Literature DB >> 23197663

Isolation and in vitro characterization of basal and submucosal gland duct stem/progenitor cells from human proximal airways.

Ahmed E Hegab1, Vi Luan Ha, Daphne O Darmawan, Jennifer L Gilbert, Aik T Ooi, Yasser S Attiga, Bharti Bisht, Derek W Nickerson, Brigitte N Gomperts.   

Abstract

Basal cells and submucosal gland (SMG) duct cells have been isolated and shown to be stem/progenitor cell populations for the murine airway epithelium. However, methods for the isolation of basal and SMG duct cells from human airways have not been defined. We used an optimized two-step enzyme digestion protocol to strip the surface epithelium from tracheal specimens separate from SMG cells, and we then sorted the basal and duct stem/progenitors using fluorescence-activated cell sorting. We used nerve growth factor receptor, as well as a combination of CD166 and CD44, to sort basal cells and also used CD166 to isolate SMG duct cells. Sorted stem/progenitor cells were cultured to characterize their self-renewal and differentiation ability. Both basal and SMG duct cells grew into spheres. Immunostaining of the spheres showed mostly dense spheres with little to no central lumen. The spheres expressed cytokeratins 5 and 14, with some mucus- and serous-secreting cells. The sphere-forming efficiency and the rate of growth of the spheres varied widely between patient samples and correlated with the degree of hyperplasia of the epithelium. We found that only aldehyde dehydrogenase (ALDH)(hi) basal and duct cells were capable of sphere formation. Global inhibition of ALDH, as well as specific inhibition of the ALDH2 isoform, inhibited self-renewal of both basal and duct cells, thereby producing fewer and smaller spheres. In conclusion, we have developed methods to isolate basal and SMG duct cells from the surface epithelium and SMGs of human tracheas and have developed an in vitro model to characterize their self-renewal and differentiation.

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Year:  2012        PMID: 23197663      PMCID: PMC3659656          DOI: 10.5966/sctm.2012-0056

Source DB:  PubMed          Journal:  Stem Cells Transl Med        ISSN: 2157-6564            Impact factor:   6.940


  10 in total

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2.  The enzymatic activity of human aldehyde dehydrogenases 1A2 and 2 (ALDH1A2 and ALDH2) is detected by Aldefluor, inhibited by diethylaminobenzaldehyde and has significant effects on cell proliferation and drug resistance.

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3.  Basal cells as stem cells of the mouse trachea and human airway epithelium.

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Journal:  Proc Natl Acad Sci U S A       Date:  2009-07-22       Impact factor: 11.205

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5.  Novel stem/progenitor cell population from murine tracheal submucosal gland ducts with multipotent regenerative potential.

Authors:  Ahmed E Hegab; Vi Luan Ha; Jennifer L Gilbert; Kelvin Xi Zhang; Stephen P Malkoski; Andy T Chon; Daphne O Darmawan; Bharti Bisht; Aik T Ooi; Matteo Pellegrini; Derek W Nickerson; Brigitte N Gomperts
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  32 in total

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2.  Aldehyde dehydrogenase activity enriches for proximal airway basal stem cells and promotes their proliferation.

Authors:  Ahmed E Hegab; Vi Luan Ha; Bharti Bisht; Daphne O Darmawan; Aik T Ooi; Kelvin Xi Zhang; Manash K Paul; Yeon Sun Kim; Jennifer L Gilbert; Yasser S Attiga; Jackelyn A Alva-Ornelas; Derek W Nickerson; Brigitte N Gomperts
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4.  Dynamic changes in intracellular ROS levels regulate airway basal stem cell homeostasis through Nrf2-dependent Notch signaling.

Authors:  Manash K Paul; Bharti Bisht; Daphne O Darmawan; Richard Chiou; Vi L Ha; William D Wallace; Andrew T Chon; Ahmed E Hegab; Tristan Grogan; David A Elashoff; Jackelyn A Alva-Ornelas; Brigitte N Gomperts
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5.  Transplantation of Airway Epithelial Stem/Progenitor Cells: A Future for Cell-Based Therapy.

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