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Majör Depresif Bozuklukta Gen-Çevre Etkileşimi

Yıl 2024, Cilt: 6 Sayı: 2, 240 - 265, 30.06.2024
https://doi.org/10.47793/hp.1350943

Öz

Majör depresif bozukluk (MDB), ruhsal bozukluklar içerisinde tüm dünyada görülmekte olan yaygın, bireyi zaman içerisinde güçten düşüren bir duygudurum bozukluğudur. MDB etiyolojisinde genetik ve çevresel faktörler birlikte rol oynamaktadır. Bu çalışmanın amacı dünyada en önemli ruhsal bozukluklar arasında yer alan majör depresif bozukluğu gen-çevre etkileşimi açısından incelemektir. Araştırma kapsamında DergiPark, Google Akademik, PsycARTICLES, PubMed, TR Dizin ve Web of Science veri tabanlarında “majör depresif bozukluk”, “depresyon”, “epigenetik”, “depresyon ve epigenetik”, “depresyon ve genetik”, “depresyon ve çevre” anahtar sözcük kullanımı ile İngilizce ve Türkçe tam metin olarak ulaşılan makaleler gözden geçirilmiştir. Alanyazında yer alan gen-çevre etkileşim çalışmaları üzerinde durularak epigenetik mekanizmalar incelenmiştir. Genetik faktörlerin çevresel faktörlerle etkileşimi sonucunda meydana gelen klinik tablo çalışma kapsamında alanyazın ışığında tartışılmıştır. Buna göre, bozukluğun oluşumuna neden olan belirli tek bir genetik faktörden bahsedilememektedir. Olumsuz çevre yaşantılarının genetik ifade üzerinde güçlü etkileri bulunmakla birlikte, bireysel farklılıklar durumu önemli ölçüde değiştirebilmektedir. Bütüncül bir gen-çevre etkileşim modeli, genetik polimorfizmler ve DNA metilasyonu gibi epigenetik mekanizmalar ve çevresel etkiler arasındaki etkileşim mekanizmalarını içermelidir. Yapılan çalışmada majör depresif bozukluk ve gen-çevre etkileşimine genel bakış açısı sunmanın hastalığın doğasını doğru kavramada yardımcı olarak bireylerin yaşam kalitelerinin artmasına, hastalık yükünün azalması neticesinde maliyette ciddi tasarruflara ve morbidite ile mortaliteyi azaltmasına katkı sağlayacağı düşünülmektedir.

Teşekkür

Değerli Editör, “Majör Depresif Bozuklukta Gen-Çevre Etkileşimi” adlı çalışmamızı derginizde değerlendirilmesi amacıyla göndermekteyiz. Bu çalışma herhangi bir dergiye değerlendirilmesi ve/veya yayınlanması için gönderilmemiştir. Çalışma için herhangi bir kurumdan destek alınmamış olup yazarlarla çıkar çatışması da bulunmamaktadır. Sizden olumlu geri bildirim alma umuduyla, çalışmalarınızda başarılar ve kolaylıklar dilerim. Saygılarımla, Uzman Psikolojik Danışman & Klinik Psikolog Beyza ŞANAL GÜNGÖR Hacettepe Üniversitesi, Beytepe, Ankara, Turkey GSM: +9005398416943 e-mail: beyzasanal@hacettepe.edu.tr

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Gene-Environment Interaction in Major Depressive Disorder

Yıl 2024, Cilt: 6 Sayı: 2, 240 - 265, 30.06.2024
https://doi.org/10.47793/hp.1350943

Öz

Major depressive disorder (MDD) is a prevalent mood disorder worldwide, characterized by a pervasive feeling of low mood that diminishes one's capacity over time. The etiology of MDD involves the interplay of genetic and environmental factors. This study aims to scrutinize MDD through the lens of gene-environment interaction, considering it as one of the most significant mental disorders globally. In this research, articles sourced in English and Turkish, employing keywords such as "major depressive disorder", "depression", "epigenetics", "depression and epigenetics", "depression and genetics", and "depression and environment" from databases including DergiPark, Google Scholar, PsycARTICLES, PubMed, TR Index, and Web of Science were reviewed as full text. Epigenetic mechanisms were examined with an emphasis on gene-environment interaction studies in the existing literature. The clinical manifestation arising from the interplay between genetic and environmental factors was deliberated within the study's framework. Accordingly, it is noted that a specific single genetic factor causing the disorder cannot be identified. While adverse environmental experiences have significant effects on genetic expression, individual differences can substantially modify the situation. A comprehensive gene-environment interaction model should encompass mechanisms of interaction between genetic polymorphisms, DNA methylation, and environmental influences such as stressors. It is anticipated that furnishing a comprehensive overview of MSD and gene-environment interaction in this study will enrich comprehension of the disease's nature, thereby enhancing individuals' quality of life, yielding notable cost alleviations through diminished disease burden, and curbing morbidity and mortality.

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  • McLaughlin, K. A., Conron, K. J., Koenen, K. C., & Gilman, S. E. (2010). Childhood adversity, adult stressful life events, and risk of past-year psychiatric disorder: a test of the stress sensitization hypothesis in a population-based sample of adults. Psychological Medicine, 40(10), 1647-1658. https://doi.org/10.1017/s0033291709992121
  • Meltzer, H. Y. & Lowy, M. T. (1987). The serotonin hypothesis of depression. In Psychopharmacology. Raven Press.
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  • Ni, G., van der Werf, J., Zhou, X., Hyppönen, E., Wray, N. R., & Lee, S. H. (2019). Genotype–covariate correlation and interaction disentangled by a whole-genome multivariate reaction norm model. Nature Communications, 10(1), 1-15. https://doi.org/10.1038/s41467-019-10128-w
  • Noble, R. E. (2005). Depression in women. Metabolism, 54(5), 49-52. https://doi.org/10.1016/j.metabol.2005.01.014
  • Olchanski, N., McInnis Myers, M., Halseth, M., Cyr, P. L., Bockstedt, L., Goss, T. F., & Howland, R. H. (2013). The economic burden of treatment-resistant depression. Clinical therapeutics, 35(4), 512-522. https://doi.org/10.1016/j.clinthera.2012.09.001
  • Oldehinkel, A. J., Wittchen, H. U., & Schuster, P. (1999). Prevalence, 20-month incidence and outcome of unipolar depressive disorders in a community sample of adolescents. Psychological Medicine, 29(3), 655-668. https://doi.org/10.1017/s0033291799008454
  • Özdel, L., Bostancı, M., Özdel, O., & Oğuzhanoğlu, N. K. (2002). Üniversite öğrencilerinde depresif belirtiler ve sosyodemografik özelliklerle ilişkisi. Anadolu Psikiyatri Dergisi, 3(3), 155-161.
  • Özgüç, S. (2020). Depresyon hastalarına verilen üstbiliş eğitiminin depresyon ve bilişsel çarpıtma düzeylerine etkisi [Yayımlanmamış Doktora Tezi]. Gaziantep Üniversitesi.
  • Özgür, E., Tığlı, H., & Tığlı, H. (2020). İnsan hastalıklarında epigenetiğin rolüne klinik bakış. İstanbul Gelişim Üniversitesi Sağlık Bilimleri Dergisi, 10, 107-122.
  • Polderman, T. J., Benyamin, B., De Leeuw, C. A., Sullivan, P. F., Van Bochoven, A., Visscher, P. M., & Posthuma, D. (2015). Meta-analysis of the heritability of human traits based on fifty years of twin studies. Nature Genetics, 47(7), 702-709. https://doi.org/10.1038/ng.3285
  • Renner, F., Arntz, A., Leeuw, I., & Huibers, M. J. (2013). Treatment for chronic depression using schema therapy. Clinical Psychology-science and Practice, 20(2), 166–180. https://doi.org/10.1111/cpsp.12032
  • Rice, F. (2010). Genetics of childhood and adolescent depression: insights into etiological heterogeneity and challenges for future genomic research. Genome Medicine, 2(9), 68. https://doi.org/10.1186/gm189
  • Rice, S. M., Fallon, B. J., Aucote, H. M., Möller-Leimkühler, A., Treeby, M. S., & Amminger, G. P. (2015). Longitudinal sex differences of externalising and internalising depression symptom trajectories: Implications for assessment of depression in men from an online study. International Journal of Social Psychiatry, 61(3), 236-240. https://doi.org/10.1177/0020764014540149
  • Rihmer, Z., & Angst, J. (2007). Duygudurum Bozuklukları: Epidemiyoloji. In: Sadock B, Sadock V,eds. Aydın H, Bozkurt A, (çev. eds). Türkçe: Kaplan & Sadock’s Comprehensive Text book of Psychiatry. 8. Baskı. Öncü Basımevi.
  • Roos, E., Burström, B., Saastamoinen, P. & Lahelma, E. (2005). A comparative study of the patterning of women’s health by family status and employment status in Finland and Sweden. Social Science Medicine, 60, 2443-2451. https://doi.org/10.1016/j.socscimed.2004.11.020
  • Sadock, B. J., & Sadock, V. (2007). Kaplan & Sadock’s Comprehensive Textbook of Psychiatry II. cilt. Çeviri: Aydın H, Bozkurt A. Ankara: Güneş Kitapevi, 1498-1580. Schou M (1999) The early European lithium studies. Aust NZJ Psychiatry, 33, Suppl: 39-47.
  • Schaaf, M. J. M., De Kloet, E. R., & Vreugdenhil, E. (2000). Corticosterone effects on BDNF expression in the hippocampus Implications for memory formation. Stress, 3(3), 201-208. https://doi.org/10.3109/10253890009001124
  • Schroeder, M., Hillemacher, T., Bleich, S., & Frieling, H. (2012). The Epigenetic Code in Depression: Implications for treatment. Clinical Pharmacology & Therapeutics, 91(2), 310–314. https://doi.org/10.1038/clpt.2011.282
  • Sharf, R.S. (2012). Theories of Psychotherapy and Counseling: Concepts and Cases. (5th ed.). Cengage Learning Products.
  • Shen, X., Howard, D. M., Adams, M. J., Hill, W. D., Clarke, T. K., Deary, I. J., … McIntosh, A. M. (2020). A phenome-wide association and Mendelian Randomisation study of polygenic risk for depression in UK Biobank. Nature Communications, 11(1), 1–16. https://doi.org/10.1038/s41467-020-16022-0
  • Soysal, A. Ş., & Uzbay, İ. T. (2006). Beyin ödüllendirme sistemi majör depresyon tedavisinde yeni bir hedef olabilir mi?. New/Yeni Symposium Journal, 44(1), 3-13.
  • Sullivan, P. F., Neale, M. C., & Kendler, K. S. (2000). Genetic epidemiology of major depression: Review and meta-analysis. American Journal of Psychiatry, 157(10), 1552-1562. https://doi.org/10.1176/appi.ajp.157.10.1552
  • Tamam, L., & Zeren, T. (2002). Depresyonda serotonerjik düzenekler. Klinik Psikiyatri Dergisi, 5, 11-18. https://www.klinikpsikiyatri.org/jvi.aspx?pdir=kpd&plng=tur&un=KPD-72289
  • Taşğın, E., & Çetin, Ç. F. (2006). Ergenlerde major depresyon: Risk etkenleri, koruyucu etkenler ve dayanıklılık. Çocuk ve Gençlik Ruh Sağlığı Dergisi, 13(2), 87-93. http://cms.galenos.com.tr/Uploads/Article_30297/cogepderg-13-87.pdf
  • Teslovich, T. M., Musunuru, K., Smith, A. V., Edmondson, A. C., Stylianou, I. M., Koseki, M., ... & Dominiczak, A. F. (2010). Biological, clinical and population relevance of 95 loci for blood lipids. Nature, 466(7307), 707-713.
  • Torun, Ö. D. (2019). Majör depresif bozukluk tanısı almış bir grup hastada üstbilişsel işlevlerin incelenmesi [Yayımlanmamış Yüksek Lisans Tezi]. Çağ Üniversitesi.
  • Uchida, S., Yamagata, H., Seki, T., & Watanabe, Y. (2017). Epigenetic mechanisms of major depression: Targeting neuronal plasticity. Psychiatry and Clinical Neurosciences, 72(4), 212-227. https://doi.org/10.1111/pcn.12621
  • Uher, R. (2011). Genes, environment, and individual differences in responding to treatment for depression. Harvard Review of Psychiatry, 19(3), 109-124. https://doi.org/10.3109/10673229.2011.586551
  • Ünal S., ve Özcan E. (2000). Depresyonda hazırlayıcı, ortaya çıkarıcı ve koruyucu etkenler. Anadolu Psikiyatri Dergisi, 1(1), 41-47. https://www.alpha-psychiatry.com/Content/files/sayilar/167/41-48.pdf
  • Ünal, S., Küey, L., Güleç, C., Bekaroğlu, M., Evlice, Y. E., & Kırlı, S. (2002). Depresif bozukluklarda risk etkenleri. Klinik Psikiyatri, 5(1), 8-15. https://jag.journalagent.com/kpd/pdfs/KPD_5_1_8_15.pdf
  • Van Assche, E., Moons, T., Cinar, O., Viechtbauer, W., Oldehinkel, A. J., Van Leeuwen, K., … van Winkel, R. (2017). Gene-based interaction analysis shows GABA ergic genes interacting with parenting in adolescent depressive symptoms. Journal of Child Psychology and Psychiatry, 58(12), 1301–1309. https://doi.org/10.1111/jcpp.12766
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  • Widom, C. S., DuMont, K., & Czaja, S. J. (2007). A prospective investigation of major depressive disorder and comorbidity in abused and neglected children grown up. Archives of General Psychiatry, 64(1), 49. https://doi.org/10.1001/archpsyc.64.1.49
  • Winer, E., Salem, T., Bartoszek, G. & Snodgrass, M. (2015). Major depressive disorder. The Encyclopedia of Clinical Psychology, 1-9. https://doi.org/10.1002/9781118625392.wbecp433
  • Wray, N. R., Ripke, S., Mattheisen, M., Trzaskowski, M., Byrne, E. M., Abdellaoui, A., ... & Viktorin, A. (2018). Genome-wide association analyses identify 44 risk variants and refine the genetic architecture of major depression. Nature Genetics, 50(5), 668-681. https://doi.org/10.1038/s41588-018-0090-3
  • Yarım, G., & Kazak, F. (2015). Beyin kaynaklı nörotrofik faktör. Atatürk Üniversitesi Veteriner Bilimleri Dergisi, 10(2), 120-129. https://doi.org/10.17094 / avbd.02290
  • Yehuda, R., McFarlane, A. C., & Shalev, A. Y. (1998). Predicting the development of posttraumatic stress disorder from the acute response to a traumatic event. Biol. Psychiatry, 44, 1305-1313. https://www.psychiatry.wisc.edu/courses/Nitschke/seminar/yehuda%20et%20al%20bio%20psychiatry%201998.pdf
  • Yıldız, M., & Duy, B. (2015). Sokakta çalışmak ve gelir düzeyi erinlerin benlik saygısı, yaşam doyumu ve depresyon düzeylerine etki eder mi? (Diyarbakır ili örneği). Elementary Education Online, 14(2). http://ilkogretim-online.org.tr/index.php/io/article/view/1289/1145
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  • Zhao, M. Z., Song, X. S., & Ma, J. S. (2021). Genexenvironment interaction in major depressive disorder. World Journal of Clinical Cases, 9(31), 9368-9375. https://doi.org/10.12998/wjcc.v9.i31.9368
Toplam 125 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Gen-Çevre Etkileşimi, Psikopatoloji
Bölüm Derleme
Yazarlar

Beyza Şanal Güngör 0000-0002-8016-9660

Ali Güngör 0000-0002-8064-9496

Yayımlanma Tarihi 30 Haziran 2024
Gönderilme Tarihi 28 Ağustos 2023
Yayımlandığı Sayı Yıl 2024 Cilt: 6 Sayı: 2

Kaynak Göster

APA Şanal Güngör, B., & Güngör, A. (2024). Majör Depresif Bozuklukta Gen-Çevre Etkileşimi. Humanistic Perspective, 6(2), 240-265. https://doi.org/10.47793/hp.1350943


Humanistic Perspective - 2019


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