光动力疗法:一种独特的治疗方式

Rama Krishna Alla, SwatiSwagantika Sarangi, G. Gopala Krishna, Fatima Abusua
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摘要

光动力疗法(PDT)是一种创新的治疗方式,它利用光敏剂、特定波长的光和分子氧的组合来选择性地靶向和破坏异常细胞或组织,同时保留健康的周围结构。这种方法在医学领域获得了极大的关注,因为它有可能为各种疾病提供有效且侵入性较小的治疗选择。PDT的发展是由于需要克服传统治疗方式的局限性,如手术、放射治疗和化疗。与这些方法相比,PDT有几个优点,包括它能够提供靶向治疗,副作用减少,对健康组织的损害最小,以及治疗不同疾病的通用性。PDT的一个主要优点是它的选择性。通过利用病变或异常细胞中积累的光敏剂,PDT可以精确地靶向受影响的组织,同时最大限度地减少对健康组织的损害。这种选择性允许集中治疗,减少对周围结构不必要伤害的可能性。此外,与手术相比,PDT提供更快的恢复时间和潜在的更好的美容效果,因为它不需要大面积的切口或去除组织。此外,PDT的局部特性将全身毒性和长期并发症降至最低,使其成为一种耐受性良好的治疗选择。PDT已经在包括肿瘤学、皮肤科和眼科在内的各个医学领域证明了疗效。它已被用于治疗不同类型的癌症,包括皮肤癌、肺癌、食道癌和膀胱癌,以及治疗年龄相关性黄斑变性和某些皮肤病等疾病。本文综述了PDT技术的发展、机理及其在医学领域的应用
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photodynamic therapy: a distinct therapeutic modality
Photodynamic therapy (PDT) is an innovative treatment modality that utilizes a combination of a photosensitizing agent, specific wavelengths of light, and molecular oxygen to selectively target and destroy abnormal cells or tissues while sparing healthy surrounding structures. This approach has gained significant attention in the medical field due to its potential to provide effective and less invasive treatment options for various conditions. The development of PDT was driven by the need for treatments that overcome the limitations of conventional modalities such as surgery, radiation therapy, and chemotherapy. PDT offers several benefits over these approaches, including its ability to provide targeted therapy, reduced side effects, minimal damage to healthy tissues, and versatility in treating different diseases. One of the key advantages of PDT is its selectivity. By utilizing photosensitizers that accumulate in diseased or abnormal cells, PDT can precisely target the affected tissue while minimizing damage to healthy tissues. This selectivity allows for focused treatment, reducing the potential for unnecessary harm to surrounding structures. Furthermore, PDT offers faster recovery times and potentially better cosmetic outcomes compared to surgery, as it does not require extensive incisions or removal of tissues. Additionally, the localized nature of PDT minimizes systemic toxicity and long-term complications, making it a well-tolerated treatment option. PDT has demonstrated efficacy in various medical fields, including oncology, dermatology, and ophthalmology. It has been used to treat different types of cancers, including skin, lung, oesophagal, and bladder cancer, as well as manage conditions like age-related macular degeneration and certain dermatological disorders. This article reviewed the development, mechanism, and applications of PDT in the medical field
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