Salim Samar A, Salaheldin Taher A, Elmazar Mohamed M, Abdel-Aziz A F, Kamoun Elbadawy A
Nanotechnology Research Center (NTRC), The British University in Egypt (BUE) El-Sherouk City Cairo 11837 Egypt
Biochemistry Group, Dep. of Chemistry, Faculty of Science, Mansoura University Egypt.
RSC Adv. 2022 Nov 25;12(52):33835-33851. doi: 10.1039/d2ra06036a. eCollection 2022 Nov 22.
Hypoxia is a distinctive feature of most solid tumors due to insufficient oxygen supply of the abnormal vasculature, which cannot work with the demands of the fast proliferation of cancer cells. One of the main obstacles to limiting the efficacy of cancer medicines is tumor hypoxia. Thus, oxygen is a vital parameter for controlling the efficacy of different types of cancer therapy, such as chemotherapy (CT), photodynamic therapy (PDT), photothermal therapy (PTT), immunotherapy (IT), and radiotherapy (RT). Numerous technologies have attracted much attention for enhancing oxygen distribution in humans and improving the efficacy of cancer treatment. Such technologies include treatment with hyperbaric oxygen therapy (HBO), delivering oxygen by polysaccharides (, cellulose, gelatin, alginate, and silk) and other biocompatible synthetic polymers (, PMMA, PLA, PVA, PVP and PCL), decreasing oxygen consumption, producing oxygen in tumors, and using polymeric systems as oxygen carriers. Herein, this review provides an overview of the relationship between hypoxia in tumor cells and its role in the limitation of different cancer therapies alongside the numerous strategies for oxygen delivery using polysaccharides and other biomaterials as carriers and for oxygen generation.
由于异常血管系统的氧气供应不足,缺氧是大多数实体瘤的一个显著特征,这种异常血管系统无法满足癌细胞快速增殖的需求。肿瘤缺氧是限制癌症药物疗效的主要障碍之一。因此,氧气是控制不同类型癌症治疗(如化疗(CT)、光动力疗法(PDT)、光热疗法(PTT)、免疫疗法(IT)和放射疗法(RT))疗效的关键参数。众多技术因能增强人体氧气分布并提高癌症治疗效果而备受关注。这些技术包括高压氧疗法(HBO)治疗、通过多糖(纤维素、明胶、藻酸盐和丝)及其他生物相容性合成聚合物(聚甲基丙烯酸甲酯、聚乳酸、聚乙烯醇、聚乙烯吡咯烷酮和聚己内酯)输送氧气、减少氧气消耗、在肿瘤中产生氧气以及使用聚合物系统作为氧气载体。在此,本综述概述了肿瘤细胞中的缺氧与其在限制不同癌症治疗中的作用之间的关系,以及使用多糖和其他生物材料作为载体进行氧气输送和产生氧气的众多策略。