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太空生物反应器中的微技术。

Microtechnology in space bioreactors.

作者信息

Walther I, van der Schoot B, Boillat M, Muller O, Cogoli A

机构信息

Space Biology Group ETH-Technopark, Zurich.

出版信息

Chimia (Aarau). 1999 Mar;53(3):75-80.

Abstract

Space biology is a young and rapidly developing discipline comprising basic research and biotechnology. In the next decades it will play a prominent role in the International Space Station (ISS). Therefore, there is an increasing demand for sophisticated instrumentation to satisfy the requirements of the future projects in space biology. Bioreactors will be needed to supply fresh living material (cells and tissues) either to study still obscure basic biological mechanisms or to develop profitable bioprocesses which will take advantage of the peculiar microgravity conditions. Since more than twenty years, the Space Biology Group of the ETHZ is carrying out research projects in space (Space Shuttle/Spacelab, MIR Station, satellites, and sounding rockets) that involve also the development of space-qualified instrumentation. In the last ten years we have developed, in collaboration with Mecanex SA, Nyon, and the Institute of Microtechnology of the University of Neuchatel, a space bioreactor for the continuous culture of yeast cells under controlled conditions. Sensors, pH control, nutrients pump and fluid flowmeter are based on state-of-the-art silicon technology. After two successful space flights, a further improved version is presently prepared for a flight in the year 2000.

摘要

空间生物学是一门年轻且发展迅速的学科,涵盖基础研究和生物技术。在未来几十年里,它将在国际空间站(ISS)中发挥重要作用。因此,对精密仪器的需求日益增加,以满足未来空间生物学项目的要求。需要生物反应器来提供新鲜的活体材料(细胞和组织),以便研究仍不明朗的基本生物学机制,或开发利用特殊微重力条件的盈利性生物工艺。二十多年来,瑞士联邦理工学院的空间生物学小组一直在太空开展研究项目(航天飞机/太空实验室、和平号空间站、卫星和探空火箭),其中也包括开发符合太空要求的仪器。在过去十年里,我们与尼翁的Mecanex SA公司以及纳沙泰尔大学微技术研究所合作,开发了一种用于在受控条件下连续培养酵母细胞的太空生物反应器。传感器、pH值控制、营养物质泵和流体流量计均基于最先进的硅技术。经过两次成功的太空飞行后,目前正在准备一个进一步改进的版本,以便在2000年进行飞行。

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