Etiology of Depression: Biological and Environmental Factors in the Development of Depression

Authors

  • Yiwen Hu Bishop Strachan School
  • Vivien Yiu
  • Dr. Robert Clark Mentor, University of Califonia San Diego

DOI:

https://doi.org/10.47611/jsrhs.v10i4.2017

Keywords:

Depression, Gene-environment interaction, Psychology, Mental Disorders, Biology, Environment

Abstract

While depression affects 300 million people worldwide and is one of the most significant contributors to suicide, the mechanisms behind its onset remain unclear. This paper summarizes and discusses several biological and environmental factors that lead to the development of depression in an effort to demonstrate the intricate relationship between the various factors. First, an examination of the roles genetics and the external environment play in depression’s occurrence is considered by comparing adoption studies. In the next section, biological mechanisms of depression, such as alterations in neurotransmitter systems and brain networks, are explored in an analysis of previous studies and by identifying areas that require further investigation. A discussion is included of how several environmental factors, including urbanization and childhood trauma, elevate the risk of depression in certain individuals along with genetic factors. The conclusion encapsulates how various factors interact with one another and calls for further research on the precise mechanisms behind the onset of depressive symptoms. This approach is crucial for understanding the cause of depression and improvements in its treatment. 

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References or Bibliography

Bell, C., Abrams, J., & Nutt, D. (2001). Tryptophan depletion and its implications for psychiatry. The British journal of psychiatry : the journal of mental science, 178, 399–405. https://doi.org/10.1192/bjp.178.5.399

Bremner, J. D., Southwick, S. M., Johnson, D. R., Yehuda, R., & Charney, D. S. (1993). Childhood physical abuse and combat-related posttraumatic stress disorder in Vietnam veterans. The American journal of psychiatry, 150(2), 235–239. https://doi.org/10.1176/ajp.150.2.235

Calderón-Garcidueñas, L., Kavanaugh, M., Block, M., D'Angiulli, A., Delgado-Chávez, R., Torres-Jardón, R., González-Maciel, A., Reynoso-Robles, R., Osnaya, N., Villarreal-Calderon, R., Guo, R., Hua, Z., Zhu, H., Perry, G., & Diaz, P. (2012). Neuroinflammation, hyperphosphorylated tau, diffuse amyloid plaques, and down-regulation of the cellular prion protein in air pollution exposed children and young adults. Journal of Alzheimer's disease : JAD, 28(1), 93–107. https://doi.org/10.3233/JAD-2011-110722

Caspi, A., Hariri, A. R., Holmes, A., Uher, R., & Moffitt, T. E. (2010). Genetic sensitivity to the environment: the case of the serotonin transporter gene and its implications for studying complex diseases and traits. The American journal of psychiatry, 167(5), 509–527. https://doi.org/10.1176/appi.ajp.2010.09101452

Dean, J., & Keshavan, M. (2017). The neurobiology of depression: An integrated view. Asian journal of psychiatry, 27, 101-111.

El Mansari, M., Guiard, B. P., Chernoloz, O., Ghanbari, R., Katz, N., & Blier, P. (2010). Relevance of norepinephrine-dopamine interactions in the treatment of major depressive disorder. CNS neuroscience & therapeutics, 16(3), e1–e17. https://doi.org/10.1111/j.1755-5949.2010.00146.x

Fenoy, A. J., Quevedo, J., & Soares, J. C. (2021). Deep brain stimulation of the “medial forebrain bundle”: a strategy to modulate the reward system and manage treatment-resistant depression. Molecular Psychiatry. https://doi.org/10.1038/s41380-021-01100-6

Heim, C., Newport, D. J., Mletzko, T., Miller, A. H., & Nemeroff, C. B. (2008). The link between childhood trauma and depression: insights from HPA axis studies in humans. Psychoneuroendocrinology, 33(6), 693–710. https://doi.org/10.1016/j.psyneuen.2008.03.008

Jakubczyk, A., Klimkiewicz, A., Krasowska, A., Kopera, M., Sławińska-Ceran, A., Brower, K. J., & Wojnar, M. (2014). History of sexual abuse and suicide attempts in alcohol-dependent patients. Child abuse & neglect, 38(9), 1560–1568. https://doi.org/10.1016/j.chiabu.2014.06.010

Kendler, K. S., Gatz, M., Gardner, C. O., & Pedersen, N. L. (2006). A Swedish national twin study of lifetime major depression. American Journal of Psychiatry, 163(1), 109-114.

Lederbogen, F., Kirsch, P., Haddad, L., Streit, F., Tost, H., Schuch, P., Wüst, S., Pruessner, J. C., Rietschel, M., Deuschle, M., & Meyer-Lindenberg, A. (2011). City living and urban upbringing affect neural social stress processing in humans. Nature, 474(7352), 498–501. https://doi.org/10.1038/nature10190

McCauley, J., Kern, D. E., Kolodner, K., Dill, L., Schroeder, A. F., DeChant, H. K., Ryden, J., Derogatis, L. R., & Bass, E. B. (1997). Clinical characteristics of women with a history of childhood abuse: unhealed wounds. JAMA, 277(17), 1362–1368.

Myers, B., McKlveen, J. M., & Herman, J. P. (2014). Glucocorticoid actions on synapses, circuits, and behavior: implications for the energetics of stress. Frontiers in neuroendocrinology, 35(2), 180–196. https://doi.org/10.1016/j.yfrne.2013.12.003

Polanczyk, G., Caspi, A., Williams, B., Price, T. S., Danese, A., Sugden, K., Uher, R., Poulton, R., & Moffitt, T. E. (2009). Protective effect of CRHR1 gene variants on the development of adult depression following childhood maltreatment: replication and extension. Archives of general psychiatry, 66(9), 978–985. https://doi.org/10.1001/archgenpsychiatry.2009.114

Ressler, K. J., Bradley, B., Mercer, K. B., Deveau, T. C., Smith, A. K., Gillespie, C. F., Nemeroff, C. B., Cubells, J. F., & Binder, E. B. (2010). Polymorphisms in CRHR1 and the serotonin transporter loci: gene x gene x environment interactions on depressive symptoms. American journal of medical genetics. Part B, Neuropsychiatric genetics : the official publication of the International Society of Psychiatric Genetics, 153B(3), 812–824. https://doi.org/10.1002/ajmg.b.31052

Saleh, A., Potter, G. G., McQuoid, D. R., Boyd, B., Turner, R., MacFall, J. R., & Taylor, W. D. (2017). Effects of early life stress on depression, cognitive performance and brain morphology. Psychological medicine, 47(1), 171–181. https://doi.org/10.1017/S0033291716002403

Saveanu, R. V., & Nemeroff, C. B. (2012). Etiology of depression: genetic and environmental factors. Psychiatric Clinics, 35(1), 51-71.

Sygna, K., Aasvang, G. M., Aamodt, G., Oftedal, B., & Krog, N. H. (2014). Road traffic noise, sleep and mental health. Environmental Research, 131, 17–24. https://doi.org/10.1016/j.envres.2014.02.010

Tully, E. C., Iacono, W. G., & McGue, M. (2008). An adoption study of parental depression as an environmental liability for adolescent depression and childhood disruptive disorders. American Journal of Psychiatry, 165(9), 1148-1154.

Van den Bosch, M., & Meyer-Lindenberg, A. (2019). Environmental exposures and depression: biological mechanisms and epidemiological evidence. Annual review of public health, 40, 239-259.

Wang, R., Xue, D., Liu, Y., Chen, H., & Qiu, Y. (2018). The relationship between urbanization and depression in China: the mediating role of neighborhood social capital. International journal for equity in health, 17(1), 1-10.

Willner P. (2005). Chronic mild stress (CMS) revisited: consistency and behavioural-neurobiological concordance in the effects of CMS. Neuropsychobiology, 52(2), 90–110. https://doi.org/10.1159/000087097

Published

11-30-2021

How to Cite

Hu, Y., Yiu, V. ., & Clark, R. (2021). Etiology of Depression: Biological and Environmental Factors in the Development of Depression. Journal of Student Research, 10(4). https://doi.org/10.47611/jsrhs.v10i4.2017

Issue

Section

HS Review Articles