Oleanolic acid

3β-taraxerol of Mangifera indica, a PI3K dependent dual activator of glucose transport and glycogen synthesis in 3T3-L1 adipocytes

Biological Sciences / Insulin Resistance / Humans / Glucose / Blood Glucose / Glucose Metabolism / Mice / Animals / Physical sciences / T cells / Glucose Transport / Plant extracts / Adipocytes / Mangifera indica / Type 2 Diabetes Mellitus / Glucose Uptake / Cell Survival / Glycogen / Oleanolic acid / Biochemistry and cell biology / Glucose Metabolism / Mice / Animals / Physical sciences / T cells / Glucose Transport / Plant extracts / Adipocytes / Mangifera indica / Type 2 Diabetes Mellitus / Glucose Uptake / Cell Survival / Glycogen / Oleanolic acid / Biochemistry and cell biology

3β-taraxerol of Mangifera indica, a PI3K dependent dual activator of glucose transport and glycogen synthesis in 3T3-L1 adipocytes

Biological Sciences / Insulin Resistance / Humans / Glucose / Blood Glucose / Glucose Metabolism / Mice / Animals / Physical sciences / T cells / Glucose Transport / Plant extracts / Adipocytes / Mangifera indica / Type 2 Diabetes Mellitus / Glucose Uptake / Cell Survival / Glycogen / Oleanolic acid / Biochemistry and cell biology / Glucose Metabolism / Mice / Animals / Physical sciences / T cells / Glucose Transport / Plant extracts / Adipocytes / Mangifera indica / Type 2 Diabetes Mellitus / Glucose Uptake / Cell Survival / Glycogen / Oleanolic acid / Biochemistry and cell biology

3β-taraxerol of Mangifera indica, a PI3K dependent dual activator of glucose transport and glycogen synthesis in 3T3-L1 adipocytes

Biological Sciences / Insulin Resistance / Humans / Glucose / Blood Glucose / Glucose Metabolism / Mice / Animals / Physical sciences / T cells / Glucose Transport / Plant extracts / Adipocytes / Mangifera indica / Type 2 Diabetes Mellitus / Glucose Uptake / Cell Survival / Glycogen / Oleanolic acid / Biochemistry and cell biology / Glucose Metabolism / Mice / Animals / Physical sciences / T cells / Glucose Transport / Plant extracts / Adipocytes / Mangifera indica / Type 2 Diabetes Mellitus / Glucose Uptake / Cell Survival / Glycogen / Oleanolic acid / Biochemistry and cell biology

3β-taraxerol of Mangifera indica, a PI3K dependent dual activator of glucose transport and glycogen synthesis in 3T3-L1 adipocytes

Biological Sciences / Insulin Resistance / Humans / Glucose / Blood Glucose / Glucose Metabolism / Mice / Animals / Physical sciences / T cells / Glucose Transport / Plant extracts / Adipocytes / Mangifera indica / Type 2 Diabetes Mellitus / Glucose Uptake / Cell Survival / Glycogen / Oleanolic acid / Biochemistry and cell biology / Glucose Metabolism / Mice / Animals / Physical sciences / T cells / Glucose Transport / Plant extracts / Adipocytes / Mangifera indica / Type 2 Diabetes Mellitus / Glucose Uptake / Cell Survival / Glycogen / Oleanolic acid / Biochemistry and cell biology

3beta-taraxerol of Mangifera indica, a PI3K dependent dual activator of glucose transport and glycogen synthesis in 3T3-L1 adipocytes

Biological Sciences / Insulin Resistance / Humans / Glucose / Blood Glucose / Glucose Metabolism / Mice / Animals / Physical sciences / T cells / Glucose Transport / Plant extracts / Adipocytes / Mangifera indica / Type 2 Diabetes Mellitus / Glucose Uptake / Cell Survival / Glycogen / Oleanolic acid / Biochemistry and cell biology / Glucose Metabolism / Mice / Animals / Physical sciences / T cells / Glucose Transport / Plant extracts / Adipocytes / Mangifera indica / Type 2 Diabetes Mellitus / Glucose Uptake / Cell Survival / Glycogen / Oleanolic acid / Biochemistry and cell biology

Klodorone A and klodorol A: new triterpenes from Kleinia odora

Saudi Arabia / Multidisciplinary / Natural Product / Asteraceae / Oleanolic acid / Molecular Structure / Triterpenes / Molecular Structure / Triterpenes

In Vitro Antioxidant Activity Potential of Lantadene A, a Pentacyclic Triterpenoid of Lantana Plants

Organic Chemistry / Free Radical / Antioxidants / Cercopithecus aethiops / Cell line / Nitric oxide / Animals / Lipid peroxidation / Molecules / Lantana / Biloba Extract Egb-761 / Lantadene A / Oxidation-Reduction / Vero cells / Superoxides / Oleanolic acid / Triterpenes / Plant Leaves / Nitric oxide / Animals / Lipid peroxidation / Molecules / Lantana / Biloba Extract Egb-761 / Lantadene A / Oxidation-Reduction / Vero cells / Superoxides / Oleanolic acid / Triterpenes / Plant Leaves

Chemical Proteomics Discloses Petrosapongiolide M, an Antiinflammatory Marine Sesterterpene, as a Proteasome Inhibitor

Mass Spectrometry / Proteomics / Enzyme Inhibitors / Cell line / Humans / Anti-inflammatory agents / CHEMICAL SCIENCES / Protein Binding / Oleanolic acid / PROTEASOME INHIBITOR / Anti-inflammatory agents / CHEMICAL SCIENCES / Protein Binding / Oleanolic acid / PROTEASOME INHIBITOR

Beneficial actions of oleanolic acid in an experimental model of multiple sclerosis: A potential therapeutic role

Multiple sclerosis / Cytokines / Humans / Blood brain barrier / Animals / Biochemical / Inflammatory disease / BIOCHEMICAL PHARMACOLOGY / Side Effect / Chemokines / Experimental Autoimmune Encephalomyelitis / Medicinal Plant / Oleanolic acid / Experimental Model / Biochemical / Inflammatory disease / BIOCHEMICAL PHARMACOLOGY / Side Effect / Chemokines / Experimental Autoimmune Encephalomyelitis / Medicinal Plant / Oleanolic acid / Experimental Model

PPARgamma-Active triterpenoid CDDO enhances ATRA-induced differentiation in APL

Cancer Biology / Apoptosis / Cell Differentiation / Humans / Mice / Animals / Histones / Acetylation / Tretinoin / Antineoplastic Agents / Oleanolic acid / Response Elements / Animals / Histones / Acetylation / Tretinoin / Antineoplastic Agents / Oleanolic acid / Response Elements

PPARgamma-Active triterpenoid CDDO enhances ATRA-induced differentiation in APL

Cancer Biology / Apoptosis / Cell Differentiation / Humans / Mice / Animals / Histones / Acetylation / Tretinoin / Antineoplastic Agents / Oleanolic acid / Response Elements / Animals / Histones / Acetylation / Tretinoin / Antineoplastic Agents / Oleanolic acid / Response Elements

PPARgamma-Active triterpenoid CDDO enhances ATRA-induced differentiation in APL

Cancer Biology / Apoptosis / Cell Differentiation / Humans / Mice / Animals / Histones / Acetylation / Tretinoin / Antineoplastic Agents / Oleanolic acid / Response Elements / Animals / Histones / Acetylation / Tretinoin / Antineoplastic Agents / Oleanolic acid / Response Elements
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