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Results for "

N-(7-Aminoheptyl)-2-bromoacetamide

" in MedChemExpress (MCE) Product Catalog:

17

Inhibitors & Agonists

18

Peptides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-P4154

    ALM-488

    Fluorescent Dye Neurological Disease
    Bevonescein (ALM-488) is a novel, intravenously-administrated fluorescein-conjugated peptide that binds nerve-associated connective tissue, labels peripheral nerves under real-time fluorescence imaging (FL) in living mice and human ex vivo nerve tissue. Bevonescein is a peptide-linked tracer which fluorescently labeled both intact and degenerated nerves .
    Bevonescein
  • HY-P1103
    CTCE-9908
    1 Publications Verification

    CXCR Cancer
    CTCE-9908 is a potent and selective CXCR4 antagonist. CTCE-9908 induces mitotic catastrophe, cytotoxicity and inhibits migration in CXCR4-expressing ovarian cancer cells .
    CTCE-9908
  • HY-P2231A
    Cotadutide acetate
    1 Publications Verification

    MEDI0382 acetate

    GCGR Metabolic Disease
    Cotadutide (MEDI0382) acetate is a potent dual agonist of glucagon-like peptide-1 (GLP-1) and GCGR with EC50 values of 6.9 pM and 10.2 pM, respectively. Cotadutide acetate exhibits ability to facilitate both weight loss and glycaemic control, and alleviate fibrosis. Cotadutide acetate can be used in the research of obesity and type 2 diabetes (T2D) .
    Cotadutide acetate
  • HY-P2231
    Cotadutide
    1 Publications Verification

    MEDI0382

    GCGR Metabolic Disease
    Cotadutide (MEDI0382) is a potent dual agonist of glucagon-like peptide-1 (GLP-1) and GCGR with EC50 values of 6.9 pM and 10.2 pM, respectively. Cotadutide exhibits ability to facilitate both weight loss and glycaemic control, and alleviate fibrosis. Cotadutide can be used in the research of obesity and type 2 diabetes (T2D) .
    Cotadutide
  • HY-169142

    PROTAC Linkers Cancer
    (7-Acetamidoheptyl)carbamic acid is a PROTACT linker. (7-Acetamidoheptyl)carbamic acid can be used to synthesize PROTACT molecules .
    N-(7-Aminoheptyl)-2-bromoacetamide
  • HY-P1103A

    CXCR Cancer
    CTCE-9908 TFA is a potent and selective CXCR4 antagonist. CTCE-9908 TFA induces mitotic catastrophe, cytotoxicity and inhibits migration in CXCR4-expressing ovarian cancer cells .
    CTCE-9908 TFA
  • HY-P2075

    Renin Endocrinology
    EMD 55068 is a renin antagonist. EMD 55068 inhibits the uptake of taurocholate .
    EMD 55068
  • HY-P10472

    GnRH Receptor Endocrinology
    Azaline B is an antagonist for gonadotropin-releasing hormone (GnRH) with IC50 of 1.37 nM, Azaline B can be used in research of sex hormone-related pathological states, ovulation induction and male contraception .
    Azaline B
  • HY-P10341

    GCGR Metabolic Disease
    ZP3022 is a dual agonist of glucagon-like peptide-1 (GLP-1) and gastrin that has the ability to sustainably improve glycemic control. Additionally, ZP3022 can effectively increase β-cell mass, promote β-cell proliferation, and enhance the function of pancreatic islets. ZP3022 can be used in anti-diabetic research .
    ZP3022
  • HY-P1321

    1229U91; GW1229

    Neuropeptide Y Receptor Neurological Disease
    GR231118, an analogue of the C-terminus of neuropeptide Y, is a potent , competitive and relative seletive antagonist at human neuropeptide Y Y receptor with a pKi of 10.4. GR231118 a potent agonist at the human neuropeptide Y Y4 receptor (pEC50=8.6; pKi=9.6) and a weak agonist at the human and rat neuropeptide YY2 and Y5 receptors. GR231118 also has high affinity for the mouse neuropeptide Y Y6 receptor (pKi= 8.8) .
    GR231118
  • HY-P1321A

    1229U91 TFA; GW1229 TFA

    Neuropeptide Y Receptor Neurological Disease
    GR231118 TFA, an analogue of the C-terminus of neuropeptide Y, is a potent , competitive and relative seletive antagonist at human neuropeptide YY receptor with a pKi of 10.4. GR231118 a potent agonist at the human neuropeptide YY4 receptor (pEC50=8.6; pKi=9.6) and a weak agonist at the human and rat neuropeptide Y Y2 and Y5 receptors. GR231118 also has high affinity for the mouse neuropeptide YY6 receptor (pKi= 8.8) .
    GR231118 TFA
  • HY-P4146

    BI 456906

    GLP Receptor GCGR Metabolic Disease
    Survodutide (BI 456906) is a potent, selective glucagon receptor/GLP-1 receptor (GCGR/GLP-1R) dual agonist with EC50s of 0.52 nM and 0.33 nM in CHO-K1 cells, respectively. Survodutide, a 29-amino-acid peptide, is a potent acylated peptide containing a C18 fatty acid. Survodutide has robust anti-obesity efficacy achieved by increasing energy expenditure and decreasing food intake .
    Survodutide
  • HY-P4146A

    BI 456906 TFA

    GLP Receptor GCGR Metabolic Disease
    Survodutide (BI 456906) TFA is a potent, selective glucagon receptor/GLP-1 receptor (GCGR/GLP-1R) dual agonist with EC50s of 0.52 nM and 0.33 nM in CHO-K1 cells, respectively. Survodutide TFA, a 29-amino-acid peptide, is a potent acylated peptide containing a C18 fatty acid. Survodutide TFA has robust anti-obesity efficacy achieved by increasing energy expenditure and decreasing food intake .
    Survodutide TFA
  • HY-P2434

    Somatostatin Receptor Neurological Disease Metabolic Disease Cancer
    AP102 is a dual SSTR2/SSTR5-specific somatostatin analog (SSA). AP102 is a disulfide-bridged octapeptide SSA containing synthetic iodinated amino acids. AP102 binds with subnanomolar affinity to SSTR2 and SSTR5 (IC50: 0.63 and 0.65 nM, respectively). AP102 does not bind to SSTR1 or SSTR3. AP102 can be used for acromegaly and neuroendocrine tumors research .
    AP102
  • HY-P5362

    Somatostatin Receptor Cancer
    NODAGA-LM3 can be labeled by 68Ga for PET imaging. 68Ga-NODAGA-LM3 is a SSTR2 antagonist, and can be used for imaging of SSTR positive paragangliomas .
    NODAGA-LM3
  • HY-P5362A

    Somatostatin Receptor Cancer
    NODAGA-LM3 TFA can be labeled by 68Ga for PET imaging. 68Ga-NODAGA-LM3 TFA is a SSTR2 antagonist, and can be used for imaging of SSTR positive paragangliomas .
    NODAGA-LM3 TFA
  • HY-105168

    Endothelin Receptor Cardiovascular Disease
    TAK 044 is an antagonist of Endothelin Receptor. TAK 044 strongly inhibits ET-induced deterioration in various animal models. TAK 044 can be used in study ET-related diseases such as acute myocardial infarction,acute renal failure, acute hepatic malfunction, and subarachnoid hemorrhage .
    TAK 044

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