Literature DB >> 29223663

Patch esophagoplasty using an in-body-tissue-engineered collagenous connective tissue membrane.

Hiroomi Okuyama1, Satoshi Umeda2, Yuichi Takama2, Takeshi Terasawa3, Yasuhide Nakayama3.   

Abstract

AIM: Although many approaches to esophageal replacement have been investigated, these efforts have thus far only met limited success. In-body-tissue-engineered connective tissue tubes have been reported to be effective as vascular replacement grafts. The aim of this study was to investigate the usefulness of an In-body-tissue-engineered collagenous connective tissue membrane, "Biosheet", as a novel esophageal scaffold in a beagle model.
METHODS: We prepared Biosheets by embedding specially designed molds into subcutaneous pouches in beagles. After 1-2months, the molds, which were filled with ingrown connective tissues, were harvested. Rectangular-shaped Biosheets (10×20mm) were then implanted to replace defects of the same size that had been created in the cervical esophagus of the beagle. An endoscopic evaluation was performed at 4 and 12weeks after implantation. The esophagus was harvested and subjected to a histological evaluation at 4 (n=2) and 12weeks (n=2) after implantation. The animal study protocols were approved by the National Cerebral and Cardiovascular Centre Research Institute Committee (No. 16048).
RESULTS: The Biosheets showed sufficient strength and flexibility to replace the esophagus defect. All animals survived with full oral feeding during the study period. No anastomotic leakage was observed. An endoscopic study at 4 and 12weeks after implantation revealed that the anastomotic sites and the internal surface of the Biosheets were smooth, without stenosis. A histological analysis at 4weeks after implantation demonstrated that stratified squamous epithelium was regenerated on the internal surface of the Biosheets. A histological analysis at 12weeks after implantation showed the regeneration of muscle tissue in the implanted Biosheets.
CONCLUSION: The long-term results of patch esophagoplasty using Biosheets showed regeneration of stratified squamous epithelium and muscular tissues in the implanted sheets. These results suggest that Biosheets may be useful as a novel esophageal scaffold.
Copyright © 2017 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Beagle model; Collagenous connective tissue membrane; Esophageal atresia; Patch esophagoplasty

Mesh:

Year:  2017        PMID: 29223663     DOI: 10.1016/j.jpedsurg.2017.11.004

Source DB:  PubMed          Journal:  J Pediatr Surg        ISSN: 0022-3468            Impact factor:   2.545


  7 in total

1.  Long-term outcomes of patch tracheoplasty using collagenous tissue membranes (biosheets) produced by in-body tissue architecture in a beagle model.

Authors:  Satoshi Umeda; Yasuhide Nakayama; Takeshi Terazawa; Ryosuke Iwai; Shohei Hiwatashi; Kengo Nakahata; Yuichi Takama; Hiroomi Okuyama
Journal:  Surg Today       Date:  2019-05-16       Impact factor: 2.549

2.  iBTA-induced bovine Biosheet for repair of abdominal wall defects in a beagle model: proof of concept.

Authors:  Y Nakayama; N Oshima; E Tatsumi; O Ichii; T Nishimura
Journal:  Hernia       Date:  2018-07-18       Impact factor: 4.739

3.  Wall thickness control in biotubes prepared using type-C mold.

Authors:  Takeshi Terazawa; Takanori Nishimura; Tomohiro Mitani; Osamu Ichii; Teppei Ikeda; Keigo Kosenda; Eisuke Tatsumi; Yasuhide Nakayama
Journal:  J Artif Organs       Date:  2018-03-30       Impact factor: 1.731

4.  Aortic valve neocuspidization with in-body tissue-engineered autologous membranes: preliminary results in a long-term goat model.

Authors:  Takayuki Kawashima; Tadashi Umeno; Takeshi Terazawa; Tomoyuki Wada; Takashi Shuto; Haruto Nishida; Hirofumi Anai; Yasuhide Nakayama; Shinji Miyamoto
Journal:  Interact Cardiovasc Thorac Surg       Date:  2021-05-27

5.  Three-month outcomes of aortic valve reconstruction using collagenous membranes (biosheets) produced by in-body tissue architecture in a goat model: a preliminary study.

Authors:  Keitaro Okamoto; Tadashi Umeno; Takashi Shuto; Tomoyuki Wada; Hirofumi Anai; Haruto Nishida; Yasuhide Nakayama; Shinji Miyamoto
Journal:  BMC Cardiovasc Disord       Date:  2021-04-15       Impact factor: 2.298

6.  Application of Biosheets as Right Ventricular Outflow Tract Repair Materials in a Rat Model.

Authors:  Takeshi Mizuno; Ryosuke Iwai; Takeshi Moriwaki; Yasuhide Nakayama
Journal:  Front Vet Sci       Date:  2022-04-08

Review 7.  Membrane Technological Pathways and Inherent Structure of Bacterial Cellulose Composites for Drug Delivery.

Authors:  Alfred Mensah; Yajun Chen; Narh Christopher; Qufu Wei
Journal:  Bioengineering (Basel)       Date:  2021-12-22
  7 in total

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