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Clearance Pathways and Tumor Targeting of Imaging Nanoparticles

机译:成像纳米粒子的清除途径和肿瘤靶向

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A basic understanding of how imaging nanoparticles are removed from the normal organs/tissues but retained in the tumors is important for their future clinical applications in early cancer diagnosis and therapy. In this review, we discuss current understandings of clearance pathways and tumor targeting of small-molecule- and inorganic-nanoparticle-based imaging probes with an emphasis on molecular nanoprobes, a class of inorganic nanoprobes that can escape reticuloendothelial system (RES) uptake and be rapidly eliminated from the normal tissues/organs via kidneys but can still passively target the tumor with high efficiency through the enhanced permeability permeability and retention (EPR) effect. The impact of nanoparticle design (size, shape, and surface chemistry) on their excretion, pharmacokinetics, and passive tumor targeting were quantitatively discussed. Synergetic integration of effective renal clearance and EPR effect offers a promising pathway to design low-toxicity and high-contrast-enhancement imaging nanoparticles that could meet with the clinical translational requirements of regulatory agencies.
机译:基本了解成像纳米颗粒如何从正常器官/组织中去除但保留在肿瘤中对于其在早期癌症诊断和治疗中的未来临床应用而言非常重要。在这篇综述中,我们讨论了目前对基于小分子和无机纳米颗粒的成像探针的清除途径和肿瘤靶向的了解,重点是分子纳米探针,一类可以逃避网状内皮系统(RES)吸收并被吸收的无机纳米探针。通过肾脏从正常组织/器官迅速清除,但仍可以通过增强的通透性和保留(EPR)效果以高效率被动地靶向肿瘤。定量讨论了纳米颗粒设计(尺寸,形状和表面化学)对其排泄,药代动力学和被动靶向肿瘤的影响。有效肾清除率和EPR效应的协同整合为设计可满足监管机构临床翻译要求的低毒性和高对比度成像纳米颗粒提供了有希望的途径。

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