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Fatty acid composition in fetal, neonatal, and cultured cardiomyocytes in rats
Authors:Toru Karimata  Daisuke Sato  Daiki Seya  Daichi Sato  Takashi Wakatsuki  Zhonggang Feng  Atsuyosi Nishina  Masataka Kusunoki  Takao Nakamura
Institution:1. Department of Biomedical Information Engineering, Graduate School of Medical Science, Yamagata University, 2-2-2, Iida-nishi, Yamagata, 990-9585, Japan
2. Department of Bio-Systems Engineering, Graduate School of Science and Engineering, Yamagata University, 4-3-16, Johnan, Yonezawa, 992-8510, Japan
3. Department of Materials and Applied Chemistry, College of Science and Technology, Nihon University, 1-8-14, Kandasurugadai, Chiyoda-ku, Tokyo, 101-8308, Japan
4. Department of Internal Medicine, Medical Clinic, Aichi Medical University, 2-12-1, Higashisakura, Higashi-ku, Nagoya, 461-0005, Japan
Abstract:Reconstructed myocardial tissue still does not have enough pulsatile contraction. It is well known that fetal and mature neonatal cardiomyocytes utilize glucose and lipid, respectively, as their energy substrates, and that cultured ones mainly use glucose in spite of their age comparable to neonate ones, probably due to insufficient supply of lipids from culture medium. In the present study, we compared 7 saturated, 6 monounsaturated, and 11 polyunsaturated fatty acid contents in cultured cardiomyocytes (Cul group) with those in fetal (Fet group, approximately 17 d after impregnation) and neonatal (Neo group, 9 d old) rats, where the age of the Cul cells were set nearly equal to the Neo ones. Saturated fatty acid contents in the Cul group were generally lower than those in the Fet group and were close to those in the Neo group, except for C12:0 of which content was highest in the Neo group. Monounsaturated fatty acid contents in the Cul group were generally lower than those in the Fet group but similar to or higher than those in the Neo group, except for C24:1n-9 of which content was again highest in the Neo group. In contrast, most of polyunsaturated fatty acid (PUFA) contents in the Cul group appeared lower than those in both the Fet and Neo groups, and differences in 5 of 10 detected PUFAs were significant between the Cul and Neo groups. The results suggest that PUFA contents in cultured cardiomyocytes might be insufficient to exert enough contractile ability. In conclusion, it could be necessary for cultured cardiomyocytes to uptake more lipid; PUFAs in particular.
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