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微制造免疫隔离生物胶囊

Microfabricated immunoisolating biocapsules.

作者信息

Desai T A, Chu W H, Tu J K, Beattie G M, Hayek A, Ferrari M

机构信息

Biomedical Microdevices Center, University of California, Berkeley, California 94720, USA.

出版信息

Biotechnol Bioeng. 1998 Jan 5;57(1):118-20. doi: 10.1002/(sici)1097-0290(19980105)57:1<118::aid-bit14>3.0.co;2-g.

Abstract

A microfabricated silicon-based biocapsule for the immunoisolation of cell transplants is presented. The biocapsule-forming process employs bulk micromachining to define cell-containing chambers within single crystalline silicon wafers. These chambers interface with the surrounding biological environment through polycrystalline silicon filter membranes. The membranes are surface micromachined to present a high density of uniform pores, thus affording sufficient permeability to oxygen, glucose, and insulin. The pore dimensions, as small as 20 nm, are designed to impede the passage of immune molecules and graft-borne viruses. The underlying filter-membrane nanotechnology has been successfully applied in controlled cell culture systems (Ferrari et al., 1995), and is under study for viral elimination in plasma fractionation protocols. Here we report the encouraging results of in vitro experiments investigating the biocompatibility of the microfabricated biocapsule, and demonstrate that encapsulated rat neonatal pancreatic islets significantly outlive and outperform controls in terms of insulin-secretion capability over periods of several weeks. These results appear to warrant further investigations on the potential of cell xenografts encapsulated within microfabricated, immunoisolating environments for the treatment of insulin-dependent diabetes.

摘要

本文介绍了一种用于细胞移植免疫隔离的微加工硅基生物胶囊。生物胶囊的形成过程采用体微加工技术在单晶硅晶圆内定义含细胞腔室。这些腔室通过多晶硅滤膜与周围的生物环境相连。滤膜通过表面微加工呈现出高密度的均匀孔隙,从而为氧气、葡萄糖和胰岛素提供足够的渗透性。孔隙尺寸小至20纳米,旨在阻止免疫分子和移植携带病毒的通过。基础的滤膜纳米技术已成功应用于可控细胞培养系统(法拉利等人,1995年),并且正在血浆分级分离方案中用于病毒清除的研究。在此,我们报告了关于微加工生物胶囊生物相容性的体外实验的令人鼓舞的结果,并证明在数周时间内,封装的大鼠新生胰岛在胰岛素分泌能力方面显著比对照组存活时间更长且表现更优。这些结果似乎有必要进一步研究在微加工的免疫隔离环境中封装细胞异种移植物治疗胰岛素依赖型糖尿病的潜力。

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