Elevation of phosphate levels impairs skeletal myoblast differentiation

被引:0
|
作者
Adalbert Raimann
Alexander Dangl
Alireza Javanmardi
Susanne Greber-Platzer
Monika Egerbacher
Peter Pietschmann
Gabriele Haeusler
机构
[1] Medical University of Vienna,Department of Pediatrics and Adolescent Medicine, Division of Pediatric Pulmonology, Allergology and Endocrinology, Comprehensive Center for Pediatric
[2] UMIT TIROL - Private University for Health Sciences,Administrative Unit Veterinary Medicine
[3] Medical Informatics and Technology GmbH,Department of Pathophysiology and Allergy Research, Center of Pathophysiology, Infectiology and Immunology
[4] Medical University of Vienna,undefined
来源
Cell and Tissue Research | 2020年 / 382卷
关键词
Skeletal myoblast differentiation; Serum phosphate; Chronic kidney disease; Uremic sarcopenia; Hyperphosphatemia;
D O I
暂无
中图分类号
学科分类号
摘要
Hyperphosphatemic conditions such as chronic kidney disease are associated with severe muscle wasting and impaired life quality. While regeneration of muscle tissue is known to be reliant on recruitment of myogenic progenitor cells, the effects of elevated phosphate loads on this process have not been investigated in detail so far. This study aims to clarify the direct effects of hyperphosphatemic conditions on skeletal myoblast differentiation in a murine in vitro model. C2C12 murine muscle progenitor cells were supplemented with phosphate concentrations resembling moderate to severe hyperphosphatemia (1.4–2.9 mmol/l). Phosphate-induced effects were quantified by RT-PCR and immunoblotting. Immunohistochemistry was performed to count nuclear positive cells under treatment. Cell viability and metabolic activity were assessed by XTT and BrdU incorporation assays. Inorganic phosphate directly induced ERK-phosphorylation in pre-differentiated C2C12 myoblast cells. While phosphate concentrations resembling the upper normal range significantly reduced Myogenin expression (− 22.5%, p = 0.015), severe hyperphosphatemic conditions further impaired differentiation (Myogenin − 61.0%, p < 0.0001; MyoD − 51.0%; p < 0.0001). Analogue effects were found on the protein level (Myogenin − 42.0%, p = 0.004; MyoD − 25.7%, p = 0.002). ERK inhibition strongly attenuated phosphate-induced effects on Myogenin expression (p = 0.002). Metabolic activity was unaffected by the treatments. Our data point to a phosphate-induced inhibition of myoblast differentiation without effects on cell viability. Serum phosphate levels as low as the upper normal serum range significantly impaired marker gene expression in vitro. Investigation of cellular effects of hyperphosphatemia may help to better define serum cutoffs and modify existing treatment approaches of phosphate binders, especially in patients at risk of sarcopenia.
引用
收藏
页码:427 / 432
页数:5
相关论文
共 50 条
  • [41] Mechanical strain applied to human fibroblasts differentially regulates skeletal myoblast differentiation
    Hicks, Michael R.
    Cao, Thanh V.
    Campbell, David H.
    Standley, Paul R.
    JOURNAL OF APPLIED PHYSIOLOGY, 2012, 113 (03) : 465 - 472
  • [42] Myoblast 3D bioprinting to burst in vitro skeletal muscle differentiation
    Ronzoni, Flavio L.
    Aliberti, Flaminia
    Scocozza, Franca
    Benedetti, Laura
    Auricchio, Ferdinando
    Sampaolesi, Maurilio
    Cusella, Gabriella
    Redwan, Itedale Namro
    Ceccarelli, Gabriele
    Conti, Michele
    JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 2022, 16 (05) : 484 - 495
  • [43] Large-scale gene expression analysis of human skeletal myoblast differentiation
    Sterrenburg, E
    Turk, R
    't Hoen, PAC
    van Deutekom, JCT
    Boer, JM
    van Ommen, GJB
    den Dunnen, JT
    NEUROMUSCULAR DISORDERS, 2004, 14 (8-9) : 507 - 518
  • [44] Oncogenic Ras-induced secretion of a novel inhibitor of skeletal myoblast differentiation
    Weyman, CM
    Wolfman, A
    ONCOGENE, 1997, 15 (21) : 2521 - 2528
  • [45] ActRII or BMPR ligands inhibit skeletal myoblast differentiation, and BMPs promote heterotopic ossification in skeletal muscles in mice
    Egerman, Marc A.
    Zhang, Yuhong
    Donne, Romain
    Xu, Jianing
    Gadi, Abhilash
    Mcewen, Corissa
    Salmon, Hunter
    Xiong, Kun
    Bai, Yu
    Germino, Mary
    Barringer, Kevin
    Jimenez, Yasalp
    Molina-Portela, Maria del Pilar
    Shavlakadze, Tea
    Glass, David J.
    SKELETAL MUSCLE, 2025, 15 (01):
  • [46] GLYCOLIPIDS AND MYOBLAST DIFFERENTIATION
    MCEVOY, FA
    ELLIS, DE
    BIOCHEMICAL SOCIETY TRANSACTIONS, 1977, 5 (06) : 1719 - 1721
  • [47] Inhibition of myoblast migration via decorin expression is critical for normal skeletal muscle differentiation
    Olguin, HC
    Santander, C
    Brandan, E
    DEVELOPMENTAL BIOLOGY, 2003, 259 (02) : 209 - 224
  • [48] SPARC is up-regulated during skeletal muscle regeneration and inhibits myoblast differentiation
    Petersson, Stine Juhl
    Jorgensen, Louise Helskov
    Andersen, Ditte C.
    Norgaard, Rikke C.
    Jensen, Charlotte Harken
    Schroder, Henrik Daa
    HISTOLOGY AND HISTOPATHOLOGY, 2013, 28 (11) : 1451 - 1460
  • [49] Loop diuretics affect skeletal myoblast differentiation and exercise-induced muscle hypertrophy
    Mandai, Shintaro
    Furukawa, Susumu
    Kodaka, Manami
    Hata, Yutaka
    Mori, Takayasu
    Nomura, Naohiro
    Ando, Fumiaki
    Mori, Yutaro
    Takahashi, Daiei
    Yoshizaki, Yuki
    Kasagi, Yuri
    Arai, Yohei
    Sasaki, Emi
    Yoshida, Sayaka
    Furuichi, Yasuro
    Fujii, Nobuharu L.
    Sohara, Eisei
    Rai, Tatemitsu
    Uchida, Shinichi
    SCIENTIFIC REPORTS, 2017, 7
  • [50] Kinin-B2 Receptor Activity in Skeletal Muscle Regeneration and Myoblast Differentiation
    Janaina M. Alves
    Antonio H. Martins
    Claudiana Lameu
    Talita Glaser
    Nawal M. Boukli
    Vinicius Bassaneze
    Rafael Dariolli
    Isis C. Nascimento
    Poliana C. M. Martins
    Héllio D. N. de Souza
    José Eduardo Krieger
    Dulce E. Casarini
    Vicencia M. Sales
    João B. Pesquero
    Henning Ulrich
    Stem Cell Reviews and Reports, 2019, 15 : 48 - 58