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环境毒性测试中的微生物生物测定。

Microbial bioassays in environmental toxicity testing.

机构信息

iBB-Institute for Bioengineering and Biosciences, Department of Bioengineering, Instituto Superior Técnico, Universidade de Lisboa, Lisbon, Portugal.

出版信息

Adv Appl Microbiol. 2021;115:115-158. doi: 10.1016/bs.aambs.2021.03.002. Epub 2021 Apr 20.

Abstract

Accidental spills and the misuse of chemicals may lead to current and legacy environmental contamination and pose concerns over possible (eco)toxicological secondary effects and risks toward non-target microbes and higher eukaryotes, including humans, in ecosystems. In the last decades, scientists and regulators have faced requests to thoroughly screen, prioritize and predict the possible deleterious effects of the huge numbers of existing and emerging xenobiotics, wastewaters and environmental samples on biological systems. In this context, it has become necessary to develop and validate (eco)toxicity bioassays based on microorganisms (e.g., bacteria, microalga, yeast, filamentous fungi, protozoa) as test-organisms whose data should be meaningful for environmental (micro)organisms that may be exposed to contaminated environments. These generally simple, fast and cost-effective bioassays may be preliminary and complementary to the more complex and long-term whole-organism animal-based traditional ecotoxicity tests. With the goal of highlighting the potential offered by microbial-based bioassays as non-animal alternatives in (eco)toxicity testing, the present chapter provides an overview of the current state-of-the art in the development and use of microbial toxicity bioassays through the examination of relatively recent examples with a diverse range of toxicity endpoints. It goes into the (eco)toxicological relevance of these bioassays, ranging from the more traditional microalga- and bacterial-based assays already accepted at regulatory level and commercially available to the more innovative microbial transcriptional profiling and gene expression bioassays, including some examples of biosensors.

摘要

意外溢出和化学品的误用可能导致当前和遗留的环境污染,并引发对非目标微生物和包括人类在内的高等真核生物可能产生的(生态)毒理学次生效应和风险的关注。在过去几十年中,科学家和监管机构面临着要求,需要彻底筛选、优先排序和预测大量现有和新兴的外来生物、废水和环境样本对生物系统可能产生的有害影响。在这种情况下,有必要开发和验证基于微生物(如细菌、微藻、酵母、丝状真菌、原生动物)的(生态)毒性生物测定法,将其作为测试生物,其数据对于可能暴露于污染环境中的环境(微生物)应该是有意义的。这些通常简单、快速且具有成本效益的生物测定法可以作为更复杂和长期的基于整体动物的传统生态毒性测试的初步和补充方法。为了强调基于微生物的生物测定法作为(生态)毒性测试中的非动物替代方法的潜力,本章通过检查具有不同毒性终点的相对较新的例子,概述了微生物毒性生物测定法的最新发展和应用现状。它探讨了这些生物测定法的(生态)毒理学相关性,从已经在监管层面得到认可并可商业化的更传统的基于微藻和细菌的测定法,到更具创新性的微生物转录谱和基因表达生物测定法,包括一些生物传感器的例子。

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