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12

Inhibitors & Agonists

6

Screening Libraries

3

Natural
Products

2

Isotope-Labeled Compounds

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-127105
    Iptacopan
    Maximum Cited Publications
    6 Publications Verification

    LNP023

    Complement System Metabolic Disease Inflammation/Immunology
    Iptacopan (LNP023) is a first-in-class, orally bioavailable, highly potent and highly selective factor B inhibitor with an IC50 value of 10 nM. Iptacopan shows direct, reversible, and high-affinity binding to human factor B with a KD of 7.9 nM. Iptacopan targets the underlying cause of complement 3 glomerulopathy (C3G) .
    Iptacopan
  • HY-14558
    Tandospirone
    2 Publications Verification

    SM-3997

    5-HT Receptor Neurological Disease
    Tandospirone (SM-3997) is a potent and selective 5-HT1A receptor partial agonist, with a Ki of 27 nM. Tandospirone has anxiolytic and antidepressant activities. Tandospirone can be used for the research of the central nervous system disorders and the underlying mechanisms .
    Tandospirone
  • HY-W008091
    5-Methylcytosine
    2 Publications Verification

    DNA/RNA Synthesis Endogenous Metabolite Others
    5-Methylcytosine is a well-characterized DNA modification, and is also predominantly in abundant non-coding RNAs in both prokaryotes and eukaryotes. 5-Methylcytosine in mRNA is a new epitranscriptome marker inArabidopsis, and that regulation of this modification is an integral part of gene regulatory networks underlying plant development .
    5-Methylcytosine
  • HY-N9404

    Sodium Channel Neurological Disease
    6-Benzoylheteratisine is an Aconitum alkaloid with potential neuroprotective activity. 6-Benzoylheteratisine can antagonize tetrodotoxin, inhibit the increase of [Na +]i, [Ca 2+]i and glutamate release, and block sodium channels. 6-Benzoylheteratisine has an inhibitory effect on the neuronal activity underlying epileptiform burst discharge .
    6-Benzoylheteratisine
  • HY-W008091S

    DNA/RNA Synthesis Endogenous Metabolite Others
    5-Methylcytosine-d4 is the deuterium labeled 5-Methylcytosine . 5-Methylcytosine is a well-characterized DNA modification, and is also predominantly in abundant non-coding RNAs in both prokaryotes and eukaryotes. 5-Methylcytosine in mRNA is a new epitranscriptome marker inArabidopsis, and that regulation of this modification is an integral part of gene regulatory networks underlying plant development .
    5-Methylcytosine-d4
  • HY-129980

    PKC Neurological Disease
    NPC-15437 dihydrochloride is a selective, penetrable and reversible protein kinase C (PKC) inhibitor, with an IC50 of 19 μM. NPC-15437 dihydrochloride interferes with mechanisms underlying memory consolidation .
    NPC-15437 dihydrochloride
  • HY-110053

    SM-3997 hydrochloride

    5-HT Receptor Neurological Disease
    Tandospirone (SM-3997) hydrochloride is a potent and selective 5-HT1A receptor partial agonist, with a Ki of 27 nM. Tandospirone hydrochloride has anxiolytic and antidepressant activities. Tandospirone hydrochloride can be used for the research of the central nervous system disorders and the underlying mechanisms .
    Tandospirone hydrochloride
  • HY-14558R

    SM-3997 (Standard)

    Reference Standards 5-HT Receptor Neurological Disease
    Tandospirone (Standard) is the analytical standard of Tandospirone. This product is intended for research and analytical applications. Tandospirone (SM-3997) is a potent and selective 5-HT1A receptor partial agonist, with a Ki of 27 nM. Tandospirone has anxiolytic and antidepressant activities. Tandospirone can be used for the research of the central nervous system disorders and the underlying mechanisms .
    Tandospirone (Standard)
  • HY-14558S

    SM-3997-d8

    Isotope-Labeled Compounds 5-HT Receptor Neurological Disease
    Tandospirone-d8 (SM-3997-d8) is deuterium labeled Tandospirone. Tandospirone (SM-3997) is a potent and selective 5-HT1A receptor partial agonist, with a Ki of 27 nM. Tandospirone has anxiolytic and antidepressant activities. Tandospirone can be used for the research of the central nervous system disorders and the underlying mechanisms .
    Tandospirone-d8
  • HY-W008091R

    DNA/RNA Synthesis Endogenous Metabolite Others
    5-Methylcytosine (Standard) is the analytical standard of 5-Methylcytosine. This product is intended for research and analytical applications. 5-Methylcytosine is a well-characterized DNA modification, and is also predominantly in abundant non-coding RNAs in both prokaryotes and eukaryotes. 5-Methylcytosine in mRNA is a new epitranscriptome marker inArabidopsis, and that regulation of this modification is an integral part of gene regulatory networks underlying plant development[1].
    5-Methylcytosine (Standard)
  • HY-148542

    SD-142

    Endogenous Metabolite Cardiovascular Disease Cancer
    EpoY (SD-142) acts as an irreversible inhibitor of the brain's primary tubulin tyrosine carboxypeptidase (TCP), a complex formed by vasohibin-1 (VASH1) and the small vasohibin binding protein (SVBP). By inhibiting TCP with an IC50 value of approximately 500 nM, EpoY effectively decreases levels of detyrosinated alpha-tubulin, which is crucial for microtubule dynamics and neuronal differentiation. This inhibition leads to significant differentiation defects and has been linked to underlying issues associated with cancer and cardiomyopathies.
    EpoY
  • HY-101480

    5-HT Receptor Neurological Disease
    Xylamidine is a peripheral 5-HT receptor antagonist used to investigate possible peripheral appetite suppressant effects of 5-hydroxytryptophan (5-HTP) and fenfluramine. In a 1-hour food intake test, xylamidine attenuated the decrease in food intake induced by 5-HT and 5-HTP, but had no effect on fenfluramine, suggesting that the appetite suppressant effect of 5-HTP is mediated in part through peripheral 5-HT receptors. Microstructural analysis revealed that 5-HTP and fenfluramine induced a decrease in food intake rate and a reduction in feeding batch size. Xylamidine reversed the effects of 5-HTP on food intake rate and induced a slight increase in feeding batch size itself, thus, the peripheral effect of 5-HTP appears to be to slow food intake rate. No effect of xylamidine on fenfluramine-induced changes in feeding was observed. The results suggest that the appetite suppressant effects of 5-HTP and fenfluramine are differentiated based on the peripheral effects of 5-HTP. The peripheral effects of 5-HTP are distinct from the previously reported 5-HT-induced decreases in feeding batch size and duration. Possible mechanisms underlying the differences in peripheral effects of 5-HT and 5-HTP are discussed.
    Xylamidine

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