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In Vivo Reprogramming for CNS Repair: Regenerating Neurons from Endogenous Glial Cells

机译:用于CNS修复的体内重编程:从内源性胶质细胞再生神经元

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Neuroregeneration in the CNS has proven to be difficult despite decades of research. The old dogma that CNS neurons cannot be regenerated in the adult mammalian brain has been overturned; however, endogenous adult neurogenesis appears to be insufficient for brain repair. Stem cell therapy once held promise for generating large quantities of neurons in the CNS, but immunorejection and long-term functional integration remain major hurdles. In this Perspective, we discuss the use of in vivo reprogramming as an emerging technology to regenerate functional neurons from endogenous glial cells inside the brain and spinal cord. Besides the CNS, in vivo reprogramming has been demonstrated successfully in the pancreas, heart, and liver and may be adopted in other organs. Although challenges remain for translating this technology into clinical therapies, we anticipate that in vivo reprogramming may revolutionize regenerative medicine by using a patient's own internal cells for tissue repair.
机译:尽管进行了数十年的研究,CNS中的神经再生仍被证明是困难的。不能在成年哺乳动物的大脑中再生中枢神经系统神经元的古老教条;然而,内源性成人神经发生似乎不足以进行脑修复。干细胞疗法曾经有望在中枢神经系统中产生大量神经元,但免疫排斥和长期功能整合仍然是主要障碍。在此观点中,我们讨论了体内重编程作为新兴技术从大脑和脊髓内部的内源性胶质细胞再生功能神经元的用途。除中枢神经系统外,体内重编程已在胰腺,心脏和肝脏中得到成功证明,并可在其他器官中采用。尽管将这项技术转化为临床疗法仍然存在挑战,但我们预计体内重编程可能会通过使用患者自己的内部细胞进行组织修复来彻底改变再生医学。

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