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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Advances in biomedical and pharmaceutical applications of protein-stabilized gold nanoclusters
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Advances in biomedical and pharmaceutical applications of protein-stabilized gold nanoclusters

机译:蛋白质稳定的金纳米能蛋白的生物医学和药物应用的进展

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摘要

The interest in using gold nanoclusters (AuNCs) as imaging probes is growing, covering wide ranges of applications. The stabilization of AuNCs with protein ligands enhances their biomedical and pharmaceutical applications. This is due to the biocompatibility, water solubility and bioactivity of proteins. Different factors can control the optical properties of AuNCs such as protein size, amino acids content and conformational structure. Controlling the synthesis conditions can result in tuning the AuNCs excitation, emission, fluorescence intensity and physicochemical properties to fulfill different applications. NIR-emitting protein-stabilized AuNCs are promising as imaging agents for targeting and visualization of cancerin vitroandin vivo. They are promising to be included as an important part of multifunctional theranostic nanosystems, due to their potential dual functions as imaging and photosensitizing agent for photodynamic therapy. Additionally, the protein around AuNCs represents a rich environment of active functional groups that are susceptible for conjugation with various biomolecules. Protein-AuNCs can act as fluorescent probes for rapid and selective analysis of different analytes in solution, cells or biological fluids. In conclusion, the variability of protein-AuNC applications can advance research in different biomedical and pharmaceutical fields.
机译:利用金纳米烛台(Auncs)作为成像探针的兴趣正在增长,覆盖宽范围的应用范围。用蛋白质配体的稳定增强其生物医学和药物应用。这是由于蛋白质的生物相容性,水溶解度和生物活性。不同的因素可以控制蛋白质尺寸,氨基酸含量和构象结构等宫腔的光学性质。控制合成条件可导致调节Auncs激发,发射,荧光强度和物理化学性质以满足不同的应用。 NIR-发光蛋白稳定的Auncs是有前途的靶向和可视化癌症患者体内的成像剂。它们是有希望被包括作为多功能治疗纳米系统的重要组成部分,因为它们的潜在双重用作光动力治疗的成像和光敏剂。另外,Aunc周围的蛋白质代表了富含活性官能团的富生物,其易于与各种生物分子缀合。蛋白质 - auncs可以充当荧光探针,用于快速和选择性分析溶液,细胞或生物流体中的不同分析物。总之,蛋白质 - aunc申请的可变性可以在不同的生物医学和制药领域提前研究。

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