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Immunomodulating Effects Depend on Prolactin Levels in Patients with Hyperprolactinemia
Lea Ewerman1, Eva Landberg2, Sandra Hellberg3
1Department of Endocrinology, and Department of Health, Medicine and Caring Sciences, Linköping University, Linköping, Sweden.
Insights
Non-pregnancy related hyperprolactinemia alters immune markers. Moderate prolactin increases Th2/Th17 chemokines and B cell attraction, but very high levels normalize these, with high prolactin decreasing T-helper cell activation in vitro.
Area of Science:
- Immunology
- Endocrinology
Background:
- Prolactin influences immune cells via prolactin receptors.
- Chemokines shape T helper (Th) cell responses.
- Hyperprolactinemia (elevated prolactin) may impact immune function.
Purpose of the Study:
- To investigate the association between non-pregnancy related hyperprolactinemia and circulating levels of chemokines and immunological markers.
- To assess potential dose-dependent effects of prolactin on immune responses.
Main Methods:
- Cross-sectional study comparing 35 hyperprolactinemia patients with 102 healthy controls.
- Assessed serum levels of Th1, Th2, Th17 chemokines (CCL22, CXCL1), B cell chemokine (CXCL13), C-reactive protein, and immunoglobulins.
- Utilized an in vitro model to evaluate prolactin's effect on T-helper cell activation.
Main Results:
- Hyperprolactinemia group showed significantly higher levels of CCL22, CXCL1, CXCL13, and C-reactive protein compared to controls.
- These markers positively correlated with prolactin levels.
- Differences were observed at low/moderate hyperprolactinemia but not at high levels (>3600 mU/l).
- In vitro studies indicated prolactin increased T-helper cell activation at moderate levels but decreased it at high levels.
Conclusions:
- Hyperprolactinemia exhibits immunomodulatory effects, increasing Th2/Th17-associated chemokines and B cell attraction markers.
- A threshold effect exists, with very high prolactin levels not showing these elevations.
- In vitro data suggest a biphasic effect of prolactin on T-helper cell activation, potentially explaining the in vivo findings.
Abstract:
Prolactin is known to have immune modulatory effects acting through the prolactin receptor, which is present on a variety of immune cells. Certain chemokines contribute to form the type of T helper (Th) preponderance in the immune response. The objective of this work was to assess if hyperprolactinemia not related to pregnancy is associated with changes in circulating levels of chemokines and other immunological markers. In this cross sectional study, 35 patients with hyperprolactinemia (5 men), and 102 healthy blood donors (19 men) were included. Serum levels of Th1- Th2- and Th17-associated chemokines, C-reactive protein, immunoglobulins, and the B cell attracting chemokine CXCL13 were assessed. The hyperprolactinemic group had significantly higher levels of Th2 associated CCL22 (p=0.022), Th17 associated CXCL1 (p=0.001), B cell attracting CXCL13 (p=0.003), and C-reactive protein (p<0.001) compared to controls, and these proteins were also positively correlated with prolactin levels. While differences in CCL22, CXCL1, CXCL13, and C-reactive protein were present in patients with low or moderate hyperprolactinemia, no differences were observed at high (>3600 mU/l) prolactin levels. To evaluate a possible dose-associated response to prolactin, an in vitro model was used, showing prolactin-induced increase in T-helper cell activation at moderate levels, while activation decreased at higher levels. Hyperprolactinemia seems to have several immunomodulatory effects and was associated with increased levels of chemokines associated with Th2 and Th17 responses and B cell attraction. However, patients with greatly increased prolactin had normal levels of chemokines, and in vitro, high levels of prolactin decreased T-helper cell activation.
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