Breast cancer is the most common cancer and the leading cause of cancer death in women in the world, and risk thereof rises progressively after menopause. Obesity is associated with increased postmenopausal, but not premenopausal, breast cancer risk, particularly for estrogen receptor-positive (ER+) breast cancers, which represent over 70% of all breast cancer cases diagnosed. Importantly, after menopause estrogens are mostly produced in the adipose tissue. These observations suggest a link between the estrogenic milieu associated to menopausal status and obesity, with ER+ breast cancer. This Project investigates if main pre- and postmenopausal estrogens in circulation, estradiol (E2) and estrone (E1) respectively, have different biological functions. In addition, this work investigates if enzymes involved in E1 synthesis, have an oncogenic role in this disease, and could be a new marker for early diagnosis and patient prognosis, and a new therapeutic target for patient´s treatment.
The social impact of this Research Project is based on its potential to reduce disease incidence, morbidity and mortality. In this regards, results obtained from this Project may demonstrate a different role of E2 and E1 in ER+ breast cancer biology; and serve to develop new Hormone Replacement Therapies (HRT) safest for postmenopausal women, reducing the incidence of this disease. Moreover, the identification of E1-synthesizing enzymes as new molecular markers for early disease detection, or even useful to identify subjects at high risk to develop ER+ breast cancer, could reduce significantly the morbidity and mortality of this disease.
The main objective of this project is to better understand the roles of E1 and E2 on obesity-associated ER+ breast cancer development. We hypothesize that E1 plays a key role in the increased risk of developing ER+ breast cancer in obese postmenopausal women through a differential regulation of important molecular pathways in normal tissues than the effect demonstrated for E2. In addition, we hypothesize that high expression of enzymes that convert E2 into E1, have an oncogenic role in the development of this disease and may be a new marker and a new therapeutic target for ER+ breast cancer patients.
After the completion of this project we have obtained several important conclusions:
- Menopause, obesity and cancer increase inflammation in the breast tissue
- Estrone stimulates and estradiol relieves obesity-mediated inflammation
- Adipocytes from the breast tissue, specially thus from obese and postmenopausal women, induce inflammation and progression on breast cancer cells
- Estrone, but not estradiol, activates metastatic programs in ER+ human epithelial cancer cells from the breast and cervix
- Enzymes that convert estradiol into estrone play a key role in ER+ breast carcinogenesis, tumor growth and metastasis