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presentations to the internal team. Independently operate cell sorters and analyzers, including instrument set-up, compensation control preparation, PMT voltage adjustments, experimental settings selection
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processes at the molecular, cellular, tissue and systems level of organisation. In so doing we provide a bridge to translational medicine, and interface between physical and life sciences. We are committed
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Therapy Postdoc Appointment Term: 1-year term with possible extension Appointment Start Date: As soon as possible (ASAP) Group or Departmental Website: https://med.stanford.edu/ross-lab (link is external
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Role of the extracellular matrix in skeletal muscle stem cell function School of Biosciences PhD Research Project Self Funded Dr A G Borycki Application Deadline: Applications accepted all year
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generateing genetically modified organoids to study the mechanisms controlling the organization and cell diversification of the human cortex Where to apply E-mail stephane.nedelec@inserm.fr Requirements
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terminate November 30th 2027. Information on the Department can be found at: www.isim.ku.dk Our research During this postdoctoral position, you will investigate the molecular and cellular biology of hepatitis
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focuses on understanding the molecular and cellular mechanisms of systemic amyloid deposition, with particular emphasis on AL and ATTR amyloidosis. We use in situ structural approaches to visualize amyloid
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Investigating how DNA damage responses combat infections by the typhoid pathogen Salmonella enterica
Srour et al. 2025, EMBO Mol Med (https://doi.org/10.1038/s44321-025-00347-8) ElGhazaly et al., 2023, Cell Reports (https://doi.org/10.1016/j.celrep.2023.113181) Ibler et al. 2023, Nat Commun (https
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xenotransplantation by analyzing the genetic makeup of pig menisci. Using single-cell and long/short-read sequencing, we will build a detailed reference transcriptome, compare it with human data, and explore zonal
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sarcomas, where chromosomal translocations generate fusion oncoproteins that serve as drivers of the disease. By combining a toolbox consisting of CRISPR/Cas9, RNAi technology, cellular barcoding, and mouse