Biphasic Effects of Vitamin D and FGF23 on Human Osteoclast Biology

被引:51
作者
Allard, Lise [1 ,2 ]
Demoncheaux, Nathalie [1 ]
Machuca-Gayet, Irma [1 ,3 ]
Georgess, Dan [1 ]
Coury-Lucas, Fabienne [1 ,3 ]
Jurdic, Pierre [1 ]
Bacchetta, Justine [1 ,4 ]
机构
[1] Univ Lyon, Inst Genom Fonct Lyon, ENS UMR 5242, Lyon, France
[2] CHU Angers, Pole Femme Mere Enfant, Serv Pediat, F-49003 Angers, France
[3] INSERM 1033, F-69008 Lyon, France
[4] Hop Femme Mere Enfant, Hosp Civils Lyon, Serv Nephrol & Rhumatol Pediat, Ctr Reference Malad Renales Rares, F-69677 Bron, France
关键词
Bone resorption; Differentiation; FGF23; Human; Osteoclast; Vitamin D; GROWTH-FACTOR; 23; BONE; MATRIX; FIBROBLAST-GROWTH-FACTOR-23; DIFFERENTIATION; DEGRADATION; METABOLISM; PHOSPHATE; PROTEIN; TARGET;
D O I
10.1007/s00223-015-0013-6
中图分类号
R5 [内科学];
学科分类号
100201 [内科学];
摘要
Vitamin D and FGF23 play a major role in calcium/phosphate balance. Vitamin D may control bone resorption but the potential role of FGF23 has never been evaluated. The objective of this study was therefore to compare the effects of vitamin D and FGF23 on osteoclast differentiation and activity in human monocyte-derived osteoclasts. Human monocytes, purified from blood of healthy donors, were incubated with M-CSF and RANKL to obtain mature multinucleated osteoclasts (MNC). Experiments were carried out to assess the effects of FGF23 as compared to native vitamin D (25-D) and active vitamin D (1,25-D) on osteoclast differentiation and on bone-resorbing osteoclast activity. Additional experiments with the pan fibroblast growth factor receptor inhibitor (FGFR-i) were performed. Phosphorylation Akt and Erk pathways were analyzed by Western blot analyses. Both 1,25-D and FGF23, to a lesser extent, significantly inhibited osteoclastogenesis at early stages; when adding FGFR-i, osteoclast formation was restored. Biochemical experiments showed an activation of the Akt and Erk pathways under FGF23 treatment. In contrast, in terms of activity, 1,25-D had no effect on resorption, whereas FGF23 slightly but significantly increased bone resorption; 25-D had no effects on either differentiation or on activity. These data show that 1,25-D inhibits osteoclastogenesis without regulating osteoclast-mediated bone resorption activity; FGF23 has biphasic effects on osteoclast physiology, inhibiting osteoclast formation while stimulating slightly osteoclast activity. These results may be of importance and taken into account in chronic kidney disease when therapies modulating FGF23 are available.
引用
收藏
页码:69 / 79
页数:11
相关论文
共 33 条
[1]
Fibroblast Growth Factor 23 Inhibits Extrarenal Synthesis of 1,25-Dihydroxyvitamin D in Human Monocytes [J].
Bacchetta, Justine ;
Sea, Jessica L. ;
Chun, Rene F. ;
Lisse, Thomas S. ;
Wesseling-Perry, Katherine ;
Gales, Barbara ;
Adams, John S. ;
Salusky, Isidro B. ;
Hewison, Martin .
JOURNAL OF BONE AND MINERAL RESEARCH, 2013, 28 (01) :46-55
[2]
Evaluation of Hypophosphatemia: Lessons From Patients With Genetic Disorders [J].
Bacchetta, Justine ;
Salusky, Isidro B. .
AMERICAN JOURNAL OF KIDNEY DISEASES, 2012, 59 (01) :152-159
[3]
The parathyroid is a target organ for FGF23 in rats [J].
Ben-Dov, Iddo Z. ;
Galitzer, Hillel ;
Lavi-Moshayoff, Vardit ;
Goetz, Regina ;
Kuro-o, Makoto ;
Mohammadi, Moosa ;
Sirkis, Roy ;
Naveh-Many, Tally ;
Silver, Justin .
JOURNAL OF CLINICAL INVESTIGATION, 2007, 117 (12) :4003-4008
[4]
The Amazing Osteocyte [J].
Bonewald, Lynda F. .
JOURNAL OF BONE AND MINERAL RESEARCH, 2011, 26 (02) :229-238
[5]
The Great Beauty of the osteoclast [J].
Cappariello, Alfredo ;
Maurizi, Antonio ;
Veeriah, Vimal ;
Teti, Anna .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 2014, 558 :70-78
[6]
A Phe377del mutation in ANK leads to impaired osteoblastogenesis and osteoclastogenesis in a mouse model for craniometaphyseal dysplasia (CMD) [J].
Chen, I-Ping ;
Wang, Liping ;
Jiang, Xi ;
Aguila, Hector Leonardo ;
Reichenberger, Ernst J. .
HUMAN MOLECULAR GENETICS, 2011, 20 (05) :948-961
[7]
Initial FGF23-Mediated Signaling Occurs in the Distal Convoluted Tubule [J].
Farrow, Emily G. ;
Davis, Siobhan I. ;
Summers, Lelia J. ;
White, Kenneth E. .
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2009, 20 (05) :955-960
[8]
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
[9]
Measles virus suppresses cell-mediated immunity by interfering with the survival and functions of dendritic and T cells [J].
FugierVivier, I ;
ServetDelprat, C ;
Rivailler, P ;
Rissoan, MC ;
Liu, YJ ;
RabourdinCombe, C .
JOURNAL OF EXPERIMENTAL MEDICINE, 1997, 186 (06) :813-823
[10]
Regulation of renal phosphate transport by FGF23 is mediated by FGFR1 and FGFR4 [J].
Gattineni, Jyothsna ;
Alphonse, Priyatharshini ;
Zhang, Qiuyu ;
Mathews, Nisha ;
Bates, Carlton M. ;
Baum, Michel .
AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY, 2014, 306 (03) :F351-F358