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Collagen Cross-Linking with Au Nanoparticles

机译:胶原蛋白与金纳米颗粒的交联

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摘要

Tiopronin(N-(2-mercaptopropionyl)glycine)-protected gold nanoparticles(TPAu)were cross-linked to collagen via EDC(1-ethyl-3-(3-dimethyl aminopropyl)carbodiimide)coupling.On average,each TPAu forms eight amide bonds with collagen lysine moieties.The resulting gels were studied with environmental SEM,TEM,micro-DSC,and TNBS assay.The porous structure of collagen was significantly altered by cross-linking,resulting in the reduction of the pore size from ca.140 to < 1 mu m depending on the concentration of nanoparticles.The collagenase biodegradation assay showed improved stability of cross-linked material.The cell viability assay,CellTiter96,indicates that the gold nanoparticles are not toxic at the concentrations used in gel synthesis.This new material has potential for the delivery of small molecule drugs as well as Au nanoparticles for photothermal therapies,imaging,and cell targeting.
机译:通过EDC(1-乙基-3-(3-二甲基氨基丙基)碳二亚胺)偶联,将Tiopronin(N-(2-巯基丙酰基)甘氨酸)保护的金纳米颗粒(TPAu)交联到胶原蛋白上。每个TPAu平均形成8个酰胺键与胶原赖氨酸部分结合。通过环境SEM,TEM,micro-DSC和TNBS分析法对所得凝胶进行了研究。交联作用显着改变了胶原的多孔结构,从而降低了约3个分子的孔径。 140至<1微米,具体取决于纳米粒子的浓度。胶原酶生物降解测定法显示交联材料的稳定性提高。细胞活力测定法CellTiter96表明金纳米粒子在凝胶合成所用的浓度下无毒。这种新材料具有潜在的小分子药物以及用于光热疗法,成像和细胞靶向的金纳米粒子的输送能力。

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