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Tissue plasminogen activator-based nanothrombolysis for ischemic stroke

机译:基于组织纤溶酶原激活剂的缺血性卒中纳米罗米栓塞

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摘要

Introduction: Thrombolysis with intravenous tissue plasminogen activator (tPA) is the only FDA approved treatment for patients with acute ischemic stroke, but its use is limited by narrow therapeutic window, selective efficacy, and hemorrhagic complication. In the past two decades, extensive efforts have been undertaken to extend its therapeutic time window and explore alternative thrombolytic agents, but both show little progress. Nanotechnology has emerged as a promising strategy to improve the efficacy and safety of tPA. Areas covered: We reviewed the biology, thrombolytic mechanism, and pleiotropic functions of tPA in the brain and discussed current applications of various nanocarriers intended for the delivery of tPA for treatment of ischemic stroke. Current challenges and potential further directions of t-PA-based nanothrombolysis in stroke therapy are also discussed. Expert opinion: Using nanocarriers to deliver tPA offers many advantages to enhance the efficacy and safety of tPA therapy. Further research is needed to characterize the physicochemical characteristics and in vivo behavior of tPA-loaded nanocarriers. Combination of tPA based nanothrombolysis and neuroprotec-tion represents a promising treatment strategy for acute ischemic stroke. Theranostic nanocarriers co-delivered with tPA and imaging agents are also promising for future stroke management.
机译:简介:静脉内组织纤溶酶原激活剂(TPA)的溶栓是急性缺血性卒中患者的唯一FDA批准治疗,但其使用受到窄治疗窗口,选择性疗效和出血性并发症的限制。在过去的二十年中,已经进行了广泛的努力,以扩展其治疗时间窗口并探索替代血栓溶解剂,但两者都表现出很少的进展。纳米技术作为提高TPA的疗效和安全性的有希望的策略。所涵盖的地区:我们审查了大脑中TPA的生物学,溶栓机制和磷酸术功能,并讨论了用于递送TPA以治疗缺血性卒中的各种纳米载体的目前应用。还讨论了当前挑战和潜在的卒中治疗中T-PA纳米罗米栓塞的进一步方向。专家意见:使用纳米载波提供TPA,提供了提高TPA治疗的疗效和安全性的许多优点。需要进一步的研究来表征TPA负载纳米载体的物理化学特征和体内行为。基于TPA的纳米罗米栓塞和神经治疗中的组合代表了急性缺血性卒中的有希望的治疗策略。随着TPA和成像剂共同交付的治疗纳米载体也对未来的行程管理也有望。

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