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Comparative hyperthermia effects of silica–gold nanoshells with different surface coverage of gold clusters on epithelial tumor cells

机译:具有不同金簇表面覆盖率的二氧化硅-金纳米​​壳对上皮肿瘤细胞的比较热疗作用

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摘要

Silica–gold nanoshell (SGNS), which is a silica core surrounded by a gold layer, was synthesized by seed-mediated coalescence of gold clusters in an electroless plating solution. SGNS variations with different surface coverage of gold clusters were prepared by adjusting the amounts of gold salts in the presence of formaldehyde-reducing agents. Fully covered SGNS (f-SGNS) with connected gold clusters exhibited stronger intensity and more redshift of plasmon bands located around 820 nm than those of partially covered SGNS (p-SGNS) with disconnected gold clusters. Upon irradiation with near-infrared light (30 W/cm2, 700–800 nm), f-SGNS caused a larger hyperthermia effect, generating a large temperature change (ΔT =42°C), as compared to the relatively small temperature change (ΔT =24°C) caused by p-SGNS. The therapeutic antibody, Erbitux™ (ERB), was further conjugated to SGNS for specific tumor cell targeting. The f-ERB-SGNS showed excellent therapeutic efficacy based on the combined effect of both the therapeutic antibody and the full hyperthermia dose under near-infrared irradiation. Thus, SGNS with well-controlled surface morphology of gold shells may be applicable for near-infrared-induced hyperthermia therapy with tunable optical properties.
机译:硅金纳米壳(SGNS)是被金层包围的硅核,是通过在无电镀液中种子介导的金簇的聚结而合成的。通过在甲醛减少剂的存在下调节金盐的量来制备具有不同金簇表面覆盖率的SGNS变化。与不相连的金簇的部分覆盖的SGNS(p-SGNS)相比,与相连的金簇的完全覆盖的SGNS(f-SGNS)表现出更强的强度和820 nm附近的等离激元带的红移。当用近红外光(30 W / cm 2 ,700-800 nm)照射时,f-SGNS引起较大的热疗效果,产生较大的温度变化(ΔT= 42°C),因为与p-SGNS引起的相对较小的温度变化(ΔT= 24°C)相比。将治疗性抗体Erbitux™(ERB)进一步与SGNS偶联,用于特异性靶向肿瘤细胞。 f-ERB-SGNS基于治疗性抗体和近红外辐射下的全部高温治疗剂量的联合作用,显示出优异的治疗效果。因此,具有良好控制的金壳表面形态的SGNS可能适用于具有可调光学特性的近红外热疗。

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