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Dietary L-Lysine Prevents Arterial Calcification in Adenine-Induced Uremic Rats

Authors :
Yoshitsugu Takabatake
Kenji Takehana
Daisuke Mori
Takayuki Hamano
Takuya Ishimoto
Yumiko Katou
Naohiko Fujii
Isao Matsui
Kazunori Inoue
Chikako Nakano
Yoshitaka Isaka
Yoshitsugu Obi
Yoshiharu Tsubakihara
Hiromi Rakugi
Takayoshi Nakano
Akihiro Shimomura
Yasuo Kusunoki
Source :
Journal of the American Society of Nephrology. 25:1954-1965
Publication Year :
2014
Publisher :
Ovid Technologies (Wolters Kluwer Health), 2014.

Abstract

Vascular calcification (VC) is a life-threatening complication of CKD. Severe protein restriction causes a shortage of essential amino acids, and exacerbates VC in rats. Therefore, we investigated the effects of dietary l-lysine, the first-limiting amino acid of cereal grains, on VC. Male Sprague-Dawley rats at age 13 weeks were divided randomly into four groups: low-protein (LP) diet (group LP), LP diet+adenine (group Ade), LP diet+adenine+glycine (group Gly) as a control amino acid group, and LP diet+adenine+l-lysine·HCl (group Lys). At age 18 weeks, group LP had no VC, whereas groups Ade and Gly had comparable levels of severe VC. l-Lysine supplementation almost completely ameliorated VC. Physical parameters and serum creatinine, urea nitrogen, and phosphate did not differ among groups Ade, Gly, and Lys. Notably, serum calcium in group Lys was slightly but significantly higher than in groups Ade and Gly. Dietary l-lysine strongly suppressed plasma intact parathyroid hormone in adenine rats and supported a proper bone-vascular axis. The conserved orientation of the femoral apatite in group Lys also evidenced the bone-protective effects of l-lysine. Dietary l-lysine elevated plasma alanine, proline, arginine, and homoarginine but not lysine. Analyses in vitro demonstrated that alanine and proline inhibit apoptosis of cultured vascular smooth muscle cells, and that arginine and homoarginine attenuate mineral precipitations in a supersaturated calcium/phosphate solution. In conclusion, dietary supplementation of l-lysine ameliorated VC by modifying key pathways that exacerbate VC.

Details

ISSN :
10466673
Volume :
25
Database :
OpenAIRE
Journal :
Journal of the American Society of Nephrology
Accession number :
edsair.doi.dedup.....3b2d8a5b2b5ea539907cb05ebe3592a6