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Current Approaches and Future Perspectives for Nanobodies in Stroke Diagnostic and Therapy

机译:中风诊断和治疗中纳米抗体的当前方法和未来展望

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摘要

Antibody-based biologics are the corner stone of modern immunomodulatory therapy. Though highly effective in dampening systemic inflammatory processes, their large size and Fc-fragment mediated effects hamper crossing of the blood brain barrier (BBB). Nanobodies (Nbs) are single domain antibodies derived from llama or shark heavy-chain antibodies and represent a new generation of biologics. Due to their small size, they display excellent tissue penetration capacities and can be easily modified to adjust their vivo half-life for short-term diagnostic or long-term therapeutic purposes or to facilitate crossing of the BBB. Furthermore, owing to their characteristic binding mode, they are capable of antagonizing receptors involved in immune signaling and of neutralizing proinflammatory mediators, such as cytokines. These qualities combined make Nbs well-suited for down-modulating neuroinflammatory processes that occur in the context of brain ischemia. In this review, we summarize recent findings on Nbs in preclinical stroke models and how they can be used as diagnostic and therapeutic reagents. We further provide a perspective on the design of innovative Nb-based treatment protocols to complement and improve stroke therapy.
机译:基于抗体的生物制剂是现代免疫调节疗法的基石。尽管在抑制全身性炎症过程中非常有效,但它们的大尺寸和Fc片段介导的作用阻碍了血脑屏障(BBB)的穿越。纳米抗体(Nbs)是衍生自美洲驼或鲨鱼重链抗体的单域抗体,代表了新一代生物制剂。由于它们的体积小,它们显示出出色的组织穿透能力,并且可以很容易地对其进行修饰以调整它们的体内半衰期,以用于短期诊断或长期治疗或促进血脑屏障的穿越。此外,由于其特征性的结合方式,它们能够拮抗参与免疫信号传导的受体并能够中和促炎介质,例如细胞因子。这些品质的结合使Nb非常适合于下调在脑缺血情况下发生的神经炎症过程。在这篇综述中,我们总结了临床前卒中模型中有关Nb的最新发现,以及它们如何用作诊断和治疗试剂。我们进一步提供了基于Nb的创新治疗方案设计的观点,以补充和改善卒中治疗。

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