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Demographic Differences and Trends of Vitamin D Levels Among the Teenaged Girls in Balochistan

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Journal Cureus
Date 2021 Feb 1
PMID 33520531
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Abstract

Background Vitamin D is a vital micronutrient and plays a vital role in defining the bone mineral density of an individual. There are many factors that regulate the levels of vitamin D in our body. The deficiency in vitamin D leads to various complications, with the most important one weakening of bones. Adolescence defines the degree of bone mineral density, which reduces with the growing age in a gradual fashion. Methods The study was a cross-sectional study conducted in Zarghoon town, Quetta, Pakistan. A sample size of 142 was taken from urban and rural areas. Participants were adolescent girls falling in the age bracket of 13-18 years. The circulating level of 25-hydroxy vitamin D was assessed using the ELISA (enzyme-linked immunosorbent assay) technique. Data were analyzed with SPSS Version 20 (IBM Corp.). Results Overall, vitamin D deficiency was 32.4%, and 9.9 % of girls were found to be severely deficient, where the highest proportion belonged to urban samples. The prevalence rate of vitamin D insufficiency was 39.4%. The urban population had a higher prevalence of low levels of vitamin D. In urban respondents, 49.1% had an insufficient vitamin D level, 33.3% had a deficient vitamin D level, and 17.5% had a severely deficient vitamin D level. In rural respondents, 47.1% had normal vitamin D levels, 32.9% had insufficient vitamin D levels, 15.3% were deficient, and 4.7% were severely deficient. Conclusion It was concluded that vitamin D deficiency has a high prevalence among adolescent girls of school age. Additionally, it is more prevalent in urban areas than in rural areas.

References
1.
Papandreou D, Hamid Z . The Role of Vitamin D in Diabetes and Cardiovascular Disease: An Updated Review of the Literature. Dis Markers. 2015; 2015:580474. PMC: 4630385. DOI: 10.1155/2015/580474. View

2.
Florez H, Martinez R, Chacra W, Strickman-Stein N, Levis S . Outdoor exercise reduces the risk of hypovitaminosis D in the obese. J Steroid Biochem Mol Biol. 2007; 103(3-5):679-81. DOI: 10.1016/j.jsbmb.2006.12.032. View

3.
Holick M . The vitamin D deficiency pandemic: Approaches for diagnosis, treatment and prevention. Rev Endocr Metab Disord. 2017; 18(2):153-165. DOI: 10.1007/s11154-017-9424-1. View

4.
Valtuena J, Gracia-Marco L, Vicente-Rodriguez G, Gonzalez-Gross M, Huybrechts I, Rey-Lopez J . Vitamin D status and physical activity interact to improve bone mass in adolescents. The HELENA Study. Osteoporos Int. 2012; 23(8):2227-37. DOI: 10.1007/s00198-011-1884-7. View

5.
Looker A . Do body fat and exercise modulate vitamin D status?. Nutr Rev. 2007; 65(8 Pt 2):S124-6. DOI: 10.1301/nr.2007.aug.s124-s126. View