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Stem cells in neuroinjury and neurodegenerative disorders: challenges and future neurotherapeutic prospects

机译:神经损伤和神经退行性疾病中的干细胞:挑战和未来神经治疗的前景

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The prevalence of neurodegenerative diseases and neural injury disorders is increasing worldwide. Research is now focusing on improving current neurogenesis techniques including neural stem cell therapy and other biochemical drug-based approaches to ameliorate these disorders. Unfortunately, we are still facing many obstacles that are rendering current neurotherapies ineffective in clinical trials for reasons that are yet to be discovered. That is why we should start by fully understanding the complex mechanisms of neurogenesis and the factors that affect it, or else, all our suggested therapies would fail since they would not be targeting the essence of the neurological disorder but rather the symptoms. One possible paradigm shift is to switch from neuroprotectant therapies towards neurodegenerationeurorestorative approaches. In addition, other and our laboratories are increasingly focusing on combining the use of pharmacological agents (such as Rho-associated kinase (ROCK) inhibitors or other growth factors (such as brain-derived neurotrophic factor (BDNF)) and stem cell treatment to enhance the survivability and/or differentiation capacity of transplanted stem cells in neurotrauma or other neurodegeneration animal models. Ongoing stem cell research is surely on the verge of a breakthrough of multiple effective therapeutic options for neurodegenerative disorders. Once, we fully comprehend the process of neurogenesis and its components, we will fully be capable of manipulating and utilizing it. In this work, we discuss the current knowledge of neuroregenerative therapies and their associated challenges.
机译:在世界范围内,神经退行性疾病和神经损伤疾病的患病率正在上升。现在的研究重点是改善当前的神经发生技术,包括神经干细胞疗法和其他基于生物化学药物的方法来改善这些疾病。不幸的是,由于尚未发现的原因,我们仍然面临许多障碍,这些障碍使当前的神经疗法在临床试验中失效。这就是为什么我们应该首先全面了解神经发生的复杂机制和影响神经发生的因素,否则,我们所有建议的治疗都将失败,因为它们的目标不是神经系统疾病的实质而是症状。一种可能的模式转变是从神经保护剂治疗转向神经退行性/神经修复方法。此外,其他实验室和我们的实验室越来越注重结合使用药理学试剂(例如Rho相关激酶(ROCK)抑制剂或其他生长因子(例如脑源性神经营养因子(BDNF)))和干细胞治疗来增强移植的干细胞在神经创伤或其他神经退行性动物模型中的生存​​能力和/或分化能力。正在进行的干细胞研究必将在神经退行性疾病的多种有效治疗方案的突破之际。一次,我们充分理解了神经发生和分化的过程在我们的工作中,我们将讨论神经再生疗法及其相关挑战的最新知识。

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