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The effect of multistage nanovector targeting of VEGFR2 positive tumor endothelia on cell adhesion and local payload accumulation

机译:靶向VEGFR2阳性肿瘤内皮细胞的多阶段纳米载体对细胞粘附和局部有效载荷积累的影响

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摘要

Nanovectors are a viable solution to the formulation of poorly soluble anticancer drugs. Their bioaccumulation in the tumor parenchyma is mainly achieved exploiting the enhanced permeability and retention (EPR) effect of the leaky neovasculature. In this paper we demonstrate that multistage nanovectors (MSV) exhibit rapid tumoritropic homing independent of EPR, relying on particle geometry and surface adhesion. By studying endothelial cells overexpressing vascular endothelial growth factor receptor-2 (VEGFR2), we developed MSV able to preferentially target VEGFR2 expressing tumor-associated vessels. Static and dynamic targeting revealed that MSV conjugated with anti-VEGFR2 antibodies displayed greater than a 4-fold increase in targeting efficiency towards VEGFR2 expressing cells while exhibiting minimal adherence to control cells. Additionally, VEGFR2 conjugation bestowed MSV with a significant increase in breast tumor targeting and in the delivery of a model payload while decreasing their accumulation in the liver. Surface functionalization with an anti-VEGFR2 antibody provided enhanced affinity towards the tumor vascular endothelium, which promoted enhanced adhesion and tumoritropic accumulation of a reporter molecule released by the MSV.
机译:纳米载体是配制难溶性抗癌药物的可行解决方案。它们在肿瘤实质中的生物蓄积主要是通过利用渗漏的新脉管系统增强的通透性和保留(EPR)效应来实现的。在本文中,我们证明了多级纳米载体(MSV)依赖于粒子的几何形状和表面粘附性,表现出独立于EPR的快速促肿瘤归巢。通过研究过表达血管内皮生长因子受体2(VEGFR2)的内皮细胞,我们开发了能够优先靶向表达VEGFR2的肿瘤相关血管的MSV。静态和动态靶向显示,与抗VEGFR2抗体缀合的MSV对表达VEGFR2的细胞的靶向效率显示出大于4倍的增加,而对对照细胞的粘附却最小。此外,VEGFR2结合赋予MSV显着增加的乳腺癌靶向性和模型有效载荷的传递,同时减少了它们在肝脏中的积累。用抗VEGFR2抗体进行表面功能化可增强对肿瘤血管内皮的亲和力,从而促进MSV释放的报告分子的粘附性和促肿瘤性积累。

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