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纳米多孔胶原多层膜中人工肾小球基底膜的通透选择性复制

Permselectivity Replication of Artificial Glomerular Basement Membranes in Nanoporous Collagen Multilayers.

作者信息

Pullela Srinivasa R, Andres Christine, Chen Wei, Xu Chuanlai, Wang Libing, Kotov Nicholas A

机构信息

Department of Chemical Engineering, The University of Michigan, Ann Arbor, MI 48109-2136.

出版信息

J Phys Chem Lett. 2011 Dec;2(16):2067-2072. doi: 10.1021/jz200880c.

Abstract

Basement membranes (BMs) play important roles in many biological functions such as tissue regeneration, cancer proliferation, nutrient/drug delivery, breathing, and many others. While there are many theoretical models, adequate experimental analogs of BMs describing basic physicochemical properties of BM, such as diffusion and permselectivity are not available. Taking BMs found in glomerulus of kidneys as an example, adequate reproduction of their permselectivity requires biomimetic membranes with submicron thickness, high uniformity, nanoscale porosity, and size-selective permeability. Artificial kidney BMs were assembled from poly(acrylic acid) and collagen using layer-by-layer (LBL) assembly technology and display multiple structural similarities with glomerular BMs. Diffusional transport through the artificial BMs faithfully replicate cut-off parameters of kidney membranes. Their utilization in understanding of unique diffusion processes in kidneys, in vitro studies of blood clearance time of small drugs/nanoscale drug carriers and design of more complex organoids including live cells for cancer proliferation studies is anticipated.

摘要

基底膜(BMs)在许多生物学功能中发挥着重要作用,如组织再生、癌症增殖、营养物质/药物递送、呼吸等。虽然有许多理论模型,但目前尚无足够的能够描述BM基本物理化学性质(如扩散和渗透选择性)的BM实验模拟物。以肾脏肾小球中的BM为例,要充分再现其渗透选择性,需要具有亚微米厚度、高均匀性、纳米级孔隙率和尺寸选择性渗透性的仿生膜。人工肾BM是利用层层(LBL)组装技术由聚丙烯酸和胶原蛋白组装而成的,与肾小球BM具有多种结构相似性。通过人工BM的扩散传输忠实地复制了肾膜的截留参数。预计它们可用于理解肾脏中独特的扩散过程、体外研究小药物/纳米级药物载体的血液清除时间以及设计更复杂的类器官(包括用于癌症增殖研究的活细胞)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba36/3243758/42eaf4f1cf94/nihms315444f1.jpg

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