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利用蛭形轮虫进行高灵敏度和高通量的新型体内实验生存力测定。

Novel in vivo experimental viability assays with high sensitivity and throughput capacity using a bdelloid rotifer.

机构信息

Department of Psychiatry, University of Szeged, Szeged, Hungary.

Oxidation Biology Unit, Florey Institute of Neuroscience and Mental Health, University of Melbourne, Parkville, Victoria, Australia.

出版信息

Ecotoxicol Environ Saf. 2017 Oct;144:115-122. doi: 10.1016/j.ecoenv.2017.06.005. Epub 2017 Jun 9.

Abstract

Rotifers have been used in biological research as well-characterized models of aging. Their multi-organ characters and their sensitivity for chemicals and environmental changes make them useful as in vivo toxicological and lifespan models. Our aim was to create a bdelloid rotifer model to use in high-throughput viability and non-invasive assays. In order to identify our species Philodina acuticornis odiosa (PA), 18S rDNA-based phylogenetic analysis was carried out and their species-specific morphological markers identified. To execute the rotifer-based experiments, we developed an oil-covered water-drop methodology adapted from human in vitro fertilization techniques. This enables toxicological observations of individual one-housed rotifers in a closed and controllable micro-environment for up to several weeks. Hydrogen peroxide (HO) and sodium azide (NaN) exposures were used as well-understood toxins. The toxicity and survival lifespan (TSL), the bright light disturbance (BLD) the mastax contraction frequency (MCF) and the cellular reduction capacity (CRC), indices were recorded. These newly developed assays were used to test the effects of lethal and sublethal doses of the toxins. The results showed the expected dose-dependent decrease in indices. These four different assays can either be used independently or as an integrated system for studying rotifers. These new indices render the PA invertebrate rotifer model a quantitative system for measuring viability, toxicity and lifespan (with TSL), systemic reaction capacity (with BLD), organic functionality (with MCF) and reductive capability of rotifers (with CRC), in vivo. This novel multi-level system is a reliable, sensitive and replicable screening tool with potential application in pharmaceutical science.

摘要

轮虫一直被用作生物老化研究中具有良好特征的模型。它们的多器官特征以及对化学物质和环境变化的敏感性,使它们成为体内毒理学和寿命模型的有用工具。我们的目的是创建一个蛭形轮虫模型,用于高通量的活力和非侵入性测定。为了鉴定我们的物种秀丽焦尾轮虫(Philodina acuticornis odiosa,PA),进行了基于 18S rDNA 的系统发育分析,并确定了其物种特异性形态标记物。为了执行基于轮虫的实验,我们开发了一种从人类体外受精技术改编的油覆盖水滴方法。这使得可以在封闭和可控的微环境中对单个隔离的轮虫进行毒理学观察,时间长达数周。使用过氧化氢(HO)和叠氮化钠(NaN)暴露作为了解的毒素。记录了毒性和生存寿命(TSL)、强光干扰(BLD)、大颚收缩频率(MCF)和细胞还原能力(CRC)等指标。这些新开发的测定方法用于测试致命和亚致死剂量毒素的影响。结果表明,这些指标呈预期的剂量依赖性下降。这四个不同的测定方法可以单独使用,也可以作为一个集成系统用于研究轮虫。这些新指标使 PA 无脊椎动物轮虫模型成为一种用于测量活力、毒性和寿命(TSL)、全身反应能力(BLD)、有机功能(MCF)和轮虫还原能力(CRC)的定量系统,体内。这种新型多层次系统是一种可靠、敏感和可重复的筛选工具,具有在药物科学中的潜在应用。

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