Metabolic reprogramming of osteoclasts represents a therapeutic target during the treatment of osteoporosis

被引:0
作者
Jule Taubmann
Brenda Krishnacoumar
Christina Böhm
Maria Faas
Dorothea I. H. Müller
Susanne Adam
Cornelia Stoll
Martin Böttcher
Dimitrios Mougiakakos
Uwe Sonnewald
Jörg Hofmann
Georg Schett
Gerhard Krönke
Carina Scholtysek
机构
[1] Friedrich Alexander University of Erlangen-Nuremberg (FAU) and Universitätsklinikum Erlangen,Department of Internal Medicine 3
[2] University of Erlangen-Nuremberg and Universitätsklinikum Erlangen,Deutsches Zentrum für Immuntherapie (DZI)
[3] University of Erlangen-Nuremberg and Universitätsklinikum Erlangen,Department of Internal Medicine 5
[4] University of Erlangen-Nuremberg,Division of Biochemistry, Department of Biology
来源
Scientific Reports | / 10卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Osteoclasts are specialised bone resorbing cells that control both physiological and pathological bone turnover. Functional changes in the differentiation and activity of osteoclasts are accompanied by active metabolic reprogramming. However, the biological significance and the in vivo relevance of these events has remained unclear. Here we show that bone resorption of differentiated osteoclasts heavily relies on increased aerobic glycolysis and glycolysis-derived lactate production. While pharmacological inhibition of glycolysis did not affect osteoclast differentiation or viability, it efficiently blocked bone resorption in vitro and in vivo and consequently ameliorated ovariectomy-induced bone loss. Our experiments thus highlight the therapeutic potential of interfering with osteoclast-intrinsic metabolic pathways as possible strategy for the treatment of diseases characterized by accelerated bone loss.
引用
收藏
相关论文
共 50 条
[31]   Metabolic Modulation: A New Therapeutic Target in Treatment of Heart Failure [J].
Palaniswamy, Chandrasekar ;
Mellana, William Michael ;
Selvaraj, Dhana R. ;
Mohan, Diwakar .
AMERICAN JOURNAL OF THERAPEUTICS, 2011, 18 (06) :E197-E201
[32]   The Conformational Variability of FimH: Which Conformation Represents the Therapeutic Target? [J].
Eris, Deniz ;
Preston, Roland C. ;
Scharenberg, Meike ;
Hulliger, Fabian ;
Abgottspon, Daniela ;
Pang, Lijuan ;
Jiang, Xiaohua ;
Schwardt, Oliver ;
Ernst, Beat .
CHEMBIOCHEM, 2016, 17 (11) :1012-1020
[33]   Acid ceramidase is upregulated in AML and represents a novel therapeutic target [J].
Tan, Su-Fern ;
Liu, Xin ;
Fox, Todd E. ;
Barth, Brian M. ;
Sharma, Arati ;
Turner, Stephen D. ;
Awwad, Andy ;
Dewey, Alden ;
Doi, Kenichiro ;
Spitzer, Barbara ;
Shah, Mithun Vinod ;
Morad, Samy A. F. ;
Desai, Dhimant ;
Amin, Shantu ;
Zhu, Junjia ;
Liao, Jason ;
Yun, Jong ;
Kester, Mark ;
Claxton, David F. ;
Wang, Hong-Gang ;
Cabot, Myles C. ;
Schuchman, Edward H. ;
Levine, Ross L. ;
Feith, David J. ;
Loughran, Thomas P., Jr. .
ONCOTARGET, 2016, 7 (50) :83208-83222
[34]   Sleep disorder breathing is very prevalent during heart failure exacerbations and represents a unique therapeutic target [J].
Karia, Darshak H. ;
Hoque, Mohammad Z. ;
Huda, Nazmul ;
Ra, Hong ;
Ishac, Roger .
JOURNAL OF CARDIAC FAILURE, 2008, 14 (06) :S13-S14
[35]   Metabolic Reprogramming to Increase Mitochodnrial Mass, Fusion and Energetics Represents an Important Rate Limiting Step in Direct Cardiac Reprogramming [J].
Spurlock, Brian ;
Xie, Yifang ;
Song, Yiran ;
Hua, James ;
Nishtala, Meenakshi ;
Salmenov, Rustem ;
Liu, Jiandong ;
Qian, Li .
CIRCULATION RESEARCH, 2024, 135
[36]   FTO regulates ELK3-mediated metabolic rewiring and represents a unique therapeutic target in T cell leukemia [J].
Huang, Hao ;
Li, Xinlu ;
Luo, Jinlian ;
Gao, Chuan ;
Yang, Mengjie ;
Xu, Jin ;
Xie, Ting ;
Chen, Zhi ;
Wang, Donghai ;
Wang, Yuan ;
Li, Hua-Bing ;
Huang, Jinyan ;
Liu, Yu ;
Zhang, Haojian ;
Ntziachristos, Panagiotis ;
Zhao, Yun ;
Qing, Guoliang ;
Liu, Hudan .
SCIENCE ADVANCES, 2025, 11 (22)
[37]   Metabolic reprogramming during neuronal differentiation [J].
Agostini, M. ;
Romeo, F. ;
Inoue, S. ;
Niklison-Chirou, M. V. ;
Elia, A. J. ;
Dinsdale, D. ;
Morone, N. ;
Knight, R. A. ;
Mak, T. W. ;
Melino, G. .
CELL DEATH AND DIFFERENTIATION, 2016, 23 (09) :1502-1514
[38]   Metabolic reprogramming during neuronal differentiation [J].
M Agostini ;
F Romeo ;
S Inoue ;
M V Niklison-Chirou ;
A J Elia ;
D Dinsdale ;
N Morone ;
R A Knight ;
T W Mak ;
G Melino .
Cell Death & Differentiation, 2016, 23 :1502-1514
[39]   Epigenetic and metabolic reprogramming as a target for prostate tumor radiosensitization [J].
Dubrovska, A. ;
Peitzsch, C. ;
Tyutyunnykova, A. ;
Cojoc, M. .
RADIOTHERAPY AND ONCOLOGY, 2017, 123 :S201-S201
[40]   Metabolic reprogramming as a target for anti-angiogenic therapy [J].
Gupta, P. ;
Shukla, A. ;
Singh, R. ;
Mishra, D. P. .
CANCER MEDICINE, 2018, 7 :16-16