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Ultrasound microbubble-mediated delivery of the siRNAs targeting MDR1 reduces drug resistance of yolk sac carcinoma L2 cells

BACKGROUND: MDR1 gene encoding P-glycoprotein is an ATP-dependent drug efflux transporter and related to drug resistance of yolk sac carcinoma. Ultrasound microbubble-mediated delivery has been used as a novel and effective gene delivery method. We hypothesize that small interfering RNA (siRNA) targ...

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Autores principales: He, Yun, Bi, Yang, Hua, Yi, Liu, Dongyao, Wen, Sheng, Wang, Qiang, Li, Mingyong, Zhu, Jing, Lin, Tao, He, Dawei, Li, Xuliang, Wang, Zhigang, Wei, Guanghui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3213040/
https://www.ncbi.nlm.nih.gov/pubmed/22035293
http://dx.doi.org/10.1186/1756-9966-30-104
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author He, Yun
Bi, Yang
Hua, Yi
Liu, Dongyao
Wen, Sheng
Wang, Qiang
Li, Mingyong
Zhu, Jing
Lin, Tao
He, Dawei
Li, Xuliang
Wang, Zhigang
Wei, Guanghui
author_facet He, Yun
Bi, Yang
Hua, Yi
Liu, Dongyao
Wen, Sheng
Wang, Qiang
Li, Mingyong
Zhu, Jing
Lin, Tao
He, Dawei
Li, Xuliang
Wang, Zhigang
Wei, Guanghui
author_sort He, Yun
collection PubMed
description BACKGROUND: MDR1 gene encoding P-glycoprotein is an ATP-dependent drug efflux transporter and related to drug resistance of yolk sac carcinoma. Ultrasound microbubble-mediated delivery has been used as a novel and effective gene delivery method. We hypothesize that small interfering RNA (siRNA) targeting MDR1 gene (siMDR1) delivery with microbubble and ultrasound can down-regulate MDR1 expression and improve responsiveness to chemotherapeutic drugs for yolk sac carcinoma in vitro. METHODS: Retroviral knockdown vector pSEB-siMDR1s containing specific siRNA sites targeting rat MDR1 coding region were constructed and sequence verified. The resultant pSEB-siMDR1 plasmids DNA were encapsulated with lipid microbubble and the DNA release were triggered by ultrasound when added to culture cells. GFP positive cells were counted by flow cytometry to determine transfection efficiency. Quantitative real-time PCR and western blot were performed to determine the mRNA and protein expression of MDR1. P-glycoprotein function and drug sensitivity were analyzed by Daunorubicin accumulation and MTT assays. RESULTS: Transfection efficiency of pSEB-siMDR1 DNA was significantly increased by ultrasound microbubble-mediated delivery in rat yolk sac carcinoma L2 (L2-RYC) cells. Ultrasound microbubble-mediated siMDR1s delivery effectively inhibited MDR1 expression at both mRNA and protein levels and decreased P-glycoprotein function. Silencing MDR1 led to decreased cell viability and IC(50 )of Vincristine and Dactinomycin. CONCLUSIONS: Our results demonstrated that ultrasound microbubble-mediated delivery of MDR1 siRNA was safe and effective in L2-RYC cells. MDR1 silencing led to decreased P-glycoprotein activity and drug resistance of L2-RYC cells, which may be explored as a novel approach of combined gene and chemotherapy for yolk sac carcinoma.
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spelling pubmed-32130402011-11-11 Ultrasound microbubble-mediated delivery of the siRNAs targeting MDR1 reduces drug resistance of yolk sac carcinoma L2 cells He, Yun Bi, Yang Hua, Yi Liu, Dongyao Wen, Sheng Wang, Qiang Li, Mingyong Zhu, Jing Lin, Tao He, Dawei Li, Xuliang Wang, Zhigang Wei, Guanghui J Exp Clin Cancer Res Research BACKGROUND: MDR1 gene encoding P-glycoprotein is an ATP-dependent drug efflux transporter and related to drug resistance of yolk sac carcinoma. Ultrasound microbubble-mediated delivery has been used as a novel and effective gene delivery method. We hypothesize that small interfering RNA (siRNA) targeting MDR1 gene (siMDR1) delivery with microbubble and ultrasound can down-regulate MDR1 expression and improve responsiveness to chemotherapeutic drugs for yolk sac carcinoma in vitro. METHODS: Retroviral knockdown vector pSEB-siMDR1s containing specific siRNA sites targeting rat MDR1 coding region were constructed and sequence verified. The resultant pSEB-siMDR1 plasmids DNA were encapsulated with lipid microbubble and the DNA release were triggered by ultrasound when added to culture cells. GFP positive cells were counted by flow cytometry to determine transfection efficiency. Quantitative real-time PCR and western blot were performed to determine the mRNA and protein expression of MDR1. P-glycoprotein function and drug sensitivity were analyzed by Daunorubicin accumulation and MTT assays. RESULTS: Transfection efficiency of pSEB-siMDR1 DNA was significantly increased by ultrasound microbubble-mediated delivery in rat yolk sac carcinoma L2 (L2-RYC) cells. Ultrasound microbubble-mediated siMDR1s delivery effectively inhibited MDR1 expression at both mRNA and protein levels and decreased P-glycoprotein function. Silencing MDR1 led to decreased cell viability and IC(50 )of Vincristine and Dactinomycin. CONCLUSIONS: Our results demonstrated that ultrasound microbubble-mediated delivery of MDR1 siRNA was safe and effective in L2-RYC cells. MDR1 silencing led to decreased P-glycoprotein activity and drug resistance of L2-RYC cells, which may be explored as a novel approach of combined gene and chemotherapy for yolk sac carcinoma. BioMed Central 2011-10-28 /pmc/articles/PMC3213040/ /pubmed/22035293 http://dx.doi.org/10.1186/1756-9966-30-104 Text en Copyright ©2011 He 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
He, Yun
Bi, Yang
Hua, Yi
Liu, Dongyao
Wen, Sheng
Wang, Qiang
Li, Mingyong
Zhu, Jing
Lin, Tao
He, Dawei
Li, Xuliang
Wang, Zhigang
Wei, Guanghui
Ultrasound microbubble-mediated delivery of the siRNAs targeting MDR1 reduces drug resistance of yolk sac carcinoma L2 cells
title Ultrasound microbubble-mediated delivery of the siRNAs targeting MDR1 reduces drug resistance of yolk sac carcinoma L2 cells
title_full Ultrasound microbubble-mediated delivery of the siRNAs targeting MDR1 reduces drug resistance of yolk sac carcinoma L2 cells
title_fullStr Ultrasound microbubble-mediated delivery of the siRNAs targeting MDR1 reduces drug resistance of yolk sac carcinoma L2 cells
title_full_unstemmed Ultrasound microbubble-mediated delivery of the siRNAs targeting MDR1 reduces drug resistance of yolk sac carcinoma L2 cells
title_short Ultrasound microbubble-mediated delivery of the siRNAs targeting MDR1 reduces drug resistance of yolk sac carcinoma L2 cells
title_sort ultrasound microbubble-mediated delivery of the sirnas targeting mdr1 reduces drug resistance of yolk sac carcinoma l2 cells
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3213040/
https://www.ncbi.nlm.nih.gov/pubmed/22035293
http://dx.doi.org/10.1186/1756-9966-30-104
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