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Field
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and how alloimmunity is suppressed in patients receiving donor hematopoietic stem cells. In addition, the lab is using novel, spatial omics approaches to more comprehensively understand transplant
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investigating tertiary lymphoid structures in inflammatory diseases, interorgan endocrine signaling, the comparative niches of stem cells across tissues, or mechanisms of transcriptional regulation such as
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research and to drive in vitro drug target and mechanistic discovery efforts using 3D triple culture system based on iPSCs. The cell lines will be derived from participants of the Flemish Cognitive Compass
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research and to drive in vitro drug target and mechanistic discovery efforts using 3D triple culture system based on iPSCs. The cell lines will be derived from participants of the Flemish Cognitive Compass
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investigating tertiary lymphoid structures in inflammatory diseases, interorgan endocrine signaling, the comparative niches of stem cells across tissues, or mechanisms of transcriptional regulation such as
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hematopoietic stem cells. In addition, the lab is using novel, spatial omics approaches to more comprehensively understand transplant pathology. The main goal is to identify and validate novel biomarkers
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Posted on Mon, 08/03/2026 - 11:45 Important Info Faculty Sponsor First name: Tanja Faculty Sponsor Last Name: Gruber Stanford Departments and Centers: Pediatrics, Hematology Oncology Stem Cell
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cellular disease models, particularly in vitro models using cardiomyocytes or stem cells. Other preferred expertise or research experience includes molecular cloning, primary cardiac cell isolation, genome
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; Circulation Research 2021, Circulation 2019), 2) Uncovering genetic drivers of anti-cancer drug-induced cardiovascular toxicity through integrated iPSC models and high-throughput CRISPRi/a screening (Cell Stem
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organoid-based research. For more information go to: https://www.bauschlab.org Your Qualification: High motivation, curiosity, and commitment to scientific excellence PhD in stem cell biology, developmental