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Magnetically Targeted Delivery of Therapeutic Agents to Injured Blood Vessels for Prevention of In-Stent Stenosis

机译:磁靶向治疗药向受伤血管的输送以预防支架内狭窄

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摘要

Magnetic guidance is a physical targeting strategy with the potential to improve the safety and efficacy of a variety of therapeutic agents — including small-molecule pharmaceuticals, proteins, gene vectors, and cells — by enabling their site-specific delivery. The application of magnetic targeting for in-stent restenosis can address the need for safer and more efficient treatment strategies. However, its translation to humans may not be possible without revising the traditional magnetic targeting scheme, which is limited by its inability to selectively guide therapeutic agents to deep localized targets. An alternative two-source strategy can be realized through the use of uniform, deep-penetrating magnetic fields in conjunction with vascular stents included as part of the magnetic setup and the platform for targeted delivery to injured arteries. Studies showing the feasibility of this novel targeting strategy in in-stent restenosis models and considerations in the design of carrier formulations for magnetically guided antirestenotic therapy are discussed in this review.
机译:磁引导是一种物理靶向策略,有望通过实现特定部位的递送来提高各种治疗剂(包括小分子药物,蛋白质,基因载体和细胞)的安全性和功效。磁性靶向治疗支架内再狭窄可以满足对更安全,更有效的治疗策略的需求。但是,如果不修改传统的磁性靶向方案,可能无法将其翻译为人类,这受其无法选择性地将治疗剂导向深部定位目标的限制。通过使用均匀的深穿透磁场以及包括在磁性装置和目标输送到受伤动脉的平台中的血管支架,可以实现另一种两源策略。在这篇综述中讨论了研究,该研究显示了这种新型靶向策略在支架内再狭窄模型中的可行性以及在设计用于磁性引导的抗再狭窄疗法的载体制剂时应考虑的因素。

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