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Hyperprolactinemia, Induced by Antipsychotics and Resistant to Cabergoline Therapy

https://doi.org/10.30629/2618-6667-2026-24-2-108-118

Abstract

Background: hyperprolactinemia is common in patients with mental disorders receiving antipsychotics. Cabergoline therapy for normalizing prolactin in these patients has been found to be effective. Cases of prolactin-secreting pituitary adenomas resistant to cabergoline have been described in the literature. Clinical observations of antipsychotic-induced/antipsychoticassociated hyperprolactinemia resistant to cabergoline therapy are rare in scientific publications.

The aim of the study was to describe clinical cases and justify treatment approaches to hyperprolactinemia, associated with antipsychotics and resistant to cabergoline therapy.

Patients and Methods: the study involved female patients with endogenous mental disorders undergoing inpatient treatment. Clinical, psychopathological, and laboratory examination methods were used. Case description: Case 1 — a 23-year-old female, mentally ill since the age of 17, was twice treated in mental hospitals for a depressive state within the framework of schizotypal disorder. A severe course of depression with a high risk of suicide and clear resistance to drug therapy was noted; a course of ECT was administered. The therapeutic effect was achieved through the use of antipsychotics, but an increase in prolactin levels was detected. Hyperprolactinemia was accompanied by weight gain, lactorrhea, and hair loss. Cabergoline at a dose of 3.5 mg per week was ineffective. With the correction of antipsychotic therapy, the level of prolactin in the blood returned to normal. Case 2 — a 37-year-old female, mentally ill since the age of 19, was repeatedly treated in mental hospitals for hallucinatory-delusional symptoms. Chronicity of the disease and pronounced resistance to drug treatment were noted. A course of ECT was administered to overcome resistance. Prescription of antipsychotics resulted in a significant reduction in hallucinatory-delusional symptoms and improvement in the patient's quality of life; however, the development of hyperprolactinemia was detected. Cabergoline at a dose of 3.5 mg per week was ineffective. Hyperprolactinemia was virtually asymptomatic (including the absence of hypogonadism), cabergoline was terminated, and psychopharmacotherapy was continued according to the previous treatment regimen.

Conclusion: if cabergoline 3.0 mg/week is ineffective, antipsychotic-induced/ antipsychotic-associated hyperprolactinemia may be considered cabergoline-resistant. The choice of treatment tactics in this case should be carried out individually, taking into account the clinical manifestations of hyperprolactinemia, a comprehensive analysis of laboratory parameters, and the specificities of the course of the mental disorder.

About the Authors

O. A. Yunilaynen
FSBSI «Mental Health Research Centre»
Russian Federation

Olga A. Yunilaynen, Cand. Sci. (Med.), Senior Researcher, Department of Endogenous Mental Disorders and Affective Conditions

Moscow



E. G. Starostina
M.F. Vladimirsky Moscow regional research clinical institute
Russian Federation

Elena G. Starostina, Dr. of Sci. (Med.), Head of Department, Department of Endocrinology

Moscow



P. A. Baranov
FSBSI «Mental Health Research Centre»
Russian Federation

Petr A. Baranov, Cand. Sci. (Med.), Leading Researcher, Department of endogenous mental disorders and affective conditions

Moscow



I. V. Oleichik
FSBSI «Mental Health Research Centre»
Russian Federation

Igor V. Oleichik, Dr. Sci. (Med.), Chief Researcher, Head of Department, Department of Endogenous Mental Disorders and Affective Conditions

Moscow



References

1. Dennis JA, Gittner LS, Payne JD, Nugent K. Characteristics of U.S. adults taking prescription antipsychotic medications, National Health and Nutrition Examination Survey 2013–2018. BMC Psychiatry. 2020;20(1):483. doi: 10.1186/s12888-020-02895-4

2. Yunilainen OA, Starostina EG, Dzeranova LK, Baranov PA, Dedov II. Epidemiology, diagnostics and treatment of antipsychotic-induced hyperprolactinemia. Russian Medical Journal. 2017;25(1):30–36. (In Russ.).

3. Ivanov MV, Stanovaya VV, Zaitseva MM. The Risk of Endocrine Dysfunction and Metabolic Disorders Antipsychotics in Patients with Schizophrenia during Therapy with Second-Generation. Psychiatry (Moscow) (Psikhiatriya). 2025;23(1):39–47. (In Russ.). doi: 10.30629/2618-6667-2025-23-1-39-47

4. Paderina DZ, Tiguncev VV, Stegnij VN. Allelic variants of drd2 and comt genes and antipsychotic-induced hyperprolactinemia in patients with schizophrenia Modern Science: actual problems of theory and practice. Natural and Technical Sciences. 2020;(1):201– 204. doi: 10.51845/2311-3446.2020.1.201

5. Akkaya C, Kaya B, Kotan Z, Sarandol A, Ersoy C, Kirli S. Hyperprolactinemia and possibly related development of prolactinoma during amisulpride treatment; three cases. J Psychopharmacol. 2009;23:723–726. doi: 10.1177/0269881108091252

6. Arcari GT, Mendes AK, Sothern RB. A risperidone-induced prolactinoma resolved when a woman with schizoaffective disorder switched to ziprasidone: a case report. Innov Clin Neurosci. 2012;9:21–24.

7. Szarfman A, Tonning JM. Atypical antipsychotics and pituitary tumors: a pharmacovigilance study. Pharmacotherapy. 2006;26(6):748–58

8. Lertxundi U, Erezuma I, Hernandez R, Medrano J, Garcia M, Aguirre C. Antipsychotics and pituitary tumors: an analysis of the European pharmacovigilance database (EudraVigilance). Int Clin Psychopharmacol. 2019;34(2):89–92. doi: 10.1097/YIC.0000000000000247 PMID: 30531551.

9. Lu Z, Sun Y, Zhang Y, Yu C, Liangkun G, Yundan L, Zhewei K, Xiaoyang F, Weihua Y. Pharmacological treatment strategies for antipsychotic-induced hyperprolactinemia: a systematic review and network meta-analysis. Transl Psychiatry. 2022;12:267. doi: 10.1038/s41398-022-02027-4

10. Mazo GE., Yakovleva YaV. Methods of correction of hyperprolactinemia induced by antipsychotics: current state of the problem and development prospects. V.M. Bekhterev review of psychiatry and medical Psychology. 2024;58(2):107–115. (In Russ.). doi: 10.31363/2313-7053-2024-972

11. Dedov II, Mel'nichenko GA, Dzeranova LK, Andreeva EN, Grineva EN, Marova EI, Mokrysheva NG, Pigarova EA, Vorotnikova SJu, Fedorova NS, Shutova AS, Przhijalkovskaja EG, Ilovajskaja IA, Romancova TI, Dogadin SA, Suplotova LA. Clinical guidelines ‘hyperprolactinemia’ (draft). Obesity and metabolism. 2023;20(2):170–188. (In Russ.). doi: 10.14341/omet13002

12. Kalmykova ZA, Vorotnikova SY, Fedorova NS, Dzeranova LK, Pigarova EA, Vorontsov AV. The efficacy of high-dose cabergoline treatment of prolactinomas resistant to standard doses: a clinical observation. Obesity and metabolism. 2019;16(2):89–94. (In Russ.). doi: 10.14341/omet10243

13. Fedorova NS, Abrosimov AJu, Dzeranova LK, Pigarova EA, Dedov II. Fedorova NS, Abrosimov AIu, Dzeranova LK, Pigarova EA, Dedov II. Pituitary lactotroph adenomas resistant to dopamine agonist treatment: histological and immunohistochemical characteristics. Russian Journal of Archive of Pathology. 2018;80(3):34–39. (In Russ.). doi: 10.17116/patol201880334-39

14. Gorobets LN., Mazo GE. Neuroleptic hyperprolactinemia medicamentous correction. V.M. Bekhterev review of psychiatry and medical psychology. 2017;(2):79–85. (In Russ.).

15. Kalkavoura C, Michopoulos I, Arvanitakis P, Theodoropoulou P, Dimopoulou K, Tzebelikos E, Lykouras L. Effects of cabergoline on hyperprolactinemia, psychopathology, and sexual functioning in schizophrenic patients. Exp Clin Psychopharmacol. 2013;21(4):332–41.


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For citations:


Yunilaynen O.A., Starostina E.G., Baranov P.A., Oleichik I.V. Hyperprolactinemia, Induced by Antipsychotics and Resistant to Cabergoline Therapy. Psychiatry (Moscow) (Psikhiatriya). 2026;24(2):108-118. (In Russ.) https://doi.org/10.30629/2618-6667-2026-24-2-108-118

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