抗菌化合物三氯卡班和三氯生对水螅的行为、致畸和遗传毒性影响

IF 2.7 4区 医学 Q3 TOXICOLOGY
Aditya Mohan Menon, Gayathri R Chandran, Vijayakumar Bommuraj, Babu Rajendran Ramaswamy, Thirumurugan Ramasamy
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引用次数: 0

摘要

三氯卡班(TCC)和三氯生(TCS)是家庭、兽医、工业和个人护理产品中使用的抗菌化合物,已知它们是环境污染物,对生物体也有毒性。这些抗菌化学物质对高等生物的毒理影响已得到详细研究。但对于像水螅这样的低等无脊椎动物,这种研究还很罕见,有待探索。本研究对这两种抗菌化合物在水螅体内的毒理学效应进行了研究,以清楚地了解其在生物体、发育、分子和行为方面的变化。TCC 和 TCS 都具有毒性,其 LC50 值分别为 0.09 和 0.25 mg/L,而 TCC 的毒性相对 TCS 更大。据观察,触手上的电池复合体(BCC)结构受损,最终导致难以捕获猎物。在较高的亚致死剂量(分别为 0.045 和 0.125 毫克/升)下,TCC 和 TCS 的暴露显然会通过影响 H. vulgaris 的繁殖和再生而造成发育毒性。TCC 和 TCS 还会造成 DNA 损伤,导致细胞凋亡。这项研究进一步揭示了这两种抗菌化合物对生物的致畸性和遗传毒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Behavioural, Teratogenic and Genotoxic Effects of Antibacterial Compounds, Triclocarban and Triclosan, in Hydra vulgaris.

Triclocarban (TCC) and triclosan (TCS) are antibacterial compounds used in household, veterinary, industrial and personal care products, which are known to be environmental pollutants and also toxic to organisms. The toxicological effects of these antibacterial chemicals on higher organisms have been studied in detail. But in lower invertebrates like hydra, it is still rare and yet to be explored. In this study, the toxicological effects of these two antibacterial compounds in Hydra vulgaris was performed to clearly understand the organismal, developmental, molecular and behavioural changes. Both TCC and TCS are toxic with respective LC50 values of 0.09 and 0.25 mg/L, whereas TCC is comparatively more toxic than TCS. The structural damage of battery cell complexes (BCCs) on the tentacles was observed and ultimately made prey capturing difficult. It was evident that TCC and TCS exposure caused developmental toxicity by affecting reproduction and regeneration in H. vulgaris at higher sublethal doses (0.045 and 0.125 mg/L, respectively). TCC and TCS also caused DNA damage resulting in apoptosis. This study further reveals that these two antibacterial compounds are teratogenic and genotoxic in the organisms.

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来源期刊
CiteScore
7.00
自引率
6.10%
发文量
145
审稿时长
1 months
期刊介绍: Journal of Applied Toxicology publishes peer-reviewed original reviews and hypothesis-driven research articles on mechanistic, fundamental and applied research relating to the toxicity of drugs and chemicals at the molecular, cellular, tissue, target organ and whole body level in vivo (by all relevant routes of exposure) and in vitro / ex vivo. All aspects of toxicology are covered (including but not limited to nanotoxicology, genomics and proteomics, teratogenesis, carcinogenesis, mutagenesis, reproductive and endocrine toxicology, toxicopathology, target organ toxicity, systems toxicity (eg immunotoxicity), neurobehavioral toxicology, mechanistic studies, biochemical and molecular toxicology, novel biomarkers, pharmacokinetics/PBPK, risk assessment and environmental health studies) and emphasis is given to papers of clear application to human health, and/or advance mechanistic understanding and/or provide significant contributions and impact to their field.
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