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. The successful candidate will perform pluripotent stem cell and genetic manipulation experiments in a collaborative lab environment. Other responsibilities will include managing lab orders and coordinating
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We are focused on fostering education and training in research to develop microenvironments to investigate and instruct cellular behaviour including, but not solely, stem cell differentiation. Our
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PhD Studentship: Preclinical modelling and therapeutic targeting of glioblastoma infiltrative margin
infiltrative margin will be re-programmed to generate induced pluripotent stem cells as a patient-matched toxicity control. Research Environment: Applications are invited for a 4-year fully-funded PhD
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environment to apply and develop their skills. Duties involve culture and maintenance of stem cells and human/mouse islets; standard molecular biology techniques including DNA and RNA extraction, quantitative
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Centers, and various medical and surgical services including hematopoietic stem cell and solid organ transplant programs. The laboratory issues approximately 60,000 blood products and performs 2700
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Number: R145813 Researcher 2 designs, executes and manages research projects investigating the effects of bacterial toxins on intestinal stem cell dysfunction in a foundational (basic) biological/health
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chromosome 8p that results in neurodevelopmental delays, epilepsy, and other clinical features. Using our recently developed chromosome engineering approach, we have created isogenic stem cell lines that allow
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on normal and malignant stem and progenitor cells in the hematopoietic system and decodes the role of metabolites in the tumor microenvironment in regulating hematologic malignancies. Fully funded
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schools in the world. For more details, please view https://www.ntu.edu.sg/mae/research . To develop novel inertial microfluidics and impedance-based cell sorter. To develop novel label-free CQAs based
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hematopoietic stem cells. The Postdoctoral Associate role is to investigate the molecular mechanisms of how Dnmt3a mutations collaborate with JAK2-V617F to accelerate conversion from clonal hematopoiesis to MPN