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KMID : 0370219970410060782
Yakhak Hoeji
1997 Volume.41 No. 6 p.782 ~ p.788
Enhancement of Endotoxin-Induced Prostaglandin Synthesis by Elevation of Glucose Concentration in Primary Cultured Rat Vascular Smooth Muscle Cells
À̼öȯ/Lee SH
¿ìÇö±¸/±èÁö¿µ/¹éÀºÁÖ/¹®Ã¢Çö/Woo HG/Kim JY/Baik EJ/Moon CH
Abstract
This study was designed to characterize glucose-enhancing effects on endotoxin-induced prostaglandin production in primary cultured rat vascular smooth muscle cells (VSMC). High glucose treatment significantly augmented prostaglandin (PG) synthesis in lipopolysaccharide (LPS)-stimulated VSMC and this effect was maximal at the concentration of 4mg/ml. It has been reported that increases in glucose metabolism through sorbitol pathway could alter the cytosolic NADH/NAD+ ratio and this change favors de novo synthesis of diacylglycerol (DAG) and, in turn. Results in the activation of protein kinase C (PKC) in vascular tissues. Protein kinase C (PKC) inhibitors, staurosporin and H7, blocked the glucose enhancing effect, and DAG, a PKC activator, significantly increased the PG production stimuated by LPS. Sodium pyruvate, which can reverse the alteration in cytosolic NADH/NAD+ ratio, reduced the high glucose effect on PG production. And also, zopolrestat, a strong aldose reductase inhibitor, almost completely blocked the augmentation effect of glucose on PG synthesis. Arachidonic acid release was significantly increased in high glucose treated group, which implied the increase in PLA2 activity was associated with glucose enhancing effect. Metabloic, labeling study clearly showed that de novo synthesis of prostaglandin H synthase-2 (PGHS-2) is greatly increased in high glucose treated group and this was mitigated by the treatment of zopolrestat. Taken together, the activation of PKC through sorbitol pathway increased the activities of PLA2 and PGHS which resulted in the augmentation in LPS-induced PG production in high glucose treated VSMC.
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