Wang Juan, Feng Shun, Liu Jie, Liu Rui-Lin
Shaanxi Engineering Research Center of Controllable Neutron Source, School of Science, Xijing University, Xi'an, China.
School of Pharmacy, Xuzhou Medical University, Xuzhou, China.
Front Bioeng Biotechnol. 2021 Aug 19;9:714922. doi: 10.3389/fbioe.2021.714922. eCollection 2021.
Quantum dots (QDs) as a promising optical probe have been widely used for biomedical imaging; especially enormous efforts recently have focused on the potential toxicity of QDs to the human body. The toxicological effects of the representative InP/ZnS QDs as a cadmium-free emitter are still in the early stage and have not been fully unveiled. In this study, the DPPC/DPPG mixed monolayer was used to simulate the lung surfactant monolayer. The InP/ZnS-COOH QDs and InP/ZnS-NH QDs were introduced to simulate the lung surfactant membrane's environment in the presence of InP/ZnS QDs. The effects of InP/ZnS QDs on the surface behavior, elastic modulus, and stability of DPPC/DPPG mixed monolayer were explored by the surface pressure-mean molecular area isotherms and surface pressure-time curves. The images observed by Brewster angle microscope and atomic force microscope showed that the InP/ZnS QDs affected the morphology of the monolayer. The results further demonstrated that the InP/ZnS QDs coated with different surface groups can obviously adjust the mean molecular area, elastic modulus, stability, and microstructure of DPPC/DPPG mixed monolayer. Overall, this work provided useful information for in-depth understanding of the effects of the -COOH or -NH group coated InP/ZnS QDs on the surface of lung surfactant membrane, which will help scientists to further study the physiological toxicity of InP/ZnS QDs to lung health.
量子点(QDs)作为一种很有前景的光学探针,已被广泛应用于生物医学成像;特别是近年来,人们对量子点对人体的潜在毒性投入了大量精力。具有代表性的无镉发射体InP/ZnS量子点的毒理学效应仍处于早期阶段,尚未完全揭示。在本研究中,使用DPPC/DPPG混合单层来模拟肺表面活性剂单层。引入InP/ZnS-COOH量子点和InP/ZnS-NH量子点来模拟存在InP/ZnS量子点时肺表面活性剂膜的环境。通过表面压力-平均分子面积等温线和表面压力-时间曲线,探讨了InP/ZnS量子点对DPPC/DPPG混合单层的表面行为、弹性模量和稳定性的影响。布鲁斯特角显微镜和原子力显微镜观察的图像表明,InP/ZnS量子点影响了单层的形态。结果进一步表明,包覆不同表面基团的InP/ZnS量子点可以明显调节DPPC/DPPG混合单层的平均分子面积、弹性模量、稳定性和微观结构。总体而言,这项工作为深入了解包覆-COOH或-NH基团的InP/ZnS量子点对肺表面活性剂膜表面的影响提供了有用信息,这将有助于科学家进一步研究InP/ZnS量子点对肺部健康的生理毒性。