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芭蕉和印度栝楼复合提取物对链脲佐菌素诱导的糖尿病白化大鼠蛋白质代谢紊乱的纠正作用:通过胰腺的一种方法

Correction of protein metabolic disorders by composite extract of Musa paradisiaca and Coccinia indica in streptozotocin-induced diabetic albino rat: an approach through the pancreas.

作者信息

Mallick Chhanda, De Debasis, Ghosh Debidas

机构信息

Department of Bio-Medical Laboratory Science and Management, Vidyasagar University, Midnapore, West Bengal, India.

出版信息

Pancreas. 2009 Apr;38(3):322-9. doi: 10.1097/MPA.0b013e318192ebdf.

Abstract

OBJECTIVE

The study focused on the ability of the extracts of Musa paradisiaca and Coccinia indica on protein metabolic disorders in streptozotocin (STZ)-induced diabetes.

METHODS

Wistar strain rats were divided into 6 groups as control, control + composite extract treated, STZ-induced diabetes, diabetic + composite extract treated, composite extract-pretreated diabetes, and composite extract-pretreated diabetes + composite extract treated. Protein metabolic status was assessed by serum levels of urea, uric acid, albumin, and creatinine along with urine urea and albumin levels. Diabetic therapeutic ability was assessed by blood glucose, glycated hemoglobin, and serum insulin levels. Histology of the pancreas, liver, and kidney was evaluated.

RESULTS

Indices of protein metabolic disorders were deviated from control in STZ-induced diabetes, which were protected significantly after the treatment of composite extract of M. paradisiaca and C. indica. This protection was more prominent when the extract-pretreated animals were subjected to diabetes induction by STZ.

CONCLUSION

The composite extract has a protective therapeutic effect against diabetes through beta-cell regeneration capacity.

摘要

目的

本研究聚焦于大蕉和印度栝楼提取物对链脲佐菌素(STZ)诱导的糖尿病中蛋白质代谢紊乱的作用。

方法

将Wistar品系大鼠分为6组,即对照组、对照组 + 复合提取物处理组、STZ诱导糖尿病组、糖尿病 + 复合提取物处理组、复合提取物预处理糖尿病组以及复合提取物预处理糖尿病 + 复合提取物处理组。通过血清尿素、尿酸、白蛋白和肌酐水平以及尿尿素和白蛋白水平评估蛋白质代谢状态。通过血糖、糖化血红蛋白和血清胰岛素水平评估糖尿病治疗能力。对胰腺、肝脏和肾脏进行组织学评估。

结果

STZ诱导的糖尿病中蛋白质代谢紊乱指标偏离对照组,在给予大蕉和印度栝楼复合提取物治疗后得到显著改善。当预先用提取物处理的动物接受STZ诱导糖尿病时,这种保护作用更为显著。

结论

复合提取物通过β细胞再生能力对糖尿病具有保护性治疗作用。

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