Biomimetic co-assembled nanodrug of doxorubicin and berberine suppresses chemotherapy-exacerbated breast cancer metastasis

阿霉素 乳腺癌 转移 癌症研究 化疗 癌症 医学 转移性乳腺癌 体内 小檗碱 药理学 癌细胞 肿瘤科 内科学 生物 生物技术
作者
Xiao Zheng,Yawei Zhao,Yong Jia,Dan Shao,Fan Zhang,Madi Sun,Jianati Dawulieti,Hanze Hu,Lianzhi Cui,Yue Pan,Chao Yang,Wen Sun,Shuang Zhang,Kan He,Jing Li,Jin‐Zhi Du,Ming Zhang,Li Chen
出处
期刊:Biomaterials [Elsevier BV]
卷期号:271: 120716-120716 被引量:79
标识
DOI:10.1016/j.biomaterials.2021.120716
摘要

Chemotherapy is a major approach for treating breast cancer patients. Paradoxically, it can also induce cancer progression. Understanding post-chemotherapy metastasis mechanism will help the development of new therapeutic strategies to ameliorate chemotherapy-induced cancer progression. In this study, we deciphered the role of HMGB1 in the regulation of TLR4-mediated epithelial to mesenchymal transitions (EMT) process on doxorubicin (Dox)-treated 4T1 breast cancer cells. Berberine (Ber), a clinically approved alkaloid has been demonstrated as an HMGB1-TLR4 axis regulator to Dox-exacerbated breast cancer metastasis in vitro and in vivo. Hypothesizing that combination of Dox and Ber would be beneficial for breast cancer chemotherapy, we engineered self-assembled nanodrug (DBNP) consisting of Dox and Ber without the aid of additional carriers. After cloaking with 4T1 cell membranes, [email protected] exhibited higher accumulation at tumor sites and prolonged blood circulation time in 4T1 orthotopic tumor-bearing mice than DBNP. Importantly, [email protected] not only effectively inhibited tumor growth with fewer side effects, but also remarkably suppressed pulmonary metastasis via blocking HMGB1-TLR4 axis. Together, our results have provided a promising combination strategy to dampen chemotherapy-exacerbated breast cancer metastasis and shed light on the development of biomimetic nanodrug for efficient and safe breast cancer chemotherapy.
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