Abstract
Down-regulation of the small leucine-rich proteoglycan decorin in the stroma is considered a poor prognostic factor for breast cancer progression. Ionizing radiation, an established treatment for breast cancer, provokes the premature senescence of the adjacent to the tumor stromal fibroblasts. Here, we showed that senescent human breast stromal fibroblasts are characterized by the down-regulation of decorin at the mRNA and protein level, as well as by its decreased deposition in the pericellular extracellular matrix in vitro. Senescence-associated decorin down-regulation is a long-lasting process rather than an immediate response to γ-irradiation. Growth factors were demonstrated to participate in an autocrine manner in decorin down-regulation, with bFGF and VEGF being the critical mediators of the phenomenon. Autophagy inhibition by chloroquine reduced decorin mRNA levels, while autophagy activation using the mTOR inhibitor rapamycin enhanced decorin transcription. Interestingly, the secretome from a series of both untreated and irradiated human breast cancer cell lines with different molecular profiles inhibited decorin expression in young and senescent stromal fibroblasts, which was annulled by SU5402, a bFGF and VEGF inhibitor. The novel phenotypic trait of senescent human breast stromal fibroblasts revealed here is added to their already described cancer-promoting role via the formation of a tumor-permissive environment.
Funder
General Secretariat for Research and Technology
Reference121 articles.
1. Breast cancer: Insights in disease and influence of drug methotrexate;Yang;RSC Med. Chem.,2020
2. Breast cancer statistics, 2019;DeSantis;CA Cancer J. Clin.,2019
3. Prognostic value of stromal decorin expression in patients with breast cancer: A meta-analysis;Li;J. Thorac. Dis.,2015
4. The role of senescence in cancer development;Mavrogonatou;Semin. Cancer Biol.,2020
5. Extracellular matrix alterations in senescent cells and their significance in tissue homeostasis;Mavrogonatou;Matrix Biol.,2019
Cited by
16 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献