Biochemistry and Molecular Biology Laboratory, Department of Zoology, Faculty of Science, University of Delhi, Delhi, 110007, India.
Cytogenetics Laboratory, Department of Zoology, Institute of Science, Banaras Hindu University, Varanasi, 221005, India.
Mol Biol Rep. 2024 Nov 13;51(1):1146. doi: 10.1007/s11033-024-10075-w.
Glia is pivotal in regulating neuronal stem cell proliferation, functioning, and nervous system homeostasis, significantly influencing neuronal health and disorders. Dysfunction in glial activity is a key factor in the development and progression of brain pathology. However, a deeper understanding of the intricate nature of glial cells and their diverse role in neurological disorders is still required. To this end, we conducted data mining to retrieve literature from PubMed and Google Scholar using the keywords: glia, Drosophila, neurodegeneration, and mammals. The retrieved literature was manually screened and used to comprehensively understand and present the different glial types in Drosophila, i.e., perineurial, subperineurial, cortex, astrocyte-like and ensheathing glia, their relevance with mammalian counterparts, mainly microglia and astrocytes, and their potential to reveal complex neuron-glial molecular networks in managing neurodegenerative processes.
胶质细胞在调节神经元干细胞的增殖、功能和神经系统的动态平衡方面起着关键作用,对神经元的健康和疾病有重要影响。胶质细胞功能障碍是大脑病理发生和发展的一个关键因素。然而,我们仍然需要更深入地了解胶质细胞的复杂性质及其在神经退行性疾病中的多种作用。为此,我们使用关键词“glia、Drosophila、neurodegeneration 和 mammals”,从 PubMed 和 Google Scholar 中检索文献,进行数据挖掘。检索到的文献经过手动筛选,用于全面了解和呈现果蝇中的不同胶质细胞类型,即周细胞、亚周细胞、皮层、类似星形胶质细胞和鞘细胞,以及它们与哺乳动物对应物(主要是小胶质细胞和星形胶质细胞)的相关性,以及它们在揭示神经退行性过程中复杂的神经元-胶质分子网络方面的潜力。