Regulation of insulin secretion and expression of SUR1 gene by chronic exposure to free fatty acids in rat pancreatic β cells

Yuan Li , Deng Xiuling , Chen Lulu , Zhou Min

Current Medical Science ›› 2004, Vol. 24 ›› Issue (13) : 358 -360.

PDF
Current Medical Science ›› 2004, Vol. 24 ›› Issue (13) : 358 -360. DOI: 10.1007/BF02861867
Article

Regulation of insulin secretion and expression of SUR1 gene by chronic exposure to free fatty acids in rat pancreatic β cells

Author information +
History +
PDF

Abstract

To study the effects of free fatty acids on insulin secretion and expression of SUR1 gene in rat pancreatic B cellsin vitro, and to explore the molecular mechanisms in lipotoxicity inducing insulin secretion dysfunction, pancreatic islet cells were isolated and digested from male SD rats. Purified islets were incubated with either 0.25 mmol/L palmitate or 0.125 mmol/L oleate for 48 hin vitro. Then islets were stimulated with either 5.6 mmol/L or 16.7 mmol/L glucose for 1 h. Insulin release was measured by using radioimmunoassay, and the expression of SUR1 gene mRNA was quantified by reserve transcription-polymerase chain reaction (RT-PCR). The islets exposed to both palmitate and oleate for 48 h showed an increased basal and a decreased glucose-indused insulin release as compared with control islets. Palmitate increased basal insulin secretion by 110 % (P<0.01), decreased glucose stimulated insulin secretion by 43% (P<0.01); while oleate increased basal insulin secretion by 80% (P<0.01) and decreased glucose stimulated insulin secretion by 32% (P<0.05). RT-PCR showed that oleate significantly suppressed SUR1 gene expression by 64% (P<0.01) as compared with the control group, while palmitate group manifested a light decrease of 15% (P>0.05) of SUR1 gene expression. Our results suggested that chronic exposure to free fatty acids of pancreatic β cells inhibited glucose stimulated insulin secretion. Regulation of SUR1 gene expression may be involved in such effects, which may also be one of the molecular mechanisms in lipotoxocity inducing β cells secretion dysfunction.

Keywords

fatty acids / insulin secretion / sulfonylurea receptor

Cite this article

Download citation ▾
Yuan Li, Deng Xiuling, Chen Lulu, Zhou Min. Regulation of insulin secretion and expression of SUR1 gene by chronic exposure to free fatty acids in rat pancreatic β cells. Current Medical Science, 2004, 24(13): 358-360 DOI:10.1007/BF02861867

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

LeeY, HiroseH, ZhouY T, et al. . Increased lipogenic capacity of the islets of obese rats: a role in the pathogenesis of NIDDM. Diabetes, 1997, 46408-408

[2]

PickA, ClarkJ, KubstrupC, et al. . Role of apoptesis in failure of beta-cell mass compensation for insulin resistance and beta-cell defects in the male Zucker diabetic fatty rat. Diabetes, 1998, 47358-358

[3]

YuanL, AnH X, DengX L, et al. . Rosiglitazone reverses insulin secretion altered by chronic exposure to free fatty acid via a IRS-2-associated phosphatidylinositol 3-kinase pathway. Acta Pharmacol Sinica, 2003, 24429-429

[4]

ShimabukuroM, ZhouY T, LeviM, et al. . Fatty acid-induced beta cell apoptosis: a link between obesity and diabetes. Proc Natl Acad Sci, 1998, 952498-2498

[5]

ShimabukuroM, HigaM, ZhouY T. Lipoapoptosis in beta-cells of obese prediabetic fa/fa rats. Role of serine palmitoyltransferase overexpression. J Biol Chem, 1998, 27332487-32487

[6]

ShimabukuroM, WangM Y, ZhouY T, et al. . Protection against lipoapoptosis of beta cells through leptin-dependent maintenance of Bcl-2 expression. Proc. Natl Acad Sci (USA), 1998, 959558-9558

[7]

MoritzW, LeechC A, FerrerJ, et al. . Regulated expression of adenosine triphosphate-sensitive potassium channel subunits in pancreatic beta-cells. Endocrinology, 2001, 142129-138

[8]

YuanL, AnH X, DengX L, et al. . Regulation of leptin on insulin secretion and sulfonulurea receptor 1 transcription level in isolated rats pancreatic islets. Chin Med J, 2003, 116368-368

AI Summary AI Mindmap
PDF

77

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/