Resistance of primary breast cancer cells with enhanced pluripotency and stem cell activity to sex hormonal stimulation and suppression

SOX2 CD44细胞 同源盒蛋白纳米 癌症干细胞 间充质干细胞 癌症研究 干细胞 生物 乳腺癌 癌细胞 内科学 内分泌学 癌症 医学 细胞 细胞生物学 诱导多能干细胞 胚胎干细胞 生物化学 遗传学 基因
作者
Mostafa Nasr,Mohamed Farghaly,Tarek M. Elsaba,Mohamed A. El‐Mokhtar,Radwa Radwan,Mahmoud Elsabahy,Ahmed H. Abdel-Kareem,Hussein Fakhry,Noha A. Mousa
出处
期刊:The International Journal of Biochemistry & Cell Biology [Elsevier BV]
卷期号:105: 84-93 被引量:7
标识
DOI:10.1016/j.biocel.2018.10.005
摘要

Female sex steroid hormones have a fundamental role in breast cancer. Meanwhile, current evidence supports the contribution of breast cancer stem cells in carcinogenesis, metastasis, and resistance to cytotoxic chemotherapy. Nevertheless, the interaction between breast cancer stem cells with sex hormones or key hormonal antagonists remains elusive. To investigate the effect of diverse sex hormonal stimulation and suppression regimens on the proliferation of a primary human breast cancer cells with stem cell activity. Cells were exposed to estradiol, progesterone, letrozole, ulipristal acetate, or a combination of ulipristal acetate-letrozole, continually for 6 months. Additionally, nanoparticle-linked letrozole and ulipristal acetate formulations were included in a subsequent short-term exposure study. Phenotypic, pathologic, and functional characteristics of unexposed cells were investigated. The proliferation of breast cancer cells was comparable among all hormonal stimulation and suppression groups (P = 0.8). In addition, the nanoparticle encapsulated hormonal antagonists were not able to overcome the observed resistance of cells. Cell characterization showed a mesenchymal-like phenotype overexpressing three master pluripotency markers (Oct 4, SOX2, and Nanog), and 92% of cells were expressing ALDH1A1. Notably, the CD44 high/CD24 low cell population presented only 0.97%–5.4% over repeat analyses. Most cells lacked the expression of mesenchymal markers; however, they showed differentiation into osteogenic and adipogenic lineages. Upon transfer to serum-free culture, the long-term maintained mesenchymal-like cancer cells showed remarkable morphologic plasticity as they switched promptly into an epithelial-like phenotype with significant mammosphere formation capacity (P = 0.008). Breast cancer cells can develop a pluripotent program with enhanced stemness activity that may together contribute to universal resistance to sex hormonal stimulation or deprivation. Isolation and characterization of patient-derived breast cancer stem cells in large clinical studies is therefore crucial to identify new targets for endocrine therapies, potentially directed towards stemness and pluripotency markers. Such direction may help overcoming endocrine resistance and draw attention to breast cancer stem cells’ behaviour under endogenous and exogenous sex hormones throughout a woman’s reproductive life.
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