Thyroid cancer cells in space during the TEXUS-53 sounding rocket mission - The THYROID Project

TEXUS-53 探空火箭任务期间太空中的甲状腺癌细胞 - 甲状腺项目

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作者:Sascha Kopp, Marcus Krüger, Stefan Feldmann, Hergen Oltmann, Andreas Schütte, Burkhard Schmitz, Johann Bauer, Herbert Schulz, Kathrin Saar, Norbert Huebner, Markus Wehland, Mohamed Zakaria Nassef, Daniela Melnik, Stefan Meltendorf, Manfred Infanger, Daniela Grimm

Abstract

Human follicular thyroid cancer cells (FTC-133) were sent to space via a sounding rocket during the TEXUS-53 mission to determine the impact of short-term microgravity on these cells. To enable cell culture and fixation in real microgravity, an automated experiment container (EC) was constructed. In order to ensure safe cell culture, cell-chambers consisting of polycarbonate (PC) material were used. They were highly biocompatible as proved by measuring cell survival using Annexin V flow cytometry. In the follow-up experiment, FTC-133 cells were sent to space via a sounding rocket and were fixed before and after the microgravity (µg) phase with RNAlater. In addition, cells were tested for reactions on hypergravity (hyper-g) as much as 18 g to determine whether worst case acceleration during launch can have an influence on the cells. We investigated genes belonging to biological processes such as cytoskeleton, cell adhesion, tumor growth, angiogenesis and apoptosis. Pathway analyses revealed central functions of VEGFA and EGF. EGF upregulates aspartate beta-hydroxylase (ASPH) which is influencing CASP3. Hyper-g induced a significant up-regulation of TUBB1, VIM, RDX, CAV1, VEGFA and BCL2. FTC-133 cells grown in an automated EC exposed to µg revealed moderate gene expression changes indicating their survival in orbit.

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