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载药型纳米分散体共载瑞香素/多柔比星双重化疗协同抑制转移性乳腺癌

Synergistic inhibition of metastatic breast cancer by dual-chemotherapy with excipient-free rhein/DOX nanodispersions.

机构信息

School of Pharmacy, Nanjing University of Chinese Medicine, 138 Xianlin Avenue, Nanjing, 210023, China.

Jiangsu Engineering Research Center for Efficient Delivery System of TCM, Nanjing, China.

出版信息

J Nanobiotechnology. 2020 Aug 26;18(1):116. doi: 10.1186/s12951-020-00679-2.

Abstract

BACKGROUND

The management of metastatic cancer remains a major challenge in cancer therapy worldwide. The targeted delivery of chemotherapeutic drugs through rationally designed formulations is one potential therapeutic option. Notably, excipient-free nanodispersions that are entirely composed of pharmaceutically active molecules have been evaluated as promising candidates for the next generation of drug formulations. Formulated from the self-assembly of drug molecules, these nanodispersions enable the safe and effective delivery of therapeutic drugs to local disease lesions. Here, we developed a novel and green approach for preparing nanoparticles via the self-assembly of rhein (RHE) and doxorubicin (DOX) molecules, named RHE/DOX nanoparticles (RD NPs); this assembly was associated with the interaction force and did not involve any organic solvents.

RESULTS

According to molecular dynamics (MD) simulations, DOX molecules tend to assemble around RHE molecules through intermolecular forces. This intermolecular retention of DOX was further improved by the nanosizing effect of RD NPs. Compared to free DOX, RD NPs exerted a slightly stronger inhibitory effect on 4T1 cells in the scratch healing assay. As a dual drug-loaded nanoformulation, the efficacy of RD NPs against tumor cells in vitro was synergistically enhanced. Compared to free DOX, the combination of DOX and RHE in nanoparticles exerted a synergistic effect with a combination index (CI) value of 0.51 and showed a stronger ability to induce cell apoptosis. Furthermore, the RD NP treatment not only effectively suppressed primary tumor growth but also significantly inhibited tumor metastasis both in vitro and in vivo, with a better safety profile.

CONCLUSIONS

The generation of pure nanodrugs via a self-assembly approach might hold promise for the development of more efficient and novel excipient-free nanodispersions, particularly for two small molecular antitumor drugs that potentially exert synergistic antiproliferative effects on metastatic breast cancer.

摘要

背景

转移性癌症的治疗仍然是全球癌症治疗的主要挑战。通过合理设计的制剂靶向递送达的化疗药物是一种潜在的治疗选择。值得注意的是,完全由药用活性分子组成的无赋形剂纳米分散体已被评估为下一代药物制剂的有前途的候选物。这些纳米分散体由药物分子自组装而成,可实现治疗药物安全有效地递送到局部疾病部位。在这里,我们开发了一种通过大黄酸(RHE)和阿霉素(DOX)分子自组装制备纳米粒子的新的和绿色的方法,命名为 RHE/DOX 纳米粒子(RD NPs);这种组装与相互作用力有关,不涉及任何有机溶剂。

结果

根据分子动力学(MD)模拟,DOX 分子通过分子间力倾向于围绕 RHE 分子组装。RD NPs 的纳米尺寸效应进一步提高了 DOX 的分子间保留。与游离 DOX 相比,RD NPs 在划痕愈合试验中对 4T1 细胞的抑制作用略强。作为一种双载药纳米制剂,RD NPs 对体外肿瘤细胞的疗效协同增强。与游离 DOX 相比,纳米粒中 DOX 和 RHE 的组合具有协同作用,组合指数(CI)值为 0.51,表现出更强的诱导细胞凋亡能力。此外,RD NP 治疗不仅有效抑制了原发性肿瘤的生长,而且在体内外均显著抑制了肿瘤转移,具有更好的安全性。

结论

通过自组装方法生成纯纳米药物可能为开发更有效和新型的无赋形剂纳米分散体提供希望,特别是对于两种具有协同抗增殖作用的小分子抗肿瘤药物,对转移性乳腺癌具有潜在作用。

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