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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可提高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 (xLofa500 μg/mL solution) followed by laser irradiation at 1064 nm, 2.5 W/cm~2 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)在内的纳米颗粒可强烈吸收近红外(nIR)辐射,并将吸收的能量有效地转化为释放出的热量,可用于局部热疗应用。我们首次证明DNA包裹增加了MWNTs的nIR辐射后的热量散发,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(100(xLofa500μg/ mL溶液),然后在1064 nm,2.5 W / cm〜2的激光照射下)完全根除8/8(100%)裸鼠中的PC3异种移植肿瘤。仅接受MWNT注射或激光照射的人的增长率与未治疗的对照肿瘤没有区别;非恶性组织未显示治疗的长期损害;结果表明,与未包裹的MWNT相比,DNA包裹的MWNT能够更有效地将nIR辐射转化为热量。 DNA包裹的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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