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纳米载体递送脑活素联合间充质干细胞减轻脑爆震伤后热应激引起的神经病理学恶化。

Nanowired Delivery of Cerebrolysin with Mesenchymal Stem Cells Attenuates Heat Stress-Induced Exacerbation of Neuropathology Following Brain Blast Injury.

机构信息

Department of Clinical Neurosciences, University of Medicine & Pharmacy, Cluj-Napoca, Romania.

"RoNeuro" Institute for Neurological Research and Diagnostic, Cluj-Napoca, Romania.

出版信息

Adv Neurobiol. 2023;32:231-270. doi: 10.1007/978-3-031-32997-5_6.

Abstract

Blast brain injury (bBI) following explosive detonations in warfare is one of the prominent causes of multidimensional insults to the central nervous and other vital organs injury. Several military personnel suffered from bBI during the Middle East conflict at hot environment. The bBI largely occurs due to pressure waves, generation of heat together with release of shrapnel and gun powders explosion with penetrating and/or impact head trauma causing multiple brain damage. As a result, bBI-induced secondary injury causes breakdown of the blood-brain barrier (BBB) and edema formation that further results in neuronal, glial and axonal injuries. Previously, we reported endocrine imbalance and influence of diabetes on bBI-induced brain pathology that was significantly attenuated by nanowired delivery of cerebrolysin in model experiments. Cerebrolysin is a balanced composition of several neurotrophic factors, and active peptide fragment is capable of neuroprotection in several neurological insults. Exposure to heat stress alone causes BBB damage, edema formation and brain pathology. Thus, it is quite likely that hot environment further exacerbates the consequences of bBI. Thus, novel therapeutic strategies using nanodelivery of stem cell and cerebrolysin may further enhance superior neuroprotection in bBI at hot environment. Our observations are the first to show that combined nanowired delivery of mesenchymal stem cells (MSCs) and cerebrolysin significantly attenuated exacerbation of bBI in hot environment and induced superior neuroprotection, not reported earlier. The possible mechanisms of neuroprotection with MSCs and cerebrolysin in bBI are discussed in the light of current literature.

摘要

爆炸引起的脑外伤(bBI)是战争中中枢神经系统和其他重要器官损伤的主要原因之一。在中东冲突期间,一些军事人员在炎热的环境中遭受了 bBI。bBI 主要是由于压力波、产生的热量以及弹片和火药爆炸释放引起的穿透性和/或撞击性头部创伤,导致多处脑损伤。结果,bBI 引起的继发性损伤导致血脑屏障(BBB)破裂和水肿形成,进一步导致神经元、神经胶质和轴突损伤。以前,我们报道了内分泌失衡和糖尿病对 bBI 诱导的脑病理学的影响,在模型实验中,脑活素的纳米传递显著减轻了这种影响。脑活素是几种神经营养因子的平衡组成,其活性肽片段在几种神经损伤中具有神经保护作用。单独暴露于热应激会导致 BBB 损伤、水肿形成和脑病理学。因此,炎热的环境很可能进一步加剧 bBI 的后果。因此,使用干细胞和脑活素的纳米传递的新治疗策略可能会在炎热的环境中进一步增强 bBI 的卓越神经保护作用。我们的观察结果是首次表明,间充质干细胞(MSCs)和脑活素的联合纳米传递显著减轻了 bBI 在炎热环境中的恶化,并诱导了卓越的神经保护作用,这是以前没有报道过的。根据当前文献,讨论了 MSCs 和脑活素在 bBI 中神经保护的可能机制。

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