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Regenerative Medicine Therapies for Targeting Neuroinflammation After Stroke

机译:靶向中风后神经炎症的再生医学疗法

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摘要

Inflammation is a major pathological event following ischemic stroke that contributes to secondary brain tissue damage leading to poor functional recovery. Following the initial ischemic insult, post-stroke inflammatory damage is driven by initiation of a central and peripheral innate immune response and disruption of the blood-brain barrier (BBB), both of which are triggered by the release of pro-inflammatory cytokines and infiltration of circulating immune cells. Stroke therapies are limited to early cerebral blood flow reperfusion, and whilst current strategies aim at targeting neurodegeneration and/or neuroinflammation, innovative research in the field of regenerative medicine aims at developing effective treatments that target both the acute and chronic phase of inflammation. Anti-inflammatory regenerative strategies include the use of nanoparticles and hydrogels, proposed as therapeutic agents and as a delivery vehicle for encapsulated therapeutic biological factors, anti-inflammatory drugs, stem cells, and gene therapies. Biomaterial strategies—through nanoparticles and hydrogels—enable the administration of treatments that can more effectively cross the BBB when injected systemically, can be injected directly into the brain, and can be 3D-bioprinted to create bespoke implants within the site of ischemic injury. In this review, these emerging regenerative and anti-inflammatory approaches will be discussed in relation to ischemic stroke, with a perspective on the future of stroke therapies.
机译:炎症是缺血性中风后的主要病理事件,导致继发性脑组织损伤,导致功能恢复不良。初始缺血性损伤后,中枢和外周先天免疫反应的启动和血脑屏障(BBB)的破坏会驱动中风后炎症损害,这两者均由促炎性细胞因子的释放和浸润触发循环免疫细胞中风疗法仅限于早期脑血流再灌注,尽管当前的策略旨在针对神经退行性疾病和/或神经炎症,但再生医学领域的创新研究旨在开发针对炎症的急性和慢性阶段的有效治疗方法。抗炎再生策略包括使用纳米颗粒和水凝胶,它们被提议作为治疗剂和封装的治疗性生物因子,抗炎药,干细胞和基因疗法的传递载体。生物材料策略(通过纳米颗粒和水凝胶)可实现全身性注射时可以更有效地穿过血脑屏障的治疗,可以直接注射到大脑中,并可以进行3D生物打印以在缺血性损伤部位创建定制的植入物。在这篇综述中,将针对缺血性中风讨论这些新兴的再生和抗炎方法,并展望中风疗法的未来。

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