Developing long bones respond to surrounding tissues by trans-pairing of periosteal osteoclasts and endocortical osteoblasts

Author:

Kuroda Yukiko1ORCID,Yoda Masaki1ORCID,Kawaai Katsuhiro1ORCID,Tatenuma Motoharu1ORCID,Mizoguchi Toshihide2ORCID,Ito Shinichirou3ORCID,Kasahara Masataka3ORCID,Wu Yanlin4ORCID,Takano Hidekazu4ORCID,Momose Atsushi45ORCID,Matsuo Koichi1ORCID

Affiliation:

1. Keio University School of Medicine 1 Laboratory of Cell and Tissue Biology , , 35 Shinanomachi, Shinjuku, Tokyo 160-8582 , Japan

2. Oral Health Science Center, Tokyo Dental College 2 , Tokyo 101-0061 , Japan

3. Tokyo Dental College 3 Department of Pharmacology , , Tokyo 101-0061 , Japan

4. Institute of Multidisciplinary Research for Advanced Materials (IMRAM), Tohoku University 4 , Katahira 2-1-1, Aoba, Sendai Miyagi 980-8577 , Japan

5. JASRI/SPring-8, 1-1-1 Kouto 5 , Sayo-cho, Hyogo 679-5198 , Japan

Abstract

ABSTRACT Developing long bones alter their shape while maintaining uniform cortical thickness via coordinated activity of bone-forming osteoblasts and bone-resorbing osteoclasts at periosteal and endosteal surfaces, a process we designate trans-pairing. Two types of trans-pairing shift cortical bone in opposite orientations: peri-forming trans-pairing (peri-t-p) increases bone marrow space and endo-forming trans-pairing (endo-t-p) decreases it, via paired activity of bone resorption and formation across the cortex. Here, we focused on endo-t-p in growing bones. Analysis of endo-t-p activity in the cortex of mouse fibulae revealed osteoclasts under the periosteum compressed by muscles, and expression of RANKL in periosteal cells of the cambium layer. Furthermore, mature osteoblasts were localized on the endosteum, while preosteoblasts were at the periosteum and within cortical canals. X-ray tomographic microscopy revealed the presence of cortical canals more closely associated with endo- than with peri-t-p. Sciatic nerve transection followed by muscle atrophy and unloading induced circumferential endo-t-p with concomitant spread of cortical canals. Such canals likely supply the endosteum with preosteoblasts from the periosteum under endo-t-p, allowing bone shape to change in response to mechanical stress or nerve injury.

Funder

Japan Society for the Promotion of Science

Japan Science and Technology Agency

Exploratory Research for Advanced Technology

Keio University

Publisher

The Company of Biologists

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