The lack of EphB3 receptor prevents bone loss in mouse models of osteoporosis

被引:0
作者
Rodriguez-Sosa, Mariano R. [1 ,2 ]
del Castillo, Luis M. [3 ]
Belarra, Adrian [4 ]
Zapata, Agustin G. [1 ]
Alfaro, David [1 ]
机构
[1] Univ Complutense Madrid, Fac Biol Sci, Dept Cell Biol, C Jose AntonioNovais 12, Madrid 28040, Spain
[2] Res Inst Hosp 12 Octubre imas12, Madrid 28041, Spain
[3] Hlth Res Inst Hosp La Fe IIS La Fe, IVI Fdn, Reprod Med Res Grp, Valencia 46026, Spain
[4] Univ Complutense Madrid, Dept Radiol Rehabil & Physiotherapy, Micro CT Lab, Cent Radioact Facil,Fac Med, Madrid 28040, Spain
关键词
MSC; Eph; ephrin; osteogenesis; ovariectomy; dexamethasone; MORPHOGENETIC PROTEINS; STROMAL CELLS; DIFFERENTIATION;
D O I
10.1093/jbmr/zjae075
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Bone homeostasis is a complex process in which some Eph kinase receptors and their ephrin ligands appear to be involved. In the present study, we address this issue by examining, both in vitro and in vivo, the role of EphB2 and EphB3 in mesenchymal stromal/stem cell (MSC) differentiation into bone tissue. This was first evaluated by quantitative reverse transcription PCR (RT-qPCR) and histological staining in MSCs cultured in specific mediums revealing that although EphB2-/- MSCs mainly expressed pro-adipogenic transcription factors, EphB3-/- MSCs showed abundant osteogenic transcripts, such as Runx2, Msx2, and Sp7. To clarify the underlying molecular mechanisms, we found that the lack of EphB3 signaling alters the genetic profile of differentiating MSCs, reducing the expression of many inhibitory molecules and antagonists of the BMP signaling pathway, and increasing Bmp7 expression, a robust bone inductor. Then, to confirm the osteogenic role of EphB3 in vivo, we studied the condition of 2 mouse models of induced bone loss (ovariectomy or long-term glucocorticoid treatment). Interestingly, in both models, both WT and EphB2-/- mice equally developed the disease but EphB3-/- mice did not exhibit the typical bone loss, nor an increase in urine Ca2+ or blood serum CTX-1. This phenotype in EphB3-KO mice could be due to their significantly higher proportions of osteoprogenitor cells and preosteoblasts, and their lower number of osteoclasts, as compared with WT and EphB2-KO mice. Thus, we conclude that EphB3 acts as a negative regulator of the osteogenic differentiation, and its absence prevents bone loss in mice subjected to ovariectomy or dexamethasone treatment. Osteoporosis affects more than 200 million people, mostly women. Our work shows that the EphB3 receptor restricts bone formation, and its absence prevents bone loss in osteoporotic mice. The bone protection observed in EphB3-deficient mice is due to the presence of more bone-forming cells and fewer bone-degrading cells. Molecularly, we found that when there's no EphB3 in mesenchymal stem cells, some bone-promoting genes are increased while many inhibitors are reduced. Therefore, this receptor could become a key target for new therapies that would help to improve the quality of life for those suffering from bone diseases. We're really excited to share our findings with a broad audience, including patients, healthcare professionals, researchers, and the life sciences industry. Graphical Abstract
引用
收藏
页码:1008 / 1024
页数:17
相关论文
共 50 条
  • [1] Transplantation of Adipose Tissue-Derived Mesenchymal Stem Cell (ATMSC) Expressing Alpha-1 Antitrypsin Reduces Bone Loss in Ovariectomized Osteoporosis Mice
    Akbar, Mohammad Ahsanul
    Lu, Yuanqing
    Elshikha, Ahmed S.
    Chen, Mong-Jen
    Yuan, Ye
    Whitley, Elizabeth M.
    Holliday, L. Shannon
    Chang, Lung-ji
    Song, Sihong
    [J]. HUMAN GENE THERAPY, 2017, 28 (02) : 179 - 189
  • [2] Eph/ephrin Signaling and Biology of Mesenchymal Stromal/Stem Cells
    Alfaro, David
    Rodriguez-Sosa, Mariano R.
    Zapata, Agustin G.
    [J]. JOURNAL OF CLINICAL MEDICINE, 2020, 9 (02)
  • [3] Eph/Ephrin-mediated stimulation of human bone marrow mesenchymal stromal cells correlates with changes in cell adherence and increased cell death
    Alfaro, David
    Zapata, Agustin G.
    [J]. STEM CELL RESEARCH & THERAPY, 2018, 9
  • [4] Fine-tuning osteoclastogenesis: An insight into the cellular and molecular regulation of osteoclastogenesis
    Anwar, Aleena
    Sapra, Leena
    Gupta, Navita
    Ojha, Rudra P.
    Verma, Bhupendra
    Srivastava, Rupesh K.
    [J]. JOURNAL OF CELLULAR PHYSIOLOGY, 2023, 238 (07) : 1431 - 1464
  • [5] Eph-Ephrin Signaling Mediates Cross-Talk Within the Bone Microenvironment
    Arthur, Agnieszka
    Gronthos, Stan
    [J]. FRONTIERS IN CELL AND DEVELOPMENTAL BIOLOGY, 2021, 9
  • [6] The osteoprogenitor-specific loss of ephrinB1 results in an osteoporotic phenotype affecting the balance between bone formation and resorption
    Arthur, Agnieszka
    Nguyen, Thao M.
    Paton, Sharon
    Klisuric, Ana
    Zannettino, Andrew C. W.
    Gronthos, Stan
    [J]. SCIENTIFIC REPORTS, 2018, 8
  • [7] EphB/ephrin-B interactions mediate human MSC attachment, migration and osteochondral differentiation
    Arthur, Agnieszka
    Zannettino, Andrew
    Panagopoulos, Romana
    Koblar, Simon A.
    Sims, Natalie A.
    Stylianou, Con
    Matsuo, Koichi
    Gronthos, Stan
    [J]. BONE, 2011, 48 (03) : 533 - 542
  • [8] A Cellular Taxonomy of the Bone Marrow Stroma in Homeostasis and Leukemia
    Baryawno, Ninib
    Przybylski, Dariusz
    Kowalczyk, Monika S.
    Kfoury, Youmna
    Severe, Nicolas
    Gustafsson, Karin
    Kokkaliaris, Konstantinos D.
    Mercier, Francois
    Tabaka, Marcin
    Hofree, Matan
    Dionne, Danielle
    Papazian, Ani
    Lee, Dongjun
    Ashenberg, Orr
    Subramanian, Ayshwarya
    Vaishnav, Eeshit Dhaval
    Rozenblatt-Rosen, Orit
    Regev, Aviv
    Scadden, David T.
    [J]. CELL, 2019, 177 (07) : 1915 - +
  • [9] TGF-β and BMP Signaling in Osteoblast Differentiation and Bone Formation
    Chen, Guiqian
    Deng, Chuxia
    Li, Yi-Ping
    [J]. INTERNATIONAL JOURNAL OF BIOLOGICAL SCIENCES, 2012, 8 (02): : 272 - 288
  • [10] Transgenic Overexpression of Ephrin B1 in Bone Cells Promotes Bone Formation and an Anabolic Response to Mechanical Loading in Mice
    Cheng, Shaohong
    Kesavan, Chandrasekhar
    Mohan, Subburaman
    Qin, Xuezhong
    Alarcon, Catrina M.
    Wergedal, Jon
    Xing, Weirong
    [J]. PLOS ONE, 2013, 8 (07):