Laser Research Centre, Faculty of Health Sciences, University of Johannesburg, P.O. Box 17011, Doornfontein 2028, South Africa.
Int J Mol Sci. 2021 Nov 21;22(22):12549. doi: 10.3390/ijms222212549.
Metastatic melanoma (MM) is a skin malignancy arising from melanocytes, the incidence of which has been rising in recent years. It poses therapeutic challenges due to its resistance to chemotherapeutic drugs and radiation therapy. Photodynamic therapy (PDT) is an alternative non-invasive modality that requires a photosensitizer (PS), specific wavelength of light, and molecular oxygen. Several studies using conventional PSs have highlighted the need for improved PSs for PDT applications to achieve desired therapeutic outcomes. The incorporation of nanoparticles (NPs) and targeting moieties in PDT have appeared as a promising strategy to circumvent various drawbacks associated with non-specific toxicity, poor water solubility, and low bioavailability of the PSs at targeted tissues. Currently, most studies investigating new developments rely on two-dimensional (2-D) monocultures, which fail to accurately mimic tissue complexity. Therefore, three-dimensional (3-D) cell cultures are ideal models to resemble tumor tissue in terms of architectural and functional properties. This review examines various PS drugs, as well as passive and active targeted PS nanoparticle-mediated platforms for PDT treatment of MM on 2-D and 3-D models. The overall findings of this review concluded that very few PDT studies have been conducted within 3-D models using active PS nanoparticle-mediated platforms, and so require further investigation.
转移性黑色素瘤(MM)是一种起源于黑素细胞的皮肤恶性肿瘤,近年来其发病率一直在上升。由于其对化疗药物和放射治疗的耐药性,给治疗带来了挑战。光动力疗法(PDT)是一种替代的非侵入性治疗方法,需要使用光敏剂(PS)、特定波长的光和分子氧。使用传统 PS 的几项研究强调了需要改进 PS 以用于 PDT 应用,以实现所需的治疗效果。将纳米颗粒(NPs)和靶向部分纳入 PDT 似乎是一种很有前途的策略,可以克服与 PS 的非特异性毒性、差的水溶性和低生物利用度相关的各种缺点在靶向组织中。目前,大多数研究新进展的研究都依赖于二维(2-D)单层培养,无法准确模拟组织的复杂性。因此,三维(3-D)细胞培养是模拟肿瘤组织在结构和功能特性方面的理想模型。本综述检查了各种 PS 药物,以及被动和主动靶向 PS 纳米颗粒介导的平台在 2-D 和 3-D 模型上用于 MM 的 PDT 治疗。本综述的总体结论是,使用主动 PS 纳米颗粒介导的平台在 3-D 模型中进行的 PDT 研究非常少,因此需要进一步研究。