Summary: Mechanical stimuli including loading after birth promote bone growth. However, little is known about how mechanical force triggers biochemical signals to regulate bone growth. Here, we identified a periosteal-osteoblast-derived secretory peptide, Osteocrin (OSTN), as a mechanotransducer involved in load-induced long bone growth. OSTN produced by periosteal osteoblasts regulates growth plate growth by enhancing C-type natriuretic peptide (CNP)-dependent proliferation and maturation of chondrocytes, leading to elongation of long bones. Additionally, OSTN cooperates with CNP to regulate bone formation. CNP stimulates osteogenic differentiation of periosteal osteoprogenitors to induce bone formation. OSTN binds to natriuretic peptide r...
Receptor activator of nuclear factor‐κΒ ligand (RANKL) is necessary and sufficient to promote osteoc...
Recent studies revealed C-type natriuretic peptide (CNP) and its receptor, guanylyl cyclase-B (GC-B)...
Hormonal changes during lactation are associated with profound changes in bone cell biology, such as...
Using a viral-based signal-trap strategy targeting the bone "secretome" we identified a novel gene c...
Abstract: Neuropeptides such as vasoactive intestinal peptide (VIP) and calcitonin gene-related pept...
<div><p>Peptidergic sensory nerve fibers innervating bone and periosteum are rich in calcitonin gene...
Mechanical loading is of pivotal importance in the maintenance of skeletal homeostasis, but the play...
Osteoporosis is the most prevalent bone disease and represents a major public health burden. Resulti...
Mechanical signal transduction in bone tissue begins with load-induced activation of several cellula...
BMP2 and mechanical loading cooperatively regulate immediate early signalling events in the BMP path...
Peptidergic sensory nerve fibers innervating bone and periosteum are rich in calcitonin gene-related...
In regions of high bone loading, the mechanoresponsive osteocytes inhibit osteoclastic bone resorpti...
SummaryMechanical stress is an essential factor for physiological response and maintaining homeostas...
Background: Osteocytes, composing over 90% of bone cells, are well known for their mechanosensing ab...
The osteocyte network is crucial for the response of bone to mechanical force. Within this network, ...
Receptor activator of nuclear factor‐κΒ ligand (RANKL) is necessary and sufficient to promote osteoc...
Recent studies revealed C-type natriuretic peptide (CNP) and its receptor, guanylyl cyclase-B (GC-B)...
Hormonal changes during lactation are associated with profound changes in bone cell biology, such as...
Using a viral-based signal-trap strategy targeting the bone "secretome" we identified a novel gene c...
Abstract: Neuropeptides such as vasoactive intestinal peptide (VIP) and calcitonin gene-related pept...
<div><p>Peptidergic sensory nerve fibers innervating bone and periosteum are rich in calcitonin gene...
Mechanical loading is of pivotal importance in the maintenance of skeletal homeostasis, but the play...
Osteoporosis is the most prevalent bone disease and represents a major public health burden. Resulti...
Mechanical signal transduction in bone tissue begins with load-induced activation of several cellula...
BMP2 and mechanical loading cooperatively regulate immediate early signalling events in the BMP path...
Peptidergic sensory nerve fibers innervating bone and periosteum are rich in calcitonin gene-related...
In regions of high bone loading, the mechanoresponsive osteocytes inhibit osteoclastic bone resorpti...
SummaryMechanical stress is an essential factor for physiological response and maintaining homeostas...
Background: Osteocytes, composing over 90% of bone cells, are well known for their mechanosensing ab...
The osteocyte network is crucial for the response of bone to mechanical force. Within this network, ...
Receptor activator of nuclear factor‐κΒ ligand (RANKL) is necessary and sufficient to promote osteoc...
Recent studies revealed C-type natriuretic peptide (CNP) and its receptor, guanylyl cyclase-B (GC-B)...
Hormonal changes during lactation are associated with profound changes in bone cell biology, such as...