Literature DB >> 20522644

Tracheal Basal cells: a facultative progenitor cell pool.

Brook B Cole1, Russell W Smith, Kimberly M Jenkins, Brian B Graham, Paul R Reynolds, Susan D Reynolds.   

Abstract

Analysis of lineage relationships in the naphthalene-injured tracheal epithelium demonstrated that two multipotential keratin 14-expressing cells (K14ECs) function as progenitors for Clara and ciliated cells. These K14EC were distinguished by their self-renewal capacity and were hypothesized to reside at the stem and transit amplifying tiers of a tissue-specific stem cell hierarchy. In this study, we used gene expression and histomorphometric analysis of the steady-state and naphthalene-injured trachea to evaluate the predictions of this model. We found that the steady-state tracheal epithelium is maintained by two progenitor cell pools, secretory and basal cells, and the latter progenitor pool is further divided into two subsets, keratin 14-negative and -positive. After naphthalene-mediated depletion of the secretory and ciliated cell types, the two basal cell pools coordinate to restore the epithelium. Both basal cell types up-regulate keratin 14 and generate a broadly distributed, abundant, and highly mitotic cell pool. Furthermore, basal cell proliferation is associated with generation of differentiated Clara and ciliated cells. The uniform distribution of basal cell progenitors and of their differentiated progeny leads us to propose that the hierarchical organization of tracheal reparative cells be revised to include a facultative basal cell progenitor pool.

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Year:  2010        PMID: 20522644      PMCID: PMC2893679          DOI: 10.2353/ajpath.2010.090870

Source DB:  PubMed          Journal:  Am J Pathol        ISSN: 0002-9440            Impact factor:   4.307


  46 in total

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6.  beta-Catenin is not necessary for maintenance or repair of the bronchiolar epithelium.

Authors:  Anna C Zemke; Roxana M Teisanu; Adam Giangreco; Jeff A Drake; Brian L Brockway; Susan D Reynolds; Barry R Stripp
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Authors:  Anna C Zemke; Joshua C Snyder; Brian L Brockway; Jeffrey A Drake; Susan D Reynolds; Naftali Kaminski; Barry R Stripp
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  74 in total

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2.  A single cell functions as a tissue-specific stem cell and the in vitro niche-forming cell.

Authors:  Moumita Ghosh; Karen M Helm; Russell W Smith; Matthew S Giordanengo; Bilan Li; Hongmei Shen; Susan D Reynolds
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3.  Transforming growth factor-beta signaling network regulates plasticity and lineage commitment of lung cancer cells.

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4.  Lung epithelial healing: a modified seed and soil concept.

Authors:  Susan D Reynolds; Heather M Brechbuhl; Mary Kathryn Smith; Russell W Smith; Moumita Ghosh
Journal:  Proc Am Thorac Soc       Date:  2012-05

5.  Stem cells and cell therapies in lung biology and lung diseases.

Authors:  Daniel J Weiss; Ivan Bertoncello; Zea Borok; Carla Kim; Angela Panoskaltsis-Mortari; Susan Reynolds; Mauricio Rojas; Barry Stripp; David Warburton; Darwin J Prockop
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6.  Decellularized tracheal extracellular matrix supports epithelial migration, differentiation, and function.

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7.  Deconstructing tissue engineered trachea: Assessing the role of synthetic scaffolds, segmental replacement and cell seeding on graft performance.

Authors:  Sayali Dharmadhikari; Lumei Liu; Kimberly Shontz; Matthew Wiet; Audrey White; Andrew Goins; Himani Akula; Jed Johnson; Susan D Reynolds; Christopher K Breuer; Tendy Chiang
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Review 8.  Progenitor cells in proximal airway epithelial development and regeneration.

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9.  Engineered Tissue-Stent Biocomposites as Tracheal Replacements.

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10.  Chemosensory brush cells of the trachea. A stable population in a dynamic epithelium.

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Journal:  Am J Respir Cell Mol Biol       Date:  2013-08       Impact factor: 6.914

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