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A new preventive acting bioinspired antimicrobial surface - actual status and first results

机译:一种新的预防性作用生物透露抗菌表面 - 实际状态和第一个结果

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Antimicrobial surfaces are a highly promising approach in preventing/ reducing microbial loads in sensitive areas. There, high humidity and temperature levels are causing microbial contamination - endangering human health, health of organisms e.g. in bioregenerative life-support systems as well as technical equipment. Antimicrobial surfaces are beneficial·in spaceflight - w.r.t. activities in confined environments in LEO and during exploration activities - to support breeding activities of e.g. algae in bioreactors, biological experiments and to meet the COSPAR planetary protection policy·as well as on Earth - in hygiene areas during medical activities and food handling, in swimming baths, bathrooms etc. For confined environments in space as well as on Earth, antimicrobial surfaces must be free of any toxic substance, otherwise higher non-target organisms would be affected. Thus, synthetic chemicals, silver, copper etc., as used until now, are not a suited solution, which in addition might lead to resistances of the bacteria to these toxic substances and are acting rather unspecific. Bioinspired technologies as using antimicrobial peptides from nature (e.g. from frog skin etc.), immobilized on surfaces, are a suited alternative. High flexibility concerning the microbial target, low toxicity and an absence of resistances are the main advantages. As a consequence, the goal of the ESA-funded project BALS (Bioinspired antimicrobial lacquer for space) was the development of a new innovative antimicrobial acting lacquer based on peptides. Project partners were OHB System, Fraunhofer Institute for Manufacturing Technology and Advanced Materials (IFAM) (both Bremen, Germany) as well as the German Aerospace Center, Institute of Aerospace Medicine (Cologne, Germany). An overview about goals, technology and test results (w.r.t. antimicrobial properties efficiency, adhesion on substrates as well as absence of effects on higher organisms) of the BALS activity will be given at
机译:抗微生物表面是预防/减少敏感区域中的微生物载荷的高度有前途的方法。在那里,高湿度和温度水平导致微生物污染 - 危及人类健康,生物体的健康。在生物生物支持系统以及技术设备中。抗微生物表面是有益的·太空飞行 - W.R.T.在狮子座的狭窄环境中的活动以及在探索活动期间 - 支持例如育种活动。生物反应器中的藻类,生物实验,并满足科学行星保护政策·以及在医疗活动和食物处理期间的卫生地区,游泳浴室,浴室等狭窄环境中的卫生地区以及地球,抗菌剂表面必须没有任何有毒物质,否则较高的非靶毒性有机体会受到影响。因此,如下所使用的合成化学物质,银,铜等不是适合的溶液,此外可能导致细菌对这些有毒物质的电阻,并作用相当不明的。 Bioinspired Technologies用自然(例如,从青蛙皮肤等),固定在表面上,是一个适当的替代品。关于微生物目标的高柔韧性,低毒性和缺乏电阻是主要优点。因此,ESA资助的项目BALS(BioInspired抗微生物漆为空间)的目标是基于肽的新型创新抗菌作用漆的发展。项目合作伙伴是OHB系统,Fraunhofer制造业技术和先进材料(IFAM)(IFAM)(德国不来梅)以及航空航天医学研究所(德国科隆)的德国航空航天中心。将给出关于目标,技术和测试结果(W.R.T.抗微生物性质效率,在BALS活动中的抗微生物性质效率,底物上的粘附以及对较高生物的影响)将得到

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