Real-time computed tomography fluoroscopy-guided solitary lung tumor model in a rabbit.

Preclinical studies of lung cancer require suitable large-animal models to allow evaluation and development of surgical and interventional techniques. We assessed the feasibility and safety of a novel rabbit lung cancer model of solitary tumors, in which real-time computed tomography fluoroscopy is...

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Main Authors: Byeong Hyeon Choi, Hwan Seok Young, Yu Hua Quan, Ji Yun Rho, Jae Seon Eo, Kook Nam Han, Young Ho Choi, Hyun Koo Kim
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5469482?pdf=render
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spelling doaj-bbab16d8aa4f40e8beb4c40986163cb52020-11-25T02:06:34ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01126e017922010.1371/journal.pone.0179220Real-time computed tomography fluoroscopy-guided solitary lung tumor model in a rabbit.Byeong Hyeon ChoiHwan Seok YoungYu Hua QuanJi Yun RhoJae Seon EoKook Nam HanYoung Ho ChoiHyun Koo KimPreclinical studies of lung cancer require suitable large-animal models to allow evaluation and development of surgical and interventional techniques. We assessed the feasibility and safety of a novel rabbit lung cancer model of solitary tumors, in which real-time computed tomography fluoroscopy is used to guide inoculation of VX2 carcinoma single-cell suspensions. Thirty-eight rabbits were divided into four groups according to the volume of the VX2 tissue or cell suspension, the volume of lipiodol, the volume of Matrigel, and the injection needle size. The mixtures were percutaneously injected into rabbit lungs under real-time computed tomography fluoroscopy guidance. Two weeks later, VX2 lung carcinomas were confirmed via positron emission tomography/computed tomography, necropsy, and histology. Real-time computed tomography fluoroscopy allowed the precise inoculation of the tumor cell suspensions containing lipiodol, while the use of Matrigel and a small needle prevented leakage of the suspensions into the lung parenchyma. Solitary lung tumors were successfully established in rabbits (n = 22) inoculated with single-cell suspensions (150 μL), lipiodol (150 μL), and Matrigel (150 μL) using a 26-gauge needle. This combination was determined to be optimal. Pneumothorax was observed in only two of the 38 rabbits (5.3%), both of which survived to the end of the study without any intervention. Real-time computed tomography fluoroscopy-guided inoculation of VX2 single-cell suspensions with lipiodol and Matrigel using a small needle is an easy and safe method to establish solitary lung tumors in rabbits.http://europepmc.org/articles/PMC5469482?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Byeong Hyeon Choi
Hwan Seok Young
Yu Hua Quan
Ji Yun Rho
Jae Seon Eo
Kook Nam Han
Young Ho Choi
Hyun Koo Kim
spellingShingle Byeong Hyeon Choi
Hwan Seok Young
Yu Hua Quan
Ji Yun Rho
Jae Seon Eo
Kook Nam Han
Young Ho Choi
Hyun Koo Kim
Real-time computed tomography fluoroscopy-guided solitary lung tumor model in a rabbit.
PLoS ONE
author_facet Byeong Hyeon Choi
Hwan Seok Young
Yu Hua Quan
Ji Yun Rho
Jae Seon Eo
Kook Nam Han
Young Ho Choi
Hyun Koo Kim
author_sort Byeong Hyeon Choi
title Real-time computed tomography fluoroscopy-guided solitary lung tumor model in a rabbit.
title_short Real-time computed tomography fluoroscopy-guided solitary lung tumor model in a rabbit.
title_full Real-time computed tomography fluoroscopy-guided solitary lung tumor model in a rabbit.
title_fullStr Real-time computed tomography fluoroscopy-guided solitary lung tumor model in a rabbit.
title_full_unstemmed Real-time computed tomography fluoroscopy-guided solitary lung tumor model in a rabbit.
title_sort real-time computed tomography fluoroscopy-guided solitary lung tumor model in a rabbit.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description Preclinical studies of lung cancer require suitable large-animal models to allow evaluation and development of surgical and interventional techniques. We assessed the feasibility and safety of a novel rabbit lung cancer model of solitary tumors, in which real-time computed tomography fluoroscopy is used to guide inoculation of VX2 carcinoma single-cell suspensions. Thirty-eight rabbits were divided into four groups according to the volume of the VX2 tissue or cell suspension, the volume of lipiodol, the volume of Matrigel, and the injection needle size. The mixtures were percutaneously injected into rabbit lungs under real-time computed tomography fluoroscopy guidance. Two weeks later, VX2 lung carcinomas were confirmed via positron emission tomography/computed tomography, necropsy, and histology. Real-time computed tomography fluoroscopy allowed the precise inoculation of the tumor cell suspensions containing lipiodol, while the use of Matrigel and a small needle prevented leakage of the suspensions into the lung parenchyma. Solitary lung tumors were successfully established in rabbits (n = 22) inoculated with single-cell suspensions (150 μL), lipiodol (150 μL), and Matrigel (150 μL) using a 26-gauge needle. This combination was determined to be optimal. Pneumothorax was observed in only two of the 38 rabbits (5.3%), both of which survived to the end of the study without any intervention. Real-time computed tomography fluoroscopy-guided inoculation of VX2 single-cell suspensions with lipiodol and Matrigel using a small needle is an easy and safe method to establish solitary lung tumors in rabbits.
url http://europepmc.org/articles/PMC5469482?pdf=render
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