Direct, Acute Effects of Klotho and FGF23 on Vascular Smooth Muscle and Endothelium

被引:112
作者
Six, Isabelle [1 ]
Okazaki, Hirokazu [1 ]
Gross, Priscilla [1 ]
Cagnard, Joanna [1 ]
Boudot, Cedric [1 ]
Maizel, Julien [1 ,2 ]
Drueke, Tilman B. [1 ]
Massy, Ziad A. [1 ,2 ]
机构
[1] Jules Verne Univ Picardie, INSERM Unit 1088, Amiens, France
[2] Amiens Univ, Med Ctr, Amiens, France
关键词
GROWTH-FACTOR; 23; NITRIC-OXIDE; PHOSPHATE; DYSFUNCTION; GENE; POPULATION; RESISTANCE; PROTECTS;
D O I
10.1371/journal.pone.0093423
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Chronic kidney disease (CKD) is regarded as a state of Klotho deficiency and FGF23 excess. In patients with CKD a strong association has been found between increased serum FGF23 and mortality risk, possibly via enhanced atherosclerosis, vascular stiffness, and vascular calcification. The aim of this study was to examine the hypothesis that soluble Klotho and FGF23 exert direct, rapid effects on the vessel wall. We used three in vitro models: mouse aorta rings, human umbilical vein endothelial cells, and human vascular smooth muscle cells (HVSMC). Increasing medium concentrations of soluble Klotho and FGF23 both stimulated aorta contractions and increased ROS production in HVSMC. Klotho partially reverted FGF23 induced vasoconstriction, induced relaxation on phosphate preconstricted aorta and enhanced endothelial NO production in HUVEC. Thus Klotho increased both ROS production in HVSMC and NO production in endothelium. FGF23 induced contraction in phosphate preconstricted vessels and increased ROS production. Phosphate, Klotho and FGF23 together induced no change in vascular tone despite increased ROS production. Moreover, the three compounds combined inhibited relaxation despite increased NO production, probably owing to the concomitant increase in ROS production. In conclusion, although phosphate, soluble Klotho and FGF23 separately stimulate aorta contraction, Klotho mitigates the effects of phosphate and FGF23 on contractility via increased NO production, thereby protecting the vessel to some extent against potentially noxious effects of high phosphate or FGF23 concentrations. This novel observation is in line with the theory that Klotho deficiency is deleterious whereas Klotho sufficiency is protective against the negative effects of phosphate and FGF23 which are additive.
引用
收藏
页数:9
相关论文
共 28 条
[1]   Fibroblast Growth Factor-23 and Cardiac Structure and Function [J].
Agarwal, Isha ;
Ide, Noriko ;
Ix, Joachim H. ;
Kestenbaum, Bryan ;
Lanske, Beate ;
Schiller, Nelson B. ;
Whooley, Mary A. ;
Mukamal, Kenneth J. .
JOURNAL OF THE AMERICAN HEART ASSOCIATION, 2014, 3 (01) :e000584
[2]   FGF23 Fails to Inhibit Uremic Parathyroid Glands [J].
Canalejo, Rocio ;
Canalejo, Antonio ;
Manuel Martinez-Moreno, Julio ;
Encarnacion Rodriguez-Ortiz, M. ;
Estepa, Jose C. ;
Javier Mendoza, Francisco ;
Rafael Munoz-Castaneda, Juan ;
Shalhoub, Victoria ;
Almaden, Yolanda ;
Rodriguez, Mariano .
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2010, 21 (07) :1125-1135
[3]   Klotho modulates the stress response in human senescent endothelial cells [J].
Carracedo, Julia ;
Buendia, Paula ;
Merino, Ana ;
Antonio Madueno, Juan ;
Peralbo, Esther ;
Ortiz, Alberto ;
Martin-Malo, Alejandro ;
Aljama, Pedro ;
Rodriguez, Mariano ;
Ramirez, Rafael .
MECHANISMS OF AGEING AND DEVELOPMENT, 2012, 133 (11-12) :647-654
[4]   FGF23 induces left ventricular hypertrophy [J].
Faul, Christian ;
Amaral, Ansel P. ;
Oskouei, Behzad ;
Hu, Ming-Chang ;
Sloan, Alexis ;
Isakova, Tamara ;
Gutierrez, Orlando M. ;
Aguillon-Prada, Robier ;
Lincoln, Joy ;
Hare, Joshua M. ;
Mundel, Peter ;
Morales, Azorides ;
Scialla, Julia ;
Fischer, Michael ;
Soliman, Elsayed Z. ;
Chen, Jing ;
Go, Alan S. ;
Rosas, Sylvia E. ;
Nessel, Lisa ;
Townsend, Raymond R. ;
Feldman, Harold I. ;
Sutton, Martin St. John ;
Ojo, Akinlolu ;
Gadegbeku, Crystal ;
Di Marco, Giovana Seno ;
Reuter, Stefan ;
Kentrup, Dominik ;
Tiemann, Klaus ;
Brand, Marcus ;
Hill, Joseph A. ;
Moe, Orson W. ;
Kuro-o, Makoto ;
Kusek, John W. ;
Keane, Martin G. ;
Wolf, Myles .
JOURNAL OF CLINICAL INVESTIGATION, 2011, 121 (11) :4393-4408
[5]   Parathyroid cell resistance to fibroblast growth factor 23 in secondary hyperparathyroidism of chronic kidney disease [J].
Galitzer, H. ;
Ben-Dov, I. Z. ;
Silver, Justin ;
Naveh-Many, Tally .
KIDNEY INTERNATIONAL, 2010, 77 (03) :211-218
[6]   Klotho Deficiency Causes Vascular Calcification in Chronic Kidney Disease [J].
Hu, Ming Chang ;
Shi, Mingjun ;
Zhang, Jianning ;
Quinones, Henry ;
Griffith, Carolyn ;
Kuro-o, Makoto ;
Moe, Orson W. .
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2011, 22 (01) :124-136
[7]   Klotho, phosphate and inflammation/ageing in chronic kidney disease [J].
Izquierdo, Mara C. ;
Perez-Gomez, Maria V. ;
Sanchez-Nino, Maria D. ;
Sanz, Ana B. ;
Ruiz-Andres, Olga ;
Poveda, Jonay ;
Antonio Moreno, Juan ;
Egido, Jesus ;
Ortiz, Alberto .
NEPHROLOGY DIALYSIS TRANSPLANTATION, 2012, 27 :iv6-iv10
[8]   Longitudinal follow-up and outcomes among a population with chronic kidney disease in a large managed care organization [J].
Keith, DS ;
Nichols, GA ;
Gullion, CM ;
Brown, JB ;
Smith, DH .
ARCHIVES OF INTERNAL MEDICINE, 2004, 164 (06) :659-663
[9]   Mutation of the mouse klotho gene leads to a syndrome resembling ageing [J].
Kuroo, M ;
Matsumura, Y ;
Aizawa, H ;
Kawaguchi, H ;
Suga, T ;
Utsugi, T ;
Ohyama, Y ;
Kurabayashi, M ;
Kaname, T ;
Kume, E ;
Iwasaki, H ;
Iida, A ;
ShirakiIida, T ;
Nishikawa, S ;
Nagai, R ;
Nabeshima, Y .
NATURE, 1997, 390 (6655) :45-51
[10]   Vascular Klotho Deficiency Potentiates the Development of Human Artery Calcification and Mediates Resistance to Fibroblast Growth Factor 23 [J].
Lim, Kenneth ;
Lu, Tzong-Shi ;
Molostvov, Guerman ;
Lee, Christina ;
Lam, F. T. ;
Zehnder, Daniel ;
Hsiao, Li-Li .
CIRCULATION, 2012, 125 (18) :2243-U188