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These mice will provide a valuable reagent for assessing immunity in vivo.
Furthermore, ingrafting the vascular organoids into mice will provide key information to the hemodynamic regulation between control donors and BMPR2 mutants.
Since limited mobility is associated with the physical and mental health of a person, evaluation of this in preclinical aging studies in mice will provide a translational approach for testing new intervention strategies.
As behavioral phenotyping strategies continue to evolve, characterization of these "designer" mice will provide models to evaluate the efficacy of new pharmacological and gene therapy treatments in human hereditary diseases.
When crossed to transgenic lines expressing Cre protein in a spatially and/or temporally controlled manner, these conditional mice will provide new insights into the contributions of Foxp2 to distinct neural circuits, and allow dissection of roles during development and in the mature brain.
CD-1 mice will provide high-resolution mapping that requires dense genotyping similar to the heterogeneous stock [44].
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Whatever the mechanism, this mouse will provide an invaluable tool with which to dissect the progression through key checkpoints during the evolution of arthritis.
The identification and validation of both Gct4 and Gct6 susceptibility genes in the mouse will provide a foundation for the pursuit of genetic and epigenetic features that contribute to pediatric cases of juvenile-type GC tumors.
In addition, the HIS-CNS mouse will provide a novel model that could be used for evaluating the effectiveness of new strategies to eradicate brain reservoirs of HIV and for evaluating the effects of long-term antiretroviral therapy on the brain.
Indeed, the process of determining the parameter modifications required to accurately simulate different mouse models will provide important quantitative information regarding their integrative metabolic phenotypes and the differences between mouse models.
Development of a better humanized mouse model will provide an important tool for studying human immune responses and diseases in a small animal model.
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