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利用神经分化剂和工程化肽水凝胶从间充质干细胞生成功能性神经元:创伤性脑损伤的潜在治疗性先导。

Generation of Functional Neurons from Mesenchymal Stem Cells Using Neural Differentiator and Engineered Peptide Hydrogel: Potential Therapeutic Lead for Traumatic Brain Injury.

机构信息

Smart Healthcare, Interdisciplinary Research Platform, Indian Institute of Technology, Jodhpur 342030, Rajasthan, India.

Department of Bioscience & Bioengineering, Indian Institute of Technology, Jodhpur 342030, Rajasthan, India.

出版信息

ACS Appl Mater Interfaces. 2024 Nov 27;16(47):64476-64493. doi: 10.1021/acsami.4c12554. Epub 2024 Nov 18.

Abstract

Traumatic brain injuries (TBIs) cause multifaceted disruption in the neural network, initiate huge inflammation processes, and form glial scars that result in severe damage to the brain. Thus, the treatment of TBI is a challenging task. To address this challenge, a newer and innovative approach is extremely important to develop a successful therapeutic strategy. Toward this aim, we hereby report an extremely effective therapeutic strategy. This interesting approach showcased the development and validation of a combination therapy comprising a neuro-regenerative protective peptide hydrogel (SLNAP) and a potent neuro-regenerative chemical modulator (NCM). It is noteworthy to mention that this hydrogel formulation has injectable nature, which allows it to be applied at focal injury site of brain. Remarkably, our results reveal excellent transdifferentiation of human umbilical cord-derived mesenchymal stem cells (hMSCs) into functional neuron upon treatment with this combination therapeutic formulation. The functionality of regenerated neurons was thoroughly checked through observation of active signals generated from those neurons in electrophysiology recording using patch clamp. Further, we also observed that this strategy not only successfully converts hMSCs into neuron but also spontaneously formed neural stem cells (NSCs) like neurosphere. This work also showcased that this multidomain self-assembling peptide hydrogel emerges as an attractive soft-biomaterial due to its capability of slow and sustained release of the drug at the injury site upon topical application. This resulted in significant regeneration of functional neuron at the injury site. Fascinatingly, we found that this combination therapeutic strategy is highly effective in brain injury model establishing that this could be a potential and highly effective therapeutic strategy for TBI.

摘要

外伤性脑损伤 (TBI) 会导致神经网络的多方面破坏,引发巨大的炎症反应,并形成胶质瘢痕,从而对大脑造成严重损伤。因此,TBI 的治疗是一项具有挑战性的任务。为了应对这一挑战,开发一种新颖的方法对于制定成功的治疗策略至关重要。为此,我们在此报告一种非常有效的治疗策略。这种有趣的方法展示了一种组合治疗的开发和验证,该组合治疗包括神经再生保护肽水凝胶 (SLNAP) 和一种有效的神经再生化学调节剂 (NCM)。值得一提的是,这种水凝胶制剂具有可注射性,使其可以应用于大脑的焦点损伤部位。值得注意的是,我们的研究结果显示,在这种组合治疗制剂的作用下,人脐带间充质干细胞 (hMSC) 可以极好地向功能性神经元转分化。通过使用膜片钳在电生理学记录中观察这些神经元产生的活性信号,对再生神经元的功能进行了全面检查。此外,我们还观察到,这种策略不仅能成功地将 hMSC 转化为神经元,而且能自发地形成类似神经球的神经干细胞 (NSC)。这项工作还表明,这种多域自组装肽水凝胶由于其在局部应用时能够在损伤部位缓慢且持续释放药物,因此成为一种有吸引力的软生物材料。这导致了损伤部位功能性神经元的显著再生。有趣的是,我们发现这种组合治疗策略在脑损伤模型中非常有效,这表明它可能是 TBI 的一种潜在且非常有效的治疗策略。

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