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Probing the modulated formation of gold nanoparticles-beta-lactoglobulin corona complexes and their applications

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机构: [1]Sun Yat Sen Univ, Canc Ctr, Collaborat Innovat Ctr Canc Med, State Key Lab Oncol South China, Guangzhou 510060, Guangdong, Peoples R China; [2]Univ Wisconsin, Dept Biol Syst Engn, 460 Henry Mall, Madison, WI 53706 USA; [3]Clemson Univ, Dept Phys & Astron, Kinard Lab 118, Clemson, SC 29634 USA; [4]Univ Wisconsin, Dept Mech Engn, 3200 North Cramer St, Milwaukee, WI 53211 USA; [5]Univ Illinois, Dept Bioengn, 851 South Morgan St, Chicago, IL 60607 USA; [6]Univ Wisconsin, Dept Engn Profess Dev, 432 North Lake St, Madison, WI 53706 USA
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Understanding the interactions between proteins and nanoparticles (NPs) along with the underlying structural and dynamic information is of utmost importance to exploit nanotechnology for biomedical applications. Upon adsorption onto a NP surface, proteins form a well-organized layer, termed the corona, that dictates the identity of the NP-protein complex and governs its biological pathways. Given its high biological relevance, in-depth molecular investigations and applications of NPs-protein corona complexes are still scarce, especially since different proteins form unique corona patterns, making identification of the biomolecular motifs at the interface critical. In this work, we provide molecular insights and structural characterizations of the bio-nano interface of a popular food-based protein, namely bovine beta-lactoglobulin (beta-LG), with gold nanoparticles (AuNPs) and report on our investigations of the formation of corona complexes by combined molecular simulations and complementary experiments. Two major binding sites in beta-LG were identified as being driven by citrate-mediated electrostatic interactions, while the associated binding kinetics and conformational changes in the secondary structures were also characterized. More importantly, the superior stability of the corona led us to further explore its biomedical applications, such as in the smartphone-based point-of-care biosensing of Escherichia coli (E. coli) and in the computed tomography (CT) of the gastrointestinal (GI) tract through oral administration to probe GI tolerance and functions. Considering their biocompatibility, edible nature, and efficient excretion through defecation, AuNPs-beta-LG corona complexes have shown promising perspectives for future in vitro and in vivo clinical settings. Introduction By virtue of the high surface free energy of nanomaterials, protein molecules can bind to their surface to form an active biological coating, defined as the protein corona. Protein-NPs corona complexes

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出版当年[2017]版:
大类 | 1 区 工程技术
小类 | 2 区 化学综合 2 区 材料科学:综合 2 区 纳米科技 2 区 物理:应用
最新[2023]版:
大类 | 3 区 材料科学
小类 | 3 区 化学:综合 3 区 材料科学:综合 3 区 纳米科技 3 区 物理:应用
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第一作者机构: [1]Sun Yat Sen Univ, Canc Ctr, Collaborat Innovat Ctr Canc Med, State Key Lab Oncol South China, Guangzhou 510060, Guangdong, Peoples R China; [2]Univ Wisconsin, Dept Biol Syst Engn, 460 Henry Mall, Madison, WI 53706 USA;
通讯作者:
通讯机构: [1]Sun Yat Sen Univ, Canc Ctr, Collaborat Innovat Ctr Canc Med, State Key Lab Oncol South China, Guangzhou 510060, Guangdong, Peoples R China; [2]Univ Wisconsin, Dept Biol Syst Engn, 460 Henry Mall, Madison, WI 53706 USA; [3]Clemson Univ, Dept Phys & Astron, Kinard Lab 118, Clemson, SC 29634 USA;
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