Institute of Pharmaceutics, College of Pharmaceutical Sciences, Zhejiang University, Hangzhou 310058, China.
Key Laboratory of Imaging Diagnosis and Minimally Invasive Intervention Research, Lishui Hospital of Zhejiang University, The Fifth Affiliated Hospital of Wenzhou Medical University, Lishui 323000, China.
ACS Appl Bio Mater. 2021 Apr 19;4(4):3476-3489. doi: 10.1021/acsabm.1c00033. Epub 2021 Mar 26.
Lactic acid in the tumor microenvironment is highly correlated with the prognosis of tumor chemoembolization, but there are limited clinical strategies to deal with it. To improve the efficacy, NaHCO nanoparticles are innovatively introduced into drug-loaded microspheres to neutralize lactic acid in the tumor microenvironment. Here we showed that multifunctional ethyl cellulose microspheres dual-loaded with doxorubicin (DOX) and NaHCO nanoparticles (DOX/NaHCO-MS) presented excellent antitumor effects by improving the pH of the tumor microenvironment. The homeostasis of the tumor microenvironment was continuously disturbed due to the sustained release of NaHCO nanoparticles, which also led to a significant increase in tumor cell apoptosis (compared with the control and DOX-MS groups). We also showed that the administration of DOX/NaHCO-MS via the hepatic artery in a rabbit model of VX2 orthotopic liver cancer resulted in optimal antitumor efficacy, and the area of tumor necrosis at the embolization site was significantly increased and the proliferation of tumor cells was significantly weakened. The designed DOX/NaHCO-MS exhibited strong synergistic antitumor effects of embolization, chemotherapy, and tumor microenvironment improvement. The present microspheres provided a strategy for the enhancement of the chemoembolization of hepatocellular carcinoma, which could also be extended to other clinical embolization treatments for blood-rich solid tumors.
肿瘤微环境中的乳酸与肿瘤化疗栓塞的预后高度相关,但目前临床上针对这一问题的策略有限。为了提高疗效,我们创新性地将纳米碳酸氢钠引入载药微球,以中和肿瘤微环境中的乳酸。在这里,我们展示了多功能乙基纤维素微球双重负载多柔比星(DOX)和纳米碳酸氢钠(DOX/NaHCO-MS),通过改善肿瘤微环境的 pH 值,表现出优异的抗肿瘤效果。由于纳米碳酸氢钠的持续释放,肿瘤微环境的动态平衡不断受到干扰,这也导致肿瘤细胞凋亡显著增加(与对照组和 DOX-MS 组相比)。我们还表明,在兔 VX2 原位肝癌模型中经肝动脉给予 DOX/NaHCO-MS 可达到最佳的抗肿瘤疗效,栓塞部位的肿瘤坏死面积显著增加,肿瘤细胞的增殖明显减弱。设计的 DOX/NaHCO-MS 表现出栓塞、化疗和改善肿瘤微环境的强烈协同抗肿瘤作用。本研究中的微球为增强肝癌化疗栓塞提供了一种策略,也可扩展应用于其他富含血液的实体肿瘤的临床栓塞治疗。