Cargando…

Impact of electrosurgical unit mode on post esophageal endoscopic submucosal dissection stricture in an in vivo porcine model

BACKGROUND AND AIM:  Strictures are a major complication of esophageal endoscopic submucosal dissection (ESD) for superficial esophageal carcinoma. Post ESD, stricture develops during the process of scar formation, which is related to inflammation caused by ESD. We planned a study to evaluate whethe...

Descripción completa

Detalles Bibliográficos
Autores principales: Tonai, Yusuke, Ishihara, Ryu, Yamasaki, Yasushi, Arao, Masamichi, Iwatsubo, Taro, Kato, Minoru, Suzuki, Syo, Hamada, Kenta, Shichijo, Satoki, Matsuura, Noriko, Kanesaka, Takashi, Nakahira, Hiroko, Yamamoto, Sachiko, Akasaka, Tomofumi, Hanaoka, Noboru, Takeuchi, Yoji, Higashino, Koji, Uedo, Noriya, Tomita, Yasuhiko, Iishi, Hiroyasu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: © Georg Thieme Verlag KG 2018
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5842068/
https://www.ncbi.nlm.nih.gov/pubmed/29527561
http://dx.doi.org/10.1055/s-0043-122883
_version_ 1783304848234512384
author Tonai, Yusuke
Ishihara, Ryu
Yamasaki, Yasushi
Arao, Masamichi
Iwatsubo, Taro
Kato, Minoru
Suzuki, Syo
Hamada, Kenta
Shichijo, Satoki
Matsuura, Noriko
Kanesaka, Takashi
Nakahira, Hiroko
Yamamoto, Sachiko
Akasaka, Tomofumi
Hanaoka, Noboru
Takeuchi, Yoji
Higashino, Koji
Uedo, Noriya
Tomita, Yasuhiko
Iishi, Hiroyasu
author_facet Tonai, Yusuke
Ishihara, Ryu
Yamasaki, Yasushi
Arao, Masamichi
Iwatsubo, Taro
Kato, Minoru
Suzuki, Syo
Hamada, Kenta
Shichijo, Satoki
Matsuura, Noriko
Kanesaka, Takashi
Nakahira, Hiroko
Yamamoto, Sachiko
Akasaka, Tomofumi
Hanaoka, Noboru
Takeuchi, Yoji
Higashino, Koji
Uedo, Noriya
Tomita, Yasuhiko
Iishi, Hiroyasu
author_sort Tonai, Yusuke
collection PubMed
description BACKGROUND AND AIM:  Strictures are a major complication of esophageal endoscopic submucosal dissection (ESD) for superficial esophageal carcinoma. Post ESD, stricture develops during the process of scar formation, which is related to inflammation caused by ESD. We planned a study to evaluate whether certain electrosurgical unit modes could attenuate strictures after esophageal ESD. METHODS:  A total of 16 ESD, three-quarters of the esophageal circumference, were performed in four live pigs. A ball-tip Flush knife was used for mucosal incision. Submucosal dissection was performed using a Hook knife in monopolar mode and a ball-tip Jet B-knife in bipolar mode. Applied electrosurgical unit modes were FORCED COAG, SWIFT COAG, SPRAY COAG, ENDO CUT in monopolar mode, and FORCED COAG in bipolar mode. One month after ESD, the pigs were killed humanely and the severity of strictures and fibrosis was assessed. RESULTS:  The resected site in the esophagus showed complete mucosal regrowth and scar formation in all pigs. The quotients of stricture following ENDO CUT, SWIFT COAG, FORCED COAG effect2, FORCED COAG effect3, FORCED COAG effect4, SPRAY COAG, and Bipolar FORCED COAG mode were 16 %, 28 %, 38 %, 33 %, 51 %, 39 %, and 47 %, respectively. The equivalent quotients of fibrosis were 7 %, 28 %, 31 %, 30 %, 35 %, 63 %, and 100 %, respectively. ENDO CUT mode was associated with the lowest mean quotients of stricture and fibrosis. CONCLUSION:  ENDO CUT mode showed promising results to attenuate fibrosis and strictures after esophageal ESD.
format Online
Article
Text
id pubmed-5842068
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher © Georg Thieme Verlag KG
record_format MEDLINE/PubMed
spelling pubmed-58420682018-03-09 Impact of electrosurgical unit mode on post esophageal endoscopic submucosal dissection stricture in an in vivo porcine model Tonai, Yusuke Ishihara, Ryu Yamasaki, Yasushi Arao, Masamichi Iwatsubo, Taro Kato, Minoru Suzuki, Syo Hamada, Kenta Shichijo, Satoki Matsuura, Noriko Kanesaka, Takashi Nakahira, Hiroko Yamamoto, Sachiko Akasaka, Tomofumi Hanaoka, Noboru Takeuchi, Yoji Higashino, Koji Uedo, Noriya Tomita, Yasuhiko Iishi, Hiroyasu Endosc Int Open BACKGROUND AND AIM:  Strictures are a major complication of esophageal endoscopic submucosal dissection (ESD) for superficial esophageal carcinoma. Post ESD, stricture develops during the process of scar formation, which is related to inflammation caused by ESD. We planned a study to evaluate whether certain electrosurgical unit modes could attenuate strictures after esophageal ESD. METHODS:  A total of 16 ESD, three-quarters of the esophageal circumference, were performed in four live pigs. A ball-tip Flush knife was used for mucosal incision. Submucosal dissection was performed using a Hook knife in monopolar mode and a ball-tip Jet B-knife in bipolar mode. Applied electrosurgical unit modes were FORCED COAG, SWIFT COAG, SPRAY COAG, ENDO CUT in monopolar mode, and FORCED COAG in bipolar mode. One month after ESD, the pigs were killed humanely and the severity of strictures and fibrosis was assessed. RESULTS:  The resected site in the esophagus showed complete mucosal regrowth and scar formation in all pigs. The quotients of stricture following ENDO CUT, SWIFT COAG, FORCED COAG effect2, FORCED COAG effect3, FORCED COAG effect4, SPRAY COAG, and Bipolar FORCED COAG mode were 16 %, 28 %, 38 %, 33 %, 51 %, 39 %, and 47 %, respectively. The equivalent quotients of fibrosis were 7 %, 28 %, 31 %, 30 %, 35 %, 63 %, and 100 %, respectively. ENDO CUT mode was associated with the lowest mean quotients of stricture and fibrosis. CONCLUSION:  ENDO CUT mode showed promising results to attenuate fibrosis and strictures after esophageal ESD. © Georg Thieme Verlag KG 2018-03 2018-03-07 /pmc/articles/PMC5842068/ /pubmed/29527561 http://dx.doi.org/10.1055/s-0043-122883 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives License, which permits unrestricted reproduction and distribution, for non-commercial purposes only; and use and reproduction, but not distribution, of adapted material for non-commercial purposes only, provided the original work is properly cited.
spellingShingle Tonai, Yusuke
Ishihara, Ryu
Yamasaki, Yasushi
Arao, Masamichi
Iwatsubo, Taro
Kato, Minoru
Suzuki, Syo
Hamada, Kenta
Shichijo, Satoki
Matsuura, Noriko
Kanesaka, Takashi
Nakahira, Hiroko
Yamamoto, Sachiko
Akasaka, Tomofumi
Hanaoka, Noboru
Takeuchi, Yoji
Higashino, Koji
Uedo, Noriya
Tomita, Yasuhiko
Iishi, Hiroyasu
Impact of electrosurgical unit mode on post esophageal endoscopic submucosal dissection stricture in an in vivo porcine model
title Impact of electrosurgical unit mode on post esophageal endoscopic submucosal dissection stricture in an in vivo porcine model
title_full Impact of electrosurgical unit mode on post esophageal endoscopic submucosal dissection stricture in an in vivo porcine model
title_fullStr Impact of electrosurgical unit mode on post esophageal endoscopic submucosal dissection stricture in an in vivo porcine model
title_full_unstemmed Impact of electrosurgical unit mode on post esophageal endoscopic submucosal dissection stricture in an in vivo porcine model
title_short Impact of electrosurgical unit mode on post esophageal endoscopic submucosal dissection stricture in an in vivo porcine model
title_sort impact of electrosurgical unit mode on post esophageal endoscopic submucosal dissection stricture in an in vivo porcine model
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5842068/
https://www.ncbi.nlm.nih.gov/pubmed/29527561
http://dx.doi.org/10.1055/s-0043-122883
work_keys_str_mv AT tonaiyusuke impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel
AT ishihararyu impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel
AT yamasakiyasushi impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel
AT araomasamichi impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel
AT iwatsubotaro impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel
AT katominoru impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel
AT suzukisyo impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel
AT hamadakenta impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel
AT shichijosatoki impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel
AT matsuuranoriko impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel
AT kanesakatakashi impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel
AT nakahirahiroko impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel
AT yamamotosachiko impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel
AT akasakatomofumi impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel
AT hanaokanoboru impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel
AT takeuchiyoji impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel
AT higashinokoji impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel
AT uedonoriya impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel
AT tomitayasuhiko impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel
AT iishihiroyasu impactofelectrosurgicalunitmodeonpostesophagealendoscopicsubmucosaldissectionstrictureinaninvivoporcinemodel