Cargando…

A novel Bifidobacterium infantis-mediated TK/GCV suicide gene therapy system exhibits antitumor activity in a rat model of bladder cancer

Bladder cancer is the ninth most common malignancy in the world. Successful clinical management remains a challenge. In order To search for novel targeted and efficacious treatment, we sought to investigate anti-tumor activity of BI-TK suicide gene therapy system in a rat model of bladder tumors. We...

Descripción completa

Detalles Bibliográficos
Autores principales: Tang, Wei, He, Yunfeng, Zhou, Shengcai, Ma, Yongping, Liu, Geli
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2803447/
https://www.ncbi.nlm.nih.gov/pubmed/20015348
http://dx.doi.org/10.1186/1756-9966-28-155
_version_ 1782176051717210112
author Tang, Wei
He, Yunfeng
Zhou, Shengcai
Ma, Yongping
Liu, Geli
author_facet Tang, Wei
He, Yunfeng
Zhou, Shengcai
Ma, Yongping
Liu, Geli
author_sort Tang, Wei
collection PubMed
description Bladder cancer is the ninth most common malignancy in the world. Successful clinical management remains a challenge. In order To search for novel targeted and efficacious treatment, we sought to investigate anti-tumor activity of BI-TK suicide gene therapy system in a rat model of bladder tumors. We first constructed and tested an anaerobic Bifidobacterium infantis-mediated thymidine kinase (BI-TK) suicide gene therapy system. To test the in vivo efficacy of this system, we established a rat model of bladder tumors, which was induced by N-methyl-nitrosourea perfusion. Bifidobacterium infantis containing the HSV-TK (i.e., BI-TK) were constructed by transformation of recombinant plasmid pGEX - TK. The engineered BI-TK was injected into tumor-bearing rats via tail vein, followed by intraperitoneal injection of ganciclovir (GCV). Using the rat model of bladder tumors, we found that bladder tumor burdens were significantly lower in the rats treated with BI-TK/GCV group than that treated with normal saline control group (p <0.05). While various degrees of apoptosis of the tumor cells were detected in all groups using in situ TUNEL assay, apoptosis was mostly notable in the BI-TK/GCV treatment group. Immunohistochemical staining further demonstrated that the BI-TK/GCV treatment group had the highest level of caspase3 protein expression than that of the empty plasmid group and normal saline group (p < 0.05). Thus, our results demonstrate that the Bifidobacterium infantis-mediated TK/GCV suicide gene therapy system can effectively inhibit rat bladder tumor growth, possibly through increasing caspase 3 expression and inducing apoptosis.
format Text
id pubmed-2803447
institution National Center for Biotechnology Information
language English
publishDate 2009
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-28034472010-01-09 A novel Bifidobacterium infantis-mediated TK/GCV suicide gene therapy system exhibits antitumor activity in a rat model of bladder cancer Tang, Wei He, Yunfeng Zhou, Shengcai Ma, Yongping Liu, Geli J Exp Clin Cancer Res Research Bladder cancer is the ninth most common malignancy in the world. Successful clinical management remains a challenge. In order To search for novel targeted and efficacious treatment, we sought to investigate anti-tumor activity of BI-TK suicide gene therapy system in a rat model of bladder tumors. We first constructed and tested an anaerobic Bifidobacterium infantis-mediated thymidine kinase (BI-TK) suicide gene therapy system. To test the in vivo efficacy of this system, we established a rat model of bladder tumors, which was induced by N-methyl-nitrosourea perfusion. Bifidobacterium infantis containing the HSV-TK (i.e., BI-TK) were constructed by transformation of recombinant plasmid pGEX - TK. The engineered BI-TK was injected into tumor-bearing rats via tail vein, followed by intraperitoneal injection of ganciclovir (GCV). Using the rat model of bladder tumors, we found that bladder tumor burdens were significantly lower in the rats treated with BI-TK/GCV group than that treated with normal saline control group (p <0.05). While various degrees of apoptosis of the tumor cells were detected in all groups using in situ TUNEL assay, apoptosis was mostly notable in the BI-TK/GCV treatment group. Immunohistochemical staining further demonstrated that the BI-TK/GCV treatment group had the highest level of caspase3 protein expression than that of the empty plasmid group and normal saline group (p < 0.05). Thus, our results demonstrate that the Bifidobacterium infantis-mediated TK/GCV suicide gene therapy system can effectively inhibit rat bladder tumor growth, possibly through increasing caspase 3 expression and inducing apoptosis. BioMed Central 2009-12-16 /pmc/articles/PMC2803447/ /pubmed/20015348 http://dx.doi.org/10.1186/1756-9966-28-155 Text en Copyright ©2009 Tang et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Tang, Wei
He, Yunfeng
Zhou, Shengcai
Ma, Yongping
Liu, Geli
A novel Bifidobacterium infantis-mediated TK/GCV suicide gene therapy system exhibits antitumor activity in a rat model of bladder cancer
title A novel Bifidobacterium infantis-mediated TK/GCV suicide gene therapy system exhibits antitumor activity in a rat model of bladder cancer
title_full A novel Bifidobacterium infantis-mediated TK/GCV suicide gene therapy system exhibits antitumor activity in a rat model of bladder cancer
title_fullStr A novel Bifidobacterium infantis-mediated TK/GCV suicide gene therapy system exhibits antitumor activity in a rat model of bladder cancer
title_full_unstemmed A novel Bifidobacterium infantis-mediated TK/GCV suicide gene therapy system exhibits antitumor activity in a rat model of bladder cancer
title_short A novel Bifidobacterium infantis-mediated TK/GCV suicide gene therapy system exhibits antitumor activity in a rat model of bladder cancer
title_sort novel bifidobacterium infantis-mediated tk/gcv suicide gene therapy system exhibits antitumor activity in a rat model of bladder cancer
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2803447/
https://www.ncbi.nlm.nih.gov/pubmed/20015348
http://dx.doi.org/10.1186/1756-9966-28-155
work_keys_str_mv AT tangwei anovelbifidobacteriuminfantismediatedtkgcvsuicidegenetherapysystemexhibitsantitumoractivityinaratmodelofbladdercancer
AT heyunfeng anovelbifidobacteriuminfantismediatedtkgcvsuicidegenetherapysystemexhibitsantitumoractivityinaratmodelofbladdercancer
AT zhoushengcai anovelbifidobacteriuminfantismediatedtkgcvsuicidegenetherapysystemexhibitsantitumoractivityinaratmodelofbladdercancer
AT mayongping anovelbifidobacteriuminfantismediatedtkgcvsuicidegenetherapysystemexhibitsantitumoractivityinaratmodelofbladdercancer
AT liugeli anovelbifidobacteriuminfantismediatedtkgcvsuicidegenetherapysystemexhibitsantitumoractivityinaratmodelofbladdercancer
AT tangwei novelbifidobacteriuminfantismediatedtkgcvsuicidegenetherapysystemexhibitsantitumoractivityinaratmodelofbladdercancer
AT heyunfeng novelbifidobacteriuminfantismediatedtkgcvsuicidegenetherapysystemexhibitsantitumoractivityinaratmodelofbladdercancer
AT zhoushengcai novelbifidobacteriuminfantismediatedtkgcvsuicidegenetherapysystemexhibitsantitumoractivityinaratmodelofbladdercancer
AT mayongping novelbifidobacteriuminfantismediatedtkgcvsuicidegenetherapysystemexhibitsantitumoractivityinaratmodelofbladdercancer
AT liugeli novelbifidobacteriuminfantismediatedtkgcvsuicidegenetherapysystemexhibitsantitumoractivityinaratmodelofbladdercancer