Department of Anatomical and Cellular Pathology, State Key Laboratory of Translational Oncology, The Chinese University of Hong Kong, Shatin, Hong Kong.
Department of Applied Social Sciences, The Hong Kong Polytechnic University, Kowloon, Hong Kong.
J Cell Mol Med. 2021 Oct;25(20):9805-9813. doi: 10.1111/jcmm.16928. Epub 2021 Sep 12.
Cancer cells are high in heterogeneity and versatility, which can easily adapt to the external stresses via both primary and secondary resistance. Targeting of tumour microenvironment (TME) is a new approach and an ideal therapeutic strategy especially for the multidrug resistant cancer. Recently, we invented AANG, a natural compound formula containing traditional Chinese medicine (TCM) derived Smad3 inhibitor Naringenin (NG) and Smad7 activator Asiatic Acid (AA), for rebalancing TGF-β/Smad signalling in the TME, and its implication on the multidrug resistance is still unexplored. Here, we observed that an equilibrium shift of the Smad signalling in patients with hepatocellular carcinoma (HCC), which was dramatically enhanced in the recurrent cases showing p-glycoprotein overexpression. We optimized the formula ratio and dosage of AANG that effectively inhibit the proliferation of our unique human multidrug resistant subclone R-HepG2. Mechanistically, we found that AANG not only inhibits Smad3 at post-transcriptional level, but also upregulates Smad7 at transcriptional level in a synergistic manner in vitro. More importantly, AANG markedly suppressed the growth and p-glycoprotein expression of R-HepG2 xenografts in vivo. Thus, AANG may represent a novel and safe TCM-derived natural compound formula for overcoming HCC with p-glycoprotein-mediated multidrug resistance.
癌细胞具有高度异质性和多功能性,它们可以通过原发性和继发性耐药轻易地适应外部压力。靶向肿瘤微环境(TME)是一种新方法,也是一种理想的治疗策略,特别是对于多药耐药性癌症。最近,我们发明了 AANG,这是一种含有源自中药的 Smad3 抑制剂柚皮苷(NG)和 Smad7 激活剂积雪草酸(AA)的天然化合物配方,用于重新平衡 TME 中的 TGF-β/Smad 信号通路,但其对多药耐药性的影响仍未被探索。在这里,我们观察到肝癌(HCC)患者的 Smad 信号发生了平衡转移,在复发性病例中 p-糖蛋白过度表达时明显增强。我们优化了 AANG 的配方比例和剂量,有效地抑制了我们独特的人源多药耐药亚克隆 R-HepG2 的增殖。从机制上讲,我们发现在体外,AANG 不仅在转录后水平抑制 Smad3,而且还以协同方式在上调 Smad7 水平。更重要的是,AANG 显著抑制了 R-HepG2 异种移植瘤在体内的生长和 p-糖蛋白表达。因此,AANG 可能代表一种新型的、安全的源自中药的天然化合物配方,可用于克服具有 p-糖蛋白介导的多药耐药性的 HCC。