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在健康环境和糖尿病中神经变性和再生的动态。

The Dynamics of Nerve Degeneration and Regeneration in a Healthy Milieu and in Diabetes.

机构信息

Department of Translational Medicine-Hand Surgery, Lund University, SE-205 02 Malmö, Sweden.

Department of Hand Surgery, Skåne University Hospital, SE-205 02 Malmö, Sweden.

出版信息

Int J Mol Sci. 2023 Oct 16;24(20):15241. doi: 10.3390/ijms242015241.

Abstract

Appropriate animal models, mimicking conditions of both health and disease, are needed to understand not only the biology and the physiology of neurons and other cells under normal conditions but also under stress conditions, like nerve injuries and neuropathy. In such conditions, understanding how genes and different factors are activated through the well-orchestrated programs in neurons and other related cells is crucial. Knowledge about key players associated with nerve regeneration intended for axonal outgrowth, migration of Schwann cells with respect to suitable substrates, invasion of macrophages, appropriate conditioning of extracellular matrix, activation of fibroblasts, formation of endothelial cells and blood vessels, and activation of other players in healthy and diabetic conditions is relevant. Appropriate physical and chemical attractions and repulsions are needed for an optimal and directed regeneration and are investigated in various nerve injury and repair/reconstruction models using healthy and diabetic rat models with relevant blood glucose levels. Understanding dynamic processes constantly occurring in neuropathies, like diabetic neuropathy, with concomitant degeneration and regeneration, requires advanced technology and bioinformatics for an integrated view of the behavior of different cell types based on genomics, transcriptomics, proteomics, and imaging at different visualization levels. Single-cell-transcriptional profile analysis of different cells may reveal any heterogeneity among key players in peripheral nerves in health and disease.

摘要

需要合适的动物模型来模拟健康和疾病两种状态,以便不仅了解神经元和其他细胞在正常条件下的生物学和生理学,而且还能了解神经损伤和神经病变等应激条件下的生物学和生理学。在这种情况下,了解基因和不同因素如何通过神经元和其他相关细胞中协调良好的程序被激活至关重要。了解与轴突生长相关的关键因子、施万细胞在合适基质上的迁移、巨噬细胞的浸润、细胞外基质的适当调节、成纤维细胞的激活、内皮细胞和血管的形成以及健康和糖尿病状态下其他因子的激活,对于神经再生至关重要。需要适当的物理和化学吸引力和排斥力,以实现最佳和定向的再生,并在各种神经损伤和修复/重建模型中进行研究,使用具有相关血糖水平的健康和糖尿病大鼠模型。理解像糖尿病性神经病这样的神经病变中不断发生的动态过程,需要先进的技术和生物信息学,以便基于基因组学、转录组学、蛋白质组学和不同可视化水平的成像,对不同细胞类型的行为进行综合观察。对不同细胞的单细胞转录谱分析可能揭示健康和疾病状态下周围神经中关键因子的任何异质性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c78/10607341/60c5bbb8f104/ijms-24-15241-g004.jpg

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