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Comparing the Photothermal Effects of Gold Nanorods and Single-Walled Carbon Nanotubes in Cancer Models

机译:比较金纳米棒和单壁碳纳米管在癌症模型中的光热效应

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摘要

Laser Immunotherapy (LIT) is an innovative cancer treatment modality that is specifically targeted towards treating late-stage, metastatic cancer. This treatment modality utilizes laser irradiation in combination with active immune system stimulation to induce a systemic anti-tumor immune response against metastatic cancer. Nanoparticles have recently been utilized to support and increase the photothermal effect of the laser irradiation by absorbing the light energy produced from the laser and converting that energy into thermal energy. In the past, single-walled carbon nanotubes (SWNTs) have been the main choice in nanotechnology, however, recent studies have shown that gold nanorods (AuNRs) are a prospective alternative that may produce photothermal effects similar to SWNTs. Due to the precedence of gold biomaterials currently having approval for use in various treatments for humans, AuNRs are regarded to be a safer option than SWNTs. The goal of this study is to precisely compare any differences in photothermal effects between AuNRs and SWNTs. Both types of nanoparticles were irradiated with the same wavelength of near-infrared light to ascertain the photothermal effects in gel phantom tumor models, aqueous solutions, and metastatic cancer cell cultures. We discerned from the results that the AuNRs could be equally or more effective than SWNTs in absorbing the light energy from the laser and converting it into thermal energy. In both solution and gel studies, AuNRs were shown to be more efficient than SWNTs in creating thermal energy, while in cell studies, no definitive differences between AuNRs and SWNTs were observed. The cytotoxicity of both nanoparticles needs further assessment in future studies. Given these results, AuNRs are comparable to SWNTs, even superior in certain aspects. This advances the opportunity to use AuNRs as replacements for SWNTs in LIT treatments. The results from this study will contribute to any subsequent studies in the development of this cancer modality using photothermal therapy enhanced by nanoparticles.
机译:激光免疫疗法(LIT)是一种创新的癌症治疗方法,专门针对治疗晚期转移性癌症。该治疗方式利用激光照射结合主动免疫系统刺激来诱导针对转移性癌症的全身性抗肿瘤免疫应答。近年来,通过吸收从激光器产生的光能并将该能转化为热能,纳米颗粒已被用于支持和增强激光辐照的光热效应。过去,单壁碳纳米管(SWNT)一直是纳米技术中的主要选择,但是,最近的研究表明,金纳米棒(AuNR)是一种可能产生类似于SWNT的光热效应的前瞻性替代物。由于目前已批准将金生物材料用于人类的各种治疗,因此AuNR被认为是比单壁碳纳米管更安全的选择。这项研究的目的是精确比较AuNR和SWNT之间光热效应的任何差异。两种类型的纳米粒子均以相同波长的近红外光照射,以确定凝胶体模肿瘤模型,水溶液和转移性癌细胞培养中的光热效应。从结果中我们可以看出,AuNRs在吸收激光的光能并将其转换为热能方面可以比SWNT等效或更有效。在溶液和凝胶研究中,AuNRs在产生热能方面均比SWNTs更有效,而在细胞研究中,未观察到AuNRs和SWNTs之间的确定差异。两种纳米颗粒的细胞毒性都需要在未来的研究中进一步评估。鉴于这些结果,AuNR可与SWNT媲美,甚至在某些方面更胜一筹。这提供了在LIT治疗中使用AuNRs替代SWNTs的机会。这项研究的结果将有助于使用纳米粒子增强的光热疗法开发这种癌症的任何后续研究。

著录项

  • 来源
    《Biophotonics and immune responses XII》|2017年|100650R.1-100650R.6|共6页
  • 会议地点 San Francisco(US)
  • 作者单位

    Biophotonics Research Laboratory, Center for Interdisciplinary Biomedical Education and Research, College of Mathematics and Science, University of Central Oklahoma, Edmond, Oklahoma, USA;

    Biophotonics Research Laboratory, Center for Interdisciplinary Biomedical Education and Research, College of Mathematics and Science, University of Central Oklahoma, Edmond, Oklahoma, USA;

    Biophotonics Research Laboratory, Center for Interdisciplinary Biomedical Education and Research, College of Mathematics and Science, University of Central Oklahoma, Edmond, Oklahoma, USA;

    Biophotonics Research Laboratory, Center for Interdisciplinary Biomedical Education and Research, College of Mathematics and Science, University of Central Oklahoma, Edmond, Oklahoma, USA;

    Biophotonics Research Laboratory, Center for Interdisciplinary Biomedical Education and Research, College of Mathematics and Science, University of Central Oklahoma, Edmond, Oklahoma, USA;

    Biophotonics Research Laboratory, Center for Interdisciplinary Biomedical Education and Research, College of Mathematics and Science, University of Central Oklahoma, Edmond, Oklahoma, USA;

    Biophotonics Research Laboratory, Center for Interdisciplinary Biomedical Education and Research, College of Mathematics and Science, University of Central Oklahoma, Edmond, Oklahoma, USA;

    Biophotonics Research Laboratory, Center for Interdisciplinary Biomedical Education and Research, College of Mathematics and Science, University of Central Oklahoma, Edmond, Oklahoma, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Laser immunotherapy; single-walled carbon nanotubes; gold nanorods; near infrared;

    机译:激光免疫疗法;单壁碳纳米管;金纳米棒;近红外;
  • 入库时间 2022-08-26 14:30:58

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