4.7 Article

A CFH peptide-decorated liposomal oxymatrine inactivates cancer-associated fibroblasts of hepatocellular carcinoma through epithelial-mesenchymal transition reversion

期刊

JOURNAL OF NANOBIOTECHNOLOGY
卷 20, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12951-022-01311-1

关键词

Liposomal oxymatrine; Cancer-associated fibroblasts; CFH peptide; Epithelial-mesenchymal transition; Tumor microenvironment; Hepatocellular carcinoma

资金

  1. National Natural Science Foundation of China [81873016, 82173985, 81873017]
  2. Open Project of Chinese Materia Medica First-Class Discipline of Nanjing University of Chinese Medicine [2020YLXK015]
  3. Six Talent Peak Project of Jiangsu Province [YY-028-2019]
  4. Medical Research Project of Jiangsu Commission of Health [K2019007]
  5. Key Medical Talent Project of Jiangsu Province [ZDRCA2016036]

向作者/读者索取更多资源

In this study, a modified liposomal oxymatrine was used to target and inactivate cancer-associated fibroblasts (CAFs) through reversing epithelial-mesenchymal transition (EMT), resulting in enhanced anticancer efficacy and remodeling of the hepatocellular carcinoma tumor microenvironment (TME).
Cancer-associated fibroblasts (CAFs) deteriorate tumor microenvironment (TME) and hinder intra-tumoral drug delivery. Direct depleting CAFs exists unpredictable risks of tumor metastasis. Epithelial-mesenchymal transition (EMT) is a critical process of CAFs converted from hepatic stellate cells during hepatocellular tumorigenesis; however, until now the feasibility of reversing EMT to battle hepatocellular carcinoma has not been comprehensively explored. In this study, we report a CFH peptide (CFHKHKSPALSPVGGG)-decorated liposomal oxymatrine (CFH/OM-L) with a high affinity to Tenascin-C for targeted inactivating CAFs through reversing EMT, which is verified by the upregulation of E-cadherin and downregulation of vimentin, N-cadherin, and snail protein in vivo and in vitro. After the combination with icaritin-loaded lipid complex, CFH/OM-L obviously boosts the comprehensive anticancer efficacy in both 3D tumor spheroids and stromal-rich tumor xenograft nude mouse models. The combinational therapy not only effectively reversed the in vivo EMT process but also significantly lowered the collagen, creating favorable conditions for deep penetration of nanoparticles. More importantly, CFH/OM-L does not kill but inactivates CAFs, resulting in not only a low risk of tumor metastasis but also a reprogramming TME, such as M1 tumor-associated macrophages polarization and natural killer cells activation. Such strategy paves a moderate way to remold TME without depleting CAFs and provides a powerful tool to design strategies of combinational hepatocellular carcinoma therapy.

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