Literature DB >> 22528215

Enhanced effects of TRAIL-endostatin-based double-gene-radiotherapy on suppressing growth, promoting apoptosis and inducing cell cycle arrest in vascular endothelial cells.

Yanbo Li1,2, Caixia Guo1, Zhicheng Wang2, Pingsheng Gong3, Zhiwei Sun4, Shouliang Gong5.   

Abstract

This study examined the effects of TRAIL-endostatin-based gene-radiotherapy on cellular growth, apoptosis and cell cycle progression in human vascular endothelial cells ECV304 in vitro. The expression of TRAIL and endostatin protein in ECV304 cells was detected by ELISA after the transfection of recombinant plasmid pshuttle-Egr1-shTRAIL-shES and X-ray irradiation. Then MTT assay was used for determining the cellular proliferation, and flow cytometry (FCM) plus Annexin V and propidium iodide (PI) double-staining or PI single-staining were employed for the detection of apoptosis and cell cycle progression. The results showed that expression of TRAIL and endostatin protein exhibited a time- and dose-dependent change in ECV304 cells after pshuttle-Egr1-shTRAIL-shES transfection in conjunction with irradiation. In the TRAIL-endostatin-based single- or double-gene-radiotherapy, the cell viability declined in a time- and dose-dependent manner, the percentage of cells at G(2)/M phase and apoptotic rate was increased, and the percentage of cells at G(0)/G(1) phase was lowered as compared with those receiving radiotherapy alone. Moreover, TRAIL-endostatin-based double-gene-radiotherapy demonstrated better effects on growth inhibition, promotion of apoptosis and induction of cell cycle arrest in ECV304 cells than single-gene-radiotherapy.

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Year:  2012        PMID: 22528215     DOI: 10.1007/s11596-012-0030-x

Source DB:  PubMed          Journal:  J Huazhong Univ Sci Technolog Med Sci        ISSN: 1672-0733


  24 in total

1.  Intracellular mechanisms of TRAIL: apoptosis through mitochondrial-dependent and -independent pathways.

Authors:  A Suliman; A Lam; R Datta; R K Srivastava
Journal:  Oncogene       Date:  2001-04-19       Impact factor: 9.867

2.  Combined ionizing radiation and sKDR gene delivery for treatment of prostate carcinomas.

Authors:  S A Kaliberov; L N Kaliberova; D J Buchsbaum
Journal:  Gene Ther       Date:  2005-03       Impact factor: 5.250

3.  Therapeutic effect of gene-therapy in combination with local X-irradiation in a mouse malignant melanoma model.

Authors:  Guang-Hui Jin; Shun-Zi Jin; Yang Liu; Rui-Ming Xu; Jian-Zheng Yang; Xue-Na Pan; Shu-Zheng Liu
Journal:  Biochem Biophys Res Commun       Date:  2005-05-13       Impact factor: 3.575

4.  Dose-dependent and independent temporal patterns of gene responses to ionizing radiation in normal and tumor cells and tumor xenografts.

Authors:  N N Khodarev; J O Park; J Yu; N Gupta; E Nodzenski; B Roizman; R R Weichselbaum
Journal:  Proc Natl Acad Sci U S A       Date:  2001-10-23       Impact factor: 11.205

5.  Anti-tumor effect of pEgr-interferon-gamma-endostatin gene-radiotherapy in mice bearing Lewis lung carcinoma and its mechanism.

Authors:  Wei Yang; Xiu-yi Li
Journal:  Chin Med J (Engl)       Date:  2005-02-20       Impact factor: 2.628

6.  Combined IFN-gamma-endostatin gene therapy and radiotherapy attenuates primary breast tumor growth and lung metastases via enhanced CTL and NK cell activation and attenuated tumor angiogenesis in a murine model.

Authors:  Lin Lin Liu; Myles J Smith; Bao Sheng Sun; Guan Jun Wang; H Paul Redmond; Jiang Huai Wang
Journal:  Ann Surg Oncol       Date:  2009-03-05       Impact factor: 5.344

7.  Radiation-inducible caspase-8 gene therapy for malignant brain tumors.

Authors:  Hideo Tsurushima; Xuan Yuan; Larry E Dillehay; Kam W Leong
Journal:  Int J Radiat Oncol Biol Phys       Date:  2008-04-11       Impact factor: 7.038

Review 8.  Endostatin: current concepts about its biological role and mechanisms of action.

Authors:  A V Digtyar; N V Pozdnyakova; N B Feldman; S V Lutsenko; S E Severin
Journal:  Biochemistry (Mosc)       Date:  2007-03       Impact factor: 2.487

9.  Therapeutic effect of pEgr-IL18-B7.2 gene radiotherapy in B16 melanoma-bearing mice.

Authors:  Jianzheng Yang; Guanghui Jin; Xiaodong Liu; Shuzheng Liu
Journal:  Hum Gene Ther       Date:  2007-04       Impact factor: 5.695

10.  Enhanced radiosensitivity of SW480 cells via TRAIL up-regulation mediated by Egr-1 promoter.

Authors:  Y Hu; W Ouyang; F Wu; C H Cao; K Wang; Z K Liao; Y H Zhong; F X Zhou; S Q Liu; L Xia; Y F Zhou; C H Xie
Journal:  Oncol Rep       Date:  2009-10       Impact factor: 3.906

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  5 in total

1.  Overexpression of truncated AIF regulated by Egr1 promoter radiation-induced apoptosis on MCF-7 cells.

Authors:  Jianfeng Wang; Yana Li; Yang Liu; Yanbo Li; Shouliang Gong; Fang Fang; Zhicheng Wang
Journal:  Radiat Environ Biophys       Date:  2015-10-29       Impact factor: 1.925

2.  Expression of Smac induced by the Egr1 promoter enhances the radiosensitivity of breast cancer cells.

Authors:  Z-L Li; S Liang; Z-C Wang; Y-B Li; C-X Guo; F Fang; S-L Gong; C-H Lin
Journal:  Cancer Gene Ther       Date:  2014-03-28       Impact factor: 5.987

3.  Involvement of endoplasmic reticulum stress in apoptosis of testicular cells induced by low-dose radiation.

Authors:  Zhi-Cheng Wang; Jian-Feng Wang; Yan-Bo Li; Cai-Xia Guo; Yang Liu; Fang Fang; Shou-Liang Gong
Journal:  J Huazhong Univ Sci Technolog Med Sci       Date:  2013-08-01

4.  Tonglian Decoction () arrests the cell cycle in S-phase by targeting the nuclear factor-kappa B signal pathway in esophageal carcinoma Eca109 cells.

Authors:  Yong-Sen Jia; Xue-Qin Hu; Ji-An Li; Szasz Andras; Gabriella Hegyi; Bing-Sheng Han
Journal:  Chin J Integr Med       Date:  2016-03-05       Impact factor: 1.978

5.  Hypoxia- and radiation-induced overexpression of Smac by an adenoviral vector and its effects on cell cycle and apoptosis in MDA-MB-231 human breast cancer cells.

Authors:  Wei-Wu Liu; Yang Liu; Shuo Liang; Jia-Hui Wu; Zhi-Cheng Wang; Shou-Liang Gong
Journal:  Exp Ther Med       Date:  2013-10-16       Impact factor: 2.447

  5 in total

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