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Muscle insulin-like growth factor-I modulates murine craniofacial bone growth
Author(s) -
Hui Jean Kok,
Charles Crowder,
L Koo Min Chee,
Ho-Young Choi,
Nancy Lin,
Elisabeth R. Barton
Publication year - 2021
Publication title -
european cells and materials
Language(s) - English
Resource type - Journals
eISSN - 1473-2262
DOI - 10.22203/ecm.v042a06
Subject(s) - endocrinology , insulin like growth factor , craniofacial , masseter muscle , muscle hypertrophy , medicine , growth factor , biology , skeletal muscle , chemistry , anatomy , receptor , genetics
Insulin-like growth factor I (IGF-I) is essential for muscle and bone development and a primary mediator of growth hormone (GH) actions. While studies have elucidated the importance of IGF-I specifically in muscle or bone development, few studies to date have evaluated the relationship between muscle and bone modulated by IGF-I in vivo, during post-natal growth. Mice with muscle-specific IGF-I overexpression (mIgf1+/+) were utilised to determine IGF-I- and muscle-mass-dependent effects on craniofacial skeleton development during post-natal growth. mIgf1+/+ mice displayed accelerated craniofacial bone growth when compared to wild-type animals. Virus-mediated expression of IGF-I targeting the masseter was performed to determine if post-natal modulation of IGF-I altered mandibular structures. Increased IGF-I in the masseter affected the mandibular base plane angle in a lateral manner, increasing the width of the mandible. At the cellular level, increased muscle IGF-I also accelerated cartilage thickness in the mandibular condyle. Importantly, mandibular length changes associated with increased IGF-I were not present in mice with genetic inhibition of muscle IGF-I receptor activity. These results demonstrated that muscle IGF-I could indirectly affect craniofacial growth through IGF-I-dependent increases in muscle hypertrophy. These findings have clinical implications when considering IGF-I as a therapeutic strategy for craniofacial disorders.

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