Haque Munima, Shakil Md Salman, Mahmud Kazi Mustafa
Department of Mathematics and Natural Sciences, BRAC University, Dhaka 1212, Bangladesh.
Department of Biochemistry and Molecular Biology, Jahangirnagar University, Savar, Dhaka 1342, Bangladesh.
Cancers (Basel). 2023 Mar 22;15(6):1892. doi: 10.3390/cancers15061892.
Radiation has been utilized for a long time for the treatment of cancer patients. However, radiotherapy (RT) has many constraints, among which non-selectivity is the primary one. The implementation of nanoparticles (NPs) with RT not only localizes radiation in targeted tissue but also provides significant tumoricidal effect(s) compared to radiation alone. NPs can be functionalized with both biomolecules and therapeutic agents, and their combination significantly reduces the side effects of RT. NP-based RT destroys cancer cells through multiple mechanisms, including ROS generation, which in turn damages DNA and other cellular organelles, inhibiting of the DNA double-strand damage-repair system, obstructing of the cell cycle, regulating of the tumor microenvironment, and killing of cancer stem cells. Furthermore, such combined treatments overcome radioresistance and drug resistance to chemotherapy. Additionally, NP-based RT in combined treatments have shown synergistic therapeutic benefit(s) and enhanced the therapeutic window. Furthermore, a combination of phototherapy, i.e., photodynamic therapy and photothermal therapy with NP-based RT, not only reduces phototoxicity but also offers excellent therapeutic benefits. Moreover, using NPs with RT has shown promise in cancer treatment and shown excellent therapeutic outcomes in clinical trials. Therefore, extensive research in this field will pave the way toward improved RT in cancer treatment.
辐射长期以来一直被用于治疗癌症患者。然而,放射治疗(RT)有许多限制,其中非选择性是主要的限制因素。将纳米颗粒(NPs)与放射治疗相结合,不仅能使辐射定位在靶向组织中,而且与单纯放射治疗相比,还能产生显著的杀瘤效果。纳米颗粒可以用生物分子和治疗剂进行功能化,它们的组合能显著降低放射治疗的副作用。基于纳米颗粒的放射治疗通过多种机制破坏癌细胞,包括产生活性氧(ROS),进而损伤DNA和其他细胞器、抑制DNA双链损伤修复系统、阻碍细胞周期、调节肿瘤微环境以及杀死癌症干细胞。此外,这种联合治疗克服了放射抗性和对化疗的耐药性。另外,联合治疗中基于纳米颗粒的放射治疗已显示出协同治疗益处并扩大了治疗窗口。此外,光疗(即光动力疗法和光热疗法)与基于纳米颗粒的放射治疗相结合,不仅降低了光毒性,而且提供了出色的治疗效果。此外,将纳米颗粒与放射治疗联合使用在癌症治疗中已显示出前景,并在临床试验中取得了出色的治疗结果。因此,该领域的广泛研究将为改善癌症放射治疗铺平道路。