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Increased Heating Efficiency and Selective Thermal Ablation of Malignant Tissue with DNA-Encased Multiwalled Carbon Nanotubes

机译:DNA包裹的多壁碳纳米管提高了恶性组织的加热效率和选择性热消融

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摘要

Nanoparticles, including multiwalled carbon nanotubes (MWNTs), strongly absorb near-infrared (nIR) radiation and efficiently convert absorbed energy to released heat which can be used for localized hyperthermia applications. We demonstrate for the first time that DNA-encasement increases heat emission following nIR irradiation of MWNTs, and DNA-encased MWNTs can be used to safely eradicate a tumor mass in vivo. Upon irradiation of DNA-encased MWNTs, heat is generated with a linear dependence on irradiation time and laser power. DNA-encasement resulted in a 3-fold reduction in the concentration of MWNTs required to impart a 10 °C temperature increase in bulk solution temperature. A single treatment consisting of intratumoral injection of MWNTs (100 μL of a 500 μg/mL solution) followed by laser irradiation at 1064 nm, 2.5 W/cm2 completely eradicated PC3 xenograft tumors in 8/8 (100%) of nude mice. Tumors that received only MWNT injection or laser irradiation showed growth rates indistinguishable from nontreated control tumors. Nonmalignant tissues displayed no long-term damage from treatment. The results demonstrate that DNA-encased MWNTs are more efficient at converting nIR irradiation into heat compared to nonencased MWNTs and that DNA-encased MWNTs can be used safely and effectively for the selective thermal ablation of malignant tissue in vivo.
机译:包括多壁碳纳米管(MWNT)在内的纳米粒子可强烈吸收近红外(nIR)辐射,并将吸收的能量有效地转换为释放的热量,可用于局部热疗应用。我们首次证明DNA包裹增加了MWNTs的nIR照射后的热量散发,而DNA包裹的MWNTs可用于安全地根除体内肿瘤。照射DNA包裹的MWNT时,产生的热量与照射时间和激光功率呈线性关系。 DNA包裹导致将整体溶液温度提高10°C所需的MWNT浓度降低了3倍。单一治疗包括瘤内注射MWNT(100μL500μg/ mL溶液),然后在1064 nm,2.5 W / cm 2 的激光照射下彻底根除8/8中的PC3异种移植肿瘤。 100%)的裸鼠。仅接受MWNT注射或激光照射的肿瘤显示出与未治疗的对照肿瘤无法区分的生长速率。非恶性组织未显示出治疗的长期损害。结果表明,与未包裹的MWNT相比,包裹有DNA的MWNT更能有效地将nIR辐射转化为热量,并且包裹有DNA的MWNT可以安全有效地用于体内恶性组织的选择性热消融。

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