30 Results for "

snakes

" in MedChemExpress (MCE) Product Catalog:
Products (30)

30 Results for "snakes" in MCE Product Catalog:

Cat. No.: HY-N20145
Synonyms: Zaocys extract; Zaocys dhumnades (cantor) extract
Category:  

Extract

Target:  

Others

Zaocys dhumnades extract is an extract of the black-striped snake (Zaocys dhumnades) and can be used in research on rheumatism, leprosy, etc.
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Cat. No.: HY-W747074
CAS No.: 71781-66-3
Target:  

Endogenous Metabolite

Research Areas:  

Metabolic Disease

Tauroursodeoxycholic acid-3-sulfate disodium is a taurine-conjugated 3-sulfated bile acid that belongs to endogenous sulfated bile acid metabolites and is detectable in human and animal serum, urine, bile, and metabolomics panels. Tauroursodeoxycholic acid-3-sulfate disodium occurs at higher concentrations in the gallbladder of hibernating snakes of the five-paced pit viper species than in active snakes. Tauroursodeoxycholic acid-3-sulfate disodium can serve as a biochemical indicator in research related to hepatobiliary diseases .
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Cat. No.: HY-N18949A
CAS No.: 2674426-87-8
3α,12α-Dihydroxy-7-oxocholanoyltaurine sodium is a bile acid. 3α,12α-Dihydroxy-7-oxocholanoyltaurine sodium can be isolated from the bile of certain common snake species. 3α,12α-Dihydroxy-7-oxocholanoyltaurine sodium serves as a characteristic bile acid for the Viperidae and Elapidae families .
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Cat. No.: HY-N18949
CAS No.: 67460-69-9
3α,12α-Dihydroxy-7-oxocholanoyltaurine (Compound T1) is a bile acid. 3α,12α-Dihydroxy-7-oxocholanoyltaurine can be isolated from the bile of certain common snake species. 3α,12α-Dihydroxy-7-oxocholanoyltaurine serves as a characteristic bile acid for the Viperidae and Elapidae families .
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Cat. No.: HY-187095
Research Areas:  

Others

PTAD-ergosta-3-one is a snake venom enzyme inhibitor. PTAD-ergosta-3-one inhibits the procoagulant activity of citrated plasma mediated by serine protease (SVSP) from Bothrops asper venom. PTAD-ergosta-3-one inhibits the esterase activity of PLA2 from Bothrops asper venom. PTAD-ergosta-3-one can be used in the research of snakebite envenoming .
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Cat. No.: HY-P12221
CAS No.: 1000184-52-0
Abz-LVEALYQ-EDDnp is a fluorescence resonance energy transfer (FRET) oligopeptide substrate containing a peptide bond that is specifically recognized and cleaved by snake venom metalloproteinases (SVMP). Abz-LVEALYQ-EDDnp is specifically hydrolyzed by SVMP, resulting in the physical separation of the Abz fluorophore and the EDDnp quencher, which relieves the quenching effect and releases a detectable fluorescent signal.. Abz-LVEALYQ-EDDnp is used for research on inflammatory pain and antivenom (Ex/Em = 320-340/420-440 nm) .
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Cat. No.: HY-182434
CAS No.: 97012-61-8
Target:  

Phosphatase FAP

Research Areas:  

Inflammation/Immunology

CL 118326 is a potent, selective, competitive inhibitor of mammalian pancreatic phospholipase A2 (PLA2) and a weak antagonist of platelet-activating factor receptor (PAF receptor). CL 118326 competitively inhibits mammalian pancreatic PLA2 (porcine: IC50 = 1.55 μg/mL), and shows no activity against snake venom or bee venom PLA2. CL 118326 inhibits PAF-induced and thrombin-induced platelet aggregation, as well as the release of leukotriene (LTC4) and histamine from basophil-enriched leukocytes. CL 118326 can be used for research on inflammation and allergic reactions .
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Cat. No.: HY-185721
CAS No.: 25191-14-4
Synonyms: Polyguanylic acid
Target:  

DNA/RNA Synthesis

Research Areas:  

Others

Poly (G) (Polyguanylic acid) is a high-molecular-weight synthetic ribopolynucleotide. In the presence of Na + or K + ions, Poly (G) undergoes time-dependent structural modification, gradually self-assembling from a single strand into large G-quadruplex aggregates. Poly (G) undergoes cooperative secondary structure dissociation under alkaline conditions, but its secondary structure can withstand high temperatures up to 100°C and is resistant to snake venom diesterase at low Na + concentrations. Poly (G) forms stable 1:1 complexes with polycytidylic acid or poly 5-bromocytidylic acid, but does not bind to polyinosinic acid or polyadenylic acid. Poly (G) can be applied to studies on the interactions between drugs and G-rich DNA fragments in electrochemical biosensors .
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Cat. No.: HY-L190
1,661 compounds

Miao medicine is an important part of Chinese medicine, which carries the profound cultural heritage and rich life wisdom of the Hmongb people. Miao people live in a concentrated community in the mountainous area of the southwest border of China, which has a unique natural environment. Complex and diverse geology, lush natural vegetation, rich animal and plant species, a large number of mineral resources which provide a wide range of species sources for miao ethnicity medicine. On the other hand, due to the characteristics of the living environment of the Hmongb people, Miao medicine has demonstrated its unique therapeutic effect in the treatment of some endemic diseases, infectious diseases, insect, snake and beast bites, rheumatism and other diseases. With the development of modern science and technology, the research and application of seedling medicine are also deepening. Through the systematic study of the chemical composition and pharmacological action of the seedling medicine, it can provide a new idea and method for modern medicine.

MCE included 1,661 natural products from traditional miao ethnicity medicine, including animal, plant and mineral sources.

Cat. No.: HY-L220
91 compounds

Biotoxins, also referred to as natural toxins, are chemical substances produced by plants, animals, or microorganisms that exert toxic effects on other living organisms. Due to unique biological activities, biotoxins have been widely applied in molecular biology, physiology, pharmacology, and the clinical diagnosis and treatment of various human diseases, becoming an important source of natural drug development. Biotoxins can specifically bind to and interfere with intracellular signaling molecules or receptors, thereby altering cellular signaling processes. Leveraging this characteristic, biotoxins can be used to study the regulatory mechanisms of cellular signaling pathways. For example, neurotoxins such as snake venom peptides can be used to investigate the functional regulation of neurotransmitter receptors and ion channels. Additionally, biotoxins have demonstrated significant potential in drug development across various fields, including neurological diseases, cardiovascular diseases, anticoagulation, and anti-cancer therapies. With advancements in high throughput screening, structural optimization, and antibody-toxin conjugation technologies, numerous biotoxins or their structural analogs have been successfully brought to market, such as Ziconotide, Captopril, Bivalirudin, and Eptifibatide.

MCE offers 91 types of biotoxins, including neurotoxins, cardiotoxins, mycotoxins, and more.