Trace elements in psoriasis presentation and treatment.


Journal

Archives of dermatological research
ISSN: 1432-069X
Titre abrégé: Arch Dermatol Res
Pays: Germany
ID NLM: 8000462

Informations de publication

Date de publication:
01 Nov 2024
Historique:
received: 15 08 2024
accepted: 16 10 2024
revised: 01 10 2024
medline: 1 11 2024
pubmed: 1 11 2024
entrez: 1 11 2024
Statut: epublish

Résumé

This systematic literature review examines the relationship between psoriasis and trace metals to elucidate the pathogenesis of this condition, and to explore their potential use as a new route of treatment. Searches were primarily conducted in three databases: PubMed, Scopus, and Embase. The initial search resulted in over 100 articles which were manually assessed by the researchers to determine relevancy. Articles were only included if they were published within the last 12 years and were held to the standards of Boote and Biele's Literature Review Rubric to assess their quality. Of the relevant articles included in this study, the following three elements were largely discussed: calcium, magnesium, and zinc. Although not a trace metal, the macromolecule, calcium, was found to regulate the differentiation and proliferation of cells involved in the pathogenesis of psoriasis. Magnesium is thought to have an indirect relationship with psoriasis due to its role in Vitamin D absorption. Additionally, the zinc ion protects against oxidative stress, which is theorized as a mediator of the inflammatory response central to the pathogenesis of psoriasis. Many studies also investigated the serum levels of these elements to see if they were correlated with the severity of the condition. The serum levels of both calcium and zinc were found to have a negative correlation with the amount of surface area involved during a plaque psoriasis flare. These results indicate a potential benefit from evaluating the serum levels of these key modulators in patients. The lab values would indicate any deficiencies or imbalances, which can assist in a physician's ability to determine an individualized and targeted treatment course. Findings from this review consolidate the information currently available, and support the idea that psoriasis is influenced by trace metals. While there is still limited discussion on the evaluation of this relationship, the reviews findings demonstrate that additional comprehensive research would be warranted.

Identifiants

pubmed: 39485525
doi: 10.1007/s00403-024-03468-1
pii: 10.1007/s00403-024-03468-1
doi:

Substances chimiques

Magnesium I38ZP9992A
Zinc J41CSQ7QDS
Trace Elements 0
Calcium SY7Q814VUP

Types de publication

Journal Article Systematic Review Review

Langues

eng

Sous-ensembles de citation

IM

Pagination

728

Informations de copyright

© 2024. The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature.

Références

A. W. Armstrong and C. Read (2020 May) “Pathophysiology, Clinical Presentation, and Treatment of Psoriasis,” JAMA 323:19;1945. http//doi: 10.1001/jama.2020.4006.
K. Walter, (May 2022) “Psoriasis,” JAMA 327(19):1936 http//doi: 10.1001/jama.2022.5270.
S. M. Wilchowski and T. Lareau (Mar. 2022) “Psoriasis: Are Your Patients D-pleted? A Brief Literature Review on Vitamin D Deficiency and Its Role in Psoriasis.,” J Clin Aesthet Dermatol 15(3) Suppl 1:S30–S33.
L. L. Yin, Y. Zhang, D. M. Guo, K. An, M. S. Yin, and X. Cui (Dec. 2013) “Effects of Zinc on Interleukins and Antioxidant Enzyme Values in Psoriasis-Induced Mice,” Biol Trace Elem Res 155(3) :411–415 http//doi: 10.1007/s12011-013-9799-0.
A. Kirmit, S. Kader, M. Aksoy, C. Bal, C. Nural, and O. Aslan (2020) “Trace elements and oxidative stress status in patients with psoriasis,” Advances in Dermatology and Allergology 37(3) 333–339 http//doi: 10.5114/ada.2020.94265.
S. S. C. Melgaco et al. (2013) “Evaluation of renal function in patients with psoriasis using immunobiologicals,” An Bras Dermatol 88(4) :http//doi: 10.1590/abd1806-4841.20132035.
S. B. Park, K. M. Kim, B. T. Kim, N. S. Joo, and K. N. Kim (Sep. 2021) “Nutritional treatment for psoriasis: A case report,” Adv Integr Med 8(3) :240–243 http//doi: 10.1016/J.AIMED.2020.09.003.
D. D. Bikle, Z. Xie, and C.-L. Tu (2012) “Calcium regulation of keratinocyte differentiation,” Expert Rev Endocrinol Metab (7) 4 :461–472, Jul. http//doi: 10.1586/eem.12.34.
L. I. Ortiz-Lopez, V. Choudhary, and W. B. Bollag, “Updated Perspectives on Keratinocytes and Psoriasis: Keratinocytes are More Than Innocent Bystanders,” Psoriasis: Targets and Therapy 12, 73–87, May 2022, doi: 10.2147/PTT.S327310.
J. Knuever and I. Tantcheva-Poor (Dec. 2017) “Generalized pustular psoriasis: A possible association with severe hypocalcaemia due to primary hypoparathyroidism,” J Dermatol 44(12) :1416–1417 http//doi: 10.1111/1346-8138.13724.
X. Ruan and H. L. Tey (Jun. 2017) “Hypocalcemia: low incidence in flares of pustular and chronic plaque psoriasis,” Int J Dermatol 56(6) http//doi: 10.1111/ijd.13549.
A. Garg, Y. Roske, S. Yamada, T. Uehata, O. Takeuchi, and U. Heinemann (May 2021) “PIN and CCCH Zn-finger domains coordinate RNA targeting in ZC3H12 family endoribonucleases,” Nucleic Acids Res 49(9) :5369–5381, http//doi: 10.1093/nar/gkab316.
G. Borroni et al. (Apr. 2013) “Clinical, Pathological and Immunohistochemical Effects of Arsenical-Ferruginous SPA Waters on Mild-To-Moderate Psoriatic Lesions: A Randomized Placebo-Controlled Study,” Int J Immunopathol Pharmacol 26(2): 495–501 http//doi: 10.1177/039463201302600223.
S.-D. Mohammad, N. Nastaran, K. Sara, and Y. Shima (2012) “Trace elements status in psoriasis and their relationship with the severity of the disease,” Iranian Journal of Dermatology (15)2:38–41 [Online]. Available: https://www.iranjd.ir/article_98167.html

Auteurs

Pratiksha Patra (P)

Fourth-year Medical Student, University of South Florida Morsani College of Medicine, Tampa, FL, USA. patrap@usf.edu.

Tyler Harrison (T)

Second-year Medical Student, University of South Florida Morsani College of Medicine, Tampa, FL, USA.

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