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1.
Journal of Korean Medical Science ; : 547-552, 2016.
Article in English | WPRIM | ID: wpr-58428

ABSTRACT

Inhibition of CD36, a fatty acid transporter, has been reported to prevent glucotoxicity and ameliorate high glucose induced beta cell dysfunction. Ezetimibe is a selective cholesterol absorption inhibitor that blocks Niemann Pick C1-like 1 protein, but may exert its effect through suppression of CD36. We attempted to clarify the beneficial effect of ezetimibe on insulin secreting cells and to determine whether this effect is related to change of CD36 expression. mRNA expression of insulin and CD36, intracellular peroxide level and glucose stimulated insulin secretion (GSIS) under normal (5.6 mM) or high glucose (30 mM) condition in INS-1 cells and primary rat islet cells were compared. Changes of the aforementioned factors with treatment with ezetimibe (20 μM) under normal or high glucose condition were also assessed. mRNA expression of insulin was decreased with high glucose, which was reversed by ezetimibe in both INS-1 cells and primary rat islets. CD36 mRNA expression was increased with high glucose, but decreased by ezetimibe in INS-1 cells and primary rat islets. Three-day treatment with high glucose resulted in an increase in intracellular peroxide level; however, it was decreased by treatment with ezetimibe. Decrease in GSIS by three-day treatment with high glucose was reversed by ezetimibe. Palmitate uptake following exposure to high glucose conditions for three days was significantly elevated, which was reversed by ezetimibe in INS-1 cells. Ezetimibe may prevent glucotoxicity in pancreatic β-cells through a decrease in fatty acid influx via inhibition of CD36.


Subject(s)
Animals , Male , Rats , Anticholesteremic Agents/pharmacology , CD36 Antigens/antagonists & inhibitors , Cells, Cultured , Ezetimibe/pharmacology , Flow Cytometry , Glucose/toxicity , Insulin/genetics , Insulin-Secreting Cells/cytology , Palmitic Acid/metabolism , RNA, Messenger/metabolism , Rats, Sprague-Dawley , Reactive Oxygen Species/metabolism , Real-Time Polymerase Chain Reaction
2.
An. acad. bras. ciênc ; 83(4): 1165-1170, Dec. 2011. ilus, tab
Article in English | LILACS | ID: lil-607420

ABSTRACT

Plumbago scandens L. is a Brazilian tropical/subtropical species that occurs along the coast. Chemically it is mainly represented by naphthoquinones, flavonoids, terpenoids and steroids. The aim of the present work is to study quantitative changes in the root metabolic production of Plumbago scandens during different physiologic developmental stages relative to floration. The results indicated the presence of four substances in the extracts: plumbagin, epi-isoshinanolone, palmitic acid and sitosterol, independent on developmental stage. The naphthoquinone plumbagin has always showed to be the major component of all extracts. Naphthoquinones exhibited their highest content during floration, while the content of the two others components decreased during this stage, revealing an inverse profile. The chemical composition changed depending on the plant requirements.


Plumbago scandens L. é uma espécie brasileira tropical/subtropical que ocorre ao longo da costa. Quimicamente, é principalmente representada por naftoquinonas, flavonóides, terpenóides e esteróides. objetivo do presente trabalho é estudar mudanças quantitativas da produção metabólica nas raízes de Plumbago scandens durante diferentes estágios de desenvolvimento fisiológico, relativos à floração. Os resultados indicaram a presença de quatro substâncias nos extratos: plumbagina, epi-isoshinanolona, ácido palmítico e sitosterol, independente do estágio de desenvolvimento. A naftoquinona plumbagina tem sempre mostrado ser o componente majoritário de todos os extratos. Naftoquinonas exibiram seus maiores conteúdos durante a floração, enquanto o conteúdo dos dois outros componentes decresceu durante este estágio, revelando um perfil inverso. A composição química modificou dependendo das necessidades da planta.


Subject(s)
Naphthoquinones/chemistry , Palmitic Acid/chemistry , Plant Roots/chemistry , Plumbaginaceae/chemistry , Sitosterols/chemistry , Tetrahydronaphthalenes/chemistry , Chromatography, Gas , Naphthoquinones/metabolism , Palmitic Acid/metabolism , Plant Roots/growth & development , Plant Roots/metabolism , Plumbaginaceae/growth & development , Plumbaginaceae/metabolism , Sitosterols/metabolism , Tetrahydronaphthalenes/metabolism
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