Literature DB >> 20488535

Urinary bladder smooth muscle regeneration utilizing bone marrow derived mesenchymal stem cell seeded elastomeric poly(1,8-octanediol-co-citrate) based thin films.

Arun K Sharma1, Partha V Hota, Derek J Matoka, Natalie J Fuller, Danny Jandali, Hatim Thaker, Guillermo A Ameer, Earl Y Cheng.   

Abstract

Bladder regeneration studies have yielded inconclusive results possibly due to the use of unfavorable cells and primitive scaffold design. We hypothesized that human mesenchymal stem cells seeded onto poly(1,8-octanediol-co-citrate) elastomeric thin films would provide a suitable milieu for partial bladder regeneration. POCfs were created by reacting citric acid with 1,8-octanediol and seeded on opposing faces with human MSCs and urothelial cells; normal bladder smooth muscle cells and UCs, or unseeded POCfs. Partial cystectomized nude rats were augmented with the aforementioned POCfs, enveloped with omentum and sacrificed at 4 and 10 weeks. Isolated bladders were subjected to Trichrome and anti-human gamma-tubulin, calponin, caldesmon, smooth muscle gamma-actin, and elastin stainings. Mechanical testing of POCfs revealed a Young's modulus of 138 kPa with elongation 137% its initial length without permanent deformation demonstrating its high uniaxial elastic potential. Trichrome and immunofluorescent staining of MSC/UC POCf augmented bladders exhibited typical bladder architecture with muscle bundle formation and the expression and retention of bladder smooth muscle contractile proteins of human derivation. Quantitative morphometry of MSC/UC samples revealed muscle/collagen ratios approximately 1.75x greater than SMC/UC controls at 10 weeks. Data demonstrate MSC seeded POCfs support partial regeneration of bladder tissue in vivo. 2010 Elsevier Ltd. All rights reserved.

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Year:  2010        PMID: 20488535     DOI: 10.1016/j.biomaterials.2010.04.054

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  48 in total

Review 1.  Regenerative medicine based applications to combat stress urinary incontinence.

Authors:  Hatim Thaker; Arun K Sharma
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2.  Cotransplantation with specific populations of spina bifida bone marrow stem/progenitor cells enhances urinary bladder regeneration.

Authors:  Arun K Sharma; Matthew I Bury; Natalie J Fuller; Andrew J Marks; David M Kollhoff; Manoj V Rao; Partha V Hota; Derek J Matoka; Seby L Edassery; Hatim Thaker; John F Sarwark; Joseph A Janicki; Guillermo A Ameer; Earl Y Cheng
Journal:  Proc Natl Acad Sci U S A       Date:  2013-02-19       Impact factor: 11.205

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Authors:  Stephanie L Osborn; Eric A Kurzrock
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Review 4.  Stem Cells in Functional Bladder Engineering.

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Journal:  Transfus Med Hemother       Date:  2016-08-31       Impact factor: 3.747

5.  The promotion of functional urinary bladder regeneration using anti-inflammatory nanofibers.

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Journal:  Biomaterials       Date:  2014-08-18       Impact factor: 12.479

Review 6.  The utility of stem cells in pediatric urinary bladder regeneration.

Authors:  Philip M Iannaccone; Vasil Galat; Matthew I Bury; Yongchao C Ma; Arun K Sharma
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Review 7.  Citrate chemistry and biology for biomaterials design.

Authors:  Chuying Ma; Ethan Gerhard; Di Lu; Jian Yang
Journal:  Biomaterials       Date:  2018-05-04       Impact factor: 12.479

Review 8.  Tissue engineering for the oncologic urinary bladder.

Authors:  Tomasz Drewa; Jan Adamowicz; Arun Sharma
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9.  Sustained, localized transgene expression mediated from lentivirus-loaded biodegradable polyester elastomers.

Authors:  Michele C Jen; Kevin Baler; Ashleigh R Hood; Seungjin Shin; Lonnie D Shea; Guillermo A Ameer
Journal:  J Biomed Mater Res A       Date:  2012-10-15       Impact factor: 4.396

10.  The blood and vascular cell compatibility of heparin-modified ePTFE vascular grafts.

Authors:  Ryan A Hoshi; Robert Van Lith; Michele C Jen; Josephine B Allen; Karen A Lapidos; Guillermo Ameer
Journal:  Biomaterials       Date:  2012-10-12       Impact factor: 12.479

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