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Hematopoietic stem cell (HSC) multipotency and self-renewal are typically defined through serial transplantation experiments. Host conditioning is necessary for robust HSC engraftment, likely by reducing immune-mediated rejection and by clearing limited HSC niche space. Because irradiation of the recipient mouse is non-specific and broadly damaging, there is a need to develop alternative models to study HSC performance at steady-state and in the absence of radiation-induced stress. We have generated and characterized two new mouse models where either all hematopoietic cells or only HSCs can be specifically induced to die in vivo or in vitro. Hematopoietic-specific Vav1-mediated expression of a loxP-flanked diphtheria-toxin receptor (DTR) renders all hematopoietic cells sensitive to diphtheria toxin (DT) in "Vav-DTR" mice. Crossing these mice to Flk2-Cre mice results in "HSC-DTR" mice which exhibit HSC-selective DT sensitivity. We demonstrate robust, rapid, and highly selective cell ablation in these models. These new mouse models provide a platform to test whether HSCs are required for long-term hematopoiesis in vivo, for understanding the mechanisms regulating HSC engraftment, and interrogating in vivo hematopoietic differentiation pathways and mechanisms regulating hematopoietic homeostasis.
Pubmed ID: 35210475
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Mus musculus with name C57BL/6J from IMSR.
View all literature mentionsFacility offers multicolor cell analysis by BD LSRII cell analyzer and single cell sorting by BD Biosciences FACS Aria cell sorter. Provides user training for self-op use of BD FACS LSRII analyzer 3-laser and Self-op and Assisted sorting on BD FACS Aria IIU 5-lasers.
View all literature mentionsCore facility affiliated with Institute for Biology of Stem Cells.Provides imaging instrumentation to biology research community including personalized assistance on various aspects of imaging.Offers assistance in experimental design,training on shared microscopes, image visualization and image analysis.
View all literature mentionsProvides services for culture and analysis of stem cells. Provides space for embryonic stem cell growth and manipulation. Facility staff offers expertise in experimental design, protocol development, and data analysis.Equipment including biosafety hoods, centrifuges, microscopes.
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