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Effects of different space relevant environmental stressors including Lunar Dust on microorganisms and human cells of different tissues

机译:不同空间相关环境压力源在不同组织微生物和人体细胞中的影响

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Space relevant environmental conditions can have a negative impact on health. This was shown in previous short-term and one stressor-one effect relationship-based experiments as well as it is deduced from in-flight observations concerning microgravity and radiation (former experiments inside and outside ISS, shuttle, rockets like FOTON) and lunar dust exposure (first observations in Apollo and experiments based on Apollo dust). For lunar dust, not studied in detail yet, NASA recognized that the potential biological impacts of lunar environments, including meteoroids and dust exposure need to be investigated further. We defined a set of experiments in an international research group of experts to analyze the effects of environmental stressors, i.e. microgravity, lunar dust simulants, and radiation, the latter being related to possible experiments on Columbus external facilities, on a variety of biological objects such as bacteria, microalgae and different cell types of vertebrates like neurons, blood and skin cells. These represent some of the most relevant cell types of tissues that are of major concern as exposed to the stressors during human stays in closed (lunar) habitats that will rely on bioregenerative life support systems for longer time scales. The results of our comprehensive series of experiments contribute to our knowledge about potential effects of environmental stressors on different biological specimen. Moreover, a combination of stressors simulating for the first time conditions assumed for moon have been tested. Long-term exposure is aimed at in future and the impacts will be assessed with the suggested experimental set-ups. ISS with its internal and external facilities is a well suited test ground for simulating lunar conditions by the given radiation and microgravity regimes similar to moon as well as by using artificial lunar dust simulant. Furthermore, research in such extreme environments enables more detailed knowledge about tissue and cell physiology as well as about regeneration from wounding of e.g. skin with potential benefits for earthbound science and application. First experiments assessing the effects of both, martian and lunar dust simulants were performed on Earth with keratinocytes, fibroblasts, blood platelets, and microalgae as cell types tested. The results revealed cell type and stressor-dependent effects that will need further investigation on Earth before space experiments on ISS shall follow. In general, it can be summarized, that some cells responded to simulates, while others did not.
机译:空间相关的环境条件可能对健康产生负面影响。这在前一段短期和一个压力源 - 一个基于关系的基于关系的实验中显示,并且它被推导出与微匍匐和辐射的飞行方式(Issmer,Shuttle,Roctrets等前方的前实验)和月球灰尘暴露(基于Apollo灰尘的Apollo和实验中的第一次观察)。对于月球粉尘,没有详细研究,美国国家航空航天局认识到,需要进一步研究月球环境的潜在生物学影响,包括青色和粉尘暴露。我们在专家专家研究小组中定义了一组实验,以分析环境压力源的影响,即微匍匐,月球粉尘模拟器和辐射,后者与哥伦布外部设施的可能实验有关,在各种生物对象上作为细菌,微藻和不同细胞类型的脊椎动物,如神经元,血液和皮肤细胞。这些代表了一些最相关的细胞类型,这些组织是在人类留下的封闭(月球)栖息地期间暴露于压力源的主要关注,这些栖息地将依赖于生物生物生命支持系统的较长时间尺度。我们全面系列实验的结果有助于我们对环境压力源对不同生物标本的潜在影响。此外,已经测试了为月球假设的第一次条件模拟的压力源的组合。长期曝光旨在将来旨在,将通过建议的实验组评估影响。 ISS的内部和外部设施是一个很好的测试理由,用于通过给定的辐射和类似于月亮的微匍匐制度来模拟月球条件以及使用人工月球粉尘模拟剂。此外,在这种极端环境中的研究能够更详细地了解组织和细胞生理学的知识以及关于伤害的再生。皮肤具有潜在的益处,对土基科学和应用。评估两者,火星和月球粉尘模拟器的效果的实验在地球上进行了角蛋白细胞,成纤维细胞,血小板和微藻作为测试的细胞类型。结果揭示了细胞类型和压力依赖性效应,将在国际售税空间实验遵循的空间实验之前进一步调查地球。一般来说,可以总结一些细胞响应模拟,而其他细胞没有。

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