ASSOCIATION OF ENAM C2452T POLYMORPHISM WITH HIGH RATES OF CARIES OCCURRENCE IN AN INDONESIAN POPULATION

Authors

  • NICOLINE NICOLINE Department of Oral Biology, Faculty of Dentistry, Universitas Indonesia, Jakarta, Indonesia.
  • FATIMAH BOENJAMIN PARTAKUSUMA Department of Pediatric Dentistry, Faculty of Dentistry, Universitas Trisakti, Jakarta, Indonesia.
  • HEDIJANTI JOENOES Department of Oral Biology, Faculty of Dentistry, Universitas Indonesia, Jakarta, Indonesia
  • CHRISTOPHER TALBOT epartment of Genetics, University of Leicester, Leicester, UK
  • ELZA IBRAHIM AUERKARI Department of Oral Biology, Faculty of Dentistry, Universitas Indonesia, Jakarta, Indonesia.

DOI:

https://doi.org/10.22159/ijap.2020.v12s1.14228

Keywords:

Caries, Enamelin, Polymorphism, Indonesia

Abstract

Objective: Tooth decay or the caries process is a common dental problem that affects millions of people worldwide. Many risk factors are modifiable,
while others are not (e.g., genetic factors). Polymorphism of the enamelin (ENAM) gene, which is required to ensure production of an essential
protein for enamel development, may pose as a risk factor for the caries process. This study sought to investigate the possibility of ENAM C2452T
polymorphism acting as a risk factor in the caries process.
Methods: The polymerase chain reaction–restriction fragment length polymorphism method was employed to evaluate DNA samples taken from 95
subjects with a high caries prevalence and 89 control subjects for ENAM C2452T polymorphism.
Results: Based on Chi-squared tests, there were significant genotype and allele distribution differences between the group with a high caries
prevalence and the control group (p=0.005 and p=0.007). Polymorphism in this context may, therefore, serve as a risk factor for caries onset and
progression (OR: 3.62).
Conclusion: ENAM C2452T polymorphism is related to the caries process and may constitute a risk factor.

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References

1. National Institute of Dental and Craniofacial Research (NIH). Dental
Caries (Tooth Decay) in Adults (Age 20 to 64); 2018. Available from:
https://www.nidcr.nih.gov/research/data-statistics/dental-caries/adults.
2. Auerkari E, Soufyan A, Dian E, Sumariningsih P, Sarita D,
Sumawinata N, et al. Effect of xylitol on remineralization of
demineralized dental enamel effect of xylitol on remineralization of
demineralized dental enamel. Int J Clin Prev Dent 2010;6:73-7.
3. Featherstone JD. Dental caries: Adynamic disease process. Aust Dent J
2008;53:286-91.
4. Kidd EA, Bechal SJ. Essentials of Dental Caries. New York: Oxford
University Press; 2005.
5. World Health Organization. Oral Health Surveys: Basic Methods.
5th ed. Geneva: World Health Organization; 2013.
6. Olszowski T, Adler G, Janiszewska-Olszowska J, Safranow K,
Kaczmarczyk M. MBL2, MASP2, AMELX, and ENAM gene
polymorphisms and dental caries in Polish children. Oral Dis
2012;18:389-95.
7. Wang M, Qin M, Xia B. The association of enamelin, lactoferrin, and
tumour necrosis factor alpha gene polymorphisms with high caries
susceptibility in Chinese children under 4 years old. Arch Oral Biol
2017;80:75-81.
8. Karki R, Pandya D, Elston RC, Ferlini C. Defining “mutation” and
“polymorphism” in the era of personal genomics. BMC Med Genomics
2015;8:37.
9. National Institutes of Health: Genetics Home Reference; 2016.
Available from: https://www.ghr.nlm.nih.gov/gene. [Last accessed on
2019 Oct 10].
10. National Institutes of Health: Genetics Home Reference, ENAM
Gene; 2017. Available from: https://www.ghr.nlm.nih.gov/gene. [Last
accessed on 2019 Oct 15].
11. Gerreth K, Zaorska K, Zabel M, Borysewicz-Lewicka M, Nowicki M.
Association of ENAM gene single nucleotide polymorphisms with
dental caries in Polish children. Clin Oral Investig 2016;20:631-6.
12. Antunes LA, Antunes LS, Küchler EC, Lopes LB, Moura A, BigonhaRS,
et al. Analysis of the association between polymorphisms in MMP2,
MMP3, MMP9, MMP20, TIMP1, and TIMP2 genes with white spot
lesions and early childhood caries. Int J Paediatr Dent 2016;26:310-9.
13. Bayram M, Deeley K, Reis MF, Trombetta VM, Ruff TD, Sencak RC,
et al. Genetic influences on dental enamel that impact caries differ
between the primary and permanent dentitions. Eur J Oral Sci
2015;123:327-34.
14. Ouryouji K, Imamura Y, Fujigaki Y, Oomori Y, Yanagisawa S,
Miyazawa H, et al. Analysis of mutations in the amelogenin and the
enamelin genes in severe caries in Japanese pediatric patients. Pediatr
Dent J 2008;18:79-85.
15. Auerkari E, Suhartono A, Djamal N, Verisqa F, Suryandari D,
Kusdhany L, et al. CRP and IL-1B gene polymorphisms and CRP in
blood in periodontal disease. Open Dent J 2013;7:88-93.
16. Auerkari EI, Suryandari DA, Umami SS, Kusdhany LS, Siregar TW,
Rahardjo TB, et al. Gene promoter polymorphism of RUNX2 and risk
of osteoporosis in postmenopausal Indonesian women. SAGE Open
Med 2014;2:2050312114531571.
17. Auerkari E, Savitri I, Masulili SL, Suhartono AW. Polymorphism of
osteoprotegerin gene in Indonesian men with periodontitis. Int J Appl
Pharm 2019;11:207-9.
18. National Institutes of Health: Genetics Home Reference, Amelogenesis
Imperfecta; 2017. Available from: https://www.ghr.nlm.nih.gov/
condition/amelogenesis-imperfecta. [Last accessed on 2019 Oct 20].

Published

23-03-2020

How to Cite

NICOLINE, N., PARTAKUSUMA, F. B., JOENOES, H., TALBOT, C., & AUERKARI, E. I. (2020). ASSOCIATION OF ENAM C2452T POLYMORPHISM WITH HIGH RATES OF CARIES OCCURRENCE IN AN INDONESIAN POPULATION. International Journal of Applied Pharmaceutics, 12(1), 1–4. https://doi.org/10.22159/ijap.2020.v12s1.14228

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