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明胶源碳量子点与模型球状蛋白的表面相互作用:对碳基纳米材料和生物系统的见解

Surface interactions of gelatin-sourced carbon quantum dots with a model globular protein: insights into carbon-based nanomaterials and biological systems.

作者信息

Masoudi Asil Shima, Narayan Mahesh

机构信息

The Department of Environmental Science & Engineering, The University of Texas at El Paso El Paso TX 79968 USA.

The Department of Chemistry & Biochemistry, The University of Texas at El Paso 500 W. University Ave. El Paso TX 79968 USA

出版信息

Nanoscale Adv. 2024 Dec 19;7(4):1104-1117. doi: 10.1039/d4na00842a. eCollection 2025 Feb 11.

Abstract

Carbon nanomaterials (CNMs), such as carbon nanotubes (CNTs), graphene quantum dots (GQDs), and carbon quantum dots (CQDs), are prevalent in biological systems and have been widely utilized in applications like environmental sensing and biomedical fields. While their presence in human matrices is projected to increase, the interfacial interactions between carbon-based nanoscopic platforms and biomolecular systems continue to remain underexplored. In this study, we investigated the effect of gelatin-sourced CQDs on the globular milk protein beta-lactoglobulin (BLG). Exposure to the CQDs resulted in the disruption of BLG's tertiary and secondary structural elements (transformation of isolated helices to coiled-coils and increased beta-sheet content), with IR amide backbone signatures further confirming CQD-induced alterations in protein structures. Importantly, the structural perturbations induced by CQDs compromised BLG : retinol interactions, potentially affecting its physiological ligand transport function. By contrast, cytotoxicity analyses revealed a high viability of neuroblastoma cells exposed to this CNM, suggesting biomolecule-specific effects. Collectively, the data reveal aberrant molecular and functional consequences associated with the interactions of a globular protein with an otherwise biocompatible CQD. In conclusion, this work represents the initial steps toward a comprehensive understanding at the atomic and molecular levels of the outcomes linked to the utilization of carbon-based nanomaterials and their potential adverse systemic consequences.

摘要

碳纳米材料(CNMs),如碳纳米管(CNTs)、石墨烯量子点(GQDs)和碳量子点(CQDs),在生物系统中普遍存在,并已广泛应用于环境传感和生物医学等领域。虽然预计它们在人体基质中的存在会增加,但碳基纳米平台与生物分子系统之间的界面相互作用仍未得到充分探索。在本研究中,我们研究了明胶源CQDs对球状乳蛋白β-乳球蛋白(BLG)的影响。暴露于CQDs会导致BLG的三级和二级结构元件受到破坏(孤立的螺旋结构转变为卷曲螺旋结构,β-折叠含量增加),红外酰胺主链特征进一步证实了CQD诱导的蛋白质结构变化。重要的是,CQDs引起的结构扰动损害了BLG与视黄醇的相互作用,可能影响其生理配体运输功能。相比之下,细胞毒性分析显示暴露于这种碳纳米材料的神经母细胞瘤细胞具有较高的活力,表明存在生物分子特异性效应。总体而言,这些数据揭示了与球状蛋白质与具有生物相容性的CQD相互作用相关的异常分子和功能后果。总之,这项工作代表了朝着在原子和分子水平上全面理解与碳基纳米材料利用相关的结果及其潜在不良全身后果迈出的第一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db8f/11812631/ae4a98e952b0/d4na00842a-f1.jpg

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