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Identifying and characterizing the cellular and molecular mechanisms regulating skeletal development, growth, and morphogenesis and developing new cell- or gene-based tools to treat and correct pediatric skeletal disorders.
Leveraging innovative experimental methodology, computational approaches, and molecular tools to better understand immune system development, immune response to microorganisms, and mucosal immunology.
Generating knowledge on the physical and mental health and well being of adolescents through clinical, translational, population- and community-based research.
Delving into the basic, fundamental science that informs the causes and mechanisms of disease in order to develop the next generation of clinical tools.
Reinforcing and advancing a strong legacy in translational research that focuses on conditions related to aberrant immune function.
Investigating the molecular mechanisms affecting function of immune cells in the context of their interactions with foreign antigens.
Investigating molecular and cellular mechanisms underlying initiation, evolution, and treatment responses of pediatric cancers.
Growing the connection between laboratory science and clinical research to investigate and treat voiding function and dysfunction in children.
Advancing cardiology care and research through a dynamic and preeminent research program that embraces both clinical and basic science approaches.
Defining the cell biological basis of disease through the use of advanced microscopes to image live cells and tissues.