Literature DB >> 9080119

Potential triple helix-mediated inhibition of IGF-I gene expression significantly reduces tumorigenicity of glioblastoma in an animal model.

A Shevelev1, P Burfeind, E Schulze, F Rininsland, T R Johnson, J Trojan, C L Chernicky, C Hélène, J Ilan, J Ilan.   

Abstract

Oligonucleotide-directed triple helix formation is a powerful approach to block transcription of specific genes. Although the oligonucleotide triplex approach is efficient for inhibiting gene expression in cultured cells, suppression is transient. We developed an approach which inhibits insulin-like growth factor-I (IGF-I) expression following stable transfection of C6 rat glioblastoma cells with a plasmid from which an RNA is transcribed that codes for the third strand of a potential triple helix. We tested the ability of this expression vector to inhibit IGF-I gene expression in vitro as well as tumorigenesis in an animal. A dramatic reduction of IGF-I RNA and protein levels in cultured cells occurred following transfection of rat C6 cells with a eukaryotic expression plasmid encoding the oligopurine variant of the triple helix but not the oligopyrimidine or a control sequence. The cells transfected with the oligopurine variant displayed morphological changes, upregulation of major histocompatibility complex I, and increased expression of protease nexin I. Dramatic inhibition of tumor growth occurred in nude mice following injection of transfected C6 cells. To our knowledge, this is the first example of tumor growth inhibition in an animal model employing a triple helix approach.

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Year:  1997        PMID: 9080119

Source DB:  PubMed          Journal:  Cancer Gene Ther        ISSN: 0929-1903            Impact factor:   5.987


  8 in total

Review 1.  Therapeutic modulation of endogenous gene function by agents with designed DNA-sequence specificities.

Authors:  Taco G Uil; Hidde J Haisma; Marianne G Rots
Journal:  Nucleic Acids Res       Date:  2003-11-01       Impact factor: 16.971

2.  Intracellular generation of single-stranded DNA for chromosomal triplex formation and induced recombination.

Authors:  H J Datta; P M Glazer
Journal:  Nucleic Acids Res       Date:  2001-12-15       Impact factor: 16.971

3.  Human glioma cells transformed by IGF-I triple helix technology show immune and apoptotic characteristics determining cell selection for gene therapy of glioblastoma.

Authors:  A Ly; H T Duc; M Kalamarides; L A Trojan; Y Pan; A Shevelev; J C François; T Noël; A Kane; D Henin; D D Anthony; J Trojan
Journal:  Mol Pathol       Date:  2001-08

4.  Triplex targeting of human PDGF-B (c-sis, proto-oncogene) promoter specifically inhibits factors binding and PDGF-B transcription.

Authors:  J Liu; R Xu; Y Jin; D Wang
Journal:  Nucleic Acids Res       Date:  2001-02-01       Impact factor: 16.971

5.  Inhibition of Erythroleukemia Cell Growth by Triplex-forming RNAs.

Authors:  Richard N Re; Zhuo Zhang; Julia L Cook
Journal:  Ochsner J       Date:  2007

6.  Suppression of insulin-like growth factor type I receptor by a triple-helix strategy inhibits IGF-I transcription and tumorigenic potential of rat C6 glioblastoma cells.

Authors:  F Rininsland; T R Johnson; C L Chernicky; E Schulze; P Burfeind; J Ilan
Journal:  Proc Natl Acad Sci U S A       Date:  1997-05-27       Impact factor: 11.205

7.  Methodology for Anti-Gene Anti-IGF-I Therapy of Malignant Tumours.

Authors:  Jerzy Trojan; Yuexin X Pan; Ming X Wei; Adama Ly; Alexander Shevelev; Maciej Bierwagen; Marie-Yvonne Ardourel; Ladislas A Trojan; Alvaro Alvarez; Christian Andres; Maria C Noguera; Ignacio Briceno; Beatriz H Aristizabal; Heliodor Kasprzak; Huynh T Duc; Donald D Anthony
Journal:  Chemother Res Pract       Date:  2012-02-14

8.  Tyrphostin AG 1024 modulates radiosensitivity in human breast cancer cells.

Authors:  B Wen; E Deutsch; E Marangoni; V Frascona; L Maggiorella; B Abdulkarim; N Chavaudra; J Bourhis
Journal:  Br J Cancer       Date:  2001-12-14       Impact factor: 7.640

  8 in total

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