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Field
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duties include maintaining mouse colonies and generating embryos from control and diet-induced obese dams, performing cell culture, and analyzing embryonic cardiac tissue by histology, immunostaining
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, UK. You will be part of a team working towards novel neuroimaging approaches that sensitise brain Magnetic Resonance Imaging (MRI) to cell types. You will integrate information across cutting-edge
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on the genetic engineering of cultured red blood cells (RBCs), for applications in transfusion medicine, infectious diseases, and therapeutic development. The specific project aims to engineer
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appendage development. Develop and maintain embryonic and primary cell culture models to investigate gene regulatory networks and morphogenesis. Prepare ethics and OGTR applications, reports, and high-impact
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factor: Experience in the experimental development of cellular biomimetic environments, namely in the breast cancer context, with non-neoplastic and neoplastic cells, in 2D and 3D culture (spheroids and/or
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wet bench experiments including stem cell culture, western blotting, molecular biology, microscopy, histology, and flow cytometry Involved in downstream bioinformatics analysis Willing to learn mouse
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University of Maryland School of Medicine, Baltimore | Baltimore, Maryland | United States | 2 months ago
: - Multicolor flow cytometry and immune profiling - Isolation and characterization of cells from solid tissues - Human hematopoietic stem cell and immune cell culture - Bone marrow transplantation and
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. Hands-on experience in performing primary human- and cancer- cell culture, complex cell-based assay development and screening technologies (including multicolor flow cytometry, RNA-seq, library
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desirable. Technical Skills: Proficiency in molecular cloning, cell culture, and biochemical assays. Familiarity with omics-based approaches (e.g., proteomics, transcriptomics) is a plus. Soft Skills: Strong
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motivated postdoctoral fellow. We study how metabolism and metabolic enzymes in endothelial cells contribute to health and disease by leveraging genetically engineered mouse models, in vitro cell culture with