Nanomaterials for photothermal and photodynamic cancer therapy

IF 11.9 1区 物理与天体物理 Q1 PHYSICS, APPLIED Applied physics reviews Pub Date : 2022-03-01 DOI:10.1063/5.0047672
B. Nasseri, E. Alizadeh, F. Bani, S. Davaran, A. Akbarzadeh, Navid Rabiee, A. Bahadori, Mojtaba Ziaei, M. Bagherzadeh, M. Saeb, M. Mozafari, Michael R Hamblin
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引用次数: 35

Abstract

In recent years, the role of optically sensitive nanomaterials has become powerful moieties in therapeutic techniques and has become particularly emphasized. Currently, by the extraordinary development of nanomaterials in different fields of medicine, they have found new applications. Phototherapy modalities, such as photothermal therapy (PTT) by toxic heat generation and photodynamic therapy (PDT) by reactive oxygen species, are known as promising phototherapeutic techniques, which can overcome the limitations of conventional protocols. Moreover, nanomaterial-based PDT and PTT match the simultaneous immune therapy and increase the immune system stimulation resulting from the denaturation of cancer cells. Nevertheless, nanomaterials should have sufficient biocompatibility and efficiency to meet PDT and PTT requirements as therapeutic agents. The present review focuses on the therapeutic potency of PDT, PTT, and also their combined modalities, which are known alternative protocols with minimal morbidity integrated into gold standard treatments such as surgery, chemotherapy, and radiation therapy at tumor treatment and cancer-related infectious diseases. In addition, for deeper understanding, photoablation effects with emphasis on the nature, morphology, and size of photosensitive nanomaterials in PDT and PTT were studied. Finally, transportation techniques and moieties needed as carriers of photosensitizers and photothermal therapy agents to hard-accessed regions, for example, cancerous regions, were investigated.
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光热和光动力治疗癌症的纳米材料
近年来,光敏纳米材料在治疗技术中的作用已成为重要的组成部分,并受到特别重视。目前,由于纳米材料在不同医学领域的非凡发展,它们已经找到了新的应用。光疗方式,如有毒热产生的光热疗法(PTT)和光动力疗法(PDT),被认为是有前途的光疗技术,可以克服传统方案的局限性。此外,基于纳米材料的PDT和PTT匹配同步免疫治疗,增加因癌细胞变性而引起的免疫系统刺激。然而,纳米材料应具有足够的生物相容性和效率,以满足PDT和PTT治疗剂的要求。本综述的重点是PDT、PTT的治疗效果,以及它们的联合治疗方式,这些已知的替代方案与金标准治疗相结合,如手术、化疗和放疗,用于肿瘤治疗和癌症相关的感染性疾病。此外,为了更深入地了解光烧蚀效应,重点研究了光敏纳米材料在PDT和PTT中的性质、形态和尺寸。最后,研究了光敏剂和光热治疗剂运输到难以到达的区域(如癌变区域)所需的运输技术和载体。
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来源期刊
Applied physics reviews
Applied physics reviews PHYSICS, APPLIED-
CiteScore
22.50
自引率
2.00%
发文量
113
审稿时长
2 months
期刊介绍: Applied Physics Reviews (APR) is a journal featuring articles on critical topics in experimental or theoretical research in applied physics and applications of physics to other scientific and engineering branches. The publication includes two main types of articles: Original Research: These articles report on high-quality, novel research studies that are of significant interest to the applied physics community. Reviews: Review articles in APR can either be authoritative and comprehensive assessments of established areas of applied physics or short, timely reviews of recent advances in established fields or emerging areas of applied physics.
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