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Sonosensitive MRI Nanosystems as Cancer Theranostics: A Recent Update

机译:声纳磁共振成像纳米系统作为癌症治疗学:最近的更新

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摘要

In the tireless search for innovative and more efficient cancer therapies, sonosensitive Magnetic Resonance Imaging (MRI) agents play an important role. Basically, these systems consist of nano/microvesicles composed by a biocompatible membrane, responsive to ultrasound-induced thermal or mechanical effects, and an aqueous core, filled up with a MRI detectable probe and a therapeutic agent. They offer the possibility to trigger and monitor in real time drug release in a spatio-temporal domain, with the expectation to predict the therapeutic outcome. In this review, the key items to design sonosensitive MRI agents will be examined and an overview on the different approaches available so far will be given. Due to the extremely wide range of adopted ultrasound settings and formulations conceived, it is hard to compare the numerous preclinical studies reported. However, in general, a significantly better therapeutic outcome was noticed when exploiting ultrasound triggered drug release in comparison to traditional therapies, thus paving the way to the possible clinical translation of optimized sonosensitive MRI agents.
机译:在不懈地寻求创新和更有效的癌症治疗方法中,声波敏感的磁共振成像(MRI)剂起着重要的作用。基本上,这些系统由纳米/微囊泡组成,纳米囊泡由对超声诱导的热或机械效应有反应的生物相容性膜和填充有MRI可检测探针和治疗剂的水核心组成。它们提供了在时空范围内实时触发和监测药物释放的可能性,并有望预测治疗结果。在这篇综述中,将对设计声波敏感MRI试剂的关键项目进行检查,并对目前可用的不同方法进行概述。由于所采用的超声设置和配方范围非常广泛,因此很难比较报道的众多临床前研究。然而,总的来说,与传统疗法相比,在利用超声触发药物释放时,注意到了明显更好的治疗结果,从而为优化的声敏MRI试剂的临床翻译铺平了道路。

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