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Results for "

glucose uptake

" in TargetMol Product Catalog
  • Inhibitors & Agonists
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    TargetMol | Inhibitors_Agonists
Cichoric Acid
Dicaffeoyltartaric acid, Chicoric Acid
TL00066537-80-0
Cichoric Acid (Dicaffeoyltartaric acid) is a potent inhibitor of human immunodeficiency virus type-1 (HIV-1) integrase and the replication in tissues. It also a class of cannabinomimetics with CB2 receptor-dependent and independent.
  • $35
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Stearic acid
Octadecanoic acid, Cetylacetic acid
T2P292357-11-4
1. Stearic acid (Cetylacetic acid) can reduce metastatic tumor burden. 2. Stearic acid leads to dramatically reduced visceral fat likely by causing the apoptosis of preadipocytes. 3. Stearic acid and its derivatives have been used as gelators in food and pharmaceutical gel formulations. 4. Stearic acid is a potent phosphatase 1B inhibitor, possibly causing an enhancement in the insulin receptor signaling to stimulate glucose uptake into adipocytes. 5. Stearic acid has the potential to increase dry matter intake and yields of milk and milk components, without affecting conversion of feed to milk, body condition score, or body weight.
  • $30
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Eriodictyol
Huazhongilexone
T6S0232552-58-9
1. Eriodictyol (Huazhongilexone) is a flavonoid with anti-inflammatory and antioxidant activities. 2. Eriodictyol may possess antidiabetic properties through increasing glucose uptake and improving insulin resistance. 3. Eriodictyol may be a potential therapeutic resource for Atopic dermatitis and an adjunctive agent to control itchiness inAtopic dermatitis.
  • $39
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11-epi-mogroside V
T396132146088-12-0
11-epi-mogroside V, a compound found in the fruit of Siraitia grosvenori, possesses significant bioactivity by enhancing glucose uptake in vitro, specifically in human HepG2 cells.
  • $315
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Tiliroside
Tribuloside
T5S117220316-62-5
1. Tiliroside (Tribuloside) shows anticarcinogenic activity. 2. Tiliroside shows hepatoprotective activity. 3. Tiliroside shows antioxidant and anti-inflammatory activity, can inhibit neuroinflammation in neurodegenerative disorders. 4. Tiliroside has anti-diabetic effect, are at least partially mediated through inhibitory effects on carbohydrate digestion and glucose uptake in the gastrointestinal tract. 5. Tiliroside and gnaphaliin are antioxidants against in vitro Cu(2+)-induced LDL oxidation in the same order of magnitude compared to that of the reference drug, probucol. 6. Tiliroside enhances fatty acid oxidation via the enhancement adiponectin signaling associated with the activation of both AMP-activated protein kinase and peroxisome proliferator-activated receptor α and ameliorates obesity-induced metabolic disorders.
  • $30
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Pongamol
T8771484-33-3
Pongamol, an identified lead molecule from the fruits of Pongamia pinnata, on glucose uptake and GLUT4 translocation in skeletal muscle cells.
  • $40
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hydrocotarnine
T9352550-10-7
hydrocotarnine is an inhibitor of Cbl.
  • $41
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Cucurbitacin D
TN10133877-86-9
Cucurbitacin D, a triterpenoid isolated from Ecballium elaterium (L.), exhibits anticancer and antitumor activity, inhibits glucose uptake and lactate production in metastatic PrC, and induces inflammasome activation independent of ERK1 2 activation. Cucurbitacin D, a novel inflammasome activator in macrophages, inhibits HepG2 cell proliferation and induces apoptosis by modulating the JAK STAT3, PI3K Akt mTOR and MAPK signaling pathways, and can be used in the study of cervical cancer, leukemia, and prostate cancer.
  • $68
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Alisol C
TN136830489-27-1
Alisol C can improve glucose uptake in Hep G2 cells, it may be one of the therapeutic material basis in hypoglycemic activities in A. orientalis. Alisol C,16,23-oxido-alisol B and alisol O in Zexie may cause nephrotoxicity.
  • $421
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Cajanin
TN146232884-36-9
Cajanin has potential hypolipidemic effects,possibly via up-regulating the ABCA1 protein expression,subsequently resulting in increased macrophage cholesterol efflux and RCT, it can significantly improve basal glucose uptake in HepG2 cells, its improving effect is concentration dependent, it exhibits effects stronger than that of rosiglitazone, which has been used as an antidiabetic drug.
  • $618
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Homoeriodictyol
TN1740446-71-9
Homoeriodictyol, a naturally occurring, bitter-masking flavanone, as a promising agent to increase appetite and food intake. The flavanone homoeriodictyol can increase SGLT-1-mediated glucose uptake but decrease serotonin release in differentiated Caco-2 cells.
  • $129
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Prunin
Naringenin 7-0-glucoside
TN2111529-55-5
Prunin (Naringenin 7-0-glucoside) possesses anti-diabetic, and anti-abacterial properties, it can inhibit protein tyrosine phosphatase 1B (PTP1B) and stimulate glucose uptake in insulin-resistant HepG2 cells; it also can stimulate growth of Pseudomonas aeruginosa and different Bacilllus sp. Prunin exhibits a markedly enhanced solubility compared to naringenin and naringin while maintaining the in vitro inhibition of HMG-CoA reductase.
  • $128
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Octadecyl caffeate
TN469169573-60-0
z-Octadecyl caffeate may have pain-relieving activity. Octadecyl caffeate and coptisonine can stimulate glucose uptake at 25 and 50 ug/mL. Octadecyl caffeate and octadecyl coumarate applied to the surface of susceptible varieties in laboratory bioassays r
  • $160
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Serpentine
TN499718786-24-8
Serpentine is an alkaloid found in the roots of Rosa Centifolia that acts as an insulin sensitizer to assist insulin in lowering blood glucose.Serpentine activates the phosphorylation of AMPK, which stimulates glucose uptake by C2C12 cells.Serpentine increases the expression of GSK-3β mRNA in muscle tissues, which enhances glucose uptake.Serpentine also increases glucose production and hepatic gluconeogenesis.Serpentine has a significant effect on glucagon secretion and hepatic gluconeogenesis. Serpentine significantly increased glucagon secretion and hepatic gluconeogenesis. In high-fat diet streptozotocin (HFD STZ)-induced diabetic mice, Serpentine significantly prolonged insulin hypoglycemia, significantly decreased exogenous insulin use, and inhibited endogenous insulin secretion.
  • $465
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1-O-p-Coumaroyl-β-D-glucose
TN73007139-64-2
1-O-p-Coumaroyl-β-D-glucose, a compound extractable from Luffa cylindrica (L.) Roem (sponge gourds) [1] [2], has been found to enhance glucose uptake in HuH7 cells.
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5-O-Coumaroylquinic acid
TN747332451-86-8
5-O-Coumaroylquinic acid (3-O-Coumaroylquinic acid), exhibits significant inhibition of PTP1B and a concentration-dependent inhibitory effect on α-glucosidase, thereby demonstrating anti-hyperglycemic properties. Additionally, this compound enhances glucose uptake and inhibits PTP1B in vitro, emphasizing its potential therapeutic applications in glucose regulation.
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Docosahexaenoyl glycerol
MG(22:6 0:0 0:0),1-Docosahexaenoin,MAG-DHA
TN7675140670-40-2
Docosahexaenoyl glycerol, an analog of endocannabinoid, stimulates glucose uptake and exhibits anti-inflammatory efficacy [1] [2].
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