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Published on: June 9, 2023
Valsartan as a prophylactic treatment against breast cancer development and niche activation: What molecular sequels
Amira M A Mansour1, Mahmoud M Khattab2, Aiman S El-Khatib2
1Department of Pharmacology and Therapeutics, Faculty of Pharmacy, Pharos University in Alexandria, Alexandria, Egypt.
Aims:
Transactivation of insulin-growth-factor-receptor (IGF-1R) by angiotensin-II-type-1-receptor (AT-1R) was only demonstrated in vascular-smooth-muscle cells and has never been tested in breast-cancer (BC). This investigation addressed the impact of chronic AT-1R blockade by valsartan (Val) on possible concurrent AT-1R/IGF-1R signaling inhibition, regressing BC-tumor-microenvironment (TME) cellular components activation, and hindering BC development.
Main Methods:
The effect of different Val doses (10, 20, 40 & 80 mg/kg/day for 490 days) was tested on dimethylbenz(a)anthracene (DMBA)-induced progesterone-promoted-BC in rats. The influence on intratumoral/circulating angiotensin-II (ANG-II) levels and AT-1R/Mas-R immunofluorescent-expression were assessed. The potential AT-1R/IGF-1R crosstalk within TME-BC-stem-cells (BCSCs) and cancer-associated-fibroblasts (CAFs) was evaluated by fluorescently marking these cells and locating the immunofluorescently-stained AT-1R/IGF-1R in them using confocal-laser-microscopy and further quantified by flow cytometry. In addition, the molecular alterations following blocking AT-1R were inspected including determining Src; crucial for IGF-1R transactivation by AT-1R, Notch-1; IGF-IR transcriptional-regulator, and PI3K/Akt &IL-6/STAT expression. Further, the suppression of CSCs' capabilities to maintain pluripotency, stemness features, epithelial-to-mesenchymal-transition (EMT), and angiogenesis was evaluated by assessing NANOG gene, aldehyde-dehydrogenase (ALDH), N-cadherin and vascular-endothelial-growth-factor (VEGF), respectively. Furthermore, the proliferative marker; Ki-67, was detected by immunostaining, and tumors were histologically graded using Elston-Ellis-modified-Scarff-Bloom-Richardson method.
Key Findings:
Prophylactic Val significantly reduced tumor size, prolonged latency, reduced tumor histopathologic grade, decreased circulating/intratumoral-ANG-II levels, increased Mas-R, and decreased AT1R expression. AT-1R/IGF-1R were co-expressed with a high correlation coefficient on CAFs/BCSCs. Moreover, Val significantly attenuated IGF-1R transactivation and transcriptional regulation via Src and Notch-1 genes' downregulation and reduced Src/IGF-IR-associated PI3K/Akt and IL-6/STAT3 signaling. Further, Val significantly decreased intratumoral NANOG, ALDH, N-cadherin, VEGF, and Ki-67 levels.
Significance:
Chronic Val administration carries a potential for repurposing as adjuvant or conjunct therapy for patients at high risk for BC.
Insights
Valsartan (Val) effectively blocks angiotensin-II-type-1-receptor (AT-1R) and insulin-growth-factor-receptor (IGF-1R) signaling, inhibiting breast cancer (BC) development and regression of tumor microenvironment components. This suggests Val could be repurposed for BC therapy.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Insulin-growth-factor-receptor (IGF-1R) transactivation by angiotensin-II-type-1-receptor (AT-1R) is known in vascular cells but unstudied in breast cancer (BC).
- The AT-1R/IGF-1R signaling pathway's role in BC development and the tumor microenvironment (TME) is not fully understood.
Purpose of the Study:
- To investigate the impact of chronic AT-1R blockade using valsartan (Val) on AT-1R/IGF-1R signaling in BC.
- To assess Val's effect on TME cellular components and BC progression.
Main Methods:
- Administered varying doses of Val to rats with dimethylbenz(a)anthracene-induced BC for 490 days.
- Assessed angiotensin-II (ANG-II) levels, AT-1R/Mas-R expression, and AT-1R/IGF-1R crosstalk in cancer-associated fibroblasts (CAFs) and BC stem cells (BCSCs).
- Evaluated molecular alterations including Src, Notch-1, PI3K/Akt, IL-6/STAT3, NANOG, aldehyde-dehydrogenase (ALDH), N-cadherin, vascular-endothelial-growth-factor (VEGF), and Ki-67.
Main Results:
- Val significantly reduced tumor size, grade, and latency, while decreasing ANG-II and AT-1R expression and increasing Mas-R.
- AT-1R and IGF-1R were co-expressed on CAFs and BCSCs; Val attenuated IGF-1R transactivation and downstream signaling pathways.
- Val suppressed CSC pluripotency, stemness, epithelial-to-mesenchymal-transition (EMT), angiogenesis, and proliferation markers.
Conclusions:
- Chronic valsartan administration shows potential for repurposing as an adjuvant or conjunct therapy for high-risk BC patients.
- Targeting the AT-1R/IGF-1R axis offers a novel therapeutic strategy for breast cancer treatment.
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