- Lipids
- Isotope-Labeled Lipids
Isotope-Labeled Lipids
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- Isotope-Labeled Cationic Lipids (4)
- Isotope-Labeled Docosanoids (6)
- Isotope-Labeled Eicosanoids (62)
- Isotope-Labeled Fatty Acids (330)
- Isotope-Labeled Fatty Alcohols (4)
- Isotope-Labeled Fatty Aldehydes (18)
- Isotope-Labeled Fatty Amides (25)
- Isotope-Labeled Fatty Esters (81)
- Isotope-Labeled Fatty Ethers (1)
- Isotope-Labeled Glycerolipids (75)
- Isotope-Labeled Glycerophospholipids (136)
- Isotope-Labeled Hydrocarbons (24)
- Isotope-Labeled Octadecanoids (21)
- Isotope-Labeled Oxygenated Hydrocarbons (8)
- Isotope-Labeled Polyketides (82)
- Isotope-Labeled Prenol Lipids (67)
- Isotope-Labeled Saccharolipids (1)
- Isotope-Labeled Sphingolipids (108)
- Isotope-Labeled Sterol Lipids (353)
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Isotope-Labeled Lipids (1327)
- Formula: C16H18D6O7
- Molecular Weight: 334.39
Tetranor-PGDM-d6 is the deuterium labeled Tetranor-PGDM.
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- Formula: C34H35D31O4
- Molecular Weight: 570.08
9-PAHSA-d31 is the deuterium labeled 9-PAHSA. 9-PAHSA is an orally active endogenous GPR120 agonist (EC50=18 μM). 9-PAHSA significantly inhibits LPS-induced inflammatory responses by blocking the NF-κB pathway. 9-PAHSA induces adipocyte browning, enhances glucose uptake and reduces lipid accumulation, while improving mitochondrial function and the survival rate of steatotic hepatocytes. In terms of neuroprotection, 9-PAHSA regulates the expression of REST and BDNF in the prefrontal cortex of diabetic mice, and effectively prevents spatial working memory deficits and abnormal social behaviors. 9-PAHSA does not directly regulate insulin secretion or improve systemic insulin sensitivity, and possesses specific anti-inflammatory, metabolic regulatory and neuroprotective properties. 9-PAHSA can be used in the research of diabetes-related cognitive impairment, obesity and non-alcoholic fatty liver disease.
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- Formula: C20H26D4O5
- Molecular Weight: 354.47
15-Keto-prostaglandin E2-d4 is the d4 labeled 15-keto-Prostaglandin E2 (HY-113205). 15-keto-Prostaglandin E2 (15-keto-PGE2) is an endogenous PGE2 metabolite. 15-keto-Prostaglandin E2 inhibits STAT3 activation by binding to the Cys259 residue of STAT3. 15-keto-Prostaglandin E2 binds to and stabilizes EP2 and EP4 receptors. 15-keto-Prostaglandin E2 inhibits the growth and progression of breast cancer cells. 15-keto-Prostaglandin E2 activates PPAR-γ and promotes fungal growth. 15-keto-Prostaglandin E2 disrupts glomerular vascularization during zebrafish development and reduces the surface area of the glomerular filtration barrier.
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- Formula: C27H37D7O2
- Molecular Weight: 407.68
7-Keto Cholesterol-d7 is the deuterium labeled 7-Keto Cholesterol.
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- Formula: C20H23D5O2
- Molecular Weight: 305.47
11-cis-Retinoic Acid-d5 is the deuterium labeled Retinoic acid. Retinoic acid is a metabolite of vitamin A that plays important roles in cell growth, differentiation, and organogenesis. Retinoic acid is a natural agonist of RAR nuclear receptors, with IC50s of 14 nM for RARα/β/γ. Retinoic acid bind to PPARβ/δ with Kd of 17 nM. Retinoic acid acts as an inhibitor of transcription factor Nrf2 through activation of retinoic acid receptor alpha[1][2].
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- Formula: C513CH12O3
- Molecular Weight: 133.15
Leucic acid-13C (α-Hydroxyisocaproic acid-13C) is the 13C-labeled Leucic acid (HY-30216A). Leucic acid is an amino acid metabolite.
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- Formula: C3713C3H80NO8P
- Molecular Weight: 737.02
DPPC-13C3 (129Y83-13C) is the 13C-labeled DPPC (HY-109506). DPPC (129Y83) is a phosphoglyceride that can be used to prepare lipid monolayers, bilayers, and liposomes. DPPC is the main lipid component of pulmonary surfactant. Dppc-liposome can be effectively used as a delivery vector to induce an immune response against GSL antigen in mice.
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