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Isoforms Recommended: PPARγ
Results for "

PPARγ2

" in MedChemExpress (MCE) Product Catalog:

7

Inhibitors & Agonists

3

Natural
Products

1

Isotope-Labeled Compounds

Targets Recommended:
Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-14600
    Rosiglitazone maleate
    170+ Cited Publications

    BRL 49653C

    PPAR TRP Channel Autophagy Ferroptosis Metabolic Disease Inflammation/Immunology Cancer
    Rosiglitazone maleate (BRL 49653C) is a potent and selective activator of PPARγ, with EC50s of 30 nM, 100 nM and 60 nM for PPARγ1, PPARγ2, and PPARγ, respectively, and a Kd of appr 40 nM for PPARγ; Rosiglitazone maleate is also an modulator of TRP channels, inhibits TRP melastatin 2 (TRPM2), TRPM3 and activates TRP canonical 5 (TRPC5).
    Rosiglitazone maleate
  • HY-126956

    Reactive Oxygen Species (ROS) MMP Collagen PPAR DNA/RNA Synthesis Apoptosis Caspase Metabolic Disease Inflammation/Immunology
    Porphyra 334 is a carnosine-like amino acid and a natural photoprotective agent and antioxidant. Porphyra-334 exerts its photoprotective effects by scavenging ROS, inhibiting the expression and activity of MMP-1/8, and promoting the synthesis of collagen and elastin. Porphyra 334 effectively inhibits linoleic acid oxidation induced by alkyl radicals (AAPH) and singlet oxygen. Porphyra 334 has anti-obesity potential by inhibiting the expression of PPARγ2 and C/EBPα. Porphyra 334 protects cells against UV-induced DNA damage and apoptosis by inhibiting the activation of caspase-3 [2] .
    Porphyra 334
  • HY-N14035

    FABP PPAR Metabolic Disease
    Garcinia cambogia extract is an orally active anti-obesity agent . Garcinia cambogia extract upregulates the gene expression of aP2, SREBP1c, PPARγ2 and C/EBPα. Garcinia cambogia extract reduces the rate of body weight gain, visceral fat accumulation, lipid levels in blood and liver, as well as plasma insulin and leptin levels [2]. Garcinia cambogia extract ameliorates high-fat diet-induced obesity [2].
    Garcinia cambogia extract
  • HY-17386S

    Isotope-Labeled Compounds PPAR TRP Channel Autophagy Ferroptosis Neurological Disease Metabolic Disease Inflammation/Immunology Cancer
    Rosiglitazone-d3 is the deuterium labeled Rosiglitazone. Rosiglitazone (BRL 49653) is a selective, orally active PPARγ agonist with EC50s of 30 nM, 100 nM and 60 nM for PPARγ1, PPARγ2, and PPARγ, respectively. Rosiglitazone binds to PPARγ with a Kd of approximately 40 nM. Rosiglitazone is also an activator of TRPC5 (EC50=~30 μM) and an inhibitor of TRPM3 [2] .
    Rosiglitazone-d3
  • HY-B0700

    BRL 49653 sodium

    PPAR TRP Channel Autophagy Metabolic Disease Inflammation/Immunology
    Rosiglitazone sodium is a potent and selective activator of PPARγ, with EC50s of 30 nM, 100 nM and 60 nM for PPARγ1, PPARγ2, and PPARγ, respectively, and a Kd of appr 40 nM for PPARγ; Rosiglitazone sodium is also an modulator of TRP channels, inhibits TRP melastatin 2 (TRPM2), TRPM3 and activates TRP canonical 5 (TRPC5).
    Rosiglitazone sodium
  • HY-14600R

    BRL 49653C (Standard)

    Reference Standards PPAR TRP Channel Autophagy Ferroptosis Metabolic Disease Inflammation/Immunology Cancer
    Rosiglitazone (maleate) (Standard) is the analytical standard of Rosiglitazone (maleate). This product is intended for research and analytical applications. Rosiglitazone maleate (BRL 49653C) is a potent and selective activator of PPARγ, with EC50s of 30 nM, 100 nM and 60 nM for PPARγ1, PPARγ2, and PPARγ, respectively, and a Kd of appr 40 nM for PPARγ; Rosiglitazone maleate is also an modulator of TRP channels, inhibits TRP melastatin 2 (TRPM2), TRPM3 and activates TRP canonical 5 (TRPC5).
    Rosiglitazone maleate (Standard)
  • HY-N17773

    PPAR GLUT TNF Receptor Metabolic Disease
    Hydrangeic acid is an orally effective stilbene-type glycolipid metabolism regulator that lowers blood glucose and lipids. It can be isolated from processed leaves of Hydrangea macrophylla var. thunbergii. Hydrangeic acid is associated with glycolipid metabolism and insulin sensitivity regulation. Hydrangeic acid does not directly activate PPARγ or PPARα, but instead upregulates the mRNA expression of adiponectin, PPARγ2, GLUT4, and fatty acid-binding protein aP2, and downregulates TNF-α mRNA expression, promoting adipogenesis, glucose uptake, and GLUT4 translocation in 3T3-L1 cells. Simultaneously, Hydrangeic acid inhibits inflammatory factor-induced NO production, exerting activity in improving insulin resistance. Hydrangeic acid can be used in research related to type 2 diabetes and does not cause liver weight gain as a side effect.
    Hydrangeic acid

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