Role of angiocrine signals in bone development, homeostasis and disease

Author:

Sivan Unnikrishnan1,De Angelis Jessica1,Kusumbe Anjali P.1ORCID

Affiliation:

1. The Kennedy Institute of Rheumatology, University of Oxford, Oxford OX3 7FY, UK

Abstract

Skeletal vasculature plays a central role in the maintenance of microenvironments for osteogenesis and haematopoiesis. In addition to supplying oxygen and nutrients, vasculature provides a number of inductive factors termed as angiocrine signals. Blood vessels drive recruitment of osteoblast precursors and bone formation during development. Angiogenesis is indispensable for bone repair and regeneration. Dysregulation of the angiocrine crosstalk is a hallmark of ageing and pathobiological conditions in the skeletal system. The skeletal vascular bed is complex, heterogeneous and characterized by distinct capillary subtypes (type H and type L), which exhibit differential expression of angiocrine factors. Furthermore, distinct blood vessel subtypes with differential angiocrine profiles differentially regulate osteogenesis and haematopoiesis, and drive disease states in the skeletal system. This review provides an overview of the role of angiocrine signals in bone during homeostasis and disease.

Funder

Leukaemia Foundation

Kay Kendall Leukaemia Fund

H2020 European Research Council

Cancer Research UK

Medical Research Council

John Fell Fund, University of Oxford

Office of the Royal Society

Kennedy Trust for Rheumatology Research

Publisher

The Royal Society

Subject

General Biochemistry, Genetics and Molecular Biology,Immunology,General Neuroscience

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