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In Situ Ligand-Directed Growth of Gold Nanoparticles in Biological Tissues

机译:原位配体 - 生物组织中的金纳米粒子的定向生长

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Fundamental understandings and precise control of nanoparticle growth in the complex biological environment are crucial to broadening their potential applications in tissue imaging. Herein, we report that glutathione (GSH), a widely used capping ligand for precise control of the size of gold nanoparticle (AuNP) down to single-atom level in test tubes, can also be used to direct the selective growth of the AuNPs in the mitochondria of renal tubule cells as well as hippocampus cells in the tissues. Precise control of this growth process can lead to the formation of both ultrasmall AuNPs with near-infrared luminescence and large plasmonic AuNPs. The observed selective growth of the AuNPs is likely due to unique GSH storage function of the mitochondria. Using a different ligand, beta-glucose thiol, we also found that the brush border of the intestine for glucose absorption became the major site for the growth of luminescent AuNPs. These findings suggest that selective growth of AuNPs in the biological tissues can indeed be directed with specific ligands, opening up a new avenue to tissue labeling and future development of artificial bionano hybrid systems.
机译:基本谅解和精确控制复杂生物环境中的纳米粒子生长对于扩展其在组织成像中的潜在应用至关重要。在此报道,谷胱甘肽(GSH),广泛使用的覆盖配体,用于精确控制用于试管中的金纳米粒子(AUNP)的尺寸(AUNP)的精确控制,也可用于指导AUNP的选择性生长肾小管细胞的线粒体和组织中的海马细胞。对这种生长过程的精确控制可以导致具有近红外发光和大型等离子体AUNP的超大肛门剖腹产。观察到的AuNP的选择性生长可能是由于线粒体的独特GSH储存功能。使用不同的配体β-葡萄糖硫醇,我们还发现肠肠的毛刷边界用于葡萄糖吸收成为发光AUNP的生长的主要部位。这些发现表明,生物组织中的肛门族的选择性生长确实可以用特定配体引导,开辟了一种新的组织标签和未来人工嗜双茴香杂交系统的发展。

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