facilitates research pertaining to comprehending the ins and outs of glucocerebrosidase enzyme deficiencies. Alternative Names: (2R,3S,4S,5R,6S)-2-(Hydroxymethyl)-6-(3-nitrophenoxy)tetrahydro-2H-pyran-3,4,5-triol; 3-Nitrophenyl β-D-glucopyranoside; Glucopyranoside, m-nitrophenyl, β-D-; 3-Nitrophenyl β-D-glucoside; m-Nitrophenyl β-D-glucopyranoside; β-[m-Nitrophenyl]-D-glucopyranoside. CAS No. 20838-44-2. Molecular formula: C12H15NO8. Mole weight: 301.25. BOC Sciences 6
3-O-(2,3,4,6-Tetra-O-acetyl-b-D-galactopyranosyl)-2-azido-4,6-O-benzylidene-2-deoxy-a-D-galactopyranosyl-Fmoc serine tert-butyl ester 3-O-(2,3,4,6-Tetra-O-acetyl-b-D-galactopyranosyl)-2-azido-4,6-O-benzylidene-2-deoxy-a-D-galactopyranosyl-Fmoc serine tert-butyl ester is a compound primarily used in the biomedical industry for research purposes. It serves as a precursor to synthesize and study potential drug candidates or therapeutic agents for various diseases. Its specific applications may involve drug discovery, target identification, or molecular research related to carbohydrate metabolism and glycosylation. CAS No. 1477460-73-3. Molecular formula: C49H56N4O18. Mole weight: 988.99. BOC Sciences 6
3-O-(2,3,4,6-Tetra-O-acetyl-b-D-galactopyranosyl)-2-azido-4,6-O-benzylidene-2-deoxy-a-D-galactopyranosyl-Fmoc threonine tert-butyl ester 3-O-(2,3,4,6-Tetra-O-acetyl-b-D-galactopyranosyl)-2-azido-4,6-O-benzylidene-2-deoxy-a-D-galactopyranosyl-Fmoc threonine tert-butyl ester, referred to as TD2A4G-BT, represents a promising biomedical agent used for drug development, specifically in glycosylation investigations. Notably, TD2A4G-BT serves as an invaluable asset for comprehensively exploring carbohydrate-based therapeutics and devising sophisticated systems for precise drug transportation. CAS No. 195976-08-0. Molecular formula: C50H58N4O18. Mole weight: 1003.01. BOC Sciences 6
3-O-(2,3,4,6-Tetra-O-benzyl-a-D-glucopyranosyl)-1,2,4,6-tetra-O-acetyl-b-D-glucopyranose 3-O-(2,3,4,6-Tetra-O-benzyl-a-D-glucopyranosyl)-1,2,4,6-tetra-O-acetyl-b-D-glucopyranose is a highly intricate and multifaceted compound, exhibiting remarkable potential in studying diverse diseases including malignant neoplasms, hyperglycemia-inflicted conditions and infectious ailments. CAS No. 140420-82-2. Molecular formula: C48H54O15. Mole weight: 870.93. BOC Sciences 6
3-O-(2-Acetamido-2-deoxy-a-D-galactopyranosyl)-D-galactopyranose 3-O-(2-Acetamido-2-deoxy-a-D-galactopyranosyl)-D-galactopyranose is a crucial compound used as a precursor in the research and development of glycoconjugates involved in various biological processes. This compound holds potential for the development of drugs targeting bacterial and viral infections. Its structural properties make it an important tool in studying the interactions between carbohydrates and proteins aiding in the discovery of new therapeutic interventions. Alternative Names: a-D-N-Acetylgalactosaminyl-1,3-galactose. Molecular formula: C14H25NO11. Mole weight: 383.33. BOC Sciences 6
3-O-(2-Acetamido-2-deoxy-a-D-glucopyranosyl)-D-galactose 3-O-(2-Acetamido-2-deoxy-α-D-glucopyranosyl)-D-galactose, an indispensable compound in the biomedical realm, displays immense potential for treating a multitude of diseases. Its effectiveness in countering bacterial infections and impeding microbial proliferation is remarkable. Furthermore, scholarly investigations propose that this compound holds promise in the creation of innovative therapeutics designed to target distinct pathological states. Its multifaceted nature and intricate molecular structure contribute to its significance in scientific research and its profound impact on the biomedical field. Alternative Names: GlcNAc-a-(1-3)-Gal; 3-O-[2-(Acetylamino)-2-deoxy-α-D-glucopyranosyl]-D-galactose; Galactose, 3-O-(2-acetamido-2-deoxy-α-D-glucopyranosyl)-; N-((2R,3R,4R,5S,6R)-4,5-Dihydroxy-6-(hydroxymethyl)-2-(((2R,3S,4S,5R)-2,4,5,6-tetrahydroxy-1-oxohexan-3-yl)oxy)tetrahydro-2H-pyran-3-yl)acetamide. Grades: 95%. CAS No. 97096-73-6. Molecular formula: C14H25NO11. Mole weight: 383.35. BOC Sciences 6
3-O-(2-Acetamido-2-deoxy-b-D-galactopyranosyl)-D-galactopyranose 3-O-(2-Acetamido-2-deoxy-b-D-galactopyranosyl)-D-galactopyranose is an indispensable compound serving as a potent antibiotic, effectively combatting bacteria by stymieing bacterial proliferation and thwarting their malevolent impact. Alternative Names: beta-D-GalNAc-(1->3)-D-Gal; beta-D-GalpNAc-(1->3)-D-Galp; beta-D-N-acetylgalactosaminyl-(1->3)-D-galactose. CAS No. 1774356-62-5. Molecular formula: C14H25NO11. Mole weight: 383.33. BOC Sciences 6
3-O-(2-Acetamido-2-deoxy-b-D-glucopyranosyl)-D-mannopyranose 3-O-(2-Acetamido-2-deoxy-b-D-glucopyranosyl)-D-mannopyranose, an indispensable compound in the biomedical sector, holds immense potential for therapeutic purposes. Its remarkable attributes make it highly suitable for addressing a wide array of illnesses, encompassing microbial infections and inflammatory conditions. Alternative Names: GlcNAc-b-1,3-Man; 3-O-[2-(Acetylamino)-2-deoxy-β-D-glucopyranosyl]-D-mannopyranose. CAS No. 210036-24-1. Molecular formula: C14H25NO11. Mole weight: 383.35. BOC Sciences 6
3-O-(2-Acetamido-2-deoxy-b-D-glucopyranosyl)-L-fucopyranose 3-O-(2-Acetamido-2-deoxy-b-D-glucopyranosyl)-L-fucopyranose is a remarkable carbohydrate compound with extensive biomedical applications, exhibiting exceptional potential in research of diverse bacterial infections associated with fucose-utilizing bacteria. Moreover, it showcases its prowess as a complexing agent within drug delivery systems, endowing superior drug stability and heightened bioavailability. Alternative Names: GlcNAc(b1-3)Fuc; 2-acetamido-2-deoxy-beta-D-gluco-hexopyranosyl-(1->3)-6-deoxy-L-galacto-hexopyranose. Molecular formula: C14H25NO10. Mole weight: 367.35. BOC Sciences 6
3-O-(2-Acetamido-2-deoxy-β-D-glucopyranosyl)-D-galactose 3-O-(2-Acetamido-2-deoxy-β-D-glucopyranosyl)-D-galactose. Alternative Names: β-D-GlcNAc-(1-3)-D-Gal. CAS No. 67006-44-4. Molecular formula: C14H25NO11. Mole weight: 383.35. BOC Sciences 6
3-O-(2-Acetamido-2-deoxy-D-glucopyranosyl)-1,2-di-O-benzyl-4,6-O-benzylidene-D-mannopyranoside 3-O-(2-Acetamido-2-deoxy-D-glucopyranosyl)-1,2-di-O-benzyl-4,6-O-benzylidene-D-mannopyranoside is a compound showing promise as an anti-inflammatory agent to study for its role in inhibiting the growth of certain cancer cells. Molecular formula: C35H41NO11. Mole weight: 651.72. BOC Sciences 6
3-O-(2-Acetamido-3,4,6-tri-O-acetyl-2-deoxy-D-glucopyranosyl)-1,2-di-O-benzyl-4,6-O-benzylidene-D-mannopyranoside 3-O-(2-Acetamido-3,4,6-tri-O-acetyl-2-deoxy-D-glucopyranosyl)-1,2-di-O-benzyl-4,6-O-benzylidene-D-mannopyranoside is a potential compound exhibiting activity in studying various diseases related to microbial infections due to its unique chemical structure. Molecular formula: C41H47NO14. Mole weight: 777.83. BOC Sciences 6
3-O-[2-(Acetamino)-2-deoxy-D-galactopyranosyl]-D-mannopyranose 3-O-[2-(Acetamino)-2-deoxy-D-galactopyranosyl]-D-mannopyranose is a paramount compound harnessed within the biomedical sector assuming an indispensable function in the development of therapeutic agents research of diverse ailments. This compound finds pervasive utility when formulating medications tailored to combat precise afflictions or conditions. Alternative Names: 3-O-[2-Acetamido-2-deoxy-|A-D-glucopyranosyl]-D-mannopyranose. CAS No. 197457-62-8. Molecular formula: C14H25NO11. Mole weight: 383.35. BOC Sciences 6
3'-O-(2-Azidoethyl)adenosine 3'-O-(2-Azidoethyl)adenosine is a vital compound extensively used in the biomedical industry. It is primarily employed in research and drug development for studying anti-viral mechanisms and potential treatments for certain viral diseases. Grades: ≥95%. Molecular formula: C12H16N8O4. Mole weight: 336.31. BOC Sciences 6
3'-O-(2-Methoxyethyl)-5-methylcytidine 3'-O-(2-Methoxyethyl)-5-methylcytidine, an advanced biomedical marvel, reigns supreme in the realm of antiviral drugs. With its remarkable capabilities, this compound holds the promise of combating notorious viral infections like respiratory syncytial virus (RSV) and hepatitis C virus (HCV). Alternative Names: 4-amino-1-[(2R,3R,4S,5R)-3-hydroxy-5-(hydroxymethyl)-4-(2-methoxyethoxy)oxolan-2-yl]-5-methylpyrimidin-2-one. Grades: ≥95%. CAS No. 2243311-50-2. Molecular formula: C13H21N3O6. Mole weight: 315.32. BOC Sciences 6
3'-O-(2-Methoxyethyl)-5-methyluridine 3'-O-(2-Methoxyethyl)-5-methyluridine plays a crucial role in various drug formulations targeting diseases like cancer, viral infections, and genetic disorders. With its unique chemical properties, it enhances drug stability and efficacy, allowing for precise targeted therapy. Alternative Names: 1-[(2R,3R,4S,5R)-3-hydroxy-5-(hydroxymethyl)-4-(2-methoxyethoxy)oxolan-2-yl]-5-methylpyrimidine-2,4-dione. Grades: ≥95%. CAS No. 303197-29-7. Molecular formula: C13H20N2O7. Mole weight: 316.31. BOC Sciences 6
3'-O-(2-Methoxyethyl)adenosine 3'-O-(2-Methoxyethyl)adenosine, renowned in the biomedical industry, holds immense significance for a myriad of applications. With its pivotal role in the pharmaceutical realm, it contributes significantly in the combat against afflictions like cancer, viral infections, and inflammation. By orchestrating cellular pathways and regulating biological processes, this compound manifests promising therapeutic effects. Alternative Names: 3'-MOE-Adenosine; 3'-MOE-rA; Adenosine, 3'-O-(2-methoxyethyl)-; (2R,3R,4S,5R)-2-(6-aminopurin-9-yl)-5-(hydroxymethyl)-4-(2-methoxyethoxy)tetrahydrofuran-3-ol. Grades: ≥95%. CAS No. 303197-30-0. Molecular formula: C13H19N5O5. Mole weight: 325.32. BOC Sciences 6
3'-O-(2-Methoxyethyl)cytidine 3'-O-(2-Methoxyethyl)cytidine, a renowned biomedical compound, holds immense potential in the realm of antiviral drug development. Its exceptional chemical structure classifies it as a nucleoside analog, thus permitting interference in viral replication processes. Grades: ≥95%. CAS No. 2305415-84-1. Molecular formula: C12H19N3O6. Mole weight: 301.30. BOC Sciences 6
3'-O-(2-Methoxyethyl)inosine 3'-O-(2-Methoxyethyl)inosine, an indispensable compound within the biomedical industry, assumes the role of a nucleoside analog. Widely utilized in the formulation of antiviral agents, it showcases exceptional prospects in combating viral infections, especially those linked to inosine monophosphate dehydrogenase (IMPDH). Grades: ≥95%. Molecular formula: C13H18N4O6. Mole weight: 326.31. BOC Sciences 6
3'-O-(2-Methoxyethyl)uridine 3'-O-(2-Methoxyethyl)uridine is a compound used in the research of viral infections, including hepatitis C and HIV. It acts by inhibiting viral replication and promoting immune response. This compound can also serve as a precursor in nucleic acid research and chemical research and development due to its peculiar structure. Alternative Names: Uridine, 3'-O-(2-methoxyethyl)-. Grades: ≥95%. CAS No. 870599-31-8. Molecular formula: C12H18N2O7. Mole weight: 302.28. BOC Sciences 6
3'-O-(2-nitrobenzyl)-2'-Deoxyadenosine-5'-Triphosphate 3'-O-(2-nitrobenzyl)-2'-Deoxyadenosine-5'-Triphosphate is an indispensable component in the realm of biomedical research assuming a pivotal role as a robust investigative instrument, illuminating the intricate domains of DNA research and development and modification processes. Uniquely fashioned as a substrate for DNA polymerases, it seamlessly facilitates the comprehension of DNA repair mechanisms, the elucidation of mutagenesis is and the explication of DNA sequencing techniques. Alternative Names: 3'-O-(2-nitrobenzyl)-2'-dATP. Grades: ≥95% by AX-HPLC. Molecular formula: C17H21N6O14P3. Mole weight: 626.30. BOC Sciences 6
3'-O-(2-nitrobenzyl)-2'-Deoxyinosine-5'-Triphosphate 3'-O-(2-nitrobenzyl)-2'-Deoxyinosine-5'-Triphosphate: A versatile nucleotide analog that has found extensive use in biomedical research for DNA sequencing and labeling studies. Its applications extend beyond these uses, however, as it serves as an indispensable tool in enzymatic assays for DNA polymerases. Furthermore, it has emerged as a crucial substrate in the detection of apoptotic cells via terminal deoxynucleotidyl transferase (TdT). The compound's multifaceted utility underscores its importance in advancing our understanding of nucleic acid biochemistry. Alternative Names: 3'-O-(2-nitrobenzyl)-2'-dITP. Grades: ≥95% by AX-HPLC. Molecular formula: C17H20N5O15P3. Mole weight: 627.20. BOC Sciences 6
3'-O-(4,4'-Dimethoxytrityl)-2'-O-(2-methoxyethyl)-5-methyluridine 3'-O-(4,4'-Dimethoxytrityl)-2'-O-(2-methoxyethyl)-5-methyluridine is a crucial component used in the biomedical industry for its potent antiviral properties. It is employed in the synthesis of nucleotide analogs for the treatment of viral diseases such as HIV and hepatitis. Alternative Names: 1-[(2R,3R,4R,5R)-4-[bis(4-methoxyphenyl)-phenylmethoxy]-5-(hydroxymethyl)-3-(2-methoxyethoxy)oxolan-2-yl]-5-methylpyrimidine-2,4-dione. Grades: ≥95%. Molecular formula: C34H38N2O9. Mole weight: 618.67. BOC Sciences 6
3'-O-(4,4-Dimethoxytrityl)-N2-isobutyryl-2'-O-(2-methoxyethyl)guanosine 3'-O-(4,4-Dimethoxytrityl)-N2-isobutyryl-2'-O-(2-methoxyethyl)guanosine is a remarkable compound, exhibiting profound utility in research of combating RNA-based maladies. Grades: ≥95%. Molecular formula: C38H43N5O9. Mole weight: 713.78. BOC Sciences 6
3-O-(4,7-Di-O-methyl-N-acetyl-alpha-neuraminosyl)-D-galactopyranoside-i 3-O-(4,7-Di-O-methyl-N-acetyl-alpha-neuraminosyl)-D-galactopyranoside-i, a compound of immense worth in the field of biomedical studies. Renowned for its extraordinary potential in ameliorating neurodegenerative ailments and combating infectious diseases, this compound has garnered much attention. Scientific investigations have unveiled its capacity to modulate enzymatic activities, regulate immune responses, and impede the proliferation of pathogens. BOC Sciences 6
3'-O-(4-Methoxybenzyl)-2'-O,4'-C-methylene uridine 3'-O-(4-Methoxybenzyl)-2'-O,4'-C-methylene uridine is a compound holding immense promise for its potential therapeutic applications. Its indispensability in the development of pharmaceutical drugs aimed at research of an array of ailments, including cancers, viral infections is and neurological disorders, is indisputable. Grades: ≥95%. Molecular formula: C18H20N2O7. Mole weight: 376.36. BOC Sciences 6
3'-O-(5'-Cytidylyl)adenosine 3'-O-(5'-Cytidylyl)adenosine is a nucleoside consisting of a cytidine molecule linked to an adenosine molecule via a phosphodiester bond at the 3'- and 5'-position, respectively. It is used in the biomedical industry as a tool to investigate RNA editing, since it can be incorporated into RNA molecules during transcription and can serve as a marker for the editing process. Additionally, it has been shown to have potential therapeutic properties for the treatment of neurological and psychiatric disorders. Alternative Names: adenylyl-(3'-5')-cytidine; ApC RNA Dinucleotide (5'-3'). Molecular formula: C19H25N8O11P. Mole weight: 572.40. BOC Sciences 6
3-O,5-O-Benzylidene-1-O,2-O-isopropylidene-α-D-glucofuranose 3-O,5-O-Benzylidene-1-O,2-O-isopropylidene-α-D-glucofuranose. Alternative Names: 3,5-O-Benzylidene-1,2-O-isopropylidene-α-D-glucofuranose. CAS No. 22164-09-6. Molecular formula: C16H20O6. Mole weight: 308.33. BOC Sciences 6
3-O-Acetyl-1,2:5,6-di-O-isopropylidene-a-D-galactofuranose 3-O-Acetyl-1,2:5,6-di-O-isopropylidene-a-D-galactofuranose, a biomedically utilized compound, holds great significance in probing the impact of carbohydrates on diverse biological mechanisms. With its pivotal role as an experimental fixture, it enables comprehensive exploration of the therapeutic capabilities pertaining to carbohydrate-focused pharmaceuticals and their effectiveness against afflictions including cancer, metabolic disorders, and infections. CAS No. 38166-65-3. Molecular formula: C14H22O7. Mole weight: 302.32. BOC Sciences 6
3-O-Acetyl-1,2:5,6-di-O-isopropylidene-a-D-glucofuranose 3-O-Acetyl-1,2:5,6-di-O-isopropylidene-α-D-glucofuranose is an indispensable compound in the biomedical industry, showcasing remarkable potential in the exploration concerning targeted drug administration, primarily for cancer therapy. CAS No. 16713-80-7. Molecular formula: C14H22O7. Mole weight: 302.32. BOC Sciences 6
3-O-Acetyl-1,2:5,6-di-O-isopropylidene-a-D-gulofur-3-enose 3-O-Acetyl-1,2:5,6-di-O-isopropylidene-a-D-gulofur-3-enose is a versatile compound extensively employed in the biomedical industry. It is primarily utilized for research purposes in drug development and in understanding the diseases related to glucose metabolism. It serves as a crucial component in the synthesis of novel pharmaceutical agents aimed at treating various metabolic disorders and exploring potential therapeutic strategies. Alternative Names: 3-O-Acetyl-1,2:5,6-di-O-isopropylidene-alpha-D-erythrohexofuranen-(3)-ose; alpha-D-erythro-Hex-3-enofuranose, 1,2:5,6-bis-O-(1-methylethylidene)-, 3-acetate. CAS No. 14686-88-5. Molecular formula: C14H20O7. Mole weight: 300.31. BOC Sciences 6
3-O-Acetyl-1,2:5,6-di-O-isopropylidene-α-D-gulofuranose 3-O-Acetyl-1,2:5,6-di-O-isopropylidene-α-D-gulofuranose. Alternative Names: 1,2:5,6-Bis-O-(1-methylethylidene)-α-D-gulofuranose 3-acetate. CAS No. 26775-14-4. Molecular formula: C14H22O7. Mole weight: 302.32. BOC Sciences 6
3-O-Acetyl-1,2-O-isopropylidene-6-O-trityl-b-L-arabino-hexofuranos-5-ulose 3-O-Acetyl-1,2-O-isopropylidene-6-O-trityl-b-L-arabino-hexofuranos-5-ulose is a vital compound used in biomedicine for its potential therapeutic properties. This product can be utilized in the development of drugs aimed at treating various diseases and disorders. Its unique chemical structure makes it an important component in the research and advancement of medication targeting specific ailments, enhancing the potential for effective treatment outcomes. Alternative Names: 3-Acetyl-1,2-O-isopropylidene-6-O-trityl-beta-L-arabino-hexofuranos-5-ulose. CAS No. 109680-98-0. Molecular formula: C30H30O7. Mole weight: 502.56. BOC Sciences 6
3-O-Acetyl-1,2-O-isopropylidene-a-D-galactofuranose 3-O-Acetyl-1,2-O-isopropylidene-a-D-galactofuranose, a fundamental constituent indispensable in the biomedical sector, assumes a vital position during the synthesis of carbohydrate-derived pharmaceutical agents. Efficacious against afflictions encompassing diabetes, cancer, and microbial invasions, this compound distinctly thrives as a potent facilitator in the domain of therapeutic innovation and scientific inquiry. Alternative Names: 3-Acetyl-1,2-O-isopropylidene-alpha-D-galactofuranose. CAS No. 109680-96-8. Molecular formula: C11H18O7. Mole weight: 262.26. BOC Sciences 6
3-O-Acetyl-1,2-O-isopropylidene-a-D-glucofuranose 3-O-Acetyl-1,2-O-isopropylidene-α-D-glucofuranose is an essential biochemical entity pivotal for the development of antiviral therapeutics. By virtue of its distinct constitution, it proficiently hinders the proliferation of select viral strains, notably influenza and HIV. CAS No. 24807-96-3. Molecular formula: C11H18O7. Mole weight: 262.26. BOC Sciences 6
3-O-Acetyl-1,2-O-isopropylidine-6-O-trityl-a-D-galactofuranose 3-O-Acetyl-1,2-O-isopropylidine-6-O-trityl-α-D-galactofuranose, a paramount substance in the realm of biomedical science, commands attention. It finds extensive implementation within research, particularly in the exploration of medicaments rooted in carbohydrates and their curative utilities. This compound harbors significant promise in cultivating remedies for sundry ailments, encompassing neoplasms, inflammatory maladies, and microbial invasions, via precision-oriented molecular interplays. CAS No. 109680-97-9. Molecular formula: C30H32O7. Mole weight: 504.57. BOC Sciences 6
3-O-Acetyl-1,6-anhydro-2-azido-2,3-di-O-benzyl-4,6-O-benzylidene-2-deoxy-b-D-cellobiose 3-O-Acetyl-1,6-anhydro-2-azido-2,3-di-O-benzyl-4,6-O-benzylidene-2-deoxy-b-D-cellobiose is an exquisitely intricate and multifaceted biomedical entity, holding immense promise in research of pernicious infectious diseases. Through its remarkable molecular constitution, it displays unparalleled pharmacological prowess acting as a formidable antiviral and antimicrobial compound with an unwavering focus on eradicating specific pathogens. Alternative Names: DTXSID201335422; 99541-23-8; 1,6-Anhydro-2-azido-4-O-[2,3-bis-O-(phenylmethyl)-4,6-O-(phenylmethylene)-beta-D-glucopyranosyl]-2-deoxy-beta-D-glucopyranose 3-acetate. CAS No. 99541-23-8. Molecular formula: C35H37N3O10. Mole weight: 659.68. BOC Sciences 6
3'-O-Acetyl-2'-deoxy-2'-fluoro-5-methyluridine 3'-O-Acetyl-2'-deoxy-2'-fluoro-5-methyluridine, a modified nucleoside, has been found to exhibit a promising inhibitory effect on Hepatitis C Virus (HCV) non-structural protein 5B (NS5B) RNA polymerase activity. Being a possible constituent for combinatorial therapy, it holds significance in the development of novel antiviral drugs against HCV. Its potential in disrupting viral life cycle warrants further exploration of its pharmacological properties. Alternative Names: 3'-O-Acetyl-2'-deoxy-2'-fluoro-D-thymidine; 3'-O-Acetyl-2'-fluoro-2'-deoxy-thymidine. Molecular formula: C12H15FN2O6. Mole weight: 302.26. BOC Sciences 6
3'-O-Acetyl-2'-deoxy-5'-O-DMT-2'-fluorouridine 3'-O-Acetyl-2'-deoxy-5'-O-DMT-2'-fluorouridine, a modified nucleoside, holds immense potential for combatting cancer. Its development exhibits a delicate balance between specificity and efficacy, while also mitigating the harmful side effects of chemotherapy. Moreover, its multifaceted applications extend beyond treatment, serving as a diagnostic tool within the realm of nuclear medicine, enhancing imaging of tumors. Alternative Names: 3'-O-Acetyl-2'-deoxy-5'-O-DMT-2'-fluoro-D-uridine; 3'-O-Acetyl-5'-O-DMT-2'-fluoro-2'-deoxyuridine. Molecular formula: C32H31FN2O8. Mole weight: 590.6. BOC Sciences 6
3'-O-Acetyl-2'-deoxyadenosine 3'-O-Acetyl-2'-deoxyadenosine, a highly esteemed compound embraced by the biomedical sector, stands as a paramount asset. Renowned for its unrivaled therapeutic prowess, it diligently combats a plethora of ailments such as malignant neoplasms and viral invasions. Alternative Names: 3'-OAc-dA; 3'-O-Acetyl-2'-deoxy-D-adenosine; 2'-Deoxyadenosine 3'-acetate; (2R,3S,5R)-5-(6-amino-9H-purin-9-yl)-2-(hydroxymethyl)tetrahydrofuran-3-yl acetate; 2'-deoxy-3'-O-acetyladenosine. Grades: ≥98% by HPLC. CAS No. 6612-73-3. Molecular formula: C12H15N5O4. Mole weight: 293.29. BOC Sciences 6
3'-O-Acetyl-2'-deoxyadenosine-5'-triphosphate trisodium salt 3'-O-Acetyl-2'-deoxyadenosine-5'-triphosphate trisodium salt, a potent nucleotide analog, has finally found its place in the world of biochemistry research, serving as a prime substrate for demanding enzymes such as DNA polymerases and reverse transcriptases; and simultaneously, it triumphs as an inhibitor for certain enzymes, taking the science of nucleotide metabolism and DNA replication to a whole new level. Alternative Names: 3'-O-Ac-2'-dATP·Na3. Grades: ≥97% by HPLC. CAS No. 28120-63-0. Molecular formula: C12H15N5Na3O13P3. Mole weight: 599.16. BOC Sciences 6
3'-O-Acetyl-2'-deoxycytidine 3'-O-Acetyl-2'-deoxycytidine is a valuable compound extensively used in the biomedical industry. It has shown potential in the treatment of various diseases, including cancer. With its unique structure and properties, this compound can efficiently target specific cells and inhibit their growth. Alternative Names: 3'-O-Ac-dC; 3'-O-Acetyl-2'-deoxy-D-cytidine; (2R,3S,5R)-5-(4-amino-2-oxopyrimidin-1(2H)-yl)-2-(hydroxymethyl)tetrahydrofuran-3-yl acetate. Grades: ≥98% by HPLC. CAS No. 72560-69-1. Molecular formula: C11H15N3O5. Mole weight: 269.25. BOC Sciences 6
3'-O-Acetyl-2'-deoxycytidine-5'-triphosphate trisodium salt 3'-O-Acetyl-2'-deoxycytidine-5'-triphosphate trisodium salt, a nucleotide analog, finds use in biomedical research to investigate acetylation's impact on DNA replication and transcription. Moreover, it emerges as a possible antiviral agent, inhibiting viral DNA polymerase- an exciting therapeutic avenue for specific viral infections. Alternative Names: 3'-O-Ac-2'-dCTP·Na3. Grades: ≥97% by HPLC. Molecular formula: C11H15N3Na3O14P3. Mole weight: 575.14. BOC Sciences 6
3'-O-Acetyl-2'-deoxyguanosine 3'-O-Acetyl-2'-deoxyguanosine is a derivative of deoxyguanosine, exhibiting intricate modifications. Its utilization primarily lies in the study of nucleotide analogs and nucleoside chemistry, enabling the research of groundbreaking antiviral medications. Moreover, it serving as a potent tool in exploring the intricate interplay between acetylation, nucleoside metabolism is and cellular functions. Alternative Names: 3'-O-Ac-dG; 2'-Deoxyguanosine 3'-acetate; 2'-deoxy-3'-O-acetylguanosine; 2-Amino-9-(3-O-acetyl-2-deoxy-β-D-ribofuranosyl)-9H-purin-6(1H)-one. Grades: ≥98% by HPLC. CAS No. 51549-58-7. Molecular formula: C12H15N5O5. Mole weight: 309.28. BOC Sciences 6
3'-O-Acetyl-2'-deoxyguanosine-5'-triphosphate trisodium salt 3'-O-Acetyl-2'-deoxyguanosine-5'-triphosphate trisodium salt: the critical precursor to enzymatic oligonucleotide synthesis, integral to producing biologically relevant strands- applications extend to cancer, viral infections, genetic disorders and molecular diagnostics. Alternative Names: 3'-O-Ac-2'-dGTP·Na3. Grades: ≥97% by HPLC. Molecular formula: C12H15N5Na3O14P3. Mole weight: 615.16. BOC Sciences 6
3'-O-Acetyl-2'-deoxy-N2-isobutyrylguanosine 3'-O-Acetyl-2'-deoxy-N2-isobutyrylguanosine, a remarkable biomedicine, holds immense potential for combating specific viral infections and cancers. Its profound antiviral and anticancer properties stem from its remarkable capacity to impede viral DNA replication and restrict tumor proliferation. With extensive presence across diverse chemical databases, this compound prominently assists in the progressive research and development of pharmaceutical ventures targeting these complex diseases. Alternative Names: 2'-Deoxy-N-(2-methyl-1-oxopropyl)-guanosine 3'-acetate. Grades: 99%. CAS No. 74925-81-8. Molecular formula: C16H21N5O6. Mole weight: 379.37. BOC Sciences 6
3'-O-Acetyl-2'-deoxythymidine-5'-triphosphate trisodium salt 3'-O-Acetyl-2'-deoxythymidine-5'-triphosphate trisodium salt, a nucleoside analogue, is utilized in the field of biomedical research for the purpose of examining DNA replication, transcription, and repair. Frequently employed in the creation of novel therapeutics targeting viral infections, such as HIV and hepatitis B, this compound has additional applications in the investigation of select cancer types, specifically as it pertains to DNA synthesis and repair mechanisms. Alternative Names: 3'-O-Ac-2'-dTTP·Na3. Grades: ≥97% by HPLC. Molecular formula: C12H16N2Na3O15P3. Mole weight: 590.15. BOC Sciences 6
3-O-Acetyl-4-O-methyl-D-glucuronic acid 3-O-Acetyl-4-O-methyl-D-glucuronic acid is a noteworthy chemical entity used in studying multifarious ailments like carcinoma, diabetes mellitus and inflammatory conditions. CAS No. 2892629-39-7. Molecular formula: C9H14O8. Mole weight: 250.20. BOC Sciences 6
3'-O-Acetyl-4'-thio-2'-deoxy-beta-D-uridine 3'-O-Acetyl-4'-thio-2'-deoxy-β-D-uridine is a modified uridine nucleoside where the 3' hydroxyl group is protected with an acetyl group, and the 4' position of the sugar is modified by replacing the oxygen atom with a sulfur atom (creating a thionucleoside). Additionally, the sugar is 2'-deoxyribose, which is characteristic of DNA nucleosides. This compound is likely used in specialized nucleic acid synthesis, such as creating modified RNA or DNA analogs. The protective groups and sulfur substitution can influence the reactivity, stability, and incorporation of this nucleoside in oligonucleotide synthesis, potentially providing insights into biochemical interactions or therapeutic applications. Alternative Names: 1-[2-Deoxy-3-o-acetyl-4-thio-beta-d-ribofuranosyl]uracil; Uridine, 2'-deoxy-4'-thio-, 3'-acetate; 3'-O-Acetyl-2'-Deoxy-4'-thiouridine; (2R,3S,5R)-5-(2,4-Dioxo-3,4-dihydropyrimidin-1(2H)-yl)-2-(hydroxymethyl)tetrahydrothiophen-3-yl acetate. Grades: ≥95%. CAS No. 667882-69-1. Molecular formula: C11H14N2O5S. Mole weight: 286.31. BOC Sciences 6
3'-O-Acetyl-5-Benzylaminocarbonyl-5'-O-DMT-2'-O-methyluridine 3'-O-Acetyl-5-Benzylaminocarbonyl-5'-O-DMT-2'-O-methyluridine, a synthetic nucleoside derivative, has been the subject of extensive research for its potential applications in the treatment of viral infections, including hepatitis C and HIV, as well as cancer chemotherapy. With its unique molecular structure, this compound shows great promise in the development of effective antiviral agents. Moreover, its potential uses in cancer treatment suggest it may represent a major breakthrough in the fight against this deadly disease. Alternative Names: 5-Benzylaminocarbony-3'-O-acetyl-2'-O-methyl-5'-O-DMTr-uridine; 5-Benzylaminocarbony-3'-O-acetyl-2'-O-methyl-5'-O-(4,4'-dimethoxytrityl)uridine. Grades: ≥95%. CAS No. 2095417-22-2. Molecular formula: C41H41N3O10. Mole weight: 735.78. BOC Sciences 6
3'-O-Acetyl-5'-O-DMT-2'-O-methyl-5-naphthyl-b-methylaminocarbonyl-uridine Modified uridine, 3'-O-Acetyl-5'-O-DMT-2'-O-methyl-5-naphthyl-b-methylaminocarbonyl-uridine, is a vital component in biomedicine research. Its application is typically directed towards nucleotide analogs creation, particularly in the fight against hepatitis C and HIV. Its impact in antiviral therapy is unequivocal, and as such, commands utmost attention in scientific research. Alternative Names: 5-Naphthyl-beta-methylaminocarbony-3'-O-acetyl-2'-O-methyl-5'-O-DMTr-uridine. Grades: ≥95%. CAS No. 2095417-00-6. Molecular formula: C45H43N3O10. Mole weight: 785.84. BOC Sciences 6
3'-O-Acetyl-5'-O-DMT-2'-O-methyuridine 3'-O-Acetyl-5'-O-DMT-2'-O-methyuridine, a modified uridine nucleoside, has garnered significant attention in the fields of gene therapy and oncology due to its potential as a potent RNA molecule developer for gene silencing and regulation. Extensive research has shown promising results, suggesting that this compound has the ability to selectively target genes and inhibit protein production, thereby presenting an intriguing therapeutic avenue for diseases. Molecular formula: C33H34N2O9. Mole weight: 602.63. BOC Sciences 6
3'-O-Acetyl-5'-O-DMT-5-iodo-2'-O-methyl-uridine Highly specialized in the field of biomedicine, 3'-O-Acetyl-5'-O-DMT-5-iodo-2'-O-methyl-uridine stands as a critical compound. Its employment primarily revolves around synthesizing nucleotide analogs for antiviral drug development and acting as a probe in biochemical studies concerning RNA. Promising therapeutic applications against viral infections, like HIV and hepatitis B, are attributed to this product. Alternative Names: 5'-O-(4,4'-dimethoxytrityl)-3'-acetyl-5-Iodo-2'-O-methyl-uridine; 5'-O-DMT-3'-Ac-5-I-2'-OMe-Ur; 5'-O-(4,4'-Dimethoxytrityl)-2'-O-methyl-3'-O-acetyl-5-iodouridine; 5'-O-[Bis(4-methoxyphenyl)phenylmethyl]-5-iodo-2'-O-methyl-uridine 3'-acetate; 5-Iodo-5'-DMT-2'-O-methyl-3'-acetyl-uridine; 3'-O-Acetyl-5'-O-[bis(4-methoxyphenyl)(phenyl)methyl]-5-iodo-2'-O-methyluridine. Grades: ≥95%. CAS No. 1374692-34-8. Molecular formula: C33H33IN2O9. Mole weight: 728.53. BOC Sciences 6
3'-O-Acetyl-5'-O-tert-butyldiphenylsilyl-2'-deoxy-2'-fluorothymidine 3'-O-Acetyl-5'-O-tert-butyldiphenylsilyl-2'-deoxy-2'-fluorothymidine, possessing immense significance in the field of biomedicine, serves as a pivotal entity. Renowned for its remarkable application as an antiviral agent against Human Immunodeficiency Virus (HIV) infections, with a specific focus on inhibiting reverse transcriptase, this compound assumes a paramount role. Alternative Names: 3'-O-Acetyl-5'-O-tert-butyldiphenylsilyl-2'-deoxy-2'-fluoro-D-thymidine. Molecular formula: C28H33FN2O6Si. Mole weight: 540.66. BOC Sciences 6
3-O-Acetyl-6-O-benzoyl-5-O-methylsulfonyl-1,2-O-isopropylidene-a-D-glucofuranose 3-O-Acetyl-6-O-benzoyl-5-O-methylsulfonyl-1,2-O-isopropylidene-a-D-glucofuranose is a biomedical product used in the research of certain diseases and conditions. This compound has potential applications as an antiviral and antifungal agent. It can also be utilized as a chemical intermediate in the synthesis of pharmaceutical drugs targeting specific diseases, due to its unique structural properties. CAS No. 102029-58-3. Molecular formula: C19H24O10S. Mole weight: 444.45. BOC Sciences 6
3'-O-Acetyl-N2-isobutyryl-4'-thio-2'-deoxy-beta-D-guanosine 3'-O-Acetyl-N2-isobutyryl-4'-thio-2'-deoxy-β-D-guanosine is a chemically modified nucleoside with multiple functional group modifications. The 3'-hydroxyl group of the deoxyribose sugar is acetylated, and the N2 position of the guanine base is protected with an isobutyryl group. Additionally, the 4'-oxygen atom of the sugar is replaced by sulfur, forming a 4'-thio sugar derivative. The acetyl and isobutyryl groups act as protecting groups during oligonucleotide synthesis, ensuring selective reactions at other sites. This compound is primarily used in nucleic acid chemistry for synthesizing modified oligonucleotides, offering enhanced stability, nuclease resistance, and unique structural or biochemical properties for research or therapeutic applications. Alternative Names: N-(2-Methyl-1-oxopropyl)-3'-O-acetyl-2'-deoxy-4'-thioguanosine; N2-Isobutyryl-3'-O-acetyl-4'-thio-2'-deoxyguanosine. Molecular formula: C16H21N5O5S. Mole weight: 395.43. BOC Sciences 6
3'-O-Acetyl-N4-acetyl-4'-thio-2'-deoxy-beta-D-cytidine 3'-O-Acetyl-N4-acetyl-4'-thio-2'-deoxy-beta-D-cytidine is a modified nucleoside with multiple structural changes. The 3'-O-acetyl group is attached to the 3' hydroxyl group of the sugar, which can protect the molecule from exonuclease degradation and contribute to stability. The N4-acetyl group is attached to the N4 position of the cytosine base, potentially altering the interactions of the nucleoside with other nucleic acids or proteins. The 4'-thio modification replaces the oxygen atom at the 4' position of the sugar with a sulfur atom, which enhances stability and can increase binding affinity. The 2'-deoxy structure means the nucleoside lacks the 2'-hydroxyl group, making it a deoxyribonucleotide and suitable for DNA synthesis. This modified nucleoside can be used in the synthesis of DNA oligonucleotides, especially for applications requiring enhanced stability, altered enzyme interactions, or resistance to degradation. Alternative Names: Cytidine, N-acetyl-2'-deoxy-4'-thio-, 3'-acetate; N-Acetyl-2'-deoxy-3'-O-acetyl-4'-thio-cytidine; N4-Acetyl-2'-deoxy-3'-O-acetyl-4'-thio-cytidine. Molecular formula: C13H17N3O5S. Mole weight: 327.36. BOC Sciences 6
3'-O-Acetyl-N4-benzoyl-4'-thio-2'-deoxy-beta-D-cytidine 3'-O-Acetyl-N4-benzoyl-4'-thio-2'-deoxy-beta-D-cytidine is a modified nucleoside with several structural modifications. The 3'-O-acetyl group is attached to the 3' hydroxyl of the sugar, providing steric protection and increasing the stability of the nucleoside. The N4-benzoyl modification is attached to the nitrogen at the N4 position of the cytosine base, which can affect its interactions with other nucleic acids or enzymes, potentially enhancing binding affinity or altering recognition. The 4'-thio modification replaces the oxygen atom at the 4' position of the ribose sugar with a sulfur atom, which can increase the stability and binding affinity of the nucleoside. The 2'-deoxy structure indicates the absence of the 2'-hydroxyl group, making it a deoxyribonucleotide, suitable for DNA synthesis. This modified nucleoside can be used in DNA research, gene editing, or therapeutic applications where increased stability, nuclease resistance, and specific interactions with biological targets are important. Alternative Names: Cytidine, N-benzoyl-2'-deoxy-4'-thio-, 3'-acetate; N-Benzoyl-2'-deoxy-3'-O-acetyl-4'-thio-cytidine; N4-Benzoyl-2'-deoxy-3'-O-acetyl-4'-thio-cytidine. Grades: ≥95%. CAS No. 667882-71-5. Molecular formula: C18H19N3O5S. Mole weight: 389.43. BOC Sciences 6

Would you like to list your products on USA Chemical Suppliers?

Our database is helping our users find suppliers everyday.

Add Your Products