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Results for "

4-Aminobutyl-DOTA

" in MedChemExpress (MCE) Product Catalog:

12

Inhibitors & Agonists

2

Biochemical Assay Reagents

11

Peptides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-W717779

    Biochemical Assay Reagents Others
    4-Aminobutyl-DOTAis a bifunctional chelator (Bifunctional Chelator; BFC) and a macrocyclic DOTA derivative used for tumor pre-targeting. 4-Aminobutyl-DOTA can be used for conjugation of peptides and radionuclides.
    <em>4-Aminobutyl</em>-<em>DOTA</em>
  • HY-W460274

    Biochemical Assay Reagents Others
    4-Aminobutyl-DOTA-tris(t-butyl ester)is a bifunctional chelator (Bifunctional Chelator; BFC) and a macrocyclic DOTA derivative used for tumor pre-targeting. 4-Aminobutyl-DOTA-tris(t-butyl ester) can be used for conjugation of peptides and radionuclides.
    <em>4-Aminobutyl</em>-<em>DOTA</em>-tris(t-<em>butyl</em> ester)
  • HY-P10131

    FAP Cancer
    3BP-3940 is a highly potent fibroblast activation protein (FAP)-targeting peptide for theranostics. 3BP-3940 is often coupled with radionuclides for tumor diagnosis and treatment .
    3BP-3940
  • HY-P5297

    CXCR Cancer
    DOTA-CXCR4-L is a CXCR4 targeting peptide. DOTA-CXCR4-L can be used in the study of cancers, including glioblastoma and triple-negative breast cancer .
    <em>DOTA</em>-CXCR<em>4</em>-L
  • HY-P10341

    GCGR Metabolic Disease
    ZP3022 is a dual agonist of glucagon-like peptide-1 (GLP-1) and gastrin, which has the ability to continuously improve glycemic control. Meanwhile, ZP3022 can effectively increase the mass of β-cells, promote β-cell proliferation, and enhance the average islet mass. ZP3022 can be used in research for anti-diabetic treatments .
    ZP3022
  • HY-P10273

    Biochemical Assay Reagents Cancer
    DOTA-Octreotide is composed of chelator DOTA and Octreotide (HY-P0036). DOTA-Octreotide is utilized for diagnosis and therapy of cancer, through combination with radioactive elements .
    <em>DOTA</em>-Octreotide
  • 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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