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金属和聚合物纳米颗粒引起的内皮细胞渗漏的机制及后果概述

Overview of mechanism and consequences of endothelial leakiness caused by metal and polymeric nanoparticles.

作者信息

Lasak Magdalena, Ciepluch Karol

机构信息

Division of Medical Biology, Jan Kochanowski University in Kielce, Uniwersytecka Street 7, Kielce, Poland.

出版信息

Beilstein J Nanotechnol. 2023 Mar 8;14:329-338. doi: 10.3762/bjnano.14.28. eCollection 2023.

Abstract

Nanoparticles (NPs) exhibit unique physicochemical properties that enable them to overcome biological barriers and to be considered one of the best materials with anticancer properties. Most of the administered NPs that end up in the bloodstream interact with the endothelial layer. The interaction of the NPs with the endothelium widens the existing gaps or induces new ones in the monolayer of vascular endothelial cells, thus increasing the access to the target sites in the organism. This type of interaction can lead to NP-modulated endothelial leakiness (NanoEL). The most important factors determining NanoEL are the physicochemical properties of the NPs. NP-modulated endothelial leakiness can lead to the discovery of new therapeutic targets and strategies to improve drug delivery through controlling and regulating NanoEL. Nevertheless, the NanoEL mechanism also carries some limitations that result from an incomplete understanding of NP metabolism and toxicity, and the possibility of their participation in the unintended bidirectional vascular permeability, which may contribute to the formation of cancer metastases. In this review we are focusing on the effect of metal and polymeric NPs on mechanism and degree of induction of NanoEL, as well as on the benefits and risks of using NPs that induce endothelial leakiness.

摘要

纳米颗粒(NPs)具有独特的物理化学性质,使其能够克服生物屏障,被认为是具有抗癌特性的最佳材料之一。大多数进入血液循环的纳米颗粒会与内皮层相互作用。纳米颗粒与内皮细胞的相互作用会扩大现有的间隙或在血管内皮细胞单层中诱导新的间隙,从而增加对机体靶位点的可达性。这种类型的相互作用可导致纳米颗粒调节的内皮渗漏(NanoEL)。决定NanoEL的最重要因素是纳米颗粒的物理化学性质。纳米颗粒调节的内皮渗漏可通过控制和调节NanoEL,从而发现新的治疗靶点和改善药物递送的策略。然而,NanoEL机制也存在一些局限性,这是由于对纳米颗粒代谢和毒性的不完全理解,以及它们参与意外的双向血管通透性的可能性,这可能有助于癌症转移的形成。在这篇综述中,我们重点关注金属和聚合物纳米颗粒对NanoEL诱导机制和程度的影响,以及使用诱导内皮渗漏的纳米颗粒的益处和风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3dfa/10012047/8f7d04625f7e/Beilstein_J_Nanotechnol-14-329-g002.jpg

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