Examining the pancreatic regenerative potential of Nigella sativa in diabetic rats: Evaluation of histological changes and transcription factors pdx-1 and neurog-3 levels

IF 0.7 4区 材料科学 Q3 Materials Science
Fatima S. Alaryani
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Abstract

Pancreatic β cell neogenesis and proliferation represent promising avenues for diabetes management. Nigella sativa, known for its potent anti-inflammatory and antioxidant properties, has demonstrated efficacy in promoting regeneration across various organ systems. This study investigates the potential of Nigella sativa in pancreatic regeneration by examining pancreatic histology in addition, the expression levels of the key transcription factors, comprising NEUROG-3, PDX-1, INS-1, and INS-2. Twenty-four rats were categorized in 4sets that is negative control, positive control, normal, and treatment. Diabetes was prompted through intraperitoneal administration of alloxan hydrate. After 21 days of diabetes induction, the treatment set was applied with N. sativa extract, the positive control set was administered Glibenclamide, while the negative control group received no treatment. Parameters such as biochemical markers, oxidative stress markers, pancreatic islet architecture changes, and the expression levels of the NEUROG-3, PDX-1, INS-1, and INS-2 were assessed. Data analysis, conducted through DMR Test and ANOVA with a 5% threshold of significance, revealed significant insights into the consequence of N. sativa on the parameters under investigation. The results propose a possible part for N. sativa in promoting pancreatic regeneration and warrant further exploration for its application in diabetes management.
研究黑麦草对糖尿病大鼠胰腺再生的潜力:组织学变化及转录因子 pdx-1 和 neurog-3 水平的评估
胰腺β细胞的新生和增殖是治疗糖尿病的一个很有前景的途径。黑麦草以其强大的抗炎和抗氧化特性而闻名,在促进各种器官系统的再生方面已被证明具有功效。本研究通过检测胰腺组织学以及关键转录因子(包括 NEUROG-3、PDX-1、INS-1 和 INS-2)的表达水平,研究了黑升麻在胰腺再生方面的潜力。24 只大鼠被分为 4 组,即阴性对照组、阳性对照组、正常组和治疗组。通过腹腔注射阿脲水合物诱发糖尿病。诱导糖尿病 21 天后,治疗组使用藜芦提取物,阳性对照组使用格列本脲,而阴性对照组不使用任何治疗。评估指标包括生化指标、氧化应激指标、胰岛结构变化以及 NEUROG-3、PDX-1、INS-1 和 INS-2 的表达水平。通过 DMR 检验和方差分析(显著性阈值为 5%)进行的数据分析揭示了 N. sativa 对所研究参数的重要影响。研究结果表明,荠菜可能具有促进胰腺再生的作用,值得进一步探讨其在糖尿病管理中的应用。
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来源期刊
Materials Express
Materials Express NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
自引率
0.00%
发文量
69
审稿时长
>12 weeks
期刊介绍: Information not localized
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