通过小鼠表型研究对 JAXA 小鼠栖息地笼单元进行地面评估。

Jikken dobutsu. Experimental animals Pub Date : 2016-05-20 Epub Date: 2016-01-28 DOI:10.1538/expanim.15-0077
Miki Shimbo, Takashi Kudo, Michito Hamada, Hyojung Jeon, Yuki Imamura, Keigo Asano, Risa Okada, Yuki Tsunakawa, Seiya Mizuno, Ken-Ichi Yagami, Chihiro Ishikawa, Haiyan Li, Takashi Shiga, Junji Ishida, Juri Hamada, Kazuya Murata, Tomohiro Ishimaru, Misuzu Hashimoto, Akiyoshi Fukamizu, Mutsumi Yamane, Masahito Ikawa, Hironobu Morita, Masahiro Shinohara, Hiroshi Asahara, Taishin Akiyama, Nobuko Akiyama, Hiroki Sasanuma, Nobuaki Yoshida, Rui Zhou, Ying-Ying Wang, Taito Ito, Yuko Kokubu, Taka-Aki K Noguchi, Hisako Ishimine, Akira Kurisaki, Dai Shiba, Hiroyasu Mizuno, Masaki Shirakawa, Naoki Ito, Shin Takeda, Satoru Takahashi
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引用次数: 0

摘要

日本宇宙航空研究开发机构开发了小鼠生境笼单元(HCU),安装在国际空间站日本实验舱("希望 "号)上的细胞生物学实验设施(CBEF)中。CBEF 提供 "天基控制",通过离心机在 HCU 中产生人工重力,从而能够比较微重力和 1 g 人工重力对饲养在太空中的小鼠造成的生物后果。因此,在进行空间实验之前,有必要进行地面研究以验证 HCU 的可居住性,以便在 CBEF 中使用 HCU 进行空间实验。在此,我们研究了与对照笼养小鼠相比,HCU 面包板模型对雄性小鼠 32 天饲养期的地面影响。对照组小鼠和 HCU 小鼠的骨骼肌、胸腺、心脏和肾脏形态以及精子功能均未出现严重异常。观察到 HCU 本身引起的轻微但显著的变化,包括体重下降、胸腺和腓肠肌重量增加、股骨皮质骨厚度减少,以及 11 种组织的多种基因表达。结果表明,只要考虑到空间 CBEF 的特征,HCU 为利用 CBEF 进行小鼠表型分析提供了可接受的条件。因此,HCU 是未来太空实验的可行设备。
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Ground-based assessment of JAXA mouse habitat cage unit by mouse phenotypic studies.

The Japan Aerospace Exploration Agency developed the mouse Habitat Cage Unit (HCU) for installation in the Cell Biology Experiment Facility (CBEF) onboard the Japanese Experimental Module ("Kibo") on the International Space Station. The CBEF provides "space-based controls" by generating artificial gravity in the HCU through a centrifuge, enabling a comparison of the biological consequences of microgravity and artificial gravity of 1 g on mice housed in space. Therefore, prior to the space experiment, a ground-based study to validate the habitability of the HCU is necessary to conduct space experiments using the HCU in the CBEF. Here, we investigated the ground-based effect of a 32-day housing period in the HCU breadboard model on male mice in comparison with the control cage mice. Morphology of skeletal muscle, the thymus, heart, and kidney, and the sperm function showed no critical abnormalities between the control mice and HCU mice. Slight but significant changes caused by the HCU itself were observed, including decreased body weight, increased weights of the thymus and gastrocnemius, reduced thickness of cortical bone of the femur, and several gene expressions from 11 tissues. Results suggest that the HCU provides acceptable conditions for mouse phenotypic analysis using CBEF in space, as long as its characteristic features are considered. Thus, the HCU is a feasible device for future space experiments.

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