College of Applied Medical Sciences, 248389Aljouf University, Saudi Arabia.
Nanobiolgy Unit, College of Applied Medical Sciences, 123295Jerash University, Jordan.
Toxicol Ind Health. 2022 Feb;38(2):80-91. doi: 10.1177/07482337211062674. Epub 2022 Feb 25.
Copper oxide nanomaterials are used in many biomedical, agricultural, environmental, and industrial sectors with potential risk to human health and the environment. The present study was conducted to determine the renal ultrastructural damage caused by 25 nm CuO nanoparticles in renal tissues. Adult healthy male Wister Albino rats () were administered 35 intraperitoneal injections of CuO nanoparticles (2 mg/kg). Ultrastructural changes were evaluated using transmission electron microscopy techniques. The renal tissues of rats with subchronic exposure to CuO nanoparticles demonstrated glomerular alterations that included hypertrophic endothelial cells, dilated capillaries and occlusions, podocyte hypertrophy, pedicle disorganization, mesangial cell hyperplasia, and crystalloid precipitation. Moreover, the treated renal cells exhibited mitochondrial swelling and crystolysis, cytoplasmic vacoulization, lysosomal hypertrophy, apoptotic activity, endoplasmic reticulum dilatation, nuclear deformity, chromatin dissolution, and basement membrane thickening. In addition, disruption and disorganization of the renal cells microvilli together with cystolic inclusions were also detected. It was concluded from the present findings that CuO nanoparticles could interact with the components of the renal tissues in ways that could cause ultrastructural injury, suggesting renal tissue pathophysiology. Additional studies are suggested for a better understanding the nanotoxicity of CuO nanomaterials.
氧化铜纳米材料在许多生物医学、农业、环境和工业领域得到广泛应用,对人类健康和环境存在潜在风险。本研究旨在探讨 25nmCuO 纳米颗粒对肾脏组织的超微结构损伤。成年健康雄性 Wistar 白化大鼠()接受 35 次腹腔注射 CuO 纳米颗粒(2mg/kg)。采用透射电子显微镜技术评估超微结构变化。亚慢性暴露于 CuO 纳米颗粒的大鼠肾脏组织显示肾小球改变,包括肥大的内皮细胞、扩张的毛细血管和闭塞、足细胞肥大、足突紊乱、系膜细胞增生和结晶沉淀。此外,处理后的肾细胞表现出线粒体肿胀和结晶溶解、细胞质空泡化、溶酶体肥大、细胞凋亡活性、内质网扩张、核畸形、染色质溶解和基底膜增厚。此外,还检测到肾细胞微绒毛的破坏和紊乱以及胞质包涵体。本研究结果表明,CuO 纳米颗粒可能与肾脏组织成分相互作用,导致超微结构损伤,提示肾脏组织发生了病理生理学改变。建议进一步开展研究以更好地了解 CuO 纳米材料的纳米毒性。