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Plasmonic Photothermal Heating of Intraperitoneal Tumors through the Use of an Implanted Near-Infrared Source

机译:通过使用植入的近红外源对腹膜内肿瘤进行等离子光热加热。

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摘要

Plasmonic nanomaterials including gold nanorods are effective agents for inducing heating in tumors. Because near-infrared (NIR) light has traditionally been delivered using extracorporeal sources, most applications of plasmonic photothermal therapy have focused on isolated subcutaneous tumors. For more complex models of disease such as advanced ovarian cancer, one of the primary barriers to gold nanorod-based strategies is the adequate delivery of NIR light to tumors located at varying depths within the body. To address this limitation, a series of implanted NIR illumination sources are described for the specific heating of gold nanorod-containing tissues. Through computational modeling and ex vivo studies, a candidate device is identified and validated in a model of orthotopic ovarian cancer. As the therapeutic, imaging, and diagnostic applications of plasmonic nanomaterials progress, effective methods for NIR light delivery to challenging anatomical regions will complement ongoing efforts to advance plasmonic photothermal therapy toward clinical use.
机译:包括金纳米棒的等离子体纳米材料是诱导肿瘤发热的有效试剂。由于传统上使用体外光源来传递近红外(NIR)光,因此等离子光热疗法的大多数应用都集中在孤立的皮下肿瘤上。对于更复杂的疾病模型(例如晚期卵巢癌),金纳米棒为基础策略的主要障碍之一是将NIR光充分传递到体内不同深度的肿瘤。为了解决此限制,描述了一系列植入式NIR照明源,用于特定加热含金纳米棒的组织。通过计算建模和离体研究,可以在原位卵巢癌模型中识别并验证候选设备。随着等离激元纳米材料的治疗,成像和诊断应用的发展,将NIR光传输到具有挑战性的解剖区域的有效方法将补充正在进行的将等离激元光热疗法推向临床的努力。

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