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Updated: Aug 16, 2026

An In Vitro Dormancy Model of Estrogen-sensitive Breast Cancer in the Bone Marrow: A Tool for Molecular Mechanism Studies and Hypothesis Generation
Published on: June 30, 2015
The selective estrogen receptor modulators, tamoxifen and raloxifene, impair dendritic cell differentiation and
Greg Nalbandian1, Vladislava Paharkova-Vatchkova, Allen Mao
1Division of Immunology, Beckman Research Institute, City of Hope National Medical Center, Duarte, CA 91010, USA.
Abstract:
Most immune cells, including myeloid progenitors and terminally differentiated dendritic cells (DC), express estrogen receptors (ER) making these cells sensitive to estrogens. Our laboratory recently demonstrated that 17-beta-estradiol (E2) promotes the GM-CSF-mediated development of CD11c+ CD11b(int) DC from murine bone marrow precursors. We tested whether the therapeutic selective estrogen receptor modulators (SERM), raloxifene and tamoxifen, can perturb DC development and activation. SERM, used in treatment of breast cancer and osteoporosis, bind to ER and mediate tissue-specific agonistic or antagonistic effects. Raloxifene and tamoxifen inhibited the differentiation of estrogen-dependent DC from bone marrow precursors ex vivo in competition experiments with physiological levels of E2. DC differentiated in the presence of SERM were assessed for their capacity to internalize fluoresceinated Ags as well as respond to inflammatory stimuli by increasing surface expression of molecules important for APC function. Although SERM-exposed DC exhibited increased ability to internalize Ags, they were hyporesponsive to bacterial LPS: relative to control DC, they less efficiently up-regulated the expression of MHC class II, CD86, and to a lesser extent, CD80 and CD40. This phenotype indicates that these SERM act to maintain DC in an immature state by inhibiting DC responsiveness to inflammatory stimuli. Thus, raloxifene and tamoxifen impair E2-promoted DC differentiation and reduce the immunostimulatory capacity of DC. These observations suggest that SERM may depress immunity when given to healthy individuals for the prevention of osteoporosis and breast cancer and may interfere with immunotherapeutic strategies to improve antitumor immunity in breast cancer patients.
Insights
Selective estrogen receptor modulators (SERMs) like raloxifene and tamoxifen impair dendritic cell (DC) development and function. These drugs may suppress immunity in healthy individuals and interfere with cancer immunotherapy.
Area of Science:
- Immunology
- Endocrinology
- Pharmacology
Background:
- Immune cells, including dendritic cells (DCs), express estrogen receptors (ERs) and are sensitive to estrogens.
- Estrogen (17-beta-estradiol, E2) promotes the development of DCs from bone marrow precursors.
- Selective estrogen receptor modulators (SERMs) are used to treat breast cancer and osteoporosis by binding to ERs.
Purpose of the Study:
- To investigate the effects of SERMs (raloxifene and tamoxifen) on dendritic cell (DC) development and activation.
- To determine if SERMs perturb the GM-CSF-mediated development of DCs.
- To assess the impact of SERMs on DC function, including antigen uptake and response to inflammatory stimuli.
Main Methods:
- Ex vivo differentiation of murine bone marrow precursors into DCs in the presence of SERMs and/or E2.
- Assessment of DC differentiation by flow cytometry (CD11c, CD11b expression).
- Evaluation of DC function: antigen uptake (fluoresceinated Ags) and response to lipopolysaccharide (LPS) by measuring surface expression of MHC class II, CD86, CD80, and CD40.
Main Results:
- Raloxifene and tamoxifen inhibited the differentiation of estrogen-dependent DCs.
- SERM-exposed DCs showed increased antigen uptake capacity.
- SERM-exposed DCs were hyporesponsive to LPS, exhibiting reduced up-regulation of MHC class II, CD86, CD80, and CD40, indicating an immature phenotype.
Conclusions:
- SERMs impair E2-promoted DC differentiation and reduce the immunostimulatory capacity of DCs.
- These findings suggest SERMs may suppress immunity in healthy individuals and interfere with cancer immunotherapy.
- SERMs appear to maintain DCs in an immature state by inhibiting their response to inflammatory stimuli.
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