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微机械接口:细胞免疫隔离和生物分子分离的新方法。

Micromachined interfaces: new approaches in cell immunoisolation and biomolecular separation.

作者信息

Desai T A, Hansford D J, Ferrari M

机构信息

Department of Bioengineering, College of Engineering, University of Illinois at Chicago, 60607-7052, USA.

出版信息

Biomol Eng. 2000 Oct;17(1):23-36. doi: 10.1016/s1389-0344(00)00063-0.

Abstract

As a novel therapeutic application of microfabrication technology, a micromachined membrane-based biocapsule is described for the transplantation of protein-secreting cells without the need for immunosuppression. This new approach to cell encapsulation is based on microfabrication technology whereby immunoisolation membranes are bulk and surface micromachined to present uniform and well-controlled pore sizes as small as 10 nm, tailored surface chemistries, and precise microarchitecture. Through its ability to achieve highly controlled microarchitectures on size scales relevant to living systems (from microm to nm), microfabrication technology offers unique opportunities to more precisely engineer biocapsules that allow free exchange of the nutrients, waste products, and secreted therapeutic proteins between the host (patient) and implanted cells, but exclude lymphocytes and antibodies that may attack foreign cells. Microfabricated inorganic encapsulation devices may provide biocompatibility, in vivo chemical and mechanical stability, tailored pore geometries, and superior immunoisolation for encapsulated cells over conventional encapsulation approaches. By using microfabrication techniques, structures can be fabricated with spatial features from the sub-micron range up to several millimeters. These multi-scale structures correspond well with hierarchical biological structures, from proteins and sub-cellular organelles to the tissue and organ levels.

摘要

作为微制造技术的一种新型治疗应用,本文描述了一种基于微机械加工膜的生物胶囊,用于分泌蛋白质细胞的移植,无需免疫抑制。这种细胞封装的新方法基于微制造技术,通过体微加工和表面微加工制备免疫隔离膜,使其具有均匀且可控的孔径,小至10纳米,同时具备定制的表面化学性质和精确的微结构。微制造技术能够在与生命系统相关的尺寸尺度(从微米到纳米)上实现高度可控的微结构,从而为更精确地设计生物胶囊提供了独特的机会。这种生物胶囊允许营养物质、代谢废物和分泌的治疗性蛋白质在宿主(患者)和植入细胞之间自由交换,但排除可能攻击外来细胞的淋巴细胞和抗体。与传统封装方法相比,微制造的无机封装装置可为封装细胞提供生物相容性、体内化学和机械稳定性、定制的孔几何形状以及卓越的免疫隔离性能。通过使用微制造技术,可以制造出具有从亚微米范围到几毫米空间特征的结构。这些多尺度结构与从蛋白质和亚细胞器到组织和器官水平的分层生物结构非常吻合。

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