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TES
TES is an excellent hydrogen ion buffer. TES has characteristics such as an appropriate dissociation constant, a low metal-binding constant, and high water solubility. TES can be used in the research of mammalian cell culture, viruses, and so on[1][2]. Uses: Scientific research. Category: Signaling pathways. CAS No. 7365-44-8. Pack Sizes: 10 mM * 1 mL in Water; 5 g. Product ID: HY-23430.
TES-1025
TES-1025 is a potent and selective human α-amino-β-carboxymuconate-ε-semialdehyde decarboxylase (ACMSD) inhibitor with an IC50 of 13 nM[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 1883602-21-8. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg; 50 mg. Product ID: HY-111365.
TES-991
TES-991 is a potent and selective human α Amino-β-carboxymuconate-ε-semialdehyde Decarboxylase (ACMSD) inhibitor, with an IC50 of 3 nM. Uses: Scientific research. Category: Signaling pathways. CAS No. 1883602-20-7. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-112619.
Tesaglitazar
Tesaglitazar is a dual-target PPARα/γ agonist with an EC50 of 13.4 μM for rat PPARα and 3.6 μM for human PPARα. Tesaglitazar affects lipid and glucose metabolism by activating PPARα and PPARγ receptors, and has the potential to improve blood sugar and relieve pain. Tesaglitazar can be used to induce in vivo tumor models and can be used in the study of type 2 diabetes, dyslipidemia, and neuropathic pain[1][2][3]. Uses: Scientific research. Category: Signaling pathways. CAS No. 251565-85-2. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-17444.
Tesevatinib
Tesevatinib (XL-647) is an orally available, blood-brain barrier-penetrant inhibitor of the epidermal growth factor receptor (EGFR). Tesevatinib significantly reduces cellular viability, with IC50 values of 11 nM and 102 nM in GBM12 and GBM6, respectively. Tesevatinib also inhibits HER2 (IC50=16.1 nM), VEGFR2 (IC50=1.5 nM), and Src (IC50=10.3 nM). Tesevatinib can inhibit tumor proliferation and exhibits antitumor activity[1][2]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: XL-647; EXEL-7647; KD-019. CAS No. 781613-23-8. Pack Sizes: 10 mM * 1 mL in DMSO; 1 mg; 5 mg; 10 mg. Product ID: HY-13314.
Tesidolumab
Tesidolumab (LFG316) is a fully-human IgG1/λ anti-C5 monoclonal antibody of 143 kDa (without glycosylation). Tesidolumab (LFG316) blocks cleavage of C5 and prevents subsequent formation of the membrane attack complex[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: LFG316; Anti-Human C5 Recombinant Antibody. CAS No. 1531594-08-7. Pack Sizes: 1 mg; 5 mg; 10 mg. Product ID: HY-P99322.
Tesirine
Tesirine (SG3249) is an antibody-drug conjugate (ADC) pyrrolobenzodiazepine (PBD) dimer payload. Tesirine combines potent antitumor activity with desirable physicochemical properties such as favorable hydrophobicity and improved conjugation characteristics. SG3199 (HY-101161) is the released warhead component of the ADC payload Tesirine. SG3199 retains picomolar activity in a panel of cancer cell lines. PBD dimers are highly efficient DNA minor groove cross-linking agents with potent cytotoxicity[1][2]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: SG3249. CAS No. 1595275-62-9. Pack Sizes: 1 mg; 5 mg; 10 mg; 25 mg. Product ID: HY-128952.
Tesnatilimab
Tesnatilimab (JNJ-64304500) is a human IgG4 monoclonal antibody targeting NKG2D, with a KD value of 9.2 pM[1][2]. Tesnatilimab blocks the binding of ligands to the NKG2D receptor, thereby inhibiting downstream proinflammatory cytokine, cytotoxic mediator signaling pathways and proinflammatory immune responses. Tesnatilimab is applicable to research related to Crohn's disease[1][2]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: JNJ-64304500; IPH-2301; NN-8555. CAS No. 2242758-08-1. Pack Sizes: 1 mg; 5 mg; 10 mg. Product ID: HY-P99389.
Tesofensine
Tesofensine (NS-2330) is a triple monoamine reuptake inhibitor inducing a potent inhibition of the re-uptake process in the synaptic cleft of the neurotransmitters dopamine (DA; IC50=6.5 nM), norepinephrine (NE;IC50=1.7 nM), and serotonin (5-HT;IC50=11 nM), and with potentials as an anti-obesity agent[1]. Tesofensine is a CNS acting anti-obesity agent[2]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: NS-2330. CAS No. 195875-84-4. Pack Sizes: 5 mg; 10 mg; 25 mg. Product ID: HY-14472.
Testosterone sulfate (pyridinium)
Testosterone sulfate pyridinium is a Testosterone sulfate with a pyridinium. Testosterone sulfate pyridinium is the metabolite of Testosterone. Testosterone is the main male sex hormone which determination is useful for assessment of androgen status[1][2]. Uses: Scientific research. Category: Signaling pathways. CAS No. 34991-10-1. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-113415A.
Tet1-Cys peptide
Tet1-Cys peptide is a peptide with the sequence HLNILSTLWKYRC. Tet1 (HLNILSTLWKYR) (HY-P10998) can specifically bind to the neuronal ganglioside receptor GT1b, possessing neuronal targeting capabilities. The Tet1-Cys peptide sequence has an added Cys, which can be used for drug conjugation for research on drug delivery[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 1048681-88-4. Pack Sizes: 1 mg; 5 mg; 10 mg. Product ID: HY-P11094.
Tet1 peptide
Tet1 peptide is a peptide that specifically binds to neurons. Tet1 peptide binds to GT1B ganglioside and trisialoganglioside clostridial toxin receptor on the surface of neuronal cells, and can be used in peptide conjugation and drug delivery research[1][2]. Uses: Scientific research. Category: Signaling pathways. CAS No. 270919-17-0. Pack Sizes: 1 mg; 5 mg; 10 mg. Product ID: HY-P10998.
TETi76
TETi76 is an orally active TET family inhibitor with IC50 values ??of 1.5, 9.4 and 8.8 μM for TET1, TET2 and TET3, respectively. TETi76 competitively binds to the active site of TET enzymes, reduces cytosine hydroxymethylation and restricts clonal growth of TET2 mutants in vitro and in vivo, but does not affect the growth of normal hematopoietic precursor cells. TETi76 can be used for leukemia research[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 1451750-73-4. Pack Sizes: 5 mg; 10 mg; 25 mg; 50 mg. Product ID: HY-402410.
Tetraacetylphytosphingosine
Tetraacetylphytosphingosine is a sphingolipid metabolite produced by phytosphingosine acetylation. Tetraacetylphytosphingosine exerts its inhibitory action on angiogenesis through the inhibition of MAPK activation and intracellular calcium increase[1]. Tetraacetylphytosphingosine induces apoptosis in HaCaT cells[2]. Uses: Scientific research. Category: Signaling pathways. CAS No. 13018-48-9. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg. Product ID: HY-138875.
Tetrabenazine
Tetrabenazine (Ro 1-9569) is a brain-penetrant and orally active VMAT2-selective ligand with human VMAT2 Ki 100 nM. Tetrabenazine binds VMAT2 to block monoamine uptake into synaptic vesicles, potentiates cytoplasmic monoamine degradation. Tetrabenazine weakly blocks dopamine D2 receptors, and increases dopamine turnover via elevated cerebrospinal fluid homovanillic acid. Tetrabenazine can be used for the research of Huntingtons disease, tardive dyskinesia, and Tourettes syndrome[1][2][3]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Ro 1-9569. CAS No. 58-46-8. Pack Sizes: 10 mM * 1 mL in DMSO; 50 mg; 100 mg; 200 mg; 500 mg. Product ID: HY-B0590.
Tetrabromophenol blue, IND
Tetrabromophenol blue, IND is a biochemical reagent. Uses: Scientific research. Category: Signaling pathways. Alternative Names: TBPB, IND. CAS No. 4430-25-5. Pack Sizes: 10 mM * 1 mL in DMSO; 250 mg; 500 mg; 1 g; 5 g. Product ID: HY-W140928.
Tetrabutylammonium fluoride (solution),1M in THF
Tetrabutylammonium fluoride is an organic compound containing both ammonium and fluorine functional groups. It is commonly used as a reagent in various chemical synthesis applications, especially as a source of fluoride ions for nucleophilic reactions. Tetrabutylammonium fluoride has several properties that make it suitable for these applications, including its high solubility in polar solvents and its ability to selectively activate certain chemical bonds. In addition, it can be used as a catalyst for organic reactions and as an electrolyte for batteries. Uses: Scientific research. Category: Signaling pathways. Alternative Names: TBAF. CAS No. 429-41-4. Pack Sizes: 500 mL. Product ID: HY-Y0971.
Tetrabutylammonium hexafluorophosphate
Tetrabutylammonium hexafluorophosphate is an organic-inorganic compound commonly used as an ionic solvent and catalyst. It can be used to catalyze or promote reactions in certain chemical reactions, and is widely used in batteries, solar cells and pigments. In addition, this compound is also widely used in organic synthesis and chemical analysis. Uses: Scientific research. Category: Signaling pathways. CAS No. 3109-63-5. Pack Sizes: 10 mM * 1 mL in DMSO; 25 g; 50 g; 100 g; 250 g; 500 g; 1000 g. Product ID: HY-Y1699.
Tetrabutylammonium hydrogensulfate
Tetrabutylammonium hydrosulfate is a quaternary ammonium salt that is commonly used as a phase transfer catalyst, acid catalyst and reagent in various chemical reactions, especially in organic synthesis. Tetrabutylammonium hydrosulfate has unique chemical properties that allow it to facilitate the transfer of ions or molecules from one phase to another, making it an important ingredient in a variety of industrial processes. Uses: Scientific research. Category: Signaling pathways. Alternative Names: TBAHS-MB. CAS No. 32503-27-8. Pack Sizes: 10 mM * 1 mL in DMSO; 25 g; 50 g; 100 g; 500 g; 1 k g. Product ID: HY-Y1045.
Tetrabutylammonium phosphate
Tetrabutylammonium Phosphate is a biochemical reagent that can be used as a biological material or organic compound for life science related research. Uses: Scientific research. Category: Signaling pathways. CAS No. 5574-97-0. Pack Sizes: 10 mM * 1 mL in DMSO; 25 g; 50 g; 100 g; 250 g; 500 g; 1 k g. Product ID: HY-W096982A.
Tetrabutylammonium tetrafluoroborate
Tetrabutylammonium tetrafluoroborate is an inorganic salt commonly used in organic synthesis reactions and electrochemical applications. It is usually used as a catalyst or reagent, and is widely used in the field of organic synthesis, such as fluorination reaction, olefin addition and cyclization reaction, etc. In addition, it can also be used in electrochemical deposition and electroplating, and plays an important role in some electronic devices. Although it has no direct application in the medical field, it plays an important role in chemical research and industrial production. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Tetra-n-butylammonium tetrafluoroborate. CAS No. 429-42-5. Pack Sizes: 10 mM * 1 mL in DMSO; 25 g; 50 g; 100 g; 500 g; 1 k g. Product ID: HY-34717.
Tetrac
Tetrac (Tetraiodothyroacetic acid), a derivative of L-thyroxine (T4), is a thyrointegrin receptor antagonist. Tetrac blocks the actions of T4 and 3,5,3'-triiodo-L-thyronine (T3) at the cell surface receptor for thyroid hormone on integrin αvβ3. Tetra has anti-angiogenic and anti-tumor activities[1][2]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Tetraiodothyroacetic acid; 3,3',5,5'-Tetraiodothyroacetic acid. CAS No. 67-30-1. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg. Product ID: HY-W008859.
Tetrachloroauric acid
Tetrachloroauric acid is an Au (III) compound and bilayer disruptor that can be used to damage red blood cells. Tetrachloroauric acid specifically disrupts the bilayer structure of representative phospholipids (dimyristoylphosphatidylcholine and dimyristoylphosphatidylethanolamine) in human red blood cell membranes, and induces morphological changes in intact human red blood cells. Tetrachloroauric acid causes downregulation of MT I-II and GFAP expression in the mouse brain following chronic treatment. Tetrachloroauric acid is being used in studies related to neurotoxicity and hematotoxicity, including analyses of human red blood cells and molecular models of red blood cell membranes, as well as immunohistochemical evaluation of the mouse brain[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 16903-35-8. Pack Sizes: 10 mM * 1 mL in DMSO; 100 mg; 250 mg; 500 mg; 1 g. Product ID: HY-W035091.
Tetracosactide
Tetracosactide (Tetracosactrin) is an analogue of adrenocorticotrophic hormone (ACTH). Tetracosactide is the agonist for melanocortin-4 receptor (MC4R) that activates human MC4R with an EC50 of 0.65 nM. Tetracosactide can stimulate the release of corticosteroids such as cortisol from the adrenal gland. Tetracosactide is currently used for the research of ulcerative colitis and Crohn's disease, juvenile/adult rheumatoid arthritis and osteoarthrosis[1][3]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Tetracosactrin; ACTH(1-24). CAS No. 16960-16-0. Pack Sizes: 1 mg; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-P0060.
Tetracosactide acetate
Tetracosactide acetate (Tetracosactrin acetate ) is the acetate salt form of Tetracosactide (HY-P0060). Tetracosactide acetate is an analogue of adrenocorticotrophic hormone (ACTH). Tetracosactide acetate is the agonist for melanocortin-4 receptor (MC4R) that activates human MC4R with an EC50 of 0.65 nM. Tetracosactide acetate can stimulate the release of corticosteroids such as cortisol from the adrenal gland. Tetracosactide acetate is currently used for the research of ulcerative colitis and Crohn's disease, juvenile/adult rheumatoid arthritis and osteoarthrosis[1][3]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Tetracosactrin acetate; ACTH(1-24) acetate. CAS No. 60189-34-6. Pack Sizes: 1 mg; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-P0060A.
Tetracycline
Tetracycline is a broad-spectrum antibiotic with oral activity. Tetracycline exhibits activity against a wide range of bacteria including gram-positive, gram-negative bacteria, chlamydiae, mycoplasmas and rickettsiae. Tetracycline can be used for the research of infections[1]. Uses: Scientific research. Category: Induced disease models products. CAS No. 60-54-8. Pack Sizes: 200 mg; 1 g; 5 g; 10 g; 25 g; 50 g; 100 g. Product ID: HY-A0107.
Tetracycline-d6
Tetracycline-d6 is the deuterium labeled Tetracycline. Tetracycline is a broad-spectrum antibiotic, exhibiting activity against a wide range of gram-positive and gram-negative bacteria. Uses: Scientific research. Category: Signaling pathways. CAS No. 2373374-42-4. Pack Sizes: 1 mg. Product ID: HY-A0107S.
Tetracycline hydrochloride
Tetracycline hydrochloride is a broad-spectrum antibiotic with oral activity. Tetracycline hydrochloride exhibits activity against a wide range of bacteria including gram-positive, gram-negative bacteria, chlamydiae, mycoplasmas and rickettsiae. Tetracycline hydrochloride can be used for the research of infections[1]. Uses: Scientific research. Category: Induced disease models products. CAS No. 64-75-5. Pack Sizes: 10 mM * 1 mL in DMSO; 500 mg; 1 g; 5 g; 10 g; 25 g; 50 g. Product ID: HY-B0474.
Tetradecane-1,14-diol
Tetradecane-1,14-diol is a PROTAC linker that can be used in the synthesis of PROTACs. Uses: Scientific research. Category: Signaling pathways. CAS No. 19812-64-7. Pack Sizes: 1 g; 5 g; 10 g; 25 g; 50 g; 100 g. Product ID: HY-W006457.
Tetraethylammonium chloride
Tetraethylammonium chloride is a non-selective potassium channel blocker. Tetraethylammonium chloride is a good substrate for organic cation transporter (OCTN1). Tetraethylammonium chloride antitumor properties[1][2]. Uses: Scientific research. Category: Signaling pathways. CAS No. 56-34-8. Pack Sizes: 10 mM * 1 mL in DMSO; 500 mg; 1 g; 5 g; 10 g; 50 g; 100 g. Product ID: HY-B1793.
Tetraethylene glycol monomethyl ether
Tetraethylene glycol monomethyl ether is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 23783-42-8. Pack Sizes: 25 g; 50 g; 100 g; 250 g; 500 g; 1 k g. Product ID: HY-W018365.
Tetragastrin
Tetragastrin (Cholecystokinin tetrapeptide; CCK-4) is the C-terminal tetrapeptide of gastrin. Tetragastrin can stimulate gastric secretion[1]. Tetragastrin is a Cholecystokinin (CCK-4) receptor agonist[2]. Gastric mucosal protection[3]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Cholecystokinin tetrapeptide; CCK-4. CAS No. 1947-37-1. Pack Sizes: 10 mM * 1 mL in DMSO; 25 mg; 50 mg. Product ID: HY-125556.
Tetrahydrobiopterin
Tetrahydrobiopterin ((Rac)-Sapropterin) is a cofactor of the aromatic amino acid hydroxylases enzymes and also acts as an essential cofactor for all nitric oxide synthase (NOS) isoforms. Uses: Scientific research. Category: Signaling pathways. Alternative Names: (Rac)-Sapropterin. CAS No. 17528-72-2. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg; 50 mg. Product ID: HY-107383.
Tetrahydrocortisone
Tetrahydrocortisone is a corticosteroid catalyzed from endogenous glucocorticoids by AKR1D1 (5β-reductase). Its formation is mediated by AKR1D1 and regulated by the glucocorticoid receptor (GR). As one of the final products of glucocorticoid inactivation metabolism, Tetrahydrocortisone participates in the maintenance of glucocorticoid metabolic homeostasis in vivo. Tetrahydrocortisone can be used for mechanistic studies of metabolic diseases such as non-alcoholic fatty liver disease (NAFLD) and type 2 diabetes, and also serves as a biomarker for in vivo AKR1D1 activity and glucocorticoid metabolic status[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 53-05-4. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg. Product ID: HY-113114.
Tetrahydrocurcumin
Tetrahydrocurcumin is a Curcuminoid found in turmeric (Curcuma longa) that is produced by the reduction of Curcumin. Tetrahydrocurcumin inhibit CYP2C9 and CYP3A4. Uses: Scientific research. Category: Signaling pathways. Alternative Names: HZIV 81-2. CAS No. 36062-04-1. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-N0893.
Tetrahydrodeoxycorticosterone
Tetrahydrodeoxycorticosterone, an neurosteroid, is a potent positive allosteric modulator (PAM) of GABAA receptor. Tetrahydrodeoxycorticosterone has potent neuroinhibitory properties[1][2]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Tetrahydro-11-deoxycorticosterone. CAS No. 567-03-3. Pack Sizes: 1 mg; 5 mg. Product ID: HY-113346.
Tetrahydrofolic acid
Tetrahydrofolic acid (L-5,6,7,8-Tetrahydrofolic acid) is the biologically active vitamin B9 folate derivative. Tetrahydrofolic acid is a donor of one-carbon groups for amino acids, nucleic acids, and lipids. Tetrahydrofolic acid serves as an acceptor of free formaldehyde, producing 5,10-methylenetetrahydrofolate-Tetrahydrofolic acid[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: L-5,6,7,8-Tetrahydrofolic acid; L-Tetrahydrofolic acid. CAS No. 135-16-0. Pack Sizes: 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-14520.
Tetrahydroharmine
Tetrahydroharmine (Leptaflorine) is a selective reversible monoamine oxidase A (MAO-A) inhibitor with an IC50 of 74 nM. Tetrahydroharmine can be used for the research of parkinsons disease[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Leptaflorine. CAS No. 17019-01-1. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg. Product ID: HY-125515.
Tetrahydropalmatine
Tetrahydropalmatine possesses analgesic effects. Tetrahydropalmatine acts through inhibition of amygdaloid release of dopamine to inhibit an epileptic attack in rats[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: DL-Tetrahydropalmatine. CAS No. 2934-97-6. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-N0300.
Tetrahydropapaveroline hydrobromide
Tetrahydropapaveroline (Norlaudanosoline) hydrobromide, an isoquinoline alkaloid, is a condensation product of dopamine and dopaldehyde. Tetrahydropapaveroline hydrobromide inhibits [3H]DA uptake with a Ki of 41 μM. Tetrahydropapaveroline hydrobromide can be used for the study of Parkinson's disease and/or alcohol addiction[1][2]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Norlaudanosoline hydrobromide. CAS No. 16659-88-4. Pack Sizes: 1 mg; 5 mg; 10 mg. Product ID: HY-W206168.
Tetrahydrouridine
Tetrahydrouridine dihydrate is potent inhibitor of cytidine deaminase (CDA), which competitively blocks the enzyme's active site more effectively than intrinsic cytidine[1][2]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: THU; NSC-112907. CAS No. 18771-50-1. Pack Sizes: 10 mM * 1 mL in Water; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-15345A.
Tetrahydroxymethoxychalcone
Tetrahydroxymethoxychalcone is a phenolic and flavonoid compound. Tetrahydroxymethoxychalcone is found to enhance myoblast proliferation and differentiation. Tetrahydroxymethoxychalcone plays important roles in myogenesis and muscle regeneration[1]. Uses: Scientific research. Category: Natural products. CAS No. 197227-39-7. Pack Sizes: 1 mg; 5 mg. Product ID: HY-N9334.
Tetrakis (4-carboxyphenyl) porphyrin
Tetrakis (4-carboxyphenyl) porphyrin (TCPP) plays the role of a metal remover[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: TCPP. CAS No. 14609-54-2. Pack Sizes: 100 mg; 500 mg; 1 g; 5 g; 10 g; 25 g. Product ID: HY-W008852.
Tetrakis(triphenylphosphine)palladium
Tetrakis(triphenylphosphine)palladium is a catalyst. Tetrakis(triphenylphosphine)palladium catalyzes the highly regioselective addition of phenyl thiocyanate (PhSCN) to terminal alkynes[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Tetrakis(triphenylphosphine)palladium(0). CAS No. 14221-01-3. Pack Sizes: 5 g; 10 g. Product ID: HY-Y1738.
Tetramethylammonium tetrafluoroborate
Tetramethylammonium tetrafluoroborate is a quaternary ammonium salt commonly used as an electrolyte in various chemical reactions, especially in electrochemistry and battery technology. Tetramethylammonium tetrafluoroborate has unique chemical properties that make it an important ingredient in a variety of industrial processes, including the production of advanced materials and electronic components. Uses: Scientific research. Category: Signaling pathways. CAS No. 661-36-9. Pack Sizes: 10 mM * 1 mL in DMSO; 10 g; 25 g; 50 g; 100 g; 500 g. Product ID: HY-W127672.
Tetramethylcurcumin
Tetramethylcurcumin (FLLL31), derived from curcumin, specifically suppresses the phosphorylation of STAT3 by binding selectively to Janus kinase 2 and the STAT3 Src homology-2 domain. Tetramethylcurcumin exhibits anti-inflammatory and anti-cancer effects[1][2]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: FLLL31. CAS No. 52328-97-9. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg. Product ID: HY-N2521.
Tetramethylrhodamine-5-iodoacetamide
Tetramethylrhodamine-5-iodoacetamide (5-TMRIA) is a thiol-selective reactive dye that is used to non-specifically label proteins via the cysteine residues. Tetramethylrhodamine-5-iodoacetamide (5-TMRIA) can be used to covalently label DNA fragments[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: 5-TMRIA. CAS No. 114458-99-0. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg. Product ID: HY-123749.
Tetramethylrhodamine-5-maleimide
Tetramethylrhodamine-5-maleimide is a fluorescent probe with high specificity for cysteine thiol (SH) groups. Tetramethylrhodamine-5-maleimide has high sensitivity, responds rapidly to negatively charged nanoparticles, and shows a concentration-dependent decrease in fluorescence intensity, but it is susceptible to interference from humic acids[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 174568-67-3. Pack Sizes: 1 mg; 5 mg. Product ID: HY-D0151.
Tetra-N-acetylchitotetraose
Tetra-N-acetylchitotetraose is a linear chitosan oligosaccharide. Tetra-N-acetylchitotetraose is a component of the hpo-chitoo gosacchaπdes (LCOs) secreted from Rhizobia. Tetra-N-acetylchitotetraose is also a substrate for the Rhizobium leguminosarum nodulation protein NodB, a CO deacetylase[1][2][3][4]. Uses: Scientific research. Category: Signaling pathways. CAS No. 2706-65-2. Pack Sizes: 1 mg; 5 mg; 10 mg; 25 mg. Product ID: HY-N7698.
Tetrandrine
Tetrandrine (NSC-77037; d-Tetrandrine) is a bis-benzyl-isoquinoline alkaloid, which inhibits voltage-gated Ca2+ current (ICa) and Ca2+-activated K+ current. Uses: Scientific research. Category: Signaling pathways. Alternative Names: NSC-77037; d-Tetrandrine. CAS No. 518-34-3. Pack Sizes: 100 mg; 250 mg; 1 g; 5 g. Product ID: HY-13764.
Tetraphenylporphyrin
Tetraphenylporphyrin (TPP) is a symmetrically substituted porphyrin-based heterocyclic compound and used as a structural block for supramolecular synthesis. Tetraphenylporphyrin derivatives can be used for cancer research[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: TPP; Tetraphenylporphine; meso-Tetraphenylporphyrin. CAS No. 917-23-7. Pack Sizes: 250 mg; 500 mg; 1 g; 5 g; 10 g; 25 g; 50 g; 100 g. Product ID: HY-103656.
Tetrapropylammonium perruthenate
Tetrapropylammonium perruthenate (TPAP) is an organic compound commonly used as a catalyst and oxidizing agent. It can play an oxidation role in some organic synthesis reactions, and can catalyze the oxidation reactions of olefins and aromatic compounds. In addition, the compound is widely used in some industrial production areas, such as in the application of plastics, rubber and textile manufacturing processes. Uses: Scientific research. Category: Signaling pathways. Alternative Names: TPAP. CAS No. 114615-82-6. Pack Sizes: 10 mM * 1 mL in DMSO; 100 mg; 250 mg; 500 mg; 1 g; 5 g; 10 g. Product ID: HY-W007801.
Tetraxetan
Tetraxetan (DOTA) is a macrocyclic chelating agent. Tetraxetan can form stable coordination complexes with a variety of metal ions (e.g., 68Ga, 111In, 177Lu). Tetraxetan can be conjugated with targeting molecules (e.g., RGD peptide, folic acid) to enable the complex to target specific biomolecules or cells. Tetraxetan can be used for imaging studies of tumors, including melanoma and folate receptor-positive tumors (e.g., cervical cancer) [1][2][3]. Uses: Scientific research. Category: Induced disease models products. Alternative Names: DOTA. CAS No. 60239-18-1. Pack Sizes: 100 mg; 250 mg; 1 g. Product ID: HY-W053583.
Tetrazine-Amine monohydrochloride
Tetrazine-Amine monohydrochloride is the monohydrochloride form of Tetrazine-Amine (HY-W053709). Tetrazine-amine is a Tetrazine linker that can be used to covalently label living cells by cycloaddition[1][2]. Tetrazine-Amine (monohydrochloride) is a click chemistry reagent, it contains a Tetrazine group that can undergo an inverse electron demand Diels-Alder reaction (iEDDA) with molecules containing TCO groups. Uses: Scientific research. Category: Signaling pathways. Alternative Names: (4-(1,2,4,5-Tetrazin-3-yl)phenyl)methanamine (monohydrochloride); Tetrazine-NH2 monohydrochloride. CAS No. 1416711-59-5. Pack Sizes: 10 mM * 1 mL in DMSO; 25 mg; 50 mg; 100 mg. Product ID: HY-W053709A.
Tetrazine-biotin
Tetrazine-biotin is a cleavable ADC linker used in the synthesis of antibody-drug conjugates (ADCs)[1]. Tetrazine-biotin is a click chemistry reagent, it contains a Tetrazine group that can undergo an inverse electron demand Diels-Alder reaction (iEDDA) with molecules containing TCO groups. Uses: Scientific research. Category: Signaling pathways. CAS No. 1714123-51-9. Pack Sizes: 5 mg; 10 mg. Product ID: HY-136095.
Tetrazine-PEG4-amine hydrochloride
Tetrazine-PEG4-amine (hydrochloride) is a cleavable 4 unit PEG ADC linker used in the synthesis of antibody-drug conjugates (ADCs)[1]. Tetrazine-PEG4-amine (hydrochloride) is a click chemistry reagent, it contains a Tetrazine group that can undergo an inverse electron demand Diels-Alder reaction (iEDDA) with molecules containing TCO groups. Uses: Scientific research. Category: Signaling pathways. CAS No. 2752945-36-9. Pack Sizes: 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-130977.
Tetrazine-PEG4-biotin
Tetrazine-PEG4-biotin is a cleavable 4 unit PEG ADC linker used in the synthesis of antibody-drug conjugates (ADCs)[1]. Tetrazine-PEG4-biotin is a click chemistry reagent, it contains a Tetrazine group that can undergo an inverse electron demand Diels-Alder reaction (iEDDA) with molecules containing TCO groups. Uses: Scientific research. Category: Signaling pathways. CAS No. 1962919-29-4. Pack Sizes: 5 mg; 10 mg. Product ID: HY-136053.
Tetrazine-Ph-PEG5-NHS ester
Tetrazine-Ph-PEG5-NHS ester is a PEG-based PROTAC linker that can be used in the synthesis of PROTACs[1]. Tetrazine-Ph-PEG5-NHS ester is a click chemistry reagent, it contains a Tetrazine group that can undergo an inverse electron demand Diels-Alder reaction (iEDDA) with molecules containing TCO groups. Uses: Scientific research. Category: Signaling pathways. CAS No. 1682653-80-0. Pack Sizes: 5 mg; 10 mg; 25 mg; 50 mg; 100 mg; 250 mg. Product ID: HY-130551.
Tetrazine-SS-Biotin
Tetrazine-SS-Biotin is a cleavable ADC linker used in the synthesis of antibody-drug conjugates (ADCs)[1]. Tetrazine-SS-Biotin is a click chemistry reagent, it contains a Tetrazine group that can undergo an inverse electron demand Diels-Alder reaction (iEDDA) with molecules containing TCO groups. Uses: Scientific research. Category: Signaling pathways. CAS No. 2123482-78-8. Pack Sizes: 5 mg; 10 mg; 25 mg. Product ID: HY-136031.
Tetrazolium Red
Tetrazolium Red (2,3,5-Triphenyltetrazolium chloride; TTC) is a not brain-penetrant, colorless, water-soluble dye that is reduced by mitochondrial enzymes to a deep red, water-insoluble compound (formazan) mainly in the mitochondria of living cells. Tetrazolium Red is used to observe the activity of dehydrogenase, and it turns colorless to red when exposed to hydrogen. Tetrazolium Red distinguishes between surviving and infarcted brain tissue after stroke. Tetrazolium Red has been used to stain heart tissue to measure the extent of acute lesions and also used to stain brain tissue to detect the size of the infarcted area. The absorption wavelength of Tetrazolium Red is 570 nm[1][2][3][4]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: 2,3,5-Triphenyltetrazolium chloride; TPTZ; TTC. CAS No. 298-96-4. Pack Sizes: 10 mM * 1 mL in DMSO; 500 mg; 5 g. Product ID: HY-D0714.
Tetrindole mesylate
Tetrindole mesylate is a selective inhibitor of monoamine oxidase A (MAO A). Tetrindole mesylate inhibits rat brain mitochondrial MAO A in a competitive manner with a Ki value of 0.4 μM and inhibits MAO B with a Ki of 110 μM. Tetrindole mesylate has antidepressant activity[1][2]. Uses: Scientific research. Category: Signaling pathways. CAS No. 170964-68-8. Pack Sizes: 1 mg. Product ID: HY-101169.
Tetroxoprim
Tetroxoprim is an antimicrobial DHFR inhibitor[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: HE 781. CAS No. 53808-87-0. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-107033.
Texas Red
Texas Red (Sulforhodamine 101) is an amphoteric rhodamine red fluorescent dye (excitation/emission: 586/605 nm). Texas Red is used extensively for investigating neuronal morphology and acts as acell type-selective fluorescent marker of astrocytes bothin vivoand in slice preparations[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: Sulforhodamine 101; SR101. CAS No. 60311-02-6. Pack Sizes: 25 mg; 50 mg; 100 mg. Product ID: HY-101878.
Tezacaftor
Tezacaftor (VX-661) is a F508del CFTR corrector. It helps CFTR protein reach the cell surface. However, Ivacaftor (VX-770, HY-13017), a CFTR potentiator, helps to prolong the opening time of cell surface CFTR protein channels. Tezacaftor combining with Ivacaftor, shows potent efficacy against cystic fibrosis and diseases with homozygous for the CFTR Phe508del mutation. Moreover, Elexacaftor (VX-445, HY-111772) is also a CFTR corrector. Elexacaftor-Tezacaftor-Ivacaftor aims at with cystic fibrosis (CF) with at least one Phe508del mutation, often avoids the indication for lung transplantation[1][2][3][4]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: VX-661. CAS No. 1152311-62-0. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg; 200 mg. Product ID: HY-15448.
Tezacaftor-d4
Tezacaftor-d4 (VX-661-d4) is the deuterium-labeled Tezacaftor (HY-15448), a F508del CFTR corrector. Tezacaftor helps CFTR protein reach the cell surface[1][2]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: VX-661-d4. CAS No. 1961280-24-9. Pack Sizes: 500 μg. Product ID: HY-15448S.
Tezacitabine
Tezacitabine is a cytostatic and cytotoxic antimetabolite and a nucleoside analogue. Tezacitabine irreversibly inhibits the ribonucleotide reductase and interferes with DNA replication and repair. Tezacitabine effectively induces cells apoptotic. Tezacitabine has the potential for leukemias and solid tumors (carcinomas) treatment[1][2]. Uses: Scientific research. Category: Signaling pathways. CAS No. 130306-02-4. Pack Sizes: 10 mM * 1 mL in DMSO; 1 mg; 5 mg; 10 mg; 25 mg; 50 mg. Product ID: HY-106014.
Tezepelumab (anti-TSLP)
Tezepelumab (anti-TSLP) is human monoclonal antibody (IgG2λ) that binds specifically to TSLP, blocking it from interacting with its heterodimeric receptor. Tezepelumab can be used for the research of severe, uncontrolled asthma[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: AMG 157 (anti-TSLP); MEDI 19929 (anti-TSLP); Tezepelumab-ekko (anti-TSLP). CAS No. 1572943-04-4. Pack Sizes: 1 mg; 5 mg; 10 mg. Product ID: HY-P99366A.
Tezosentan
Tezosentan (RO 610612) is an endothelin (ET) receptor antagonist, with pA2s of 9.5, 7.7 for ETA and ETB receptors, respectively. Uses: Scientific research. Category: Signaling pathways. Alternative Names: RO 610612. CAS No. 180384-57-0. Pack Sizes: 10 mM * 1 mL in DMSO; 1 mg; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-17351.
TFAM activator 1
TFAM activator 1 is a TFAM activator. TFAM activator 1 increases TFAM protein levels, promotes mitochondrial DNA stability, increases mitochondrial DNA copy number, and prevents mitochondrial DNA from escaping into the cytoplasm. TFAM activator 1 improves cellular energy metabolism in cybrid cells. TFAM activator 1 reduces fibrosis markers in fibroblasts. TFAM activator 1 can be used in the research of mitochondrial encephalomyopathy, lactic acidosis, and stroke-like episodes syndrome, systemic sclerosis, and autoimmune diseases[1]. Uses: Scientific research. Category: Signaling pathways. CAS No. 932992-44-4. Pack Sizes: 10 mM * 1 mL in DMSO; 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-175739.
TFB-TBOA
TFB-TBOA (CF3-Bza-TBOA) is a potent glutamate transporter blocker that potently suppresses the activity of glial transporters. TFB-TBOA shows IC50 values of 22, 17, and 300 nM for glutamate transporters EAAT1, EAAT2, and EAAT3 respectively in an uptake assay using cells transiently expressing EAATs[1]. Uses: Scientific research. Category: Signaling pathways. Alternative Names: CF3-Bza-TBOA. CAS No. 480439-73-4. Pack Sizes: 10 mM * 1 mL in DMSO; 1 mg; 5 mg; 10 mg. Product ID: HY-107521.