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: Experience with stem cells and stem cell derived organoids. Experience with ophthalmology is not required. 7/10/2026
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Massachusetts Institute of Technology (MIT) | Cambridge, Massachusetts | United States | 3 months ago
; and be skilled in cell culture, microfluidic fabrication, modeling organ systems, characterization assays such as PCR, immunostaining, flow cytometry, ELISA etc. PREFERRED: Experience with stem cells
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to cell sources including adult stem/progenitor cells and immune cells for treatment of specific cancers, tissue degeneration, and autoimmune diseases. This interdisciplinary team comprises engineers
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Massachusetts Institute of Technology (MIT) | Cambridge, Massachusetts | United States | 3 months ago
experimental stem cell biology, human and mouse model systems, and machine learning approaches for phenotyping, target discovery, and therapeutic evaluation. Will be hired by the MIT Jameel Clinic for Machine
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Massachusetts Institute of Technology | Cambridge, Massachusetts | United States | about 1 month ago
experimental stem cell biology, human and mouse model systems, and machine learning approaches for phenotyping, target discovery, and therapeutic evaluation. Will be hired by the MIT Jameel Clinic for Machine
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validate innovative electroactive biomaterials and bioelectronic devices that promote cardiac regeneration by combining tissue engineering, biomaterials, stem cell biology and bioelectronics. Working closely
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bioprinting, stem cell research, and cell differentiation. JagodaLab is equipped with multiple 3D printers, including Poland’s first volumetric bioprinter, an extrusion-based bioprinter, SLA printers. CAT also
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involve manipulation of epigenetic marks in embryonic stem cells, investigating changes in epigenetic landscapes and transcription upon controlled manipulation, and/or engineering of synthetic chromatin
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immunotherapy modeling is highly desirable, candidates with the following experience will also be considered: stem cell-derived organoid models (specifically brain, lung, or tumor organoids), lab-on-chip
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-wide studies, proteomics, single-cell measurements, and computational modelling. We use mouse embryonic stem cells and their differentiation to neuronal and haematopoietic cells as our main model system