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Results for "

Piperidine-4-carbaldehyde

" in MedChemExpress (MCE) Product Catalog:

7

Inhibitors & Agonists

8

Peptides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-P1726

    Melanocortin Receptor Neurological Disease
    MSG606 is a selective MC1R (melanocortin 1 receptor) antagonist and can be used for the research of neuroprotective effects .
    MSG606
  • HY-P0041A

    Vasopressin Receptor Neurological Disease
    F992 TFA is an antidiuretic peptide and vasopressin (antidiuretic hormone) analogue .
    F992 TFA
  • HY-W012935

    Piperidine-4-carboxaldehyde

    PROTAC Linkers Cancer
    Piperidine-4-carbaldehyde (Piperidine-4-carboxaldehyde) is a PROTAC Linker. Piperidine-4-carbaldehyde can be used to optimize combined with the target protein affinity, thus improve the PROTAC the molecular degradation efficiency. Piperidine-4-carbaldehyde can be used in the CDK2 PROTACs (HY-161708) .
    Piperidine-4-carbaldehyde
  • HY-P4308

    Prolyl Endopeptidase (PREP) Neurological Disease
    Z-Pro-Pro-aldehyde-dimethyl acetal is a potent inhibitor of prolyl endopeptidase (PREP), a cytoplasmic serine endoprotease (IC50= 12 nM). Z-Pro-Pro-aldehyde-dimethyl acetal plays an important role in cognitive dysfunction in aging and neurodegenerative diseases including Alzheimer's disease .
    Z-Pro-Pro-aldehyde-dimethyl acetal
  • HY-P1726A

    Melanocortin Receptor Cancer
    MSG606 TFA is a potent human MC1 receptor antagonist (IC50=17 nM). MSG606 TFA also partial agonist at human MC3 and MC5 receptors (EC50 values are 59 and 1300 nM, respectively). MSG606 TFA exhibits binding affinity for A375 melanoma cells in vitro. MSG606 TFA reverses the induced hyperalgesia in female mice, with no effect in male mice.
    MSG606 TFA
  • HY-P0041

    Vasopressin Receptor Neurological Disease
    F992 is an antidiuretic peptide and vasopressin (antidiuretic hormone) analogue .
    F992
  • 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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