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Synthesis of gold nano-mushrooms via solvent-controlled galvanic replacement to enhance phototherapeutic efficiency

机译:合成的黄金nano-mushrooms通过solvent-controlled电替代,提高phototherapeutic效率

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In advanced galvanic replacement, variable factors such as the combination of two elements where actual redox reaction and post-synthetic structural transformation take place. Research on manufacturing distinctive nanostructures has mainly focused on the shape of the sacrificial nanotemplate, the presence or absence of additives, and the reaction temperature. Here, we have attempted to confirm the dependency on the solvent, which was considered to simply serve as a medium for a homogeneous chemical reaction to proceed by aiding the dispersion of the nanotemplate and reactants. Thus, we obtained mushroom-like Au nanoplates (mAuNPs) by comprehensive galvanic replacement reaction between solvents, additives, and adsorbents. The mAuNPs with a porous Au nanoplate head and a hollow nanotube tail structure were formed via an optimization process in a 50 v/v% solvent comprising water and ethylene glycol. As a result of confirming the galvanic replacement in co-solvent conditions, in which various types of water miscible solvents were introduced, it was revealed that the most critical factors for regulating the surface polymeric environment of the nanoplate were the relative polarity index of the co-solvent and the hydrogen bonding type. These depend on the molecular structure of the solvent. The manufactured mAuNPs exhibited excellent absorbance in the near-infrared region, and efficient photothermal (PT) conversion-mediated heat dissipation under local laser irradiation. These results confirm the viability of the gene-thermo dual-modal combinatorial cancer therapy based on the surface loading of oligonucleotides and peptides, and the PT therapeutic approach in vitro and in vivo.
机译:在先进电替代变量因素如两个元素的结合实际的氧化还原反应和post-synthetic结构转变发生。制造独特的纳米结构主要集中在祭祀的形状nanotemplate,存在与否添加剂、和反应温度。试图确认依赖吗溶剂,这被认为是简单的作为均相化学反应的介质继续协助的色散nanotemplate和反应物。蘑菇型非盟nanoplates (mAuNPs)综合电置换反应溶剂、添加剂和吸附剂。mAuNPs多孔非盟nanoplate头一个通过一个中空的纳米管尾部结构形成优化过程在一个50 v / v %溶剂由水和乙二醇。确认电替代co-solvent条件下,各种类型的介绍了水混相溶剂,它是发现的最关键的因素调节表面聚合的环境nanoplate的相对极性指数co-solvent和氢键类型。这些取决于分子的结构溶剂。优秀的吸光度在近红外区域,和高效的光热光谱分析(PT)当地下conversion-mediated散热激光辐照。可行性的gene-thermo dual-modal基于表面组合癌症治疗加载的寡核苷酸和缩氨酸,PT治疗方法在体外和体内。

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