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DENDRIMER-GOLD NANOPARTICLE HYBRIDS FOR BIOMEDICAL APPLICATIONS

机译:用于生物医学应用的树突式纳米粒子杂交物

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We attempted to produce a new type of functional nanomaterials using combination of dendrimers and gold nanoparticles (GNPs) for biomedical applications We loaded gold nanoparticles into the interior of thermosensitive oligoethylene glycol-modified PAMAM dendrimers by reducing AuCl_4 ions with NaBH_4 in the dendrimer interior. We found that the GNP-loaded dendrimers exhibited aggregation and dissolution responding to the ambient temperature below and above the cloud point. The dendrimers with hydrophobic surface associates strongly with the cells above the LCST and kills efficiently by photo-induced heat generation. We also prepared hybrid dendrimers consisting of a gold nanorod (GNR) core and PEG-modified PAMAM (PEG-PAMAM) dendrons by adding PEG-PAMAM G3 dendrimers with cystamine core at various timings during the GNR growing reaction. The GNR-core PEG-PAMAM G3 dendrimer exhibited excellent heat-generation capability under near-infrared light irradiation. The GNR-core PEG-PAMAM G3 dendrimer injected into mice tumor tissues significantly increased the temperature of the tumor when irradiated with near infrared light, resulting in decreased tumor volume. In addition, we prepared GNR hybridized with PEG-modified PAMAM dendrimers having doxorubicin (DOX). We found that these PEG-dendrimer-DOX-GNR hybrids were able to kill tumor cells through the synergy of DOX-derived chemo-effect and GNR-derived photothermal effect under near infrared irradiation. These dendrimer-GNP hybrids might be useful as a new type of nanomaterial for biomedical applications such as drug delivery and nanomedicine.
机译:我们试图使用树枝状体和金纳米颗粒(GNP)的组合产生新型的功能性纳米材料,用于生物医学应用我们将金纳米颗粒加载到热敏寡糖乙二醇改性的PAMAM树枝状蛋白树枝状体中,通过在树枝内的内部中还原NaBH_4,通过减少Aucl_4离子。我们发现GNP装载的树枝状大分子显示器显示出响应浊点低于和高于浊点的环境温度的聚集和溶解。具有疏水性表面的树枝状大分子与LCST上方的细胞强烈缔合,并通过光诱导的发热有效地杀死。我们还通过在GNR生长反应期间在各个定时添加PEG-PAMAM G3树枝状晶体,制备由金纳米棒(GNR)芯和PEG改性PAMAM(PEG-PAMAM)树突组成的混合树枝状大分子。 GNR芯PEG-PAMAM G3树突在近红外光照射下具有优异的发热能力。注射到小鼠肿瘤组织中的GNR核心PEG-PAMAM G3树枝状体在用近红外光线照射时显着提高了肿瘤的温度,导致肿瘤体积降低。此外,我们制备与具有多柔比星(DOX)的PEG改性的PAMAM树枝状体杂交的GNR。我们发现这些PEG-DENDRIMER-DOX-GNR杂种能够通过在近红外线照射下的DOX衍生的化学效应和GNR衍生的光热效应的协同作用来杀死肿瘤细胞。这些树突式-GNP杂交物可用作生物医学应用的新型纳米材料,例如药物递送和纳米胺。

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