Ahmed Ghada Mohamed, Mostafa Nesma A, El-Garhy Manal, Fahmy Sohair R, Mohamed Ayman Saber, Ali Sara Bayoumi
Zoology Department, Faculty of Science, Cairo University, Giza, 12613, Egypt.
Sci Rep. 2025 Jul 2;15(1):23670. doi: 10.1038/s41598-025-07708-w.
The usage of nanocomposites in water treatment has risen, resulting in their leaking into the soil, which is a major environmental concern. Earthworm (Allolobophora caliginosa) is used as a bioindicator that can accumulate most pollutants, even if they are present in low concentrations. The present study aimed to use earthworms as biological indicator for chitosan-saponin-bentonite nanocomposite (CSB NCs) in the soil. Earthworms were exposed to CSB NCs (0, 0.025, 0.05, 0.1, and 0.15 mg/500 g soil) for 7 consecutive days. CSB NCs induced significant damage and instability of the lysosomal membranes in coelomocytes in a dose-dependent manner. The exposure to CSB NCs resulted in a notable change in earthworm biochemical levels. Light microscopy revealed histological damage in the body wall and intestine of earthworm exposed to CSB NC. In addition, scanning electron microscopy showed morphological alterations in the anterior, dorsal, and ventral parts of the earthworm as well as in the anal region because of exposure to CSB NC. The present study demonstrated that earthworms exposed to CSB NCs had a depletion in antioxidants and presented histological alterations especially in high doses of nanocomposite. Also, treated earthworms showed substantial alterations in the surface topography. Exposure to CSB NC caused physiological and histological alteration in earthworms. This study emphasizes the urgent need to evaluate the environmental safety of nanocomposites used in water treatment.
纳米复合材料在水处理中的使用量有所增加,导致其泄漏到土壤中,这是一个重大的环境问题。蚯蚓(Allolobophora caliginosa)被用作生物指示物,它能够积累大多数污染物,即使这些污染物浓度很低。本研究旨在将蚯蚓用作土壤中壳聚糖 - 皂苷 - 膨润土纳米复合材料(CSB NCs)的生物指示物。将蚯蚓连续7天暴露于CSB NCs(0、0.025、0.05、0.1和0.15毫克/500克土壤)中。CSB NCs以剂量依赖的方式诱导体腔细胞中溶酶体膜的显著损伤和不稳定。暴露于CSB NCs导致蚯蚓生化水平发生显著变化。光学显微镜显示,暴露于CSB NC的蚯蚓体壁和肠道出现组织学损伤。此外,扫描电子显微镜显示,由于暴露于CSB NC,蚯蚓的前部、背部、腹部以及肛门区域出现形态学改变。本研究表明,暴露于CSB NCs的蚯蚓抗氧化剂减少,并且出现组织学改变,尤其是在高剂量纳米复合材料作用下。此外,经处理的蚯蚓表面形貌也有显著改变。暴露于CSB NC会导致蚯蚓生理和组织学改变。本研究强调迫切需要评估用于水处理的纳米复合材料的环境安全性。