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Can YKL-40 be an Inflammatory Biomarker in Vitamin D Deficiency?

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Abstract. Vitamin D deficiency is associated with several non-homeostatic conditions and/or diseases like inflammation, atherosclerosis, cardiovascular disease and mortality. YKL-40 is a glycoprotein, secreted by macrophages, neutrophils and different cell types and it is also associated with inflammation and pathological tissue remodeling. In this study, we aimed to evaluate relationship between the proinflammatory biomarkers YKL-40 and hs-CRP levels and vitamin D deficiency. Our study group includes 45 subjects with vitamin D deficiency (Group 1) (20 M, 25 F; mean age 37.72 ± 7.70 years) and 40 age and sex-matched healthy subjects with normal serum levels of vitamin D (Group 2) (19 M, 21 F; mean age 39.26 ± 7.41 years). Plasma 25 (OH) vitamin D levels were measured by liquid chromatography-tandem mass spectrometry (LC-MS/MS) method. Plasma YKL-40 analysis was performed by ELISA. Serum hs-CRP levels were measured by nephelometric method. Plasma vitamin D levels below 20 ng/mL were accepted as vitamin D deficiency. Although we could not find any significant differences by means of serum hs-CRP levels between Group 1 and Group 2 (2.21 (0.27–11.70); 1.79 (0.16–9.85) mg/L, p = 0.247), plasma YKL-40 levels were significantly higher in group 1 than group2 (70.47 (17.84–198.50); 47.14 (4.80–135.48) ng/mL, p = 0.047). In literature, vitamin D deficiency is associated with inflammation. In our study, we found similar hs-CRP levels between groups and higher YKL-40 levels in group 1. Vitamin D deficiency may be related to high YKL-40 levels in terms of causing chronic inflammation.
Title: Can YKL-40 be an Inflammatory Biomarker in Vitamin D Deficiency?
Description:
Abstract.
Vitamin D deficiency is associated with several non-homeostatic conditions and/or diseases like inflammation, atherosclerosis, cardiovascular disease and mortality.
YKL-40 is a glycoprotein, secreted by macrophages, neutrophils and different cell types and it is also associated with inflammation and pathological tissue remodeling.
In this study, we aimed to evaluate relationship between the proinflammatory biomarkers YKL-40 and hs-CRP levels and vitamin D deficiency.
Our study group includes 45 subjects with vitamin D deficiency (Group 1) (20 M, 25 F; mean age 37.
72 ± 7.
70 years) and 40 age and sex-matched healthy subjects with normal serum levels of vitamin D (Group 2) (19 M, 21 F; mean age 39.
26 ± 7.
41 years).
Plasma 25 (OH) vitamin D levels were measured by liquid chromatography-tandem mass spectrometry (LC-MS/MS) method.
Plasma YKL-40 analysis was performed by ELISA.
Serum hs-CRP levels were measured by nephelometric method.
Plasma vitamin D levels below 20 ng/mL were accepted as vitamin D deficiency.
Although we could not find any significant differences by means of serum hs-CRP levels between Group 1 and Group 2 (2.
21 (0.
27–11.
70); 1.
79 (0.
16–9.
85) mg/L, p = 0.
247), plasma YKL-40 levels were significantly higher in group 1 than group2 (70.
47 (17.
84–198.
50); 47.
14 (4.
80–135.
48) ng/mL, p = 0.
047).
In literature, vitamin D deficiency is associated with inflammation.
In our study, we found similar hs-CRP levels between groups and higher YKL-40 levels in group 1.
Vitamin D deficiency may be related to high YKL-40 levels in terms of causing chronic inflammation.

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