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研究口服降解丝胶对 II 型糖尿病大鼠肝损伤的修复作用及机制。

Investigation of the Repairing Effect and Mechanism of Oral Degraded Sericin on Liver Injury in Type II Diabetic Rats.

机构信息

School of Biology and Basic Medical Sciences, Medical College, Soochow University, RM702-2303, No. 199, Renai Road, Industrial Park, Suzhou 215123, China.

出版信息

Biomolecules. 2022 Mar 13;12(3):444. doi: 10.3390/biom12030444.

Abstract

In the sericulture and silk production industry, sericin is discharged in the degumming wastewater, resulting in a large amount of wasted natural protein and environmental pollution. This study investigated the effect of degraded sericin recovered by the Ca(OH)-ultrasound degumming method (a green process) on liver injury in T2D rats. After 4 weeks of dietary sericin supplementation, the liver masses and organ coefficients of the T2D rats improved compared with those of the model rats that were not fed sericin. Oral sericin activated the damaged PI3K/AKT/AMPK pathway to enhance glycogen synthesis, accelerate glycolysis, and inhibit gluconeogenesis. The protein expression levels of the inflammatory factors NF-κB, IL-6, and TNF-α in the T2D model group were up to two times higher than in the normal group. However, all three T2D groups that received oral sericin showed significant decreases in these factors to the level found in the normal group, indicating that inflammation in the body was significantly reduced. These results show that the sericin protein might improve glycogen synthesis, accelerate glycolysis, and inhibit gluconeogenesis by enhancing the anti-oxidation capability and reducing inflammatory reactions. Therefore, sericin recovered by Ca(OH) degradation has potential use in the development of functional health foods that can lower blood sugar.

摘要

在养蚕和丝绸生产行业中,丝胶会随脱胶废水排放,导致大量天然蛋白质浪费和环境污染。本研究探讨了通过 Ca(OH)-超声脱胶法(一种绿色工艺)回收降解丝胶对 T2D 大鼠肝损伤的影响。在摄入丝胶 4 周后,与未摄入丝胶的模型组大鼠相比,T2D 大鼠的肝质量和器官系数得到改善。口服丝胶激活了受损的 PI3K/AKT/AMPK 通路,促进了糖原合成,加速了糖酵解,并抑制了糖异生。T2D 模型组中炎症因子 NF-κB、IL-6 和 TNF-α 的蛋白表达水平比正常组高两倍,但所有接受口服丝胶的 T2D 组均显著降低了这些因子的水平,使其与正常组相当,表明体内炎症明显减轻。这些结果表明,丝胶蛋白通过增强抗氧化能力和减轻炎症反应,可能改善糖原合成、加速糖酵解并抑制糖异生。因此,通过 Ca(OH)降解回收的丝胶具有开发降血糖功能保健食品的潜力。

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