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Cytometry in the brain: Studying differentiation to diagnostic applications in brain disease and regeneration therapy

机译:脑细胞计数法:研究在脑疾病和再生治疗中对诊断应用的区分

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摘要

During brain development, a population of uniform embryonic cells migrates and differentiates into a large number of neural phenotypes - origin of the enormous complexity of the adult nervous system. Processes of cell proliferation, differentiation and programmed death of no longer required cells, do not occur only during embryogenesis, but are also maintained during adulthood and are affected in neurodegenerative and neuropsychiatric disease states. As neurogenesis is an endogenous response to brain injury, visible as proliferation (of to this moment silent stem or progenitor cells), its further stimulation can present a treatment strategy in addition to stem cell transfer for cell regeneration therapy. Concise techniques for studying such events in vitro and in vivo permit understanding of underlying mechanisms. Detection of subtle physiological alterations in brain cell proliferation and neurogenesis can be explored, that occur during environmental stimulation, exercise and ageing. Here, we have collected achievements in the field of basic research on applications of cytometry, including automated imaging for quantification of morphological or fluorescence-based parameters in cell cultures, towards imaging of three-dimensional brain architecture together with DNA content and proliferation data. Multi-parameter and more recently in vivo flow cytometry procedures, have been developed for quantification of phenotypic diversity and cell processes that occur during brain development as well as in adulthood, with importance for therapeutic approaches.
机译:在大脑发育过程中,一群均匀的胚胎细胞迁移并分化为大量的神经表型-成年神经系统极为复杂的起源。不再需要的细胞的细胞增殖,分化和程序性死亡过程不仅在胚胎发生过程中发生,而且在成年过程中也得到维持,并处于神经退行性疾病和神经精神疾病状态。由于神经发生是对脑损伤的内源性反应,可见为增殖(目前为止是沉默的干细胞或祖细胞的增殖),因此它的进一步刺激可以为干细胞再生治疗提供除干细胞转移以外的治疗策略。用于在体外和体内研究此类事件的简便技术可以帮助人们了解潜在的机制。可以探索在环境刺激,运动和衰老过程中发生的脑细胞增殖和神经发生中微妙的生理变化的检测。在这里,我们收集了细胞计数应用基础研究领域的成就,包括用于细胞培养中基于形态学或荧光参数定量的自动成像,三维脑结构成像以及DNA含量和增殖数据的成像。已经开发出多参数和最近在体内的流式细胞术程序,用于量化在脑发育以及成年期中发生的表型多样性和细胞过程,这对于治疗方法很重要。

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