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环境富集和二甲双胍改善高脂/高糖饮食诱导的2型糖尿病大鼠的代谢功能、海马神经元存活及海马依赖性记忆。

Environmental Enrichment and Metformin Improve Metabolic Functions, Hippocampal Neuron Survival, and Hippocampal-Dependent Memory in High-Fat/High-Sucrose Diet-Induced Type 2 Diabetic Rats.

作者信息

Ismail Teh Rasyidah, Yap Christina Gertrude, Naidu Rakesh, Pamidi Narendra

机构信息

Jeffrey Cheah School of Medicine and Health Sciences, Monash University Malaysia, Jalan Lagoon Selatan, Bandar Sunway, Subang Jaya 47500, Selangor Darul Ehsan, Malaysia.

Clinical Laboratory Science Section, Institute of Medical Science Technology, Universiti Kuala Lumpur, Kajang, Kuala Lumpur 43000, Selangor Darul Ehsan, Malaysia.

出版信息

Biology (Basel). 2023 Mar 21;12(3):480. doi: 10.3390/biology12030480.

Abstract

: The Western-style diet-induced type 2 diabetes mellitus (T2D) may eventually trigger neurodegeneration and memory impairment. Thus, it is essential to identify effective therapeutic strategies to overcome T2D complications. This study aimed to investigate the effects of environmental enrichment (EE) and metformin interventions on metabolic dysfunctions, hippocampal neuronal death, and hippocampal-dependent memory impairments in high-fat/high-sucrose (HFS) diet-induced T2D rats. Thirty-two male rats (200-250 g) were divided into four groups: C group (standard diet + conventional cage); D group (HFS diet + conventional cage); DE group (HFS diet + EE cage/6hr daily); and DM group (HFS diet + metformin + conventional cage). Body weight was measured every week. T-maze tasks, anthropometric, biochemical, histological, and morphometric parameters were measured. The expression changes of hippocampal genes were also analyzed. The anthropometric and biochemical parameters were improved in DE and DM groups compared with the D group. DE and DM groups had significantly higher T-maze percentages than the D group. These groups also had better histological and morphometric parameters than the D group. The interventions of EE and metformin enhanced the expression of hippocampal genes related to neurogenesis and synaptic plasticity (BDNF/TrkB binding, PI3K-Akt, Ras-MAPK, PLCγ-Ca, and LTP). Environmental enrichment (EE) and metformin improved metabolic functions, hippocampal neuron survival, and hippocampal-dependent memory in HFS diet-induced T2D rats. The underlying mechanisms of these interventions involved the expression of genes that regulate neurogenesis and synaptic plasticity.

摘要

西式饮食诱导的2型糖尿病(T2D)最终可能引发神经退行性变和记忆障碍。因此,确定有效的治疗策略以克服T2D并发症至关重要。本研究旨在探讨环境富集(EE)和二甲双胍干预对高脂/高糖(HFS)饮食诱导的T2D大鼠代谢功能障碍、海马神经元死亡及海马依赖性记忆损伤的影响。将32只雄性大鼠(200 - 250克)分为四组:C组(标准饮食 + 传统饲养笼);D组(HFS饮食 + 传统饲养笼);DE组(HFS饮食 + EE饲养笼/每天6小时);DM组(HFS饮食 + 二甲双胍 + 传统饲养笼)。每周测量体重。测量T迷宫任务、人体测量学、生化、组织学和形态计量学参数。还分析海马基因的表达变化。与D组相比,DE组和DM组的人体测量学和生化参数得到改善。DE组和DM组的T迷宫完成率显著高于D组。这些组在组织学和形态计量学参数方面也优于D组。EE和二甲双胍干预增强了与神经发生和突触可塑性相关的海马基因(BDNF/TrkB结合、PI3K - Akt、Ras - MAPK、PLCγ - Ca和LTP)的表达。环境富集(EE)和二甲双胍改善了HFS饮食诱导的T2D大鼠的代谢功能、海马神经元存活及海马依赖性记忆。这些干预的潜在机制涉及调节神经发生和突触可塑性的基因表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccce/10045208/af050ee11b78/biology-12-00480-g001.jpg

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