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New molecular mechanism of nanoplastics affecting cadmium protein toxicity: Conformational response and differential binding of human serum albumin

The Science of The Total Environment 2024 15 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 60 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Ting Wang, Ting Wang, Ting Wang, Yuntao Qi, Yuntao Qi, Shuqi Guo, Yuntao Qi, Yuntao Qi, Yuntao Qi, Fei Du, Fei Du, Fei Du, Xiangxiang Li, Xiangxiang Li, Xiangxiang Li, Xiangxiang Li, Ting Wang, Ting Wang, Ting Wang, Ting Wang, Ting Wang, Ting Wang, Ting Wang, Shuqi Guo, Yuntao Qi, Ting Wang, Shuqi Guo, Jinhu Wang, Shuqi Guo, Yuntao Qi, Yuntao Qi, Jinhu Wang, Ting Wang, Xingchen Zhao Shaoyang Hu, Shuqi Guo, Shaoyang Hu, Shuqi Guo, Shuqi Guo, Shaoyang Hu, Shaoyang Hu, Xiangxiang Li, Rutao Liu, Shuqi Guo, Shaoyang Hu, Shuqi Guo, Shuqi Guo, Xingchen Zhao Yuntao Qi, Yuntao Qi, Xingchen Zhao Xingchen Zhao Shaoyang Hu, Ting Wang, Ting Wang, Ting Wang, Ting Wang, Ting Wang, Xiangxiang Li, Xiangxiang Li, Yuntao Qi, Yuntao Qi, Shuqi Guo, Shuqi Guo, Shuqi Guo, Yuntao Qi, Xiangxiang Li, Xiangxiang Li, Xingchen Zhao Guang Tian, Yuntao Qi, Yuntao Qi, Yuntao Qi, Xiangxiang Li, Shaoyang Hu, Xingchen Zhao Yuntao Qi, Xingchen Zhao Guang Tian, Guang Tian, Yuntao Qi, Shaoyang Hu, Rutao Liu, Fei Du, Xiangxiang Li, Xiangxiang Li, Guang Tian, Rutao Liu, Rutao Liu, Xingchen Zhao Rutao Liu, Yuntao Qi, Rutao Liu, Yuntao Qi, Xingchen Zhao Yuntao Qi, Shuqi Guo, Shaoyang Hu, Xiangxiang Li, Shuqi Guo, Xiangxiang Li, Shuqi Guo, Xingchen Zhao Rutao Liu, Xingchen Zhao Yuntao Qi, Shuqi Guo, Yuntao Qi, Yuntao Qi, Shuqi Guo, Rutao Liu, Rutao Liu, Rutao Liu, Rutao Liu, Rutao Liu, Rutao Liu, Rutao Liu, Rutao Liu, Rutao Liu, Rutao Liu, Shaoyang Hu, Shaoyang Hu, Xingchen Zhao Shaoyang Hu, Shuqi Guo, Xingchen Zhao Xingchen Zhao Xiangxiang Li, Xiangxiang Li, Fei Du, Guang Tian, Guang Tian, Shuqi Guo, Shuqi Guo, Yuntao Qi, Yuntao Qi, Guang Tian, Rutao Liu, Shaoyang Hu, Xiangxiang Li, Xiangxiang Li, Guang Tian, Guang Tian, Yuntao Qi, Yuntao Qi, Xiangxiang Li, Xingchen Zhao Xiangxiang Li, Rutao Liu, Rutao Liu, Rutao Liu, Guang Tian, Shaoyang Hu, Yuntao Qi, Rutao Liu, Rutao Liu, Guang Tian, Yuntao Qi, Guang Tian, Rutao Liu, Shuqi Guo, Shuqi Guo, Shaoyang Hu, Shuqi Guo, Xiangxiang Li, Shuqi Guo, Shaoyang Hu, Xingchen Zhao Rutao Liu, Rutao Liu, Rutao Liu, Guang Tian, Shaoyang Hu, Rutao Liu, Shaoyang Hu, Shaoyang Hu, Yuntao Qi, Guang Tian, Yuntao Qi, Rutao Liu, Rutao Liu, Rutao Liu, Yuntao Qi, Rutao Liu, Rutao Liu, Yuntao Qi, Xingchen Zhao Xingchen Zhao Xingchen Zhao Xingchen Zhao Shaoyang Hu, Rutao Liu, Xingchen Zhao

Summary

Researchers showed that cadmium alone disrupts the structure and transport function of human serum albumin (the blood's main protein carrier), and that co-exposure with nanoplastics — which form a protein corona by binding albumin to their surface — further exacerbates these structural disruptions and enzyme activity losses, raising concerns about combined nanoplastic-heavy metal toxicity.

The significant health risks of nanoplastics (NPs) and cadmium (Cd) are currently attracting a great deal of attention and research. At present, the effects and mechanisms of NPs and Cd on human serum albumin (HSA), a key functional protein in the organism on transportation, remain unknown. Here, the differences in the effects and mechanisms of action of Cd alone and composite systems (NPsCd) were explored by enzyme activity assay, multi-spectroscopy analysis and molecular docking. The results showed that HSA activity was inhibited and decreased to 80 % and 69.55 % (Cd = 30 mg/L) by Cd alone and NPs-Cd exposure, respectively. Exposure to Cd induced backbone disruption and protein defolding of HSA, and secondary structure disruption was manifested by the reduction of α-helix. Cd exposure also induces fluorescence sensitization of HSA. Notably, the addition of NPs further exacerbated the effects associated with Cd exposure, which was consistent with the changes in HSA activity. Thus, the above conformational changes may be responsible for inducing the loss of enzyme activity. Moreover, it was determined by RLS spectroscopy that NPs-Cd bound to HSA in the form of protein crowns. Molecular docking has further shown that Cd binds to the surface of Sudlow site II of HSA, suggesting that Cd impairs the function of HSA by affecting the protein structure. More importantly, the addition of NPs further exacerbated the disruption of the protein structure by the adherent binding of HSA on the surface of the plastic particles, which induced a greater change in the enzyme activity. This study provides useful perspectives for investigating the impact of composite pollution on HSA of human functional proteins.

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