Weyergang Anette, Berstad Maria E B, Bull-Hansen Bente, Olsen Cathrine E, Selbo Pål K, Berg Kristian
Department of Radiation Biology, Institute for Cancer Research, The Norwegian Radium Hospital, Oslo University Hospital, Montebello, Norway.
Photochem Photobiol Sci. 2015 Aug;14(8):1465-75. doi: 10.1039/c5pp00029g. Epub 2015 Apr 7.
Resistance to chemotherapy, molecular targeted therapy as well as radiation therapy is a major obstacle for cancer treatment. Cancer resistance may be exerted through multiple different mechanisms which may be orchestrated as observed in multidrug resistance (MDR). Cancer resistance may be intrinsic or acquired and often leaves patients without any treatment options. Strategies for alternative treatment modalities for resistant cancer are therefore highly warranted. Photochemical internalization (PCI) is a technology for cytosolic delivery of macromolecular therapeutics based on the principles of photodynamic therapy (PDT). The present report reviews the current knowledge of PCI of therapy-resistant cancers. In summary, PCI may be able to circumvent several of the major mechanisms associated with resistance towards chemotherapeutics including increased expression of drug efflux pumps, altered intracellular drug distribution and increased ROS scavenging. Current data also suggest PCI of targeted toxins as highly effective in cancers resistant to clinically available targeted therapy such as monoclonal antibodies (mAbs) and tyrosine kinase inhibitors (TKIs). PCI may therefore, in general, represent a future treatment option for cancers resistant to other therapies.
对化疗、分子靶向治疗以及放射治疗的耐药性是癌症治疗的主要障碍。癌症耐药性可能通过多种不同机制产生,这些机制可能如在多药耐药(MDR)中观察到的那样相互协调。癌症耐药性可能是内在的或后天获得的,常常使患者没有任何治疗选择。因此,针对耐药癌症的替代治疗方式策略非常必要。光化学内化(PCI)是一种基于光动力疗法(PDT)原理将大分子治疗药物递送至胞质的技术。本报告综述了目前关于治疗耐药性癌症的光化学内化的知识。总之,光化学内化或许能够规避与化疗耐药相关的几种主要机制,包括药物外排泵表达增加、细胞内药物分布改变以及活性氧清除增加。目前的数据还表明,在对临床可用的靶向治疗(如单克隆抗体(mAb)和酪氨酸激酶抑制剂(TKI))耐药的癌症中,靶向毒素的光化学内化非常有效。因此,总体而言,光化学内化可能代表了对其他疗法耐药的癌症的一种未来治疗选择。