Asociación entre el factor neurotrófico derivado del encéfalo (BDNF) y el trastorno depresivo: una revisión de la literatura

Autores/as

DOI:

https://doi.org/10.33448/rsd-v10i10.19139

Palabras clave:

Factor neurotrófico derivado del encéfalo; Trastorno depresivo; Plasticidad neuronal; Antidepresivos.

Resumen

Objetivos: Este trabajo tuvo como objetivo recopilar y sistematizar los principales estudios disponibles en el área de la salud y que evidencian la estrecha relación entre los niveles de Factor Neurotrófico Derivado del Cerebro (BDNF) con el trastorno depresivo. Metodología: Se seleccionaron 30 artículos relacionados con el BDNF y el trastorno depresivo de plataformas de indexación, publicados entre 2017 y 2021, y el foco estuvo en los artículos que presentaban contribuciones al tema asociando las dos condiciones. Resultados y Discusión: Varios estudios que relacionan el BDNF con el trastorno depresivo demuestran una relación entre la disminución de los niveles de este polipéptido en pacientes con la patología, en comparación con individuos sanos, sirviendo incluso como biomarcador de la enfermedad. Además, se percibe un aumento en los niveles de este factor cuando se realizan tratamientos específicos para la depresión. Otros autores relacionan el aumento de los niveles de BDNF con la realización de actividades físicas y restricción calórica y sugieren la posibilidad de que dicha actividad sea considerada como un tratamiento adyuvante al convencional. Finalmente, otros estudios se centran en alteraciones genéticas y epigenéticas rastreables a través del análisis genómico que pueden interferir con la expresión de BDNF y operar como factores de riesgo incrementados para el desarrollo de trastornos neuropsiquiátricos. Conclusión: Existe evidencia suficiente para apoyar la afirmación de que el BDNF está relacionado y puede ser una herramienta prometedora para el diagnóstico y tratamiento del trastorno depresivo. Sin embargo, continuar el camino de la investigación permitirá consolidar los hallazgos realizados y referidos en este trabajo destacando que la determinación de los niveles de BDNF resultan relevantes al momento de considerar los eventuales predictores del trastorno depresivo.

Citas

Ai, M.., Wang, J., Chen, J., Wang, W., Xu, X., Gan, Y., Li, X., Gou, X., Cao, J., Lv, Z., Chen, X., Wang, H., Ma, Q., & Kuang, L. (2019). Plasma brain-derived neurotrophic factor (BDNF) concentration and the BDNF Val66Met polymorphism in suicide: a prospective study in patients with depressive disorder. Pharmacogenomics and personalized medicine. (12). p.97-106 DOI: https://doi.org/10.2147/PGPM.S201187

Aldoghachi, A. F., Tor, Y. S., Redzun, S. Z., Lokman, K. A. B., Razaq, N. A. A., Shahbudin, A. F., Badamasi, I. M., Cheah, P-S., Stanslas, J., Veerakumarasivam, A., Rosli, R., Ibrahim, N., Lye, M. S., & Ling, K-H. (2019). Screening of brain-derived neurotrophic factor (BDNF) single nucleotide polymorphisms and plasma BDNF levels among Malaysian major depressive disorder patients. PLoS ONE. 14(1). p. e0211241. DOI: https://doi.org/10.1371/journal. pone.0211241.

Arosio, B., Guerini, F. R., Voshaar, R. C., & Aprahamian, I. (2021). Blood Brain-Derived Neurotrophic Factor (BDNF) and Major Depression: Do We Have a Translational Perspective?. Front Behav Neurosci. 626906(15) DOI: 10.3389/fnbeh.2021.626906

Associação Psiquiátrica Americana. (2014). Manual Diagnóstico e Estatístico de Transtornos Mentais (5ª ed.). Arlington, VA: American Psychiatric Publishing

Bassi, S., Costa, L., Lesik, L., Faccioli, J., Finkelsztein, C., & Cajal, A. (2018). Interaction between polymorphisms in SLC6A4 and BDNF on major depressive disorder in a sample of the argentinean population. Rev. Hosp. Ital. 38(1), p. 5-10.

Capibaribe, V. C. C. (2018). Potencial antidepressivo do timol: efeitos sobre os níveis do fator neurotrófico derivado do cérebro (BDNF) no modelo de estresse crônico induzido por corticosterona em camundongos. Dissertação de mestrado. Universidade Federal do Ceará (UFC), Fortaleza, CE, Brasil.

Chiou, Y. J., & Huang, T. L. (2017). Serum Brain-Derived Neurotrophic Factors in Taiwanese Patients with Drug-Naïve First-Episode Major Depressive Disorder: Effects of Antidepressants. International Journal of Neuropsychopharmacology. 20(3). p. 213–218. DOI: doi:10.1093/ijnp/pyw096

Chiou, Y. J., & Huang, T. L. (2019). Accuracy of brain-derived neurotrophic factor levels for differentiating between Taiwanese patients with major depressive disorder or schizophrenia and healthy controls. PLoS ONE. 14(2): e0212373. DOI: https://doi.org/10.1371/journal.pone.0212373

Colaço, C. S. (2018). Avaliação do potencial antidepressivo da ayahuasca em ratos: comportamento, quantificação de monoaminas e do fator neurotrófico derivado do cérebro (BDNF). Dissertação de mestrado, Universidade de Brasília (UnB), Brasília, DF, Brasil.

Colucci-D’Amato, L., Speranza, L., & Volpicelli, F. (2020). Neurotrophic factor BDNF, physiological functions and therapeutic potential in depression, neurodegeneration and brain cancer. Int. J. Mol. Sci. 21(7777). DOI: https://doi.org/10.3390/ijms21207777.

Diniz, D. M., Calabrese, F., Brivio, P., Riva, M. A., Grandjean, J., & Homberg, J. R. (2021). BDNF overexpression in the ventral hippocampus promotes antidepressant- and anxiolytic-like activity in serotonin transporter knockout rats. Int. J. Mol. Sci. 22(5040). DOI: https://doi.org/10.3390/ijms22095040.

Emon, P. Z., Das, R., Nishuty, N. L., Qusar, M. M. A. S., Bhuiyan, M. A., & Islam, R. (2020). Reduced serum BDNF levels are associated with the increased risk for developing MDD: a case–control study with or without antidepressant therapy. BMC Res Notes. 13(83). DOI: https://doi.org/10.1186/s13104-020-04952-3.

Ferrer, A., Labad, J., Salvat-Pujo, N., Barrachina, M., Costas, J., Urretavizcaya, M., Arriba-Arnau, A., Crespo, J. M., Soriano-Mas, C., Carracedo, Á., Menchón, J. M., & Soria, V. (2019). BDNF genetic variants and methylation: effects on cognition in major depressive disorder. Translational Psychiatry. 9(265). DOI: https://doi.org/10.1038/s41398-019-0601-8.

Galvão, T. F., Pansan, T., & Harrad, D. (2015). Principais itens para relatar Revisões sistemáticas e Meta-análises: A recomendação PRISMA. Epidemiol. Serv. Saúde. 24 (2)

Gökçe, E., Güneş, E., & Nalçaci, E. (2019). Effect of exercise on major depressive disorder and schizophrenia: a BDNF focused approach. Arch Neuropsychiatry. 2019(56). p. 302−310. DOI: https://doi.org/10.29399/npa.23369.

Guerra, T. R. B., & Mesquita, E. T. (2020). Visão metabolômica envolvendo depressão e insuficiência cardíaca: uma análise reflexiva. Research, Society and Development. 9(8). p. e455986035. DOI: http://dx.doi.org/10.33448/rsd-v9i8.6035.

Guerrera, C.S., Furneri, G., Grasso, M., Caruso, G., Castellano, S., Drago, F., Di Nuovo, S., & Caraci, F. (2020). Antidepressant Drugs and Physical Activity: A Possible Synergism in the Treatment of Major Depression? Front. Psychol. 857(11). DOI: https://doi.org/10.3389/fpsyg.2020.00857

Khan, M. S., Wu, G. W. Y., Reus, V. I., Hough C. M. Lindqvist, D., Westrinc, A., Nier, B. M., Wolkowitz, O. M., & Mellond, S. H. (2019). Low serum brain-derived neurotrophic factor is associated with suicidal ideation in major depressive disorder. Psychiatry Research. 273. p. 108-113. DOI: https://doi.org/10.1016/j.psychres.2019.01.013

Kishi, T., Yoshimura, R., Ikuta, T., & Iwata, N. (2018). Brain-Derived Neurotrophic Factor and Major Depressive Disorder: Evidence from Meta-Analyses. Frontiers in Psychiatry. 8 (308). DOI: 10.3389/fpsyt.2017.00308

Kurdi, F. N., & Flora, R. (2019). Physical Exercise Increased Brain-Derived Neurotrophic Factor in Elderly Population with Depression. Open access Macedonian journal of medical sciences. 13(7). p.2057–2061. DOI: https://doi.org/10.3889/oamjms.2019.574

Lin, C-C., & Huang, T-L. (2020). Brain-derived neurotrophic factor and mental disorders. biomedical journal. 43. p. 134-142. DOI: https://doi.org/10.1016/j.bj.2020.01.001.

Mizoguchi, Y., Yao, H., Imamura, Y., Hashimoto, M., & Monji, A. (2020). Lower brain‑derived neurotrophic factor levels are associated with age‑related memory impairment in community‑dwelling older adults: the Sefuri study. Nature Scientific Reports. 10 (16442). DOI: https://doi.org/10.1038/s41598-020-73576-1

Oh, H., Piantadosi, S. C., Rocco, B. R., Lewis, D. A., Watkins, S. C., & Sibille, E. (2019). The Role of Dendritic Brain-Derived Neurotrophic Factor Transcripts on Altered Inhibitory Circuitry in Depression. Biological psychiatry, 85(6), 517–526. DOI: https://doi.org/10.1016/j.biopsych.2018.09.026

Park, Y. M., & Lee, B. H. (2018). Alterations in Serum BDNF and GDNF Levels after 12 Weeks of Antidepressant Treatment in Female Outpatients with Major Depressive Disorder. Psychiatry investigation. 8(15). p.818-823. DOI: https://doi.org/10.30773/pi.2018.03.31

Pastori, T. A. N. (2020). Depressão: uma epidemia? Dissertação de mestrado. Fundação Oswaldo Cruz (Escola Nacional de Saúde Pública Sergio Arouca), Rio de Janeiro, RJ, Brasil.

Perito, M. E. S., & Fortunato, J. J. (2012). Marcadores biológicos da depressão: uma revisão sobre a expressão de fatores neurotróficos. Rev Neurocienc. 20(4). p. 597-603.

Phillips, C. (2017). Brain-derived neurotrophic factor, depression, and physical activity: making the neuroplastic connection. Neural Plasticity. 2017(7260130). p. 17. DOI: https://doi.org/10.1155/2017/7260130.

Rafa-Zablocka, K., kreiner, G., baginska, M., & Nalepa, I. (2018). Selective Depletion of CREB in Serotonergic Neurons Affects the Upregulation of Brain-Derived Neurotrophic Factor Evoked by Chronic Fluoxetine Treatment. Frontiers in Neuroscience. 12 (637). DOI: https://doi.org/10.3389/fnins.2018.00637

Ritter, O. M. S., Allonço, M., & Lima, F. (2021). Content analysis as a methodology in Qualis-CAPES A1 journals in Science Education. Research, Society and Development. Research Society and Development. 10(3), p. e43110313378

Rossetti, A. C., Paladini, M. S., Trepci, A., Mallien, A., Riva, M. A., Gass, P., & Molteni, R. (2019). Differential Neuroinflammatory Response in Male and Female Mice: A Role for BDNF. Frontiers in Molecular Neuroscience. 12 (166). DOI: 10.3389/fnmol.2019.00166

Sartori, C. R. (2010). Efeito antidepressivo e cognitivo da atividade física associado a alterações pós-traducionais do Fator Neurotrófico Derivado do Cérebro (BDNF). Tese de doutorado, Universidade Estadual de Campinas (UNICAMP), Campinas, SP, Brasil.

Shan, D., Zheng, YD., & Froud, K. (2021). Brain-derived neurotrophic factor as a clinical biomarker in predicting the development of post-stroke depression: a review of evidence. Cureus. 13(6). p. e15662. DOI: https://doi.org/10.7759/cureus.15662.

Syafrita, Y., Amir, D., Susanti, R., & Fadhilah, I. (2020). Relationship of brain-derived neurotrophic factor, malondialdehyde, and 8-Hydroxy 2-Deoxyguanosine with post-ischemic stroke depression. Dement Neuropsychol. 14(1) p. 41-46. DOI: http://dx.doi.org/10.1590/1980-57642020dn14-010007.

Teng, Z., Wang, L., Li, S., Tan, Y., Qiu, Y., Wu, C., Jin, K., Chen, J., Huang, J., Tang, H., Xiang, H., Wang, B., Yuan, H., & Wu, H. (2021). Low BDNF levels in serum are associated with cognitive impairments in medication-naïve patients with current depressive episode in BD II and MDD. Journal of Affective Disorders. 293. p. 90-9. DOI: https://doi.org/10.1016/j.jad.2021.06.018

Troyan, A. S., & Levada, O. A. (2020). The diagnostic value of the combination of serum brain-derived neurotrophic factor and insulin-like growth factor-1 for major depressive disorder diagnosis and treatment efficacy. Front. Psychiatry. 11(800). DOI: https://doi.org/10.3389/fpsyt.2020.00800.

World Health Organization - WHO. (2017). Depression and other common mental disorders. Global health estimates. Documento técnico. World Health Organization, Genebra, Suíça.

Xu, W., Yao, X., Zhao, F., Zhao, H., Cheng, Z., Yang, W., Cui, R., Xu, S., & Li, B. (2020). Changes in hippocampal plasticity in depression and therapeutic approaches influencing these changes. Neural Plasticity. 2020(8861903). p. 16. DOI: https://doi.org/10.1155/2020/8861903.

Yang, T., Nie, Z., Shu, H., Kuang, Y., Chen, X., Cheng, J., Yu, S., & Liu H. (2020). The Role of BDNF on Neural Plasticity in Depression. Front Cell Neurosci. 82(14). DOI: 10.3389/fncel.2020.00082. PMID: 32351365; PMCID: PMC7174655.

Youssef, M. M., Underwood, M. D., Huang, Y-Y., Hsiung, S-c., Liu, Y., Simpson, N. R., Bakalian, M. J., Rosoklija, G. B., Dwork, A. J., Arango, V., & Mann, J. J. (2018). Association of BDNF Val66Met polymorphism and brain BDNF levels with major depression and suicide. International Journal of Neuropsychopharmacology. 21(6). p. 528–538. DOI: https://doi.org/10.1093/ijnp/pyy008.

Zheng, W., Zhou, Y. L., Wang, C. Y., Lan, X. F., Zhang, B., Zhou, S. M., Yan, S., & Ning, Y. P. (2021). Plasma BDNF concentrations and the antidepressant effects of six ketamine infusions in unipolar and bipolar depression. PeerJ. 10989 (9). DOI: https://doi.org/10.7717/peerj.10989

Zhong, F., Liu, L., Wei, J. L., Hu, Z. L., Li, L., Wang, S., Xu, J. M., Zhou, X. F., Li, C. Q., Yang, Z. Y., & Dai, R. P. (2019). Brain-Derived Neurotrophic Factor Precursor in the Hippocampus Regulates Both Depressive and Anxiety-Like Behaviors in Rats. Front. Psychiatry. 9 (776). DOI: doi: 10.3389/fpsyt.2018.00776

Zhou, C., Zhong, J., Zou, B., Fang, L., Chen, J., Deng, X., Zhang, L., Zhao, X., Qu, Z., Lei, Y., & Lei, T. (2017). Meta-analyses of comparative efficacy of antidepressant medications on peripheral BDNF concentration in patients with depression. PLoS ONE. 12(2): e0172270. DOI: doi:10.1371/journal.pone.0172270

Publicado

15/08/2021

Cómo citar

SANTOS, T. B. dos .; SOUZA, V. H. S. de .; LOPES, N. C. G. .; FERREIRA, F. A. .; LEITE, C. Q. .; SILVA, M. G. S. da; SANTOS, B. F. dos . Asociación entre el factor neurotrófico derivado del encéfalo (BDNF) y el trastorno depresivo: una revisión de la literatura. Research, Society and Development, [S. l.], v. 10, n. 10, p. e461101019139, 2021. DOI: 10.33448/rsd-v10i10.19139. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/19139. Acesso em: 30 jun. 2024.

Número

Sección

Ciencias de la salud