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Today, poultry meat is at the top of consumers’ lists as an affordable, nutritious, and healthy protein source. The modern meat-type chicken’s highly efficient growth rate and outstanding meat yield account for much of the poultry industry’s success, but many of today’s consumers care more than the price tag. As concerns for animal welfare, health, and sustainability grow along with the global population’s craving for animal protein, effectively addressing lameness incidence in meat birds is of key interest. A major obstacle in tackling lameness is the lack of understanding of the mechanistic underpinnings involved in a common cause of lameness, femur head necrosis (FHN), also called bacterial chondronecrosis with osteomyelitis (BCO).
The work of Dr. Alison Ramer’s lab has been to identify mechanisms by which bacteria induce the symptoms of FHN/BCO, bone attrition, inflammation, and infection through both in vivo and in vitro studies. This work has resulted in several key molecular pathways implicated in FHN/BCO, including DICER dysregulation and dsRNA accumulation, mitochondrial dysfunction, and autophagy dysregulation. In addition to identifying causative pathways, the lab has also sought to identify potential non-invasive biomarkers for the presence of FHN/BCO, which led to the identification of a unique cytokine/chemokine signature both in circulation and at the local bone level of affected birds. Their quest to better define and diagnose this consequential skeletal disease also means seeking new means of measuring and visualizing bone health in meat-type birds to feed the future healthily and sustainably.
Today, poultry meat is at the top of consumers’ lists as an affordable, nutritious, and healthy protein source. The modern meat-type chicken’s highly efficient growth rate and outstanding meat yield account for much of the poultry industry’s success, but many of today’s consumers care more than the price tag. As concerns for animal welfare, health, and sustainability grow along with the global population’s craving for animal protein, effectively addressing lameness incidence in meat birds is of key interest. A major obstacle in tackling lameness is the lack of understanding of the mechanistic underpinnings involved in a common cause of lameness, femur head necrosis (FHN), also called bacterial chondronecrosis with osteomyelitis (BCO).
The work of Dr. Alison Ramer’s lab has been to identify mechanisms by which bacteria induce the symptoms of FHN/BCO, bone attrition, inflammation, and infection through both in vivo and in vitro studies. This work has resulted in several key molecular pathways implicated in FHN/BCO, including DICER dysregulation and dsRNA accumulation, mitochondrial dysfunction, and autophagy dysregulation. In addition to identifying causative pathways, the lab has also sought to identify potential non-invasive biomarkers for the presence of FHN/BCO, which led to the identification of a unique cytokine/chemokine signature both in circulation and at the local bone level of affected birds. Their quest to better define and diagnose this consequential skeletal disease also means seeking new means of measuring and visualizing bone health in meat-type birds to feed the future healthily and sustainably.
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