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Cancer Research | 2012

Abstract B14: Anti-miR-135b in colon cancer treatment

Nicola Valeri; Roberta Gafa; Gerard Nuovo; Giovanni Lanza; Wendy Frankel; Peter K. Vogt; Joanna Groden; Michael Karin; Carlo M. Croce; Chiara Braconi; Pierluigi Gasparini; Sergei Grivennikov; Jonathan R. Hart; Alessio Paone; Francesca Lovat; Muller Fabbri

Background: MicroRNAs (miRs) are small non coding RNAs involved in cell homeostasis. miRs are deregulated in colorectal cancer (CRC). Our study aimed at identifying miRs with a driver role in carcinogenesis altered by similar mechanisms in both human and mouse CRC. Goal of the study was to use CRC mouse models for the pre-clinical development of anti-miRs as therapeutic drugs. Methods: Azoximetane (AOM)/Dextran-Sulfate (DSS) treated mice or CDX2Cre-APC f/wt mice were used to study inflammation-associated and sporadic APC-related CRC. Human Inflammatory Bowel Disease associated (n=30), and sporadic (n=90) CRC with their matched normal tissues were collected according to Good Clinical Practice recommendation and subjected to RNA extraction using Trizol. miR and gene expression profiling was assessed by nCounter technology (Nanostring Seattle). AntimiR-135b and scrambled probes for in vivo studies were synthesized by Girindus. Results: miRs profiling from AOM/DSS and CDX2Cre-APC f/wt CRC. revealed that miR-135b is one of the most up-regulated miRs in both models. In humans miR-135b over-expression was found in both IBD and sporadic CRC and was associated with reduced Progression Free Survival and Overall Survival in CRC patients. Molecular studies in Mouse Embryo Fibroblast and human CRC cell lines highlighted the role of two major pathways in the upstream activation of miR-135b: APC-β-Catenin and SRC-PI3K. MiR-135b up-regulation resulted in reduced apoptosis and increased invasion and metastasis due to the down-regulation of TGFRB2, DAPK1, APC and HIF1AN. Silencing of miR-135b in vivo reduced tumor multiplicity and tumor load in the AOM/DSS CRC model. Mice treated with anti-miR-135b showed well differentiated tumors and acinar pattern while tumors in the control groups showed low differentiation and adenomatous pattern. Conclusions: Our data suggest that miR-135b is a key molecule whose activation is downstream of oncogenes and oncosuppressor genes frequently altered in CRC. Our study defines specific pathways that converge on the activation of the same microrna. The “in vivo” silencing of miR-135 shows preclinical efficacy with low toxicity and represents the first in vivo study for the use of antimiRs in CRC treatmentnnNote: This abstract was not presented at the conference because the presenter was unable to attend.nnCitation Format: Nicola Valeri, Roberta Gafa, Gerard Nuovo, Giovanni Lanza, Wendy Frankel, Peter K. Vogt, Joanna Groden, Michael Karin, Carlo M. Croce, Chiara Braconi, Pierluigi Gasparini, Sergei Grivennikov, Jonathan R. Hart, Alessio Paone, Francesca Lovat, Muller Fabbri. Anti-miR-135b in colon cancer treatment [abstract]. In: Proceedings of the AACR Special Conference on Noncoding RNAs and Cancer; 2012 Jan 8-11; Miami Beach, FL. Philadelphia (PA): AACR; Cancer Res 2012;72(2 Suppl):Abstract nr B14.


Archive | 2013

lymphomas Heat shock protein 70 regulates Tcl1 expression in leukemia and

Carlo M. Croce; Laura Z. Rassenti; Thomas J. Kipps; Chenglong Li; Rami Aqeilan; Gregory B. Lesinski; Pierluigi Gasparini; Alexey Efanov; Nicola Zanesi; Mohammed A. Shuaib; Eugenio Gaudio; Francesco Paduano; Francesca Lovat; Muller Fabbri


Archive | 2012

Procédés et compositions se rapportant à mir-21 et mir-29a, à l'inhibition d'exosome, et à la métastase cancéreuse

Carlo M. Croce; Muller Fabbri


Archive | 2012

Verfahren und zusammensetzungen im zusammenhang mit mir-21 und mir-29a, exosomerhemmung und krebsmetastasen

Carlo M. Croce; Muller Fabbri


Archive | 2010

Non-Coding RNAs in Cancer — The Other Part of the Story

Muller Fabbri; George Calin


Archive | 2008

Métodos para invertir la metilación por selección dirigida de DNMT3A y DNMT3B

Carlo M. Croce; Muller Fabbri


Archive | 2008

Methods to reverse the methylation directed selection of Dnmt3a and DNMT3B

Carlo M. Croce; Muller Fabbri


Archive | 2008

microRNAs in Cell Biology and Diseases

George Calin; Carlo M. Croce; Muller Fabbri


Archive | 2008

Procédés permettant d'inverser la méthylation par ciblage de DNMT3A et DNMT3B

Carlo M. Croce; Muller Fabbri


Archive | 2008

Verfahren zur methylierungsreversion mittels abzielen auf dnmt3a und dnmt3b

Carlo M. Croce; Muller Fabbri

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Carlo M. Croce

Scripps Research Institute

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Francesca Lovat

Scripps Research Institute

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George Calin

University of Texas Health Science Center at Houston

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Alessio Paone

Scripps Research Institute

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Chiara Braconi

Scripps Research Institute

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Gerard Nuovo

Scripps Research Institute

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