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1L-Epi-2-inosose
1L-Epi-2-inosose is a vital intermediate in the pharmaceutical industry. It is notably used in the synthesis of Trobamicin and various aminoglycoside antibiotics. These antibiotics are primarily utilized for treating severe bacterial infections resistant to other antibiotics. Alternative Names: (2R,3S,4S,5S,6S)-2,3,4,5,6-pentahydroxycyclohexanone; D-epi-4-Inosose; L-epi-2-Inosose; Racemic epi-inosose. CAS No. 33471-33-9. Molecular formula: C6H10O6. Mole weight: 178.14.
1-Me-dA-CE Phosphoramidite
1-Me-dA-CE Phosphoramidite, an essential resource in the realm of biomedical research, holds particular significance in the field of DNA synthesis and modification. Its primary purpose lies in integrating 1-Methyladenine (1-Me-dA) modifications into nucleic acid sequences. Its unblemished purity and adaptability to diverse synthesizers empower scientists to effectuate meticulous modifications, fueling the investigation of DNA-protein interactions, epigenetics, and DNA repair mechanisms. Alternative Names: 5'-Monomethoxytrityl-N6-chloroacetyl-1-methyl-2'-deoxyAdenosine, 3'-[(2-cyanoethyl)-(N,N-diisopropyl)]-phosphoramidite; N-[9-[3-O-[(Diisopropylamino)(2-cyanoethoxy)phosphino]-5-O-(4-methoxytrityl)-2-deoxy-beta-D-ribofuranosyl]-1-methyl-1,6-dihydro-9H-purine-6-ylidene]chloroacetamide. Molecular formula: C42H49ClN7O6P. Mole weight: 814.31.
1-(Methoxycarbonyl)ethyl benzodithioate
RAFT agent for controlled radical polymerization; well-suited for polymerization of methacrylates, methacrylamides, and to a lesser extent styrenes, acrylates, and acrylamides. Chain Transfer Agent (CTA). Alternative Names: 2-[(Phenylthioxomethyl)thio]propanoic acid methyl ester. Grades: ≥97%. CAS No. 474746-06-0. Molecular formula: C11H12O2S2. Mole weight: 240.34.
1-Methyl-2,3-O-isopropylidene-1,4-dideoxy-1,4-imino-1-N-dehydro-D-ribitol is a key intermediate commonly used in the synthesis of various antibiotics such as Lincomycin and Salmicetin. It may also play a crucial role in research of treating bacterial infections. CAS No. 909703-52-2. Molecular formula: C9H15NO3. Mole weight: 185.22.
1-Methyl-2-propenylbeta-D-glucopyranoside
1-Methyl-2-propenylbeta-D-glucopyranoside is a natural product. This glucopyranoside compound has shown potential in the research of treating conditions like diabetes and obesity due to its effects on insulin sensitivity and fat metabolism. Alternative Names: (2R,3R,4S,5S,6R)-2-but-3-en-2-yloxy-6-(hydroxymethyl)oxane-3,4,5-triol. Grades: 95%. CAS No. 200396-09-4. Molecular formula: C10H18O6. Mole weight: 234.25.
1-Methyl-3'-deoxyadenosine
1-Methyl-3'-deoxyadenosine is a vital compound used in the biomedical industry for its potential therapeutic applications. It has been found to exhibit anticancer properties by inducing apoptosis and inhibiting tumor cell growth. Additionally, 1-Methyl-3'-deoxyadenosine has demonstrated immunosuppressive effects, making it a promising candidate for the treatment of autoimmune diseases. Alternative Names: (2R,3R,5S)-2-(6-amino-1-methyl-1,2-dihydro-9H-purin-9-yl)-5-(hydroxymethyl)tetrahydrofuran-3-ol. Molecular formula: C11H17N5O3. Mole weight: 267.29.
1-Methyl-3-pentylimidazolium Bromide
1-Methyl-3-pentylimidazolium Bromide. Alternative Names: 1-Methyl-3-pentyl-1H-imidazol-3-ium Bromide. Grades: >98.0%(HPLC). CAS No. 343851-31-0. Molecular formula: C9H17BrN2. Mole weight: 233.15.
1-Methyl-6-thioguanosine
1-Methyl-6-thioguanosine is a compound useful in organic synthesis. Alternative Names: 1-Methyl-6-thio-guanosine. CAS No. 55727-08-7. Molecular formula: C11H15N5O4S. Mole weight: 313.33.
1-Methyladenosine hydroiodide
1-Methyladenosine hydroiodide is a valuable modified nucleoside used in biochemical, pharmacological, and chemical biology research. Its methylation at the N1 position and presence as a hydroiodide salt allows scientists to study the effects of such modifications on nucleotide function, RNA structure, and potential therapeutic applications. This compound provides insights into the role of modified nucleosides in various biological processes and aids in the development of novel therapeutic agents and research tools. Alternative Names: N1-Methyladenosine hydroiodide; (2R,3S,4R,5R)-2-(Hydroxymethyl)-5-(6-imino-1-methyl-1H-purin-9(6H)-yl)tetrahydrofuran-3,4-diol hydroiodide; (2R,3S,4R,5R)-2-(hydroxymethyl)-5-(6-imino-1-methyl-6,9-dihydro-1H-purin-9-yl)oxolane-3,4-diol hydroiodide; Adenosine, 1-methyl-, hydriodide (1:1); 6-Amino-1-methyl-9-β-D-ribofuranosyl-9H-purinium iodide; Adenosine, 1-methyl-, monohydriodide; NSC 66391. Grades: 98%. CAS No. 34308-25-3. Molecular formula: C11H16IN5O4. Mole weight: 409.18.
1-Methylcytosine
1-Methylcytosine is a methylated form of cytosine. It is used as a nucleobase of hachimoji DNA, in which it pairs with Isoguanine. Alternative Names: 4-amino-1-methylpyrimidin-2(1H)-one; 2(1H)-Pyrimidinone, 4-amino-1-methyl-. Grades: 95%. CAS No. 1122-47-0. Molecular formula: C5H7N3O. Mole weight: 125.13.
1-Methylene-5-a-androstan-3-a-ol-17-one glucuronide is a metabolite of synthetic anabolic steroids. Molecular formula: C26H37O8.Na.2H2O. Mole weight: 536.59.
1-Methylguanosine
1-Methylguanosine is a methylated nucleoside. It is known that some modified, especially methylated, nucleosides originating from RNA degradation are excreted in abnormal levels in the urine of patients with malignant tumours. These nucleosides have been proposed as tumour markers. Their measurement could provide a non-invasive diagnostic method, help identify different cancers, and monitor any therapeutic effects. Alternative Names: N1-Methylguanosine; Guanosine, 1-methyl-; 2-Amino-9-((2R,3R,4S,5R)-3,4-dihydroxy-5-(hydroxymethyl)tetrahydrofuran-2-yl)-1-methyl-1H-purin-6(9H)-one; 1-Methyl-2-amino-9-(β-D-ribofuranosyl)-9H-purine-6(1H)-one; NSC 70897. Grades: ≥95%. CAS No. 2140-65-0. Molecular formula: C11H15N5O5. Mole weight: 297.27.
1-MethylpseudoUridine-5'-triphosphate
1-MethylpseudoUridine-5'-triphosphate is a vital reagent in biomedical research. It is commonly used as a substrate to study RNA modifications and their role in gene expression regulation. This modified nucleotide analog allows for the analysis of enzymatic activities, RNA synthesis, and translation processes. It finds applications in the study of RNA splicing, RNA folding, and RNA-protein interactions, aiding in the understanding and potential treatment of various diseases.
1,N6-Etheno-9-(b-D-xylofuranosyl)adenosine
1,N6-Etheno-9-(b-D-xylofuranosyl)adenosine is a unique biomolecule used in biomedicine for its potential as an anticancer agent. Studies have shown that this compound can induce apoptosis in cancer cells without harming healthy cells, making it an attractive option for cancer treatment. Its structure is similar to the naturally occurring adenosine, which allows it to specifically target cancer cells. Ongoing research is exploring its potential for the treatment of various types of cancer such as lung cancer, colon cancer, and leukemia. Alternative Names: 1,N6-Etheno-9-(β-D-xylofuranosyl)adenosine; (2R,3R,4R,5R)-2-(hydroxymethyl)-5-(3H-imidazo[2,1-i]purin-3-yl)tetrahydrofuran-3,4-diol. Grades: ≥95%. CAS No. 2095417-39-1. Molecular formula: C12H13N5O4. Mole weight: 291.26.
1,N6-Ethenoadenosine
N6-Ethenoadenosine, a purine nucleoside analog, is paramount for the examination of oxidative damage on cellular DNA. It has demonstrated a capability to initiate DNA damage and apoptosis in cancer cells, rendering it an integral component of investigating its effectiveness as an anticancer agent. Its potential usage within the realm of cancer treatment necessitates a thorough understanding and exploration of its capabilities. Alternative Names: Etheno ribo Adenosine; N6-Etheno-D-adenosine; N6-Ethenoadenosine; 3-(β-D-Ribofuranosyl)-3H-imidazo[2,1-i]purine; (2R,3S,4R,5R)-2-(Hydroxymethyl)-5-(3H-imidazo[2,1-i]purin-3-yl)tetrahydrofuran-3,4-diol; 3-β-D-Ribofuranosyl-3H-imidazo[2,1-i]purine; 1,6-Ethenoadenosine; Ethenoadenosine; N6-β-D-Ribosyl-1,N6-ethenoadenine; ε-Adenosine. Grades: ≥95% by HPLC. CAS No. 39007-51-7. Molecular formula: C12H13N5O4. Mole weight: 291.26.
1,N6-Ethenoadenosine-5'-diphosphate, Sodium salt
1,N6-Ethenoadenosine-5'-diphosphate, Sodium salt is a P2Y2 and P2Y6 receptor agonist, used in studying purinergic signaling mechanisms. It is also utilized in research and development targeting ureteral obstruction and pulmonary diseases. Alternative Names: Etheno-ADP; sodium ((2R,3S,4R,5R)-3,4-dihydroxy-5-(3H-imidazo[1,2-i]purin-3-yl)tetrahydrofuran-2-yl)methyl diphosphate. Grades: ≥98%. CAS No. 103213-52-1. Molecular formula: C12H12N5Na3O10P2. Mole weight: 517.17.
1,N6-Ethenoadenosine 5'-monophosphate sodium salt
1,N6-Ethenoadenosine 5'-monophosphate (1,N6-ε-AMP) is a fluorescent analog of adenosine 5'-monophosphate (AMP) that is used for analyzing the activity of 5'-nucleotidase. 1,N6-ε-AMP is characterized by a long fluorescent lifetime, detectability at low concentration, a relatively long wavelength of excitation (250-300 nm), and emission at 415 nm. Alternative Names: 1,N6-ε-AMP; 1,N6-Etheno-AMP; 3-(5-O-phosphono-β-D-ribofuranosyl)-3H-imidazo[2,1-i]purine disodium salt. Grades: ≥97%. CAS No. 885597-18-2. Molecular formula: C12H12N5Na2O7P. Mole weight: 415.2.
1,N6-Ethenoadenosine-5'-monophosphate sodium salt
1,N6-Ethenoadenosine-5'-monophosphate sodium salt is a biomedical compound used in research for studying adenosine receptors. Known for its high-affinity binding to these receptors, it aids in studying diseases like Parkinson's and Alzheimer's where adenosine receptors play a key role. Alternative Names: Etheno-AMP. Grades: ≥ 95 % by HPLC. CAS No. 103213-41-8. Molecular formula: C12H14N5NaO7P. Mole weight: 394.23.
1,N6-Ethenoadenosine-5'-triphosphate sodium salt
N6-Ethenoadenosine-5'-triphosphate sodium salt, a compound of utmost significance in biochemical research, serves as an indispensable resource to explore the multifaceted nature of ATP, a universally acknowledged energy carrier, and its intricate involvement in diverse biological phenomena. With its distinctive configuration, it serves as an invaluable tool for investigating ATP-binding enzymes and receptors, thereby facilitating the advancement of therapeutic interventions for menacing conditions such as cancer, neurodegenerative ailments, and cardiovascular disorders. Alternative Names: 1,N[6]-ethenoadenosine 5'-triphosphate, sodium salt; Disodium 3-{5-O-[hydroxy({[(hydroxyphosphinato)oxy]phosphinato}oxy)phosphoryl]pentofuranosyl}-3H-imidazo[2,1-i]purine. Grades: ≥ 95% (HPLC). CAS No. 60777-99-3. Molecular formula: C12H14N5Na2O13P3. Mole weight: 575.17.
1,N6-Etheno-ara-adenosine
1,N6-Etheno-ara-adenosine is a synthetic nucleoside analog commonly used in the biomedical industry to study the effects of oxidative damage to DNA. It can also be used to investigate the mechanisms of inhibition and reparation of DNA polymerases, making it valuable in the development of cancer therapies. Alternative Names: (2R,3S,4S,5R)-2-(hydroxymethyl)-5-imidazo[2,1-f]purin-3-yloxolane-3,4-diol. Grades: ≥95%. CAS No. 2095417-09-5. Molecular formula: C12H13N5O4. Mole weight: 291.26.
1-Naphthyl 2-acetamido-2-deoxy-b-D-galactopyranose, an artificial analog of galactose, is ubiquitously employed in the field of cellular biology for the purpose of tagging and diagnosing galactose-targeting receptors. It is also utilized in combination with other biochemicals to investigate the intricate mechanisms of cell adherence, migration, and communication. As a result of its versatility and precision, this synthetic compound has become an indispensable tool for scientists studying cellular processes. Molecular formula: C18H21NO6. Mole weight: 347.36.
1-Naphthyl 2-acetamido-2-deoxy-b-D-galactopyranoside is often used as a substrate in galactosidase assays for the detection of bacterial contamination. It aids in antibiotic treatment research. Alternative Names: 1-Naphthyl N-acetyl-b-D-galactosaminide; N-((2S,3R,4R,5R,6R)-4,5-dihydroxy-6-(hydroxymethyl)-2-(naphthalen-1-yloxy)tetrahydro-2H-pyran-3-yl)acetamide; β-D-Galactopyranoside, 1-naphthalenyl 2-(acetylamino)-2-deoxy-; 1-Naphthalenyl 2-(acetylamino)-2-deoxy-β-D-galactopyranoside. CAS No. 212140-30-2. Molecular formula: C18H21NO6. Mole weight: 347.37.
1-Naphthyl 2-acetamido-2-deoxy-b-D-glucopyranoside is a biomedicine product commonly used as a chemical probe to study the role of glycosidases in diseases like cancer, diabetes, and infectious disorders. Alternative Names: 1-Naphthyl N-acetyl-b-D-glucosaminide; 1-Naphthyl-2-acetamido-2-deoxy-b-D-glucopyranose; 1-Naphthalenyl 2-(acetylamino)-2-deoxy-β-D-glucopyranoside; Glucopyranoside, 1-naphthyl 2-acetamido-2-deoxy-, β-D-; 1-Naphthyl 2-acetamido-2-deoxy-β-D-glucopyranoside. Grades: ≥95%. CAS No. 10329-98-3. Molecular formula: C18H21NO6. Mole weight: 347.36.
1-Naphthyl 2-acetamido-3,4,6-tri-O-acetyl-2-deoxy-b-D-glucopyranoside is a biological compound utilized in the research of various bacterial infections. This chemical is crucial in the research and development of antibiotics and other bacterial disease intervention drugs. Alternative Names: β-D-Glucopyranoside, 1-naphthalenyl 2-(acetylamino)-2-deoxy-, 3,4,6-triacetate; β-D-Glucoside, 1-naphthyl 2-acetamido-2-deoxy-, triacetate; 1-Naphthyl 2-acetamido-3,4,6-tri-O-acetyl-2-deoxy-β-D-glucopyranoside. CAS No. 121356-12-5. Molecular formula: C24H27NO9. Mole weight: 473.47.
1-Naphthyl a-D-galactopyranoside
1-Naphthyl a-D-galactopyranoside is a galactoside used as a substrate in the study of galactosidase enzymes, helping in the research monitoring of medication efficacy targeting lysosomal storage diseases like Fabry's disease or Gaucher's disease. Alternative Names: a-Nap-a-D-Gal; 1-Naphthalenyl α-D-galactopyranoside; 1-Naphthyl α-D-galactopyranoside; α-Naphthyl α-D-galactopyranoside. Grades: ≥95%. CAS No. 65174-63-2. Molecular formula: C16H18O6. Mole weight: 306.31.
1-Naphthyl a-D-glucopyranoside
1-Naphthyl a-D-glucopyranoside is a high-purity chemical compound widely used in the biomedical industry. It acts as a substrate for various enzymatic assays, assisting in the detection and quantification of specific enzymes involved in disease pathways. Additionally, it has been utilized in the development of therapeutic drugs targeting certain metabolic disorders and infectious diseases. Alternative Names: a-Naphthyl-a-D-glucoside; a-Nap-a-D-Glc; 1-Naphthalenyl α-D-glucopyranoside; 1-Naphthyl α-D-glucopyranoside. CAS No. 208647-48-7. Molecular formula: C16H18O6. Mole weight: 306.31.
1-Naphthyl-alpha-D-mannopyranoside
1-Naphthyl-alpha-D-mannopyranoside is a derivatization reagent assisting in methods development for HPLC analysis of amines and amino acids. Furthermore, this product contributes in studying the carbohydrates-protein interactions in biological systems. Alternative Names: 1-Naphthyl-alpha-D-mannose; 1-Naphthalenyl α-D-mannopyranoside; 1-Naphthyl α-D-mannopyranoside. Grades: ≥95%. CAS No. 83833-13-0. Molecular formula: C16H18O6. Mole weight: 306.31.
1-Naphthyl b-D-galactopyranoside
1-Naphthyl β-D-galactopyranoside, a pivotal compound employed in biomedical research, holds immense significance in gauging the activity of the galactosidase enzyme. Renowned for its utility as a chromogenic substrate, it facilitates the precise quantification of β-galactosidase levels, thereby lending crucial insights into lactose metabolism and various assays pertaining to lysosomal storage diseases. Alternative Names: a-Naphthyl-b-D-galactoside; a-Nap-b-D-Gal; 1-Naphthalenyl β-D-galactopyranoside; 1-Naphthyl β-D-galactopyranoside; α-Naphthyl β-D-galactopyranoside; α-Naphthyl β-D-galactoside. CAS No. 41335-32-4. Molecular formula: C16H18O6. Mole weight: 306.32.
1-Naphthyl b-D-glucopyranoside
1-Naphthyl b-D-glucopyranoside is a substrate in drug metabolism investigations and enzymology research, engaging with the enzyme beta-glucosidase. Alternative Names: 1-Naphthalenyl β-D-glucopyranoside; Glucopyranoside, 1-naphthyl, β-D-; 1-Naphthyl β-D-glucopyranoside; 1-Naphthyl β-D-glucoside; 1-Naphthol glucoside; (2R,3S,4S,5R,6S)-2-(hydroxymethyl)-6-(naphthalen-1-yloxy)tetrahydro-2H-pyran-3,4,5-triol; Naphthalen-1-yl beta-D-glucopyranoside. CAS No. 19939-82-3. Molecular formula: C16H18O6. Mole weight: 306.31.
1-Naphthyl b-D-glucuronide
1-Naphthyl b-D-glucuronide is a substrate used in biomedical research, particularly for detecting β-glucuronidase activity in bacteria. It aids in differentiating pathogenic E.coli strains, studying drug metabolism and glucuronidation processes in pharmacokinetics. Alternative Names: 1-Naphthalenyl β-D-glucopyranosiduronic acid; Glucopyranosiduronic acid, 1-naphthyl, β-D-; 1-Naphthol glucuronide; 1-Naphthol β-D-glucuronide; 1-Naphthyl glucosiduronic acid; 1-Naphthyl glucuronide; 1-Naphthyl β-D-glucosiduronic acid; α-Naphthol glucuronide; α-Naphthyl β-D-glucuronide; α-Naphthyl β-glucuronide. CAS No. 17238-47-0. Molecular formula: C16H16O7. Mole weight: 320.29.
1-Naphthyl b-D-glucuronide sodium salt
1-Naphthyl b-D-glucuronide sodium salt, an invaluable biomedicine, is employed extensively in scientific research to explore the intricate process of glucuronidation, which plays a vital role in the metabolism and elimination of a diverse array of pharmaceuticals and endogenous compounds. Acting as a versatile substrate, it facilitates the activities of glucuronosyltransferases, crucial enzymes that mediate glucuronidation reactions. Demonstrating immense utility in in vitro experiments, this product enables scientists to unravel the profound impact of glucuronidation on drug pharmacokinetics, while simultaneously facilitating the evaluation of potential drug-drug interactions. Alternative Names: 1-Nap-b-D-GlcA.Na; β-D-Glucopyranosiduronic acid, 1-naphthalenyl, monosodium salt; 1-Naphthyl glucosiduronic acid sodium salt; 1-Naphthalenyl β-D-glucopyranosiduronic acid sodium salt; 1-Naphthol glucuronide sodium salt; 1-Naphthol β-D-glucuronide sodium salt; 1-Naphthyl glucuronide sodium salt; 1-Naphthyl β-D-glucosiduronic acid sodium salt; α-Naphthol glucuronide sodium salt; α-Naphthyl β-D-glucuronide sodium salt. CAS No. 83833-12-9. Molecular formula: C16H15NaO7. Mole weight: 342.28.
1-Naphthyl b-D-mannopyranoside
1-Naphthyl b-D-mannopyranoside is a valuable compound in biomedicine that is commonly used as a substrate in enzyme-based assays. It is especially used in the pharmaceutical industry to study different enzymes involved in the metabolism of mannose-containing molecules. Additionally, it serves as an important tool for drug discovery and development, aiding in the identification of potential therapeutic targets for treating diseases related to altered mannose metabolism. Alternative Names: 1-Naphthalenyl β-D-mannopyranoside; 1-Naphthyl β-D-mannopyranoside; Naphthalen-1-yl beta-L-mannopyranoside. CAS No. 84297-22-3. Molecular formula: C16H18O6. Mole weight: 306.31.
1-NH2-cGMP
1-NH2-cGMP is a selective cGMP analogue that has a higher affinity of site A in cGK, and it is commonly used for synergism studies. Alternative Names: 1- Aminoguanosine- 3', 5'- monophosphate, sodium salt. Grades: ≥ 98% by HPLC. CAS No. 78033-42-8. Molecular formula: C10H12N6O7P · Na. Mole weight: 382.2.
1-O-(1,3-Dihydro-1,3-dioxo-2H-isoindol-2-yl)-β-D-glucopyranuronic Acid 2,3,4-Triacetate Methyl Ester is an intermediate in synthesizing N-Hydroxy Vortioxetine O-β-D-Glucuronide Sodium Salt, which is a metabolite of Vortioxetine; a multimodal serotonergic agent which inhibits 5-HT1A, 5-HT1B, 5-HT3A, 5-HT7 receptor and SERT. Alternative Names: (2S,3R,4S,5S,6S)-2-((1,3-Dioxoisoindolin-2-yl)oxy)-6-(methoxycarbonyl)tetrahydro-2H-pyran-3,4,5-triyl Triacetate; β-D-Glucopyranuronic acid, 1-O-(1,3-dihydro-1,3-dioxo-2H-isoindol-2-yl)-, methyl ester, 2,3,4-triacetate. CAS No. 319926-19-7. Molecular formula: C21H21NO12. Mole weight: 479.39.
1-O-(2',3',4'-Tri-O-benzoyl-α-L-fucopyranosyl)-2,3,4,6-tetra-O-acetyl-galactopyranoside is a compound useful in organic synthesis. Alternative Names: (2S,3R,4R,5S,6S)-2-Methyl-6-(((3R,4S,5S,6R)-3,4,5-triacetoxy-6-(acetoxymethyl)tetrahydro-2H-pyran-2-yl)oxy)tetrahydro-2H-pyran-3,4,5-triyl tribenzoate; 1-O-(2',3',4'-Tri-O-benzoyl-α-L-fucopyranosyl)-2,3,4,6-tetra-O-acetyl-D-galactopyranoside. Molecular formula: C41H42O17. Mole weight: 806.76.
1-O-(5-Carboxy-N-phenyl-2-(1H)-pyridone)-D-glucuronide is a metabolite of glucuronide that has proven useful for the identification and diagnosis of drug-induced liver injury, specifically that caused by Acetaminophen. Additionally, it has been employed in the investigational study of liver metabolism and the determination of hepatic impairment induced by a range of other drugs. The potential applications of this compound are broad and could significantly enhance the clinical management of such complications. Molecular formula: C18H17NO9. Mole weight: 391.33.
1-O-Acetamido-β-D-glucopyranuronic Acid 3,4-Diacetate Methyl Ester is an intermediate in synthesizing N-Hydroxy Vortioxetine O-β-D-Glucuronide Sodium Salt, which is a metabolite of Vortioxetine, a multimodal serotonergic agent which inhibits 5-HT1A, 5-HT1B, 5-HT3A, 5-HT7 receptor and SERT. Alternative Names: (2S,3S,4R,5R,6S)-6-(Acetamidooxy)-5-hydroxy-2-(methoxycarbonyl)tetrahydro-2H-pyran-3,4-diyl Diacetate. Molecular formula: C13H19NO10. Mole weight: 349.29.
1-O-Acetyl-2,3,4,6-tetra-O-benzyl-b-D-galactopyranose, a remarkable and indispensable compound, serves as a pivotal link in the intricate synthesis of cutting-edge medication based on carbohydrates. Positioned with utmost precision, its acetyl group and benzyl protection groups make it an exceptional resource for generating antiviral agents, potent anti-inflammatory drugs, and promising therapies for diabetes and cancer. Alternative Names: 2,3,4,6-Tetra-O-benzyl-b-D-galactopyranose acetate. CAS No. 3866-62-4. Molecular formula: C36H38O7. Mole weight: 582.68.
1-O-Acetyl-2,3:5,6-di-O-isopropylidene-D-mannofuranose, a chemical entity essential for carbohydrate and glycosylated molecule synthesis, is an immensely critical compound. Its prospects lie in the procurement of therapeutic drugs capable of combating an array of life-threatening ailments such as cancer, infectious diseases, amongst others.
1-O-Acetyl-2,3,5-tri-O-benzoyl-4-thio-b-D-ribofuranose, an essential biochemical, serves as a vital intermediary in synthesizing nucleotides and nucleosides such as antiviral and anticancer drugs, like AZT and FdUrd. Moreover, it acts as a crucial reagent in the creation of modified RNA and DNA oligonucleotides, which enable the possible cure of genetic and metabolic disorders, thereby demonstrating its therapeutic potential. Alternative Names: 3R,4S,5R)-2-acetoxy-5-((benzoyloxy)methyl)tetrahydrothiophene-3,4-diyl dibenzoate; 2,3,5-Tri-O-benzoyl-1-O-acetyl-4-thio-D-ribofuranose; NSC782571; NSC-782571; F12880; [(2R,3S,4R)-5-acetyloxy-3,4-dibenzoyloxythiolan-2-yl]methyl benzoate; (3R,4S,5R)-2-acetoxy-5-((benzoyloxy)methyl)tetrahydrothiophene-3,4-diyldibenzoate. CAS No. 1015447-26-3. Molecular formula: C28H24O8S. Mole weight: 520.55.
1-O-Acetyl-2,3,5-tri-O-benzoyl-6-deoxy-D-allofuranose unleashes its biomedicinal prowess, as an invaluable elixir combating an array of afflictions. By serving as an indispensable cornerstone for the assembly of bespoke pharmaceuticals combating diabetes, microbial infestations, and malignancies, this compound fosters a fertile realm of therapeutic innovation in the biomedical sphere. Alternative Names: Allofuranose, 6-deoxy-, 1-acetate 2,3,5-tribenzoate, D-; D-Allofuranose, 6-deoxy-, 1-acetate 2,3,5-tribenzoate; 1-O-Acetyl-2,3,5-tri-O-benzoyl-5(R)-C-methyl-D-ribofuranose. CAS No. 72159-45-6. Molecular formula: C29H26O9. Mole weight: 518.51.
1-O-Acetyl-2,3,5-tri-O-benzoyl-beta-D-ribofuranose (CAS# 6974-32-9) is an inhibitor of neutrophil-keyhole limpet hemocyanin adhesion. Anti-inflammatory agent. Azacitidine USP Related Compound B. Alternative Names: beta-D-Ribofuranose 1-acetate 2,3,5-tribenzoate; (2S,3R,4R,5R)-2-acetoxy-5-(benzoyloxymethyl)tetrahydrofuran-3,4-diyl dibenzoate; NSC 23349; 1-O-Acetyl-2,3,5-tri-O-benzoyl-β-D-ribose; 2,3,5-Tri-O-benzoyl-β-D-ribofuranosyl Acetate; Azacitidine USP Related Compound B. Grades: ≥98% by HPLC. CAS No. 6974-32-9. Molecular formula: C28H24O9. Mole weight: 504.48.
1-O-Acetyl-2,3,5-tri-O-benzoyl-b-L-ribofuranose
1-O-Acetyl-2,3,5-tri-O-benzoyl-b-L-ribofuranose is an organic compound used in the research and development of antiviral drugs. It can be used in nucleoside production, facilitating studying for diseases such as hepatitis B and HIV. Alternative Names: β-L-Ribofuranose 1-Acetate 2,3,5-Tribenzoate; (2R,3S,4S,5S)-2-Acetoxy-5-((benzoyloxy)methyl)tetrahydrofuran-3,4-diyl dibenzoate; 1-O-Acetyl-2-O,3-O,5-O-tribenzoyl-beta-L-ribofuranose; Ribofuranose, 1-acetate 2,3,5-tribenzoate. Grades: ≥97% by HPLC. CAS No. 3080-30-6. Molecular formula: C28H24O9. Mole weight: 504.48.
1-O-Acetyl-2,3,5-tri-O-benzoyl-D-ribofuranose
1-O-Acetyl-2,3,5-tri-O-benzoyl-D-ribofuranose is a pharmaceutical intermediate often utilized in the synthesis of antiviral drugs like Tenofovir, which is widely used to treat HIV and chronic Hepatitis B infections, thereby playing a crucial role in infectious disease research. Alternative Names: D-Ribofuranose 1-acetate 2,3,5-tribenzoate. CAS No. 14215-97-5. Molecular formula: C28H24O9. Mole weight: 504.48.
1-O-Acetyl-2,3,5-tri-O-benzyl-b-D-ribofuranose
1-O-Acetyl-2,3,5-tri-O-benzyl-b-D-ribofuranose is a crucial compound in drug synthesis within the biomedical industry. It is commonly used as a precursor or reagent in the manufacturing of antiviral drugs, such as nucleoside analogues. Alternative Names: 2,3,5-Tris-O-benzyl-beta-D-ribofuranose acetate; (2S,3R,4R,5R)-3,4-Bis(benzyloxy)-5-((benzyloxy)methyl)tetrahydrofuran-2-yl acetate. CAS No. 91110-24-6. Molecular formula: C28H30O6. Mole weight: 462.53.
1-O-Acetyl-2,3,5-tri-O-benzyl-D-ribofuranose
1-O-Acetyl-2,3,5-tri-O-benzyl-D-ribofuranose is a pharmaceutical intermediate used in the synthesis of nucleosides. It's specifically utilized within the research and development of treatments for viral diseases like Hepatitis and HIV. Alternative Names: 1-O-Acetyl-2,3,5-tri-O-benzyl-D-ribofuranose; 58381-23-0; [(3R,4R,5R)-3,4-bis(phenylmethoxy)-5-(phenylmethoxymethyl)oxolan-2-yl] acetate; (3R,4R,5R)-3,4-Bis(benzyloxy)-5-((benzyloxy)methyl)tetrahydrofuran-2-yl acetate; D-Ribofuranose, 2,3,5-tris-O-(phenylmethyl)-, acetate; DTXSID90556349; AKOS016010561; BS-28920; D87696; W-203188; (3R,4R,5R)-3,4-bis(benzyloxy)-5-(benzyloxymethyl)tetrahydrofuran-2-yl acetate; (3R,4R,5R)-3,4-BIS(BENZYLOXY)-5-[(BENZYLOXY)METHYL]OXOLAN-2-YL ACETATE. CAS No. 58381-23-0. Molecular formula: C28H30O6. Mole weight: 462.53.
1-O-Acetyl-2,3,5-tri-O-benzyl-L-ribofuranose
1-O-Acetyl-2,3,5-tri-O-benzyl-L-ribofuranose, a notable chemical entity employed as a primary precursor for synthesizing numerous drugs, represents a fascinating therapeutic avenue for cancer and viral ailments. The complex structural attributes inherent in this compound confer it with exceptional synthetic utility, thus making it an immensely versatile prototype in the development of potentially transformative pharmacological agents. Molecular formula: C28H30O6. Mole weight: 462.53.
1-O-Acetyl-2,3,5-tri-O-p-chlorobenzoyl-b-D-ribofuranose is a crucial compound employed in the biomedical industry. It acts as a precursor for the synthesis of chemotherapeutic drugs used in the treatment of various diseases. Its unique structure allows for targeted drug delivery. Alternative Names: 1-O-Acetyl-2,3,5-tri-O-(4-chlorobenzoyl)-beta-D-ribofuranose; beta-D-Ribofuranose, 1-acetate 2,3,5-tris(4-chlorobenzoate); DiBoc-iodo-L-tyrosine. CAS No. 144084-01-5. Molecular formula: C28H21Cl3O9. Mole weight: 607.82.
1-O-Acetyl-2,5-di-O-benzoyl-3-fluoro-3-deoxy-b-D-ribofuranoside is an intriguing fluorinated nucleoside derivative, firmly established in HCV research as a potent inhibitor of HCV NS5B polymerase that plays an indispensable role in HCV replication. 1-O-Acetyl-2,5-di-O-benzoyl-3-fluoro-3-deoxy-b-D-ribofuranoside has shown a low cytotoxicity while efficiently targeting HCV NS5B polymerase, thus, demonstrating a remarkable specificity. These combined characteristics project a promising potential for 1-O-acetyl-2,5-di-O-benzoyl-3-fluoro-3-deoxy-b-D-ribofuranoside in the treatment of HCV infection, indicating its remarkable significance to medical treatment through strict HCV inhibition. CAS No. 122654-34-6. Molecular formula: C21H19FO7. Mole weight: 402.37.
Utilized within the field of biomedicine, 1-O-Acetyl-2,5-di-O-benzoyl-3-fluoro-3-deoxy-D-ribofuranoside is a compound that investigates the metabolism and antiviral potency of nucleosides. With demonstrated effectiveness against HIV-1, hepatitis B, and varicella-zoster virus, this compound exhibits promise as a therapeutic option within antiviral research. Alternative Names: 1-O -Acetyl-2,5-di-O-benzoyl-3-fluoro-3-deoxy-D-ribofuranoside; A903016; (5-Acetyloxy-4-benzoyloxy-3-fluorooxolan-2-yl)methyl benzoate; 1-O -Acetyl-2,5-di-O-benzoyl-3-fluoro-3-deoxy-D-ribofuranoside; ((2R,3R,4S)-5-acetoxy-4-(benzoyloxy)-3-fluorotetrahydrofuran-2-yl)methyl benzoate. CAS No. 123484-12-8. Molecular formula: C21H19FO7. Mole weight: 402.37.
1-O-Acetyl-2-azido-2-deoxy-3,4-di-O-benzyl-6-O-benzoyl-D-glucopyranose, a biochemical product of paramount importance, plays a central role in glycobiology-related compounds' synthesis, primarily in the development of glycoconjugates. The intricate molecular structure of this compound renders it a potent contender in drug delivery and vaccine development. Moreover, ongoing research employing this substance analyzes carbohydrates' impact on biological processes and diseases such as cancer and autoimmune disorders with great vigor and enthusiasm. Molecular formula: C29H29N3O7. Mole weight: 531.56.
1-O-Acetyl-2-deoxy-3,5-di-O-toluoyl-b-D-erythropentofuranose, an indispensable compound in the biomedical sector, assumes a pivotal role in synthesizing pharmaceuticals and therapies targeting diverse ailments. Alternative Names: 1-O-Acetyl-2-deoxy-3,5-di-O-toluoyl-beta-D-erythropentofuranose; β-D-erythro-Pentofuranose, 2-deoxy-, 1-acetate 3,5-bis(4-methylbenzoate). CAS No. 57236-72-3. Molecular formula: C23H24O7. Mole weight: 412.43.
1-O-Acetyl-2-deoxy-5-O-p-methoxybenzoyl-3-O-(N,N-diethylthiocarbamoyl)-D-ribofuranose, commonly referred to as ADT, is a crucial biochemical compound capable of enlightening the intricacies of carbohydrates' structures and functions. Its potential as an intermediate compound in the synthesis of drugs vital to treating numerous diseases, such as bacterial / viral infections and cancer, makes it an essential component of the scientific tool-kit. In conclusion, ADT is a crucial element of the biochemist's arsenal, facilitating the fundamental understanding of carbohydrates' nature while also being integral to the development of treatments for debilitating diseases. Molecular formula: C20H27NO7S. Mole weight: 425.50.
1-O-Acetyl-2-O-benzoyl-3,4,6-O-tribenzyl-D-galactopyranoside is a specialized biochemical agent involved in the synthesis of antivirals. Alternative Names: D-Galactopyranose, 3,4,6-tris-O-(phenylmethyl)-, 1-acetate 2-benzoate. Molecular formula: C36H36O8. Mole weight: 596.67.
A pivotal molecule in the synthesis of antiviral drugs is the 1-O-Acetyl-2-O-benzoyl-3-O-tert-butyldimethylsilyl-L-threofuranose. Its frequent use in the creation of efficacious nucleoside analogs proves valuable in the treatment of viral afflictions like hepatitis B and C.
1-OAcetyl-2-O-benzoyl-3-O-tert-butyldiphenylsilyl-L-threofuranose is a key intermediate in the synthesis of nucleoside analogues used as antiviral drugs to treat infections such as HIV, hepatitis B and C. It is also used in the synthesis of various inhibitors for cancer treatment. Alternative Names: (3R,4S)-2-Acetoxy-4-((tert-butyldiphenylsilyl)oxy)tetrahydrofuran-3-yl benzoate; E87975; 1-O-acetyl-2-O-benzoyl-3-O-t-butyldiphenylsilyl-l-threofuranose. CAS No. 1971879-01-2. Molecular formula: C29H32O6Si. Mole weight: 504.65.
An intermediate of Decitabine. Alternative Names: 1-Acetate 3,5-bis(4-chlorobenzoate)-2-deoxy-D-erythro-pentofuranose; Decitabine related compound A [USP]; 1-O-Acetyl-3,5-bis-O-(4-chlorobenzoyl)-2-deoxy-D-erythro-pentofuranose; D-Erythro-pentofuranose, 2-deoxy-, 1-acetate 3,5-bis(4-chlorobenzoate); (2R,3S)-5-Acetoxy-2-(((4-chlorobenzoyl)oxy)methyl)tetrahydrofuran-3-yl 4-chlorobenzoate. Grades: ≥95% by HPLC. CAS No. 1207459-15-1. Molecular formula: C21H18Cl2O7. Mole weight: 453.27.
1-O-Acetyl-3,5-di-O-benzyl-2-deoxy-2-fluoro-4-thio-D-arabinofuranose stands as an astoundingly powerful biomedical substance, harnessed for the purpose of mitigating an array of ailments. Its exceptional attributes extend to its proficiency in countering select DNA and RNA viruses, aptly employed within antiviral regimens. Additionally, the fascinating interplay between its composition and mode of action embraces the potential for its application within anticancer therapies, showcasing remarkable capabilities in obstructing malignant cell proliferation. Alternative Names: D-Arabinofuranose, 2-deoxy-2-fluoro-4-thio-, 1-acetate 3,5-dibenzoate. CAS No. 197647-16-8. Molecular formula: C21H19FO6S. Mole weight: 418.44.
1-O-Acetyl-α-D-galactopyranose, a carbohydrate derivative, serves as a constituent for synthesizing glycosylated compounds intended for agricultural and medicinal applications. Its versatile nature and structural attributes are valuable in the development of glycosylated antineoplastic agents, while showing promise in the treatment of neurodegenerative conditions. Alternative Names: 1-O-Acetyl-alpha-D-galactopyranose; ALPHA-D-GALACTOPYRANOSE, 1-ACETATE; [(2R,3R,4S,5R,6R)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl] acetate; SCHEMBL6060841; DTXSID80616466. Grades: min 90% alpha. CAS No. 496924-55-1. Molecular formula: C8H14O7. Mole weight: 222.19.
1-O-(a-D-Glucopyranosyl)-D-mannitol
It is a non-cariogenic excipient used in a variety of pharmaceutical preparations, including tablets or capsules, coatings, sachets, suspensions and effervescent tablets. It can be used for direct compression and wet granulation. It is also widely used in lozenges, sugar-free chewing gums and cooked candies, and as a sweetening agent in confectionery for diabetics. Alternative Names: 1-O-a-D-glucopyranosyl-D-mannitol; 1,1-GPM; D-Mannitol, 1-O-alpha-D-glucopyranosyl-; Isomalt; Palatinit; a-D-Glcp-1,1-D-Mannitol; 6-O-α-D-Glucopyranosyl-D-mannitol. Grades: ≥95%. CAS No. 20942-99-8. Molecular formula: C12H24O11. Mole weight: 344.31.
1-O-Amino-β-D-glucopyranuronic Acid 2,3,4-Triacetate Methyl Ester is an intermediate in synthesizing N-Hydroxy Vortioxetine O-β-D-Glucuronide Sodium Salt, which is a metabolite of Vortioxetine, a multimodal serotonergic agent which inhibits 5-HT1A, 5-HT1B, 5-HT3A, 5-HT7 receptor and SERT. Alternative Names: (2S,3R,4S,5S,6S)-2-(Aminooxy)-6-(methoxycarbonyl)tetrahydro-2H-pyran-3,4,5-triyl Triacetate; β-D-Glucopyranuronic acid, 1-O-amino-, methyl ester, 2,3,4-triacetate. CAS No. 319926-20-0. Molecular formula: C13H19NO10. Mole weight: 349.29.
1-O-Aminohexyl 3'-sialyllactose
1-O-Aminohexyl 3'-sialyllactose is a biomedical active compound, widely used in research particularly related to influenza, as the compound simulates the binding sites of viruses on cell surfaces. It has potential applications in antiviral drug development. Grades: 95%. Molecular formula: C29H52N2O19. Mole weight: 732.73.
1-O-Aminohexyl 6'-sialyllactose
1-O-Aminohexyl 6'-sialyllactose is a biochemical product, courting applications in the development of therapeutic molecules targeting bacterial contagions. Grades: 95%. CAS No. 2411852-86-1. Molecular formula: C29H52N2O19. Mole weight: 732.73.
1-O-Benzoly-2,4-O-benzylidene-D-threitol
1-O-Benzoly-2,4-O-benzylidene-D-threitol, a synthetic compound utilized in the production of antiviral medications for the treatment of herpes simplex virus (HSV) and varicella-zoster virus (VZV) infections, exhibits inhibitory effects on the replication and dissemination of these viruses in vitro. Thus, it presents a promising foundation for the development of new antiviral drugs. Molecular formula: C18H18O5. Mole weight: 314.33.
1-O-Benzoyl-2,3:5,6-di-O-isopropylidene-D-talofuranose is a vital compound extensively used in biomedicine. It exhibits promising therapeutic effects in treating various diseases including cancer, diabetes, and cardiovascular disorders. This compound plays a crucial role in the development of novel drugs and therapies targeting these specific medical conditions. Its unique structure and properties make it an essential component in biomedical research and pharmaceutical applications. Alternative Names: D-Talofuranose, 2,3:5,6-bis-O-(1-methylethylidene)-, benzoate. CAS No. 403604-98-8. Molecular formula: C19H24O7. Mole weight: 364.39.