首页> 外文期刊>Microcirculation: The official journal of the Microcirculatory Society >Targeted therapeutic applications of acoustically active microspheres in the microcirculation.
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Targeted therapeutic applications of acoustically active microspheres in the microcirculation.

机译:声学活性微球在微循环中的靶向治疗应用。

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摘要

The targeted delivery of intravascular drugs and genes across the endothelial barrier with only minimal side effects remains a significant obstacle in establishing effective therapies for many pathological conditions. Recent investigations have shown that contrast agent microbubbles, which are typically used for image enhancement in diagnostic ultrasound, may also be promising tools in emergent, ultrasound-based therapies. Explorations of the bioeffects generated by ultrasound-microbubble interactions indicate that these phenomena may be exploited for clinical utility such as in the targeted revascularization of flow-deficient tissues. Moreover, development of this treatment modality may also include using ultrasound-microbubble interactions to deliver therapeutic material to tissues, and reporter genes and therapeutic agents have been successfully transferred from the microcirculation to tissue in various animal models of normal and pathological function. This article reviews the recent studies aimed at using interactions between ultrasound and contrast agent microbubbles in the microcirculation for therapeutic purposes. Furthermore, the authors present investigations involving microspheres that are of a different design compared to current microbubble contrast agents, yet are acoustically active and demonstrate potential as tools for targeted delivery. Future directions necessary to address current challenges and advance these techniques to clinical practicality are also discussed.
机译:跨血管内皮屏障靶向血管内药物和基因的靶向递送(仅具有最小的副作用)仍然是建立针对许多病理状况的有效疗法的重大障碍。最近的研究表明,通常用于诊断超声图像增强的造影剂微泡在新兴的基于超声的治疗中也可能是有前途的工具。对由超声-微气泡相互作用产生的生物效应的探索表明,这些现象可用于临床用途,例如在血流不足组织的靶向血运重建中。而且,这种治疗方式的发展还可以包括使用超声-微泡相互作用将治疗材料递送至组织,并且已经在正常和病理功能的各种动物模型中将报告基因和治疗剂成功地从微循环转移至组织。本文回顾了最近的研究,旨在利用超声与微循环中造影剂微泡之间的相互作用进行治疗。此外,作者提出的研究涉及与当前的微泡造影剂相比设计不同的微球,但它们具有声学活性,并证明了其作为靶向递送工具的潜力。还讨论了解决当前挑战并将这些技术提高到临床实用性所必需的未来方向。

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