Aged‐vascular niche hinders osteogenesis of mesenchymal stem cells through paracrine repression of Wnt‐axis

Author:

Fleischhacker Viviane1,Milosic Filip1,Bricelj Marko1,Kührer Kristina1,Wahl‐Figlash Katharina2,Heimel Patrick345,Diendorfer Andreas6,Nardini Eleonora1,Fischer Irmgard7,Stangl Herbert1,Pietschmann Peter2,Hackl Matthias6,Foisner Roland78ORCID,Grillari Johannes349ORCID,Hengstschläger Markus1,Osmanagic‐Myers Selma1ORCID

Affiliation:

1. Center for Pathobiochemistry and Genetics Medical University of Vienna Vienna Austria

2. Department of Pathophysiology and Allergy Research, Center for Pathophysiology, Infectiology and Immunology Medical University of Vienna Vienna Austria

3. Ludwig Boltzmann Institute for Traumatology (The Research Center in Cooperation with AUVA) Vienna Austria

4. Austrian Cluster for Tissue Regeneration Vienna Austria

5. Core Facility Hard Tissue and Biomaterial Research, Karl Donath Laboratory University Clinic of Dentistry, Medical University of Vienna Vienna Austria

6. TAmiRNA GmbH Vienna Austria

7. Max Perutz Labs, Vienna BioCenter Campus (VBC) Vienna Austria

8. Max Perutz Labs Medical University of Vienna Vienna Austria

9. Department of Biotechnology, Institute of Molecular Biotechnology University of Natural Resources and Life Sciences Vienna Austria

Abstract

AbstractAge‐induced decline in osteogenic potential of bone marrow mesenchymal stem cells (BMSCs) potentiates osteoporosis and increases the risk for bone fractures. Despite epidemiology studies reporting concurrent development of vascular and bone diseases in the elderly, the underlying mechanisms for the vascular‐bone cross‐talk in aging are largely unknown. In this study, we show that accelerated endothelial aging deteriorates bone tissue through paracrine repression of Wnt‐driven‐axis in BMSCs. Here, we utilize physiologically aged mice in conjunction with our transgenic endothelial progeria mouse model (Hutchinson‐Gilford progeria syndrome; HGPS) that displays hallmarks of an aged bone marrow vascular niche. We find bone defects associated with diminished BMSC osteogenic differentiation that implicate the existence of angiocrine factors with long‐term inhibitory effects. microRNA‐transcriptomics of HGPS patient plasma combined with aged‐vascular niche analyses in progeria mice reveal abundant secretion of Wnt‐repressive microRNA‐31‐5p. Moreover, we show that inhibition of microRNA‐31‐5p as well as selective Wnt‐activator CHIR99021 boosts the osteogenic potential of BMSCs through de‐repression and activation of the Wnt‐signaling, respectively. Our results demonstrate that the vascular niche significantly contributes to osteogenesis defects in aging and pave the ground for microRNA‐based therapies of bone loss in elderly.

Publisher

Wiley

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