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Original Research

Open Access

Relationship Between Dental Caries and YKL-40 Levels in Saliva

  • Gulsum Duruk1,*,
  • Esra Laloglu2

1Department of Pediatric Dentistry, Faculty of Dentistry, Inonu University, Malatya, Turkey

2Department of Biochemistry, Faculty of Medicine, Ataturk University, Erzurum, Turkey

DOI: 10.17796/1053-4625-46.2.8 Vol.46,Issue 2,March 2022 pp.137-142

Published: 01 March 2022

*Corresponding Author(s): Gulsum Duruk E-mail: durukgulsum@yahoo.com

Abstract

Objective: YKL-40, a new biomarker of localized inflammation, is secreted by macrophages and regulates inflammation and immune responses. The aim of this study was to investigate YKL-40 levels in saliva and compare the level of this mediator in healthy and unhealthy oral cavity. Study design: 80 children (42-girl, 38-boy), aged 6-15 (mean±SD: 9.35±2.08) were included in this cross-sectional study. The children were divided into four groups: Group-I (control, n=20, dmft/DMFT=0), Group-II (n=20, exist of dental caries), Group-III (n=20, exist of advanced dental caries without pulp exposure), and Group-IV (n=20, exist of advanced dental caries with pulp exposure). The dmft/DMFT, dmfs/DMFS, and the number of advanced dental caries according to the ICDAS and pufa/PUFA index were recorded. Saliva was collected and YKL-40 concentrations were measured. Results: The highest level of YKL-40 was obtained in Group IV, followed by Groups III, II, and I, respectively (p<0.01). There was a positive correlation between YKL-40 and the number of caries There were no statistically significant difference in YKL-40 levels in terms of age and gender (p>0.05). Conclusions: The advanced dental caries with pulp exposure may play an important role in the increasing levels of YKL-40 in saliva.


Keywords

Dental caries; Pulpit; Saliva; YKL-40

Cite and Share

Gulsum Duruk,Esra Laloglu. Relationship Between Dental Caries and YKL-40 Levels in Saliva. Journal of Clinical Pediatric Dentistry. 2022. 46(2);137-142.

References

1. Rehli M, Krause SW, Andreesen R. Molecular characterization of the gene for human cartilage gp-39 (CHI3L1), a member of the chitinase protein family and marker for late stages of macrophage differentiation. Genomics 43(2): 221-225, 1997.

2. Volck B, Price PA, Johansen JS, et al. YKL-40, a mammalian member of the chitinase family, is a matrix protein of specific granules in human neutrophils. Proc Assoc Am Physicians 110(4): 351-360, 1998.

3. Ringsholt M, Hogdall EV, Johansen JS, Price PA, Christensen LH. YKL-40 protein expression in normal adult human tissues--an immunohistochemical study. J Mol Histol 38(1): 33-43, 2007.

4. Fontana RJ, Dienstag JL, Bonkovsky HL, et al. Serum fibrosis markers are associated with liver disease progression in non-responder patients with chronic hepatitis C. Gut 59(10): 1401-1409, 2010.

5. Johansen JS, Jensen BV, Roslind A, Nielsen D, Price PA. Serum YKL-40, a new prognostic biomarker in cancer patients? Cancer Epidemiol Biomarkers Prev 15(2): 194-202, 2006.

6. Letuve S, Kozhich A, Arouche N, et al. YKL-40 is elevated in patients with chronic obstructive pulmonary disease and activates alveolar macrophages. J Immunol 181(7): 5167-5173, 2008.

7. Nielsen AR, Erikstrup C, Johansen JS, et al. Plasma YKL-40: a BMI-independent marker of type 2 diabetes. Diabetes 57(11): 3078-3082, 2008.

8. Turkyilmaz AK, Devrimsel G, Kirbas A, et al. Relationship between pulse wave velocity and serum YKL-40 level in patients with early rheumatoid arthritis. Rheumatol Int 33(11): 2751-2756, 2013.

9. Pezelj-Ribaric S, Anic I, Brekalo I, Miletic I, Hasan M, Simunovic-Soskic M. Detection of tumor necrosis factor alpha in normal and inflamed human dental pulps. Arch Med Res 33(5): 482-484, 2002.

10. D’Souza R, Brown LR, Newland JR, Levy BM, Lachman LB. Detection and characterization of interleukin-1 in human dental pulps. Arch Oral Biol 34(5): 307-313, 1989.

11. Duruk G, Gurbuz T, Aksoy H. Effect of interproximal caries in primary molars on clinical parameters and levels of some biochemical markers in gingival crevicular fluid. J Interferon Cytokine Res 40(2): 75-81, 2020.

12. Duruk G, Aksoy H, Gurbuz T, Laloglu E, Tan H. Oral hygiene in children with epilepsy: Effect of interleukin-1 beta and VEGF levels in gingival crevicular fluid. Dent Med Probl 54(1): 67-71, 2017.

13. Nielsen AR, Plomgaard P, Krabbe KS, Johansen JS, Pedersen BK. IL-6, but not TNF-alpha, increases plasma YKL-40 in human subjects. Cytokine 55(1): 152-155, 2011.

14. Vaananen T, Koskinen A, Paukkeri EL, et al. YKL-40 as a novel factor associated with inflammation and catabolic mechanisms in osteoarthritic joints. Mediators Inflamm 2014: 215140, 2014.

15. Keles ZP, Keles GC, Avci B, Cetinkaya BO, Emingil G. Analysis of YKL-40 acute-phase protein and interleukin-6 levels in periodontal disease. J Periodontol 85(9): 1240-1246, 2014.

16. Pitts NB, Ekstrand KR, Foundation I. International Caries Detection and Assessment System (ICDAS) and its International Caries Classification and Management System (ICCMS) - methods for staging of the caries process and enabling dentists to manage caries. Community Dent Oral Epidemiol 41(1): e41-52, 2013.

17. Monse B, Heinrich-Weltzien R, Benzian H, Holmgren C, van Palenstein Helderman W. PUFA--an index of clinical consequences of untreated dental caries. Community Dent Oral Epidemiol 38(1): 77-82, 2010.

18. Forssten SD, Bjorklund M, Ouwehand AC. Streptococcus mutans, caries and simulation models. Nutrients 2(3): 290-298, 2010.

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