the skeleton biochemical genetic and molecular interactions in development and homeostasis pdf oziv @
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the skeleton biochemical genetic and molecular interactions in development and homeostasis pdf
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The skeleton biochemical genetic and molecular interactions in development and homeostasis refer to the complex network of processes involving the bone tissue and its regulation at the cellular and molecular levels. This includes the intricate interplay between genes, proteins, signaling pathways, and metabolic processes that control bone formation, growth, maintenance, and repair throughout development and in maintaining a state of equilibrium (homeostasis) in the adult skeleton. These interactions are crucial for the proper functioning of the skeletal system, influencing factors such as bone density, strength, and structure, as well as the response to mechanical stimuli, hormones, and environmental cues. Understanding these interactions is essential for elucidating the mechanisms underlying skeletal development and disease, such as osteoporosis, osteoarthritis, and skeletal dysplasias, and for developing novel therapeutic strategies to improve bone health and treat skeletal disorders.