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and molecular mechanisms underlying phenotypic variability in quiescent cell populations and their impact on adaptation, antifungal resistance, and population dynamics. The successful candidate will
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employs cutting-edge technologies, including single-cell genomics, integrated CRISPR screens with single-cell readouts, and highly multiplexed imaging. We work with patient-derived cancer tissue, cell line
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pyruvate kinase M2 maintains vascular integrity (Kim et al. JCI, 2018): https://www.jci.org/articles/view/120912 HIF2α inhibits glutaminase clustering in mitochondria to sustain growth of clear cell renal
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Inria, the French national research institute for the digital sciences | Palaiseau, le de France | France | about 1 month ago
services. The work is conducted in continuity with the PRIMO research project (https://primoproject.github.io/index_fr.html ), which investigates how digital mobility-support tools shape mobility practices
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proteomic techniques as well as human stem cell models. The candidate must be comfortable with advanced molecular biology techniques and bioinformatics. We are seeking a self-directed, self-motivated, curious
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engineered constructs. Learn more about the innovative work led by Dr. Chris Chen here: https://bdc.bu.edu/bdc-team/. What you’ll do: Independently conduct research on liver cell proliferation, expansion, and
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Chart tumour evolution using cutting-edge long-read and single-cell multiomics Who we are The Integrative Cancer Genomics lab (Jonas Demeulemeester) is embedded within the VIB – KU Leuven Center
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the skin microenvironment and how specialized Dendritic Cell subsets interact with the dermal barrier in health, inflammation and infection. Both bioinformatics and experimental analyses will be carried out
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multidisciplinary clinical and translational research team focused on advanced multi-omics-based trials in colorectal cancer. The successful candidate will support the analyses of single-cell and spatial
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aggressive form of brain cancer, characterized by diverse and dynamic cell states that drive treatment resistance and poor prognosis. In this project, funded by the Foundation Against Cancer, you will move