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at risk of developing type 1 or type 2 diabetes. The Thurmond Lab is also examining Doc2b as a potential biomarker for diabetes. If this protein can help us detect early diabetic changes, patients can
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bone marrow transplantation. We are looking for a highly motivated candidate with a PhD degree interested in using microbiological methods with the aim of developing novel strategies to improve bone
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pioneering the development of neural stem cell (NSC) and extracellular vesicle (EV)-based therapies for neurodegenerative conditions, including traumatic brain injury (TBI), chemotherapy-related cognitive
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to vaccine development utilizing viral vectors to contribute to an effort in developing neoantigen expressing vaccines for clinical investigations. The position is available as part of a multi-disciplinary
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of Hope. This role offers an exciting opportunity to investigate immune checkpoint signaling within the tumor microenvironment and contribute to the development of novel anticancer therapies
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hematopoiesis, leukemogenesis, and tumorigenesis as well as developing new targeted therapies for hematological malignant diseases and cancers. Our research involves experiments with various biochemistry and
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are working on this may be the perfect opportunity: 1. Development of cell-free DNA (mutation and methylation), RNA, and exosomal-based liquid assays for early cancer detection, prognosis, and predictive
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of Hope. This role offers an exciting opportunity to investigate immune checkpoint signaling within the tumor microenvironment and contribute to the development of novel anticancer therapies
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drive our multiomics, high-throughput sequencing projects and help develop any projects based on the most advanced technologies. Your qualifications should include: Ph.D. in Biochemistry, Bioinformatics
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. Develop new techniques/protocols and help other lab projects.