Literature DB >> 22877501

Cell-seeded tubularized scaffolds for reconstruction of long urethral defects: a preclinical study.

Hazem Orabi1, Tamer AbouShwareb, Yuanyuan Zhang, James J Yoo, Anthony Atala.   

Abstract

BACKGROUND: The treatment options for patients requiring repair of a long segment of the urethra are limited by the availability of autologous tissues. We previously reported that acellular collagen-based tubularized constructs seeded with cells are able to repair small urethral defects in a rabbit model.
OBJECTIVE: We explored the feasibility of engineering clinically relevant long urethras for surgical reconstruction in a canine preclinical model. DESIGN, SETTING, AND PARTICIPANTS: Autologous bladder epithelial and smooth muscle cells from 15 male dogs were grown and seeded onto preconfigured collagen-based tubular matrices (6 cm in length). The perineal urethral segment was removed in 21 male dogs. Urethroplasties were performed with tubularized collagen scaffolds seeded with cells in 15 animals. Tubularized constructs without cells were implanted in six animals. Serial urethrography and three-dimensional computed tomography (CT) scans were performed pre- and postoperatively at 1, 3, 6, and 12 mo. The animals were euthanized at their predetermined time points (three animals at 1 mo, and four at 3, 6, and 12 mo) for analyses. OUTCOME MEASUREMENTS AND STATISTICAL ANALYSIS: Statistical analysis of CT imaging and histology was not needed. RESULTS AND LIMITATIONS: CT urethrograms showed wide-caliber urethras without strictures in animals implanted with cell-seeded matrices. The urethral segments replaced with acellular scaffolds collapsed. Gross examination of the urethral implants seeded with cells showed normal-appearing tissue without evidence of fibrosis. Histologically, an epithelial cell layer surrounded by muscle fiber bundles was observed on the cell-seeded constructs, and cellular organization increased over time. The epithelial and smooth muscle phenotypes were confirmed using antibodies to pancytokeratins AE1/AE3 and smooth muscle-specific desmin. Formation of an epithelial cell layer occurred in the unseeded constructs, but few muscle fibers formed.
CONCLUSIONS: Cell-seeded tubularized collagen scaffolds can be used to repair long urethral defects, whereas scaffolds without cells lead to poor tissue development and strictures. This study demonstrates that long tissue-engineered tubularized urethral segments may be used for urethroplasty in patients.
Copyright © 2012 European Association of Urology. Published by Elsevier B.V. All rights reserved.

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Year:  2012        PMID: 22877501      PMCID: PMC3554849          DOI: 10.1016/j.eururo.2012.07.041

Source DB:  PubMed          Journal:  Eur Urol        ISSN: 0302-2838            Impact factor:   20.096


  23 in total

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2.  The problems of penile urethroplasty with particular reference to 2-stage reconstructions.

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4.  Oral complications after buccal mucosal graft harvest for urethroplasty.

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5.  Tissue engineering of urethra using human vascular endothelial growth factor gene-modified bladder urothelial cells.

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Journal:  Artif Organs       Date:  2007-11-14       Impact factor: 3.094

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  31 in total

Review 1.  A systematic review of animal and clinical studies on the use of scaffolds for urethral repair.

Authors:  Na Qi; Wen-Jiao Li; Hong Tian
Journal:  J Huazhong Univ Sci Technolog Med Sci       Date:  2016-02-03

Review 2.  Update on tissue engineering in pediatric urology.

Authors:  Blake W Palmer; Bradley P Kropp
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Review 3.  Overview of Urethral Reconstruction by Tissue Engineering: Current Strategies, Clinical Status and Future Direction.

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Journal:  Tissue Eng Regen Med       Date:  2019-05-22       Impact factor: 4.169

Review 4.  Seeding cell approach for tissue-engineered urethral reconstruction in animal study: A systematic review and meta-analysis.

Authors:  Jing-Dong Xue; Jing Gao; Qiang Fu; Chao Feng; Hong Xie
Journal:  Exp Biol Med (Maywood)       Date:  2016-03-27

Review 5.  Tissue engineering of urethra: Systematic review of recent literature.

Authors:  Stanislav Žiaran; Martina Galambošová; L'uboš Danišovič
Journal:  Exp Biol Med (Maywood)       Date:  2017-09-11

6.  Minced Tissue in Compressed Collagen: A Cell-containing Biotransplant for Single-staged Reconstructive Repair.

Authors:  Clara I Chamorro; Said Zeiai; Gisela Reinfeldt Engberg; Magdalena Fossum
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7.  Epithelial-differentiated adipose-derived stem cells seeded bladder acellular matrix grafts for urethral reconstruction: an animal model.

Authors:  Hongbin Li; Yuemin Xu; Hong Xie; Chao Li; Lujie Song; Chao Feng; Qin Zhang; Minkai Xie; Ying Wang; Xiangguo Lv
Journal:  Tissue Eng Part A       Date:  2014-01-17       Impact factor: 3.845

8.  Tissue-engineered tubular substitutions for urinary diversion in a rabbit model.

Authors:  Lingchao Meng; Wenbiao Liao; Sixing Yang; Yunhe Xiong; Chao Song; Lingqi Liu
Journal:  Exp Biol Med (Maywood)       Date:  2015-08-17

9.  Is tissue engineering of patient-specific oral mucosa grafts the future of urethral reconstruction?

Authors:  Hans M Larsson
Journal:  EBioMedicine       Date:  2017-09-08       Impact factor: 8.143

Review 10.  Regenerative and engineered options for urethroplasty.

Authors:  Filippo Pederzoli; Gregory Joice; Andrea Salonia; Trinity J Bivalacqua; Nikolai A Sopko
Journal:  Nat Rev Urol       Date:  2019-06-06       Impact factor: 14.432

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