Department of Biomedical Engineering, National Yang Ming Chiao Tung University, Taipei 112, Taiwan, ROC.
Division of Radiation Oncology, Far Eastern Memorial Hospital, New Taipei City 220, Taiwan, ROC.
ACS Nano. 2023 Jul 25;17(14):13158-13175. doi: 10.1021/acsnano.2c12123. Epub 2023 Jul 12.
Tumour hypoxia plays an important role in modulating tumorigenesis, angiogenesis, invasion, immunosuppression, resistance to treatment, and even maintenance of the stemness of cancer stem cells (CSCs). Moreover, the targeting and treatment of hypoxic cancer cells and CSCs to reduce the influence of tumor hypoxia on cancer therapy remains an imperative clinical problem that needs to be addressed. Since cancer cells upregulate the expression of glucose transporter 1 (GLUT1) through the Warburg effect, we considered the possibility of GLUT1-mediated transcytosis in cancer cells and developed a tumor hypoxia-targeting nanomedicine. Our experimental results indicate that glucosamine-labeled liposomal ceramide can be efficiently transported between cancer cells by GLUT1 transporters and substantially accumulated in the hypoxic area in CSC spheroids and tumor xenografts. We also verified the effects of exogenous ceramide on tumor hypoxia, including important bioactivities such as upregulation of p53 and retinoblastoma protein (RB), downregulation of hypoxia-inducible factor-1 alpha (HIF-1α) expression, disruption of the OCT4-SOX2 network of stemness, and inhibition of CD47 and PD-L1 expression. To achieve an ideal therapeutic outcome, we combined treatment of glucosamine-labeled liposomal ceramide with paclitaxel and carboplatin, and we found an excellent synergistic effect, with tumor clearance being noted in three-fourths of the mice. Overall, our findings provide a potential therapeutic strategy for the treatment of cancer.
肿瘤缺氧在调节肿瘤发生、血管生成、侵袭、免疫抑制、治疗耐药甚至维持癌症干细胞(CSCs)的干性方面发挥着重要作用。此外,针对缺氧癌细胞和 CSCs 并减少肿瘤缺氧对癌症治疗的影响仍然是一个需要解决的迫切临床问题。由于癌细胞通过瓦博格效应上调葡萄糖转运蛋白 1(GLUT1)的表达,我们考虑了 GLUT1 介导的转胞吞作用在癌细胞中的可能性,并开发了一种肿瘤缺氧靶向纳米药物。我们的实验结果表明,氨基葡萄糖标记的脂质体神经酰胺可以通过 GLUT1 转运蛋白在癌细胞之间有效运输,并在 CSC 球体和肿瘤异种移植的缺氧区域大量积累。我们还验证了外源性神经酰胺对肿瘤缺氧的影响,包括上调 p53 和视网膜母细胞瘤蛋白 (RB)、下调缺氧诱导因子-1α (HIF-1α) 表达、破坏干性的 OCT4-SOX2 网络以及抑制 CD47 和 PD-L1 表达等重要生物活性。为了达到理想的治疗效果,我们将氨基葡萄糖标记的脂质体神经酰胺与紫杉醇和卡铂联合治疗,发现具有极好的协同作用,四分之三的小鼠肿瘤得到清除。总的来说,我们的研究结果为癌症治疗提供了一种潜在的治疗策略。