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Gold Nanoshell/Polysaccharide Nanofilm for Controlled Laser-Assisted Tissue Thermal Ablation

机译:金纳米壳/多糖纳米膜可控激光辅助组织热消融。

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We report on the fabrication and characterization of a freestanding ultrathin, mucoadhesive gold nanoshell/polysaccharide multilayer nanocomposite (thermonanofilm, TNF), that can be used for controlled photothermal ablation of tissues through irradiation with near-infrared radiation (NIR) laser. The aim of this work is to provide a new strategy to precisely control particle concentration during photothermalization of cancerous lesions, since unpredictable and aspecific biodistributions still remains the central issue of inorganic nanoparticle-assisted photothermal ablation. Gold nanoshell encapsulation in polysaccharide matrix is achieved by drop casting deposition method combined with spin-assisted layer-by-layer (LbL) assembly. Submicrometric thickness of films ensures tissue adhesion. Basic laser-induced heating functionality has been demonstrated by in vitro TNF-mediated thermal ablation of human neuroblastoma cancer cells, evidenced by irreversible damage to cell membranes and nuclei. Ex vivo localized vaporization and carbonization of animal muscular tissue is also demonstrated by applying TNF onto tissue surface. Thermal distribution in the tissue reaches a steady state in a few seconds, with significant increases in temperature (ΔT > 50) occurring across an 1 mm span, ensuring control of local photothermalization and providing more safety and predictability with respect to traditional laser surgery. A steady-state model of tissue thermalization mediated by TNFs is also introduced, predicting the temperature distribution being known the absorbance of TNFs, the laser power, and the tissue thermal conductivity, thus providing useful guidelines in the development of TNFs. Thermonanofilms can find applications for local photothermal treatment of cancerous lesions and wherever high precision and control of heat treatment is required.
机译:我们报告的独立式超薄,粘膜粘附金纳米壳/多糖多层纳米复合材料(thermonanofilm,TNF)的制造和表征,可用于通过近红外辐射(NIR)激光辐照控制组织的光热消融。这项工作的目的是提供一种新的策略来精确控制癌变病变的光热过程中的颗粒浓度,因为不可预测的非特异性生物分布仍然仍然是无机纳米颗粒辅助光热消融的中心问题。金纳米壳在多糖基质中的包封是通过滴铸沉积法结合自旋辅助的逐层(LbL)组装来实现的。薄膜的亚微米厚度可确保组织粘附。基本的激光诱导的加热功能已通过体外TNF介导的人类神经母细胞瘤癌细胞的热消融来证明,这通过对细胞膜和细胞核的不可逆转的破坏来证明。通过在组织表面上施用TNF也证明了动物肌肉组织的离体局部汽化和碳化。组织中的热分布在几秒钟内达到稳态,并且在1毫米的跨度内会出现温度的显着升高(ΔT> 50),从而确保了对局部光热的控制,并且相对于传统激光手术而言,其安全性和可预测性更高。还介绍了由TNF介导的组织热化的稳态模型,预测了已知的TNF的吸光度,激光功率和组织热导率的温度分布,从而为TNF的发展提供了有用的指导。热纳米膜可用于癌病灶的局部光热处理,以及需要高精度和控制热处理的地方。

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