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内皮纳米颗粒结合动力学与基质和大小有关。

Endothelial nanoparticle binding kinetics are matrix and size dependent.

机构信息

Cellular and Molecular Bioengineering Research Laboratory, University of Calgary, Calgary, Canada.

出版信息

Biotechnol Bioeng. 2011 Dec;108(12):2988-98. doi: 10.1002/bit.23253. Epub 2011 Jul 19.

Abstract

Nanoparticles are increasingly important in medical research for application to areas such as drug delivery and imaging. Understanding the interactions of nanoparticles with cells in physiologically relevant environments is vital for their acceptance, and cell-particle interactions likely vary based on the design of the particle including its size, shape, and surface chemistry. For this reason, the kinetic interactions of fluorescent nanoparticles of sizes 20, 100, 200, and 500 nm with human umbilical vein endothelial cells (HUVEC) were determined by (1) measuring nanoparticles per cell at 37 and 4°C (to inhibit endocytosis) and (2) modeling experimental particle uptake data with equations describing particle attachment, detachment, and internalization. Additionally, the influence of cell substrate compliance on nanoparticle attachment and uptake was investigated. Results show that the number of binding sites per cell decreased with increasing nanoparticle size, while the attachment coefficient increased. By comparing HUVEC grown on either a thin coating of collagen or on top of three-dimensional collagen hydrogel, nanoparticle attachment and internalization were shown to be influenced significantly by the substrate on which the cells are cultured. This study concludes that both particle size and cell culture substrate compliance appreciably influence the binding of nanoparticles; important factors in translating in vitro studies of nanoparticle interactions to in vivo studies focused on therapeutic or diagnostic applications.

摘要

纳米粒子在医学研究中越来越重要,可应用于药物输送和成像等领域。了解纳米粒子在生理相关环境中与细胞的相互作用对于它们的应用至关重要,而细胞-粒子相互作用可能因粒子的设计而有所不同,包括其大小、形状和表面化学性质。出于这个原因,通过以下方法确定了尺寸为 20、100、200 和 500nm 的荧光纳米粒子与人体脐静脉内皮细胞(HUVEC)之间的动力学相互作用:(1)在 37°C 和 4°C 下测量每个细胞中的纳米粒子数量(以抑制内吞作用);(2)用描述粒子附着、脱离和内化的方程来模拟实验粒子摄取数据。此外,还研究了细胞基质顺应性对纳米粒子附着和摄取的影响。结果表明,每个细胞的结合位点数量随纳米粒子尺寸的增加而减少,而附着系数增加。通过比较在薄胶原蛋白涂层上或在三维胶原蛋白水凝胶上生长的 HUVEC,表明纳米粒子的附着和内化明显受到细胞培养的基质的影响。本研究得出的结论是,粒子尺寸和细胞培养基质顺应性都显著影响纳米粒子的结合;这是将纳米粒子相互作用的体外研究转化为关注治疗或诊断应用的体内研究的重要因素。

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