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Department:Biochemistry and Molecular Biology Salary Salary:$63,480.00 to Commensurate Position Details Full/Part Time Status:Full Time Percent Time:100% Position Description: The Pedley Research Group in the Department
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of the molecular and cellular events that lead to vascular calcification in chronic kidney disease. Animal models for chronic kidney disease or diabetic mice will be performed to mimic human relevant diseases. By
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Kang | Department of Pathology ) and review our recent publications (https://www.ncbi.nlm.nih.gov/myncbi/zizhen.kang.1/bibliography/public/ ). Applicants should have a strong background in molecular
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Doc Research Scholar to play a pivotal role in building the lab infrastructure, implementing organoid culture protocols, and performing functional and molecular assays. This position offers a unique
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approaches to define the cellular and molecular mechanisms underlying protective versus pathological immune responses during respiratory viral infection. We are seeking a highly motivated Ph.D. with a strong
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mechanisms underlying the development of obesity and breast cancer. The project will investigate the molecular mechanisms underlying obesity/diabetes development and breast cancer progression using a
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research program investigating the molecular and developmental mechanisms underlying testicular dysfunction and infertility in a Wnt4 conditional knockout (Wnt4-cKO) mouse model. This position offers
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collaborative research investigating host–microbiome interactions and their impact on postnatal growth and metabolism in preterm infants. • Design, perform, and interpret experiments using mouse models, molecular
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models of endometrial and ovarian cancer and multidisciplinary approaches ranging from molecular biology and biochemistry to multiplexed kinetic live cell imaging and next-generation sequencing. Applicants
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, Hargreaves test, and weight-bearing tests Experience with molecular biology techniques, including Western blotting, PCR, immunohistochemistry, and/or immunofluorescence Experience with dorsal root ganglion