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近红外光远程调控含一氧化氮聚合物囊泡提高多模式治疗耐药性癌症

Inherently nitric oxide containing polymersomes remotely regulated by NIR for improving multi-modal therapy on drug resistant cancer.

机构信息

Department of Pharmaceutical Engineering, School of Engineering, China Pharmaceutical University, Nanjing, 210009, China.

Department of Pharmaceutical Engineering, School of Engineering, China Pharmaceutical University, Nanjing, 210009, China; Engineering Research Center for Smart Pharmaceutical Manufacturing Technologies, Ministry of Education, School of Engineering, China Pharmaceutical University, Nanjing, 210009, China.

出版信息

Biomaterials. 2021 Oct;277:121118. doi: 10.1016/j.biomaterials.2021.121118. Epub 2021 Sep 1.

Abstract

The therapeutic potential of nitric oxide (NO) has been highly attractive to tumor treatment, especially for surmounting the multidrug resistance (MDR) of cancer. However, the NO-involved therapy remains extremely challenging because of the difficulty to simultaneously control the NO release rate and real-time concentration. Herein, we construct NO-containing polymersomes with high amount of NO donors inherently grown on the polymer chains to keep the stability. These polymersomes can be simultaneously loaded with photosensitizer of IR780 iodide on the membrane layer and chemotherapeutic of DOX·HCl in the lumen. NO release can be triggered by the reduction conditions, and further accelerated by remote NIR irradiation due to the increased local temperature. The instantaneous NO release with high concentration significantly inhibits the P-gp expression and sensitize the chemotherapy, thus overcoming the tumor MDR and improving the anti-tumor activity. Meanwhile, DOX·HCl release is highly promoted at the intracellular conditions because of the cleavage of acid-labile cis-aconitic amide at endo/lysosomal pH, and the improved hydrophilicity of the membrane layer after NO release. The in vivo results show that the single intravenous injection of polymersome formulation companying with NIR irradiation exerts multi-modal therapies of chemotherapy, PTT/PDT, and NO-therapy on the MCF-7/R tumor models, showing superior and combinational treatment efficacy with the complete eradication of tumors and few side effects.

摘要

一氧化氮(NO)的治疗潜力对肿瘤治疗极具吸引力,特别是克服癌症的多药耐药性(MDR)。然而,由于难以同时控制 NO 释放率和实时浓度,涉及 NO 的治疗仍然极具挑战性。在此,我们构建了含有大量内在生长在聚合物链上的 NO 供体的含 NO 聚合物囊泡,以保持其稳定性。这些聚合物囊泡可以同时在膜层上装载近红外光(IR780)碘化物的光敏剂和内腔中的化疗药物盐酸多柔比星(DOX·HCl)。NO 释放可以被还原条件触发,并由于局部温度升高而进一步被远程近红外辐射加速。瞬时高浓度的 NO 释放显著抑制 P-糖蛋白的表达并敏化化疗,从而克服肿瘤 MDR 并提高抗肿瘤活性。同时,由于在溶酶体内/外 pH 下裂解酸敏感的顺乌头酸酰胺以及 NO 释放后膜层的亲水性提高,DOX·HCl 的释放得到极大促进。体内结果表明,伴随近红外辐射的聚合物囊泡制剂的单次静脉注射对 MCF-7/R 肿瘤模型发挥了化疗、光热治疗/光动力治疗和 NO 治疗的多模态治疗作用,表现出优异的联合治疗效果,可完全消除肿瘤且副作用较少。

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