Ottoboni Linda, Merlini Arianna, Martino Gianvito
Neuroimmunology Unit, Division of Neuroscience, Institute of Experimental Neurology, San Raffaele Scientific InstituteMilan, Italy.
Front Cell Dev Biol. 2017 May 12;5:52. doi: 10.3389/fcell.2017.00052. eCollection 2017.
The physiological and pathological properties of the neural germinal stem cell niche have been well-studied in the past 30 years, mainly in animals and within given limits in humans, and knowledge is available for the cyto-architectonic structure, the cellular components, the timing of development and the energetic maintenance of the niche, as well as for the therapeutic potential and the cross talk between neural and immune cells. In recent years we have gained detailed understanding of the potentiality of neural stem cells (NSCs), although we are only beginning to understand their molecular, metabolic, and epigenetic profile in physiopathology and, further, more can be invested to measure quantitatively the activity of those cells, to model their therapeutic responses or to predict interactions . Information in this direction has been put forward for other organs but is still limited in the complex and very less accessible context of the brain. A comprehensive understanding of the behavior of endogenous NSCs will help to tune or model them toward a desired response in order to treat complex neurodegenerative diseases. NSCs have the ability to modulate multiple cellular functions and exploiting their plasticity might make them into potent and versatile cellular drugs.
在过去30年里,人们对神经生发干细胞龛的生理和病理特性进行了充分研究,主要是在动物身上,在人类身上也有一定程度的研究,目前已经了解了其细胞结构、细胞成分、发育时间、龛的能量维持,以及治疗潜力和神经细胞与免疫细胞之间的相互作用。近年来,我们对神经干细胞(NSCs)的潜能有了详细了解,尽管我们才刚刚开始了解它们在生理病理学中的分子、代谢和表观遗传特征,此外,还可以投入更多精力来定量测量这些细胞的活性,模拟它们的治疗反应或预测相互作用。关于这方面的信息在其他器官中已有报道,但在复杂且难以触及的大脑环境中仍然有限。全面了解内源性神经干细胞的行为将有助于对其进行调控或建模,以获得理想的反应,从而治疗复杂的神经退行性疾病。神经干细胞有能力调节多种细胞功能,利用其可塑性可能使其成为强大而通用的细胞药物。