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Results for "

3-Carboxypiperidine

" in MedChemExpress (MCE) Product Catalog:

7

Inhibitors & Agonists

4

Peptides

2

Isotope-Labeled Compounds

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-69359
    Nipecotic acid
    1 Publications Verification

    (±)-β-Homoproline; Hexahydronicotinic acid; 3-Carboxypiperidine

    GABA Receptor Neurological Disease
    Nipecotic acid ((±)-β-Homoproline) is a potent inhibitor of neuronal and glial-aminobutyric acid (GABA) uptake in vitro. Nipecotic acid can also directly activate GABAA-like chloride channels, with an EC50 of approximately 300 μM .
    Nipecotic acid
  • HY-W088805

    Fmoc-3-Carboxypiperidine

    Amino Acid Derivatives Others
    Fmoc-NIP-OH (Fmoc-3-carboxypiperidine) is a Fmoc-protected amino acid derivative commonly used in peptide synthesis .
    Fmoc-NIP-OH
  • HY-W012735

    (+)-β-Homoproline; (+)-Hexahydronicotinic acid; (+)-3-Carboxypiperidine

    GABA Receptor Neurological Disease
    (+)-Nipecotic acid ((+)-β-Homoproline) is a GABA transport inhibitor with potential antidepressant and anxiolytic activities. (+)-Nipecotic acid can increase the concentration of GABA in the synaptic cleft, thereby enhancing inhibitory neurotransmission. The research on (+)-Nipecotic acid provides a possible direction for the development of new inhibitory compounds for psychiatric diseases .
    (+)-Nipecotic acid
  • HY-P2336A
    CCZ01048 TFA
    3 Publications Verification

    Melanocortin Receptor Cancer
    CCZ01048 TFA, a α-MSH analogue, exhibits high binding affinity to melanocortin 1 receptor (MC1R) with a Ki of 0.31 nM. CCZ01048 TFA shows rapid internalization into B16F10 melanoma cells and high in vivo stability. CCZ01048 TFA is a promising candidate for PET imaging of malignant melanoma .
    CCZ01048 TFA
  • HY-114118S1

    Isotope-Labeled Compounds GLP Receptor Insulin Receptor α-synuclein Apoptosis p38 MAPK Autophagy Bcl-2 Family Neurological Disease Metabolic Disease Cancer
    Semaglutide-d8 tetraTFA is the deuterium labeled Semaglutide (HY-114118). Semaglutide is a long-acting, selective, competitive GLP-1R agonist that can penetrate the blood-brain barrier. After activating GLP-1R, Semaglutide promotes insulin secretion, inhibits gastric emptying and appetite, and at the same time enhances autophagy, inhibits oxidative stress and apoptosis. Semaglutide also regulates mitochondrial function and lipid metabolism (such as reducing de novo lipogenesis in the liver). Semaglutide has activities such as lowering blood sugar, reducing weight, neuroprotection (such as improving motor function in Parkinson's disease models, reducing α-synuclein aggregation) and improving hepatic steatosis. Semaglutide can be used for the study of neurodegenerative diseases and liver diseases such as type 2 diabetes, obesity, Parkinson's disease, metabolic associated fatty liver disease (MASLD), and cancer [3] .
    Semaglutide-d8 tetraTFA
  • HY-114118S

    Isotope-Labeled Compounds GLP Receptor Insulin Receptor α-synuclein Apoptosis p38 MAPK Autophagy Bcl-2 Family Neurological Disease Metabolic Disease Cancer
    Semaglutide-d8 is the deuterium labeled Semaglutide (HY-114118). Semaglutide is a long-acting, selective, competitive GLP-1R agonist that can penetrate the blood-brain barrier. After activating GLP-1R, Semaglutide promotes insulin secretion, inhibits gastric emptying and appetite, and at the same time enhances autophagy, inhibits oxidative stress and apoptosis. Semaglutide also regulates mitochondrial function and lipid metabolism (such as reducing de novo lipogenesis in the liver). Semaglutide has activities such as lowering blood sugar, reducing weight, neuroprotection (such as improving motor function in Parkinson's disease models, reducing α-synuclein aggregation) and improving hepatic steatosis. Semaglutide can be used for the study of neurodegenerative diseases and liver diseases such as type 2 diabetes, obesity, Parkinson's disease, metabolic associated fatty liver disease (MASLD), and cancer [3] .
    Semaglutide-d8
  • HY-P10563

    BHV-1100

    CD38 Cancer
    Noraramtide (BHV-1100) is an antibody recruitment molecule. Noraramtide can specifically bind to CD38 molecules to recruit natural killer (NK) cells. Noraramtide enhances the ability of NK cells to kill tumor cells through antibody-dependent cellular cytotoxicity (ADCC). This mechanism allows NK cells to more effectively recognize and eliminate tumor cells while avoiding mutual killing between NK cells. Noraramtide can be used for the study of autologous cancer immunity .
    Noraramtide

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