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Micro/nano-bubble-assisted ultrasound to enhance the EPR effect and potential theranostic applications

机译:微/纳米泡泡辅助超声,以增强EPR效应和潜在的治疗方法

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Drug delivery for tumor theranostics involves the extensive use of the enhanced permeability and retention (EPR) effect. Previously, various types of nanomedicines have been demonstrated to accumulate in solid tumors via the EPR effect. However, EPR is a highly variable phenomenon because of tumor heterogeneity, resulting in low drug delivery efficacy in clinical trials. Because ultrasonication using micro/nanobubbles as contrast agents can disrupt blood vessels and enhance the specific delivery of drugs, it is an effective approach to improve the EPR effect for the passive targeting of tumors. In this review, the basic thermal effect, acoustic streaming, and cavitation mechanisms of ultrasound, which are characteristics that can be utilized to enhance the EPR effect, are briefly introduced. Second, micro/nanobubble-enhanced ultrasound imaging is discussed to understand the validity and variability of the EPR effect. Third, because the tumor microenvironment is complicated owing to elevated interstitial fluid pressure and the deregulated extracellular matrix components, which may be unfavorable for the EPR effect, few new trends in smart bubble drug delivery systems, which may improve the accuracy of EPR-mediated passive drug targeting, are summarized. Finally, the challenging and major concerns that should be considered in the next generation of micro/nanobubble-contrast-enhanced ultrasound theranostics for EPR-mediated passive drug targeting are also discussed.? The author(s).
机译:肿瘤治疗药物的药物递送涉及广泛使用增强的渗透率和保留(EPR)效应。以前,已经证明了各种类型的纳米丝胺通过EPR效应来证明在实体肿瘤中积聚。然而,由于肿瘤异质性,EPR是一种高度可变的现象,导致临床试验中的药物递送效率低。由于使用微/纳米泡的超声波作为造影剂可以破坏血管并增强药物的特定递送,因此是提高肿瘤被动靶向的EPR效应的有效方法。在本文中,简要介绍了超声波的基本热效应,声学流和空化机制,即可用于增强EPR效应的特性。其次,讨论了微/纳米柔臼增强的超声成像以了解EPR效应的有效性和可变性。第三,由于肿瘤微环境升高,由于间质液压升高和令人失调的细胞外基质组分,这可能是EPR效应的少量新趋势,这可能提高EPR介导的被动的准确性综述药物靶向。最后,还讨论了在下一代微/纳米博bble-对比增强的超声治疗用于EPR介导的被动药物靶向的挑战性和主要问题。?作者。

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