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자료유형
학술저널
저자정보
Juyoung Kim (Kyung Hee University) Hyejeong Yun (Kyung Hee University) Yunhi Cho (Kyung Hee University)
저널정보
대한지역사회영양학회 Nutrition Research and Practice Nutrition Research and Practice Vol.5 No.5
발행연도
2011.10
수록면
396 - 403 (8page)

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초록· 키워드

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Ceramides (Cer) comprise the major constituent of sphingolipids in the epidermis and are known to play diverse roles in the outermost layers of the skin including water retention and provision of a physical barrier. In addition, they can be hydrolyzed into free sphingoid bases such as C<sub>18</sub> sphingosine (SO) and C<sub>18</sub> sphinganine (SA) or can be further metabolized to C<sub>18</sub> So-1-phosphate (S1P) and C<sub>18</sub> Sa-1-phosphate (Sa1P) in keratinocytes. The significance of ceramide metabolites emerged from studies reporting altered levels of SO and SA in skin disorders and the role of S1P and Sa1P as signaling lipids. However, the overall metabolism of sphingoid bases and their phosphates during keratinocyte differentiation remains not fully understood. Therefore, in this study, we analyzed these Cer metabolites in the process of keratinocyte differentiation. Three distinct keratinocyte differentiation stages were prepared using 0.07 mM calcium (Ca<sup>2+</sup>) (proliferation stage), 1.2 mM Ca<sup>2+</sup> (early differentiation stage) in serum-free medium, or serum-containing medium with vitamin C (50 μL/mL) (late differentiation stage). Serum-containing medium was also used to determine whether vitamin C increases the concentrations of sphingoid bases and their phosphates. The production of sphingoid bases and their phosphates after hydrolysis by alkaline phosphatase was determined using high-performance liquid chromatography. Compared to cells treated with 0.07 mM Ca<sup>2+</sup>, levels of SO, SA, S1P, and SA1P were not altered after treatment with 1.2 mM Ca<sup>2+</sup>. However, in keratinocytes cultured in serum-containing medium with vitamin C, levels of SO, SA, S1P, and SA1P were dramatically higher than those in 0.07- and 1.2-mM Ca<sup>2+</sup>-treated cells; however, compared to serum-containing medium alone, vitamin C did not significantly enhance their production. Taken together, we demonstrate that late differentiation induced by vitamin C and serum was accompanied by dramatic increases in the concentration of sphingoid bases and their phosphates, although vitamin C alone had no effect on their production.

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Abstract
Introduction
Materials and Methods
Results
Discussion
References

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