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blood sugar control

" in MedChemExpress (MCE) Product Catalog:

8

Inhibitors & Agonists

1

Peptides

3

Natural
Products

Cat. No. Nombre del producto Target Áreas de investigación Chemical Structure
  • HY-Y0079

    Endogenous Metabolite Infection
    D-Phenylalanine is an atypical D-amino acid and an inhibitor of bacterial biofilm formation. D-Phenylalanine mainly replaces D-alanine (D-Ala) by incorporating into the fourth and fifth positions of bacterial peptidoglycan (PG), changing the cell wall structure, enhancing bacterial acid resistance and affecting biofilm formation. D-Phenylalanine may promote the secretion of peptide tyrosine tyrosine (PYY) in mammals by activating the intestinal GPR109B receptor. D-Phenylalanine can inhibit the maturation of microbial biofilms and promote the release of specific hormones. It can be used for antibacterial preservation, improving the yield of probiotics in the food industry, and studying appetite regulation and blood sugar control in metabolic diseases such as diabetes .
    D-Phenylalanine
  • HY-109556

    Akt ERK Metabolic Disease
    Insulin Detemir is an artificial insulin, shows effect on controlling blood sugar levels. Insulin Detemir stimulates GLP-1 secretion as a consequence of enhanced Gcg expression by a mechanism involving activation of Akt- and/or extracellular signal-regulated kinase (ERK)-dependent-cat and CREB signaling pathways. Insulin Detemir can be used for type 2 diabetes research .
    Insulin Detemir
  • HY-Z15823

    Dexverapamil

    Calcium Channel Potassium Channel Somatostatin Receptor Arrestin Apoptosis P-glycoprotein Metabolic Disease Inflammation/Immunology
    (R)-Verapamil (Dexverapamil) is an optically enantiomer of the oral-active Verapamil (HY-14275). (R)-Verapamil has a relatively low affinity for L-type calcium channels (Cav1.2) (IC50 > 300 μM), and its IC50 for sodium channels (sodium channel) is 3.19 μM. (R)-Verapamil exhibits SSTR2 agonistic activity, with an EC50 of 1.3 μM. (R)-Verapamil significantly downregulates the expression of TXNIP protein in diabetic mouse models and significantly inhibits β-cell apoptosis (apoptosis), effectively controlling blood sugar. (R)-Verapamil can be used as a PET tracer for the function of P-glycoprotein (P-gp) .
    (R)-Verapamil
  • HY-158037

    Glycosidase Metabolic Disease
    α-Glucosidase-IN-55 (Compound 8g) is an orally active and competitive alpha-glucosidase inhibitor, with IC50 and Ki values of 12.1 and 9.66 µM, respectively. α-Glucosidase-IN-55 can be used for the research into type 2 diabetes mellitus (T2DM) to improve blood sugar control and metabolic health .
    α-Glucosidase-IN-55
  • HY-N17764

    Others Infection Neurological Disease Metabolic Disease Inflammation/Immunology
    Meliasendanin D 4'-O-β-D-glucopyranoside (Example 1) is a neolignan-type lignan that may have potential functions in controlling blood sugar, lowering blood pressure, and exhibiting antibacterial, anti-inflammatory, analgesic, or immunomodulatory effects, which require further experimental verification.
    Meliasendanin D 4'-O-β-D-glucopyranoside
  • HY-N18674

    Others Metabolic Disease Inflammation/Immunology
    Fenugreek extract is a natural plant extract derived from fenugreek seeds. It is rich in bioactive components such as saponins, flavonoids, alkaloids, and mucilage, which help improve blood sugar control, reduce inflammation, and promote digestive health.
    Fenugreek extract
  • HY-180528

    SGLT Dipeptidyl Peptidase Metabolic Disease
    SGLT2-IN-6 (Compound 101) is an orally active SGLT2 inhibitor with IC₅₀ values for SGLT2, SGLT1, and DPP4 of 0.8, 6.7, and 72 nM respectively. SGLT2-IN-6 controls blood sugar levels in diabetic rat models and increases the levels of active GLP-1. SGLT2-IN-6 can be used for the study of type 2 diabetes .
    SGLT2-IN-6
  • HY-180527

    SGLT Dipeptidyl Peptidase Metabolic Disease
    SGLT2-IN-5 (Compound 99) is an orally active SGLT2 inhibitor with IC₅₀ values for SGLT2, SGLT1, and DPP4 of 0.8, 23, and 58 nM respectively. SGLT2-IN-5 controls blood sugar levels in diabetic rat models and increases the levels of active GLP-1. SGLT2-IN-5 can be used for the study of type 2 diabetes .
    SGLT2-IN-5

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