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University of Massachusetts Medical School

Cellular and Molecular Physiology

2019

Progenitor cells

Articles 1 - 2 of 2

Full-Text Articles in Life Sciences

Diverse Repertoire Of Human Adipocyte Subtypes Develops From Transcriptionally Distinct Mesenchymal Progenitor Cells, So Yun Min, Anand Desai, Zinger Yang, Agastya Sharma, Tiffany Desouza, Ryan Genga, Alper Kucukural, Lawrence M. Lifshitz, Soren Nielsen, Camilla Scheele, Rene Maehr, Manuel Garber, Silvia Corvera Sep 2019

Diverse Repertoire Of Human Adipocyte Subtypes Develops From Transcriptionally Distinct Mesenchymal Progenitor Cells, So Yun Min, Anand Desai, Zinger Yang, Agastya Sharma, Tiffany Desouza, Ryan Genga, Alper Kucukural, Lawrence M. Lifshitz, Soren Nielsen, Camilla Scheele, Rene Maehr, Manuel Garber, Silvia Corvera

Open Access Articles

Single-cell sequencing technologies have revealed an unexpectedly broad repertoire of cells required to mediate complex functions in multicellular organisms. Despite the multiple roles of adipose tissue in maintaining systemic metabolic homeostasis, adipocytes are thought to be largely homogenous with only 2 major subtypes recognized in humans so far. Here we report the existence and characteristics of 4 distinct human adipocyte subtypes, and of their respective mesenchymal progenitors. The phenotypes of these distinct adipocyte subtypes are differentially associated with key adipose tissue functions, including thermogenesis, lipid storage, and adipokine secretion. The transcriptomic signature of "brite/beige" thermogenic adipocytes reveals mechanisms for ...


Transforming Growth Factor-Beta Renders Ageing Microglia Inhibitory To Oligodendrocyte Generation By Cns Progenitors, Roey Baror, Bjorn Neumann, Michael Segel, Kevin J. Chalut, Stephen P.J. Fancy J, Dorothy P. Schafer, Robin J.M. Franklin Mar 2019

Transforming Growth Factor-Beta Renders Ageing Microglia Inhibitory To Oligodendrocyte Generation By Cns Progenitors, Roey Baror, Bjorn Neumann, Michael Segel, Kevin J. Chalut, Stephen P.J. Fancy J, Dorothy P. Schafer, Robin J.M. Franklin

Neurobiology Publications

It is now well-established that the macrophage and microglial response to CNS demyelination influences remyelination by removing myelin debris and secreting a variety of signaling molecules that influence the behaviour of oligodendrocyte progenitor cells (OPCs). Previous studies have shown that changes in microglia contribute to the age-related decline in the efficiency of remyelination. In this study, we show that microglia increase their expression of the proteoglycan NG2 with age, and that this is associated with an altered micro-niche generated by aged, but not young, microglia that can divert the differentiation OPCs from oligodendrocytes into astrocytes in vitro. We further show ...