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Biomimetic synthesis of highly biocompatible gold nanoparticles with amino acid-dithiocarbamate as a precursor for SERS imaging

机译:氨基酸-二硫代氨基甲酸酯作为SERS成像前体的高度生物相容性金纳米颗粒的仿生合成

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Amino acid-dithiocarbamate (amino acid-DTC) was developed as both the reductant and ligand stabilizer for biomimetic synthesis of gold nanoparticles (AuNPs), which served as an excellent surface-enhanced Raman scattering (SERS) contrast nanoprobe for cell imaging. Glycine (Gly), glutamic acid (Glu), and histidine (His) with different isoelectric points were chosen as representative amino acid candidates to synthesize corresponding amino acid-DTC compounds through mixing with carbon disulfide (CS2), respectively. The pyrogenic decomposition of amino acid-DTC initiated the reduction synthesis of AuNPs, and the strong coordinating dithiocarbamate group of amino acid-DTC served as a stabilizer that grafted onto the surface of the AuNPs, which rendered the as-prepared nanoparticles a negative surface charge and high colloidal stability. MTT cell viability assay demonstrated that the biomimetic AuNPs possessed neglectful toxicity to the human hepatoma cell, which guaranteed them good biocompatibility for biomedical application. Meanwhile, the biomimetic AuNPs showed a strong SERS effect with an enhancement factor of 9.8 x 10(5) for the sensing of Rhodamine 6G, and two distinct Raman peaks located at 1363 and 1509 cm(-1) could be clearly observed in the cell-imaging experiments. Therefore, biomimetic AuNPs can be explored as an excellent SERS contrast nanoprobe for biomedical imaging, and the amino acid-DTC mediated synthesis of the AuNPs has a great potential in bio-engineering and biomedical imaging applications.
机译:氨基酸二硫代氨基甲酸酯(氨基酸DTC)被开发为金纳米颗粒(AuNPs)仿生合成的还原剂和配体稳定剂,可作为细胞成像的出色表面增强拉曼散射(SERS)对比纳米探针。选择具有不同等电点的甘氨酸(Gly),谷氨酸(Glu)和组氨酸(His)作为代表性的氨基酸候选物,分别通过与二硫化碳(CS2)混合来合成相应的氨基酸-DTC化合物。氨基酸DTC的热解反应引发了AuNPs的还原合成,并且氨基酸DTC的强配位二硫代氨基甲酸酯基团充当了稳定剂,并嫁接到了AuNPs的表面,使制备的纳米颗粒带负电且胶体稳定性高。 MTT细胞活力分析表明,仿生AuNPs对人肝癌细胞的毒性可忽略不计,保证了其在生物医学领域的良好生物相容性。同时,仿生AuNPs对罗丹明6G的检测显示出强大的SERS效应,增强因子为9.8 x 10(5),并且在细胞中可以清楚地观察到位于1363和1509 cm(-1)的两个不同的拉曼峰。成像实验。因此,仿生AuNPs可以作为一种用于生物医学成像的出色的SERS对比纳米探针而被探索,并且氨基酸-DTC介导的AuNPs的合成在生物工程和生物医学成像应用中具有巨大的潜力。

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