Department of Materials, Escuela Politécnica Nacional (EPN), Quito 170525, Ecuador.
Institute of Physics, Pontificia Universidad Católica de Chile, Santiago 7820436, Chile.
Int J Mol Sci. 2021 Dec 21;23(1):22. doi: 10.3390/ijms23010022.
Within phototherapy, a grand challenge in clinical cancer treatments is to develop a simple, cost-effective, and biocompatible approach to treat this disease using ultra-low doses of light. Carbon-based materials (CBM), such as graphene oxide (GO), reduced GO (r-GO), graphene quantum dots (GQDs), and carbon dots (C-DOTs), are rapidly emerging as a new class of therapeutic materials against cancer. This review summarizes the progress made in recent years regarding the applications of CBM in photodynamic (PDT) and photothermal (PTT) therapies for tumor destruction. The current understanding of the performance of modified CBM, hybrids and composites, is also addressed. This approach seeks to achieve an enhanced antitumor action by improving and modulating the properties of CBM to treat various types of cancer. Metal oxides, organic molecules, biopolymers, therapeutic drugs, among others, have been combined with CBM to treat cancer by PDT, PTT, or synergistic therapies.
在光疗中,临床癌症治疗的一个重大挑战是开发一种简单、经济高效且生物相容的方法,用超低剂量的光来治疗这种疾病。碳基材料(CBM),如氧化石墨烯(GO)、还原氧化石墨烯(r-GO)、石墨烯量子点(GQDs)和碳点(C-DOTs),正迅速成为一类治疗癌症的新型治疗材料。本综述总结了近年来在碳基材料在光动力(PDT)和光热(PTT)疗法中用于肿瘤破坏的应用方面取得的进展。还讨论了对改性 CBM、杂化和复合材料性能的理解。这种方法旨在通过改善和调节 CBM 的特性来治疗各种类型的癌症,从而实现增强的抗肿瘤作用。金属氧化物、有机分子、生物聚合物、治疗药物等已与 CBM 结合,通过 PDT、PTT 或协同疗法治疗癌症。