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Office of Women's Health Grant Program (OWH GP) | Silver Spring, Maryland | United States | 2 months ago
motivated postdoctoral researcher to join a collaborative project with interdisciplinary research that focuses on developing mesenchymal stromal cell-derived extracellular vesicles (MSC-EVs) as a novel
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regulatory non-coding RNAs that influence gene expression regulation in various unique cell types of the hypothalamus and pituitary gland - ependymocytes, tanycytes, gonadotropes, thyrotropes, and others
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biology approaches and expertise in mammalian cell engineering and RNA biology. The post holder will have many opportunities for multidisciplinary collaborative working with academic colleagues from
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the bicarbonate/formate half-cell. The PostDoc position is part of a larger project, called “Redox Blend” with other universities, and research institutes (DIFFER and TNO), within the National Growth Fund program
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of Cell and Molecular Biology, Biomedicum, Karolinska Institutet. You will be part of a small, dynamic, and closely knit multinational team located in one of Europe’s most advanced biomedical research
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particular Hodgkin lymphoma and hairy cell leukemia), and to translate this knowledge in the clinic by developing new precision diagnostic and therapeutic tools (as exemplified by recent publications in top
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mission is directly tied to the humanity, dignity and inherent value of each employee, patient, community member and supporter. Our commitment to learning across our differences and similarities make us
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mission is directly tied to the humanity, dignity and inherent value of each employee, patient, community member and supporter. Our commitment to learning across our differences and similarities make us
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of mechanosensitive ion channels in different cell types in the eye. Relevant techniques include 2 photon calcium imaging, retinal electrophysiology, rodent microsurgery and animal models of glaucoma and other ocular
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of high-dimensional single-cell data, the lab aims to reconstruct accurate cell-lineage trees and use them as a scaffold to map genome-wide regulatory dynamics across development. The lab is highly