Effects of Tibolone on the Central Nervous System: Clinical and Experimental Approaches

Author:

Pinto-Almazán Rodolfo123,Segura-Uribe Julia J.4ORCID,Farfán-García Eunice D.4,Guerra-Araiza Christian5ORCID

Affiliation:

1. Unidad de Investigación del Hospital Regional de Alta Especialidad de Ixtapaluca, Carretera Federal México-Puebla km 34.5, Pueblo Zoquiapan, Municipio de Ixtapaluca, MEX, Mexico

2. Institute for the Developing Mind, Children’s Hospital Los Angeles, Los Angeles, CA, USA

3. Department of Pediatrics, Keck School of Medicine, University of Southern California, Los Angeles, CA, USA

4. Escuela Superior de Medicina, Instituto Politécnico Nacional, Plan de San Luis y Díaz Mirón, 11340 Mexico City, Mexico

5. Unidad de Investigación Médica en Farmacología, Hospital de Especialidades, Centro Médico Nacional Siglo XXI, Instituto Mexicano del Seguro Social, Av. Cuauhtémoc 330, Col. Doctores, Mexico City, Mexico

Abstract

Hormone replacement therapy (HRT) increases the risk of endometrial and breast cancer. A strategy to reduce this incidence is the use of tibolone (TIB). The aim of this paper was to address the effects of TIB on the central nervous system (CNS). For the present review, MEDLINE (via PubMed), LILACS (via BIREME), Ovid Global Health, SCOPUS, Scielo, and PsycINFO (ProQuest Research Library) electronic databases were searched for the results of controlled clinical trials on peri- and postmenopausal women published from 1990 to September 2016. Also, this paper reviews experimental studies performed to analyze neuroprotective effects, cognitive deficits, neuroplasticity, oxidative stress, and stroke using TIB. Although there are few studies on the effect of this hormone in the CNS, it has been reported that TIB decreases lipid peroxidation levels and improves memory and learning. TIB has important neuroprotective effects that could prevent the risk of neurodegenerative diseases in postmenopausal women as well as the benefits of HRT in counteracting hot flashes, improving mood, and libido. Some reports have found that TIB delays cognitive impairment in various models of neuronal damage. It also modifies brain plasticity since it acts as an endocrine modulator regulating neurotransmitters, Tau phosphorylation, and decreasing neuronal death. Finally, its antioxidant effects have also been reported in different animal models.

Funder

FIS/IMSS

Publisher

Hindawi Limited

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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