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脂质体中荧光纳米晶体和膜蛋白的杂交组装体。

Hybrid assemblies of fluorescent nanocrystals and membrane proteins in liposomes.

机构信息

Department of Chemistry, Università degli Studi di Bari , Via Orabona 4, 70126 Bari, Italy.

出版信息

Langmuir. 2014 Feb 18;30(6):1599-608. doi: 10.1021/la404160b. Epub 2014 Feb 5.

DOI:10.1021/la404160b
PMID:24460372
Abstract

Because of the growing potential of nanoparticles in biological and medical applications, tuning and directing their properties toward a high compatibility with the aqueous biological milieu is of remarkable relevance. Moreover, the capability to combine nanocrystals (NCs) with biomolecules, such as proteins, offers great opportunities to design hybrid systems for both nanobiotechnology and biomedical technology. Here we report on the application of the micelle-to-vesicle transition (MVT) method for incorporation of hydrophobic, red-emitting CdSe@ZnS NCs into the bilayer of liposomes. This method enabled the construction of a novel hybrid proteo-NC-liposome containing, as model membrane protein, the photosynthetic reaction center (RC) of Rhodobacter sphaeroides. Electron microscopy confirmed the insertion of NCs within the lipid bilayer without significantly altering the structure of the unilamellar vesicles. The resulting aqueous NC-liposome suspensions showed low turbidity and kept unaltered the wavelengths of absorbance and emission peaks of the native NCs. A relative NC fluorescence quantum yield up to 8% was preserved after their incorporation in liposomes. Interestingly, in proteo-NC-liposomes, RC is not denatured by Cd-based NCs, retaining its structural and functional integrity as shown by absorption spectra and flash-induced charge recombination kinetics. The outlined strategy can be extended in principle to any suitably sized hydrophobic NC with similar surface chemistry and to any integral protein complex. Furthermore, the proposed approach could be used in nanomedicine for the realization of theranostic systems and provides new, interesting perspectives for understanding the interactions between integral membrane proteins and nanoparticles, i.e., in nanotoxicology studies.

摘要

由于纳米粒子在生物和医学应用中的潜在应用越来越大,因此将其性质调整并导向与水生物环境的高相容性是非常重要的。此外,将纳米晶体(NCs)与生物分子(如蛋白质)结合的能力为设计用于纳米生物技术和生物医学技术的混合系统提供了巨大的机会。在这里,我们报告了胶束到囊泡转变(MVT)方法在将疏水性,红色发射 CdSe@ZnS NCs 掺入脂质体双层中的应用。该方法能够构建包含作为模型膜蛋白的球形红杆菌光合反应中心(RC)的新型杂合蛋白-NC-脂质体。电子显微镜证实了 NCs 在没有明显改变单层囊泡结构的情况下插入脂质双层中。所得的水性 NC-脂质体悬浮液浊度低,并且保持了天然 NCs 的吸收峰和发射峰的波长不变。将 NC 掺入脂质体后,其相对 NC 荧光量子产率保持在 8%。有趣的是,在蛋白-NC-脂质体中,Cd 基 NC 不会使 RC 变性,保留其结构和功能完整性,如吸收光谱和闪光诱导的电荷复合动力学所示。所提出的策略原则上可以扩展到任何具有相似表面化学性质的适当大小的疏水性 NC 和任何完整的蛋白质复合物。此外,所提出的方法可用于纳米医学中的治疗诊断系统,并为理解完整膜蛋白与纳米粒子之间的相互作用提供了新的有趣的观点,即纳米毒理学研究。

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