Chelomin Victor Pavlovich, Istomina Aleksandra Anatolyevna, Mazur Andrey Alexandrovich, Slobodskova Valentina Vladimirovna, Zhukovskaya Avianna Fayazovna, Dovzhenko Nadezhda Vladimirovna
V.I.l'ichev Pacific Oceanological Institute, Far Eastern Branch, Russian Academy of Sciences, Vladivostok 690041, Russia.
Toxics. 2024 Oct 8;12(10):726. doi: 10.3390/toxics12100726.
Nowadays, synthetic polymer (plastic) particles are ubiquitous in the environment. It is known that for several decades microplastics (MPs) have been accumulating in the World Ocean, becoming available to a large variety of marine organisms. Particularly alarming is the accumulation of aging plastic particles, as the degradation processes of such particles increase their toxicity. The diverse display of negative properties of aging MPs and its effect on biota are still poorly understood. In this study, in vitro experiments modeling the interaction of pristine and UV-irradiated aging polypropylene (PP) fragments with hemocytes and mitochondria of bivalve mollusks sp. were performed. The appearance of free radicals in the environment was recorded by spectral characteristics of indicator dyes-methylene blue (MB) and nitroblue tetrazolium (NBT). It was found that due to photooxidation, aging PP fragments sorbed more than threefold MB on their modified surface compared to pristine samples of this polymer. Using NBT, the formation of reactive oxygen species in seawater in the presence of pristine and photoactivated PP was recorded. It was also found that photodegraded PP fragments largely stimulated the development of lipid peroxidation processes in mitochondrial membranes and reduced the stability of hemocyte lysosome membranes compared to pristine PP fragments. In general, the results obtained concretize and supplement with experimental data the previously stated hypothesis of toxicity of aging MPs.
如今,合成聚合物(塑料)颗粒在环境中无处不在。几十年来,微塑料一直在世界海洋中积累,并被各种各样的海洋生物所接触。特别令人担忧的是老化塑料颗粒的积累,因为这些颗粒的降解过程会增加其毒性。老化微塑料的各种负面特性及其对生物群的影响仍知之甚少。在本研究中,进行了体外实验,模拟原始聚丙烯(PP)片段和紫外线照射老化的PP片段与双壳贝类血细胞和线粒体的相互作用。通过指示剂染料亚甲基蓝(MB)和硝基蓝四氮唑(NBT)的光谱特性记录环境中自由基的出现。结果发现,由于光氧化作用,与该聚合物的原始样品相比,老化的PP片段在其改性表面上吸附的MB超过三倍。使用NBT记录了在原始PP和光活化PP存在下海水中活性氧的形成。还发现,与原始PP片段相比,光降解的PP片段在很大程度上刺激了线粒体膜中脂质过氧化过程的发展,并降低了血细胞溶酶体膜的稳定性。总的来说,所获得的结果通过实验数据具体化并补充了先前提出的老化微塑料毒性假说。