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“塑化病”:描述海鸟组织中与宏观和微观塑料相关的纤维化。

'Plasticosis': Characterising macro- and microplastic-associated fibrosis in seabird tissues.

机构信息

Institute for Marine and Antarctic Studies, 20 Castray Esplanade, Battery Point, Tasmania 7004, Australia.

Bird Group, The Natural History Museum, Akeman Street, Tring, Hertfordshire HP23 6AP, United Kingdom.

出版信息

J Hazard Mater. 2023 May 15;450:131090. doi: 10.1016/j.jhazmat.2023.131090. Epub 2023 Feb 26.

Abstract

As biota are increasingly exposed to plastic pollution, there is a need to closely examine the sub-lethal 'hidden' impacts of plastic ingestion. This emerging field of study has been limited to model species in controlled laboratory settings, with little data available for wild, free-living organisms. Highly impacted by plastic ingestion, Flesh-footed Shearwaters (Ardenna carneipes) are thus an apt species to examine these impacts in an environmentally relevant manner. A Masson's Trichrome stain was used to document any evidence of plastic-induced fibrosis, using collagen as a marker for scar tissue formation in the proventriculus (stomach) of 30 Flesh-footed Shearwater fledglings from Lord Howe Island, Australia. Plastic presence was highly associated with widespread scar tissue formation and extensive changes to, and even loss of, tissue structure within the mucosa and submucosa. Additionally, despite naturally occurring indigestible items, such as pumice, also being found in the gastrointestinal tract, this did not cause similar scarring. This highlights the unique pathological properties of plastics and raises concerns for other species impacted by plastic ingestion. Further, the extent and severity of fibrosis documented in this study gives support for a novel, plastic-induced fibrotic disease, which we define as 'Plasticosis,'.

摘要

随着生物群越来越多地暴露在塑料污染中,有必要仔细研究塑料摄入的亚致死“隐藏”影响。这个新兴的研究领域仅限于在受控实验室环境中的模式物种,对于野生、自由生活的生物体,可用的数据很少。受塑料摄入的高度影响,肉足燕鸥(Ardenna carneipes)是一个合适的物种,可以以一种与环境相关的方式来研究这些影响。我们使用 Masson 三色染色法来记录任何由塑料引起的纤维化的证据,将胶原蛋白作为胃(前胃)中疤痕组织形成的标志物,对来自澳大利亚豪勋爵岛的 30 只肉足燕鸥雏鸟进行研究。塑料的存在与广泛的疤痕组织形成以及粘膜和粘膜下层内组织结构的广泛变化甚至丧失高度相关。此外,尽管在胃肠道中也发现了天然存在的不可消化的物质,如浮石,但它们不会引起类似的疤痕。这突出了塑料的独特病理特性,并引起了对其他受塑料摄入影响的物种的关注。此外,本研究中记录的纤维化程度和严重程度为一种新型的、由塑料引起的纤维性疾病提供了支持,我们将其定义为“塑料病”。

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