Literature DB >> 24028767

Endometrial stem cell differentiation into smooth muscle cell: a novel approach for bladder tissue engineering in women.

Alireza Shoae-Hassani1, Shiva Sharif, Alexander M Seifalian, Seyed Abdolreza Mortazavi-Tabatabaei, Sassan Rezaie, Javad Verdi.   

Abstract

OBJECTIVE: To investigate manufacturing smooth muscle cells (SMCs) for regenerative bladder reconstruction from differentiation of endometrial stem cells (EnSCs), as the recent discovery of EnSCs from the lining of women's uteri, opens up the possibility of using these cells for tissue engineering applications, such as building up natural tissue to repair prolapsed pelvic floors as well as building urinary bladder wall.
MATERIALS AND METHODS: Human EnSCs that were positive for cluster of differentiation 146 (CD146), CD105 and CD90 were isolated and cultured in Dulbecco's modified Eagle/F12 medium supplemented with myogenic growth factors. The myogenic factors included: transforming growth factor β, platelet-derived growth factor, hepatocyte growth factor and vascular endothelial growth factor. Differentiated SMCs on bioabsorbable polyethylene-glycol and collagen hydrogels were checked for SMC markers by real-time reverse-transcriptase polymerase chain reaction (RT-PCR), western blot (WB) and immunocytochemistry (ICC) analyses.
RESULTS: Histology confirmed the growth of SMCs in the hydrogel matrices. The myogenic growth factors decreased the proliferation rate of EnSCs, but they differentiated the human EnSCs into SMCs more efficiently on hydrogel matrices and expressed specific SMC markers including α-smooth muscle actin, desmin, vinculin and calponin in RT-PCR, WB and ICC experiments. The survival rate of cultures on the hydrogel-coated matrices was significantly higher than uncoated cultures.
CONCLUSIONS: Human EnSCs were successfully differentiated into SMCs, using hydrogels as scaffold. EnSCs may be used for autologous bladder wall regeneration without any immunological complications in women. Currently work is in progress using bioabsorbable nanocomposite materials as EnSC scaffolds for developing urinary bladder wall tissue.
© 2013 The Authors. BJU International © 2013 BJU International.

Entities:  

Keywords:  bladder augmentation; calponin; desmin; endometrial stem cell; hydrogels; regenerative medicine

Mesh:

Substances:

Year:  2013        PMID: 24028767     DOI: 10.1111/bju.12195

Source DB:  PubMed          Journal:  BJU Int        ISSN: 1464-4096            Impact factor:   5.588


  17 in total

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2.  Incorporation of Smooth Muscle Cells Derived from Human Adipose Stem Cells on Poly(Lactic-co-Glycolic Acid) Scaffold for the Reconstruction of Subtotally Resected Urinary Bladder in Athymic Rats.

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4.  Differentiation of human CD146-positive endometrial stem cells to adipogenic-, osteogenic-, neural progenitor-, and glial-like cells.

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Review 5.  The Role of Endometrial Stem/Progenitor Cells in Recurrent Reproductive Failure.

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Review 8.  Uterine Stem Cells and Benign Gynecological Disorders: Role in Pathobiology and Therapeutic Implications.

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Review 9.  Endometrial stem cells in regenerative medicine.

Authors:  Javad Verdi; Aaron Tan; Alireza Shoae-Hassani; Alexander M Seifalian
Journal:  J Biol Eng       Date:  2014-08-01       Impact factor: 4.355

10.  Citalopram increases the differentiation efficacy of bone marrow mesenchymal stem cells into neuronal-like cells.

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