Literature DB >> 17541424

Proof concept for clinical justification of network mapping for personalized cancer therapeutics.

J Nemunaitis1, N Senzer, I Khalil, Y Shen, P Kumar, A Tong, J Kuhn, J Lamont, M Nemunaitis, D Rao, Y-A Zhang, Y Zhou, J Vorhies, P Maples, C Hill, D Shanahan.   

Abstract

To identify signature targets associated with patient-specific cancer lesions based on tumor versus normal tissue differential protein and mRNA coexpression patterns for the purpose of synthesizing cancer-specific customized RNA interference knockdown therapeutics. Analysis of biopsied tissue involved two-dimensional difference in-gel electrophoresis (2D-DIGE) analysis coupled with MALDI-TOF/TOF mass spectrometry for proteomic assessment. Standard microarray techniques were utilized for mRNA analysis. Priority was assigned to overexpressed protein targets with co-overexpressed genes with a high likelihood of functional nodal centrality in the cancer network as defined by the interactive databases BIND, HPRD and ResNet. HPLC-grade small interfering RNA (siRNA) duplexes were utilized to assess knockdown of target proteins in expressive cell lines as measured by western blot. Seven patients with metastatic cancer underwent biopsy. One patient (RW001) had biopsies from two disease sites 10 months apart. Seven priority proteins were identified, one for each patient (RACK 1, Ras related nuclear protein, heat-shock 27 kDa protein 1, superoxide dismutase, enolase1, stathmin1 and cofilin1). Prioritized proteins in RW001 from the two disease sites over time were the same. We demonstrated >80% siRNA inhibition of RACK 1 and stathmin1 of inexpressive malignant cell lines with correlated cell kill. Identification of functionally relevant target gene fingerprints, unique to an individual's cancer, is feasible 'at the bedside' and can be utilized to synthesize siRNA knockdown therapeutics. Further animal safety testing followed by clinical study is recommended.

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Year:  2007        PMID: 17541424     DOI: 10.1038/sj.cgt.7701057

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


  6 in total

Review 1.  Personalized cancer approach: using RNA interference technology.

Authors:  John Nemunaitis; Donald D Rao; Shi-He Liu; F Charles Brunicardi
Journal:  World J Surg       Date:  2011-08       Impact factor: 3.352

2.  Phase 1 Trial of Bi-shRNA STMN1 BIV in Refractory Cancer.

Authors:  Minal Barve; Zhaohui Wang; Padmasini Kumar; Christopher M Jay; Xiuquan Luo; Cynthia Bedell; Robert G Mennel; Gladice Wallraven; Francis Charles Brunicardi; Neil Senzer; John Nemunaitis; Donald D Rao
Journal:  Mol Ther       Date:  2015-01-26       Impact factor: 11.454

3.  Maintaining Breast Cancer Specimen Integrity and Individual or Simultaneous Extraction of Quality DNA, RNA, and Proteins from Allprotect-Stabilized and Nonstabilized Tissue Samples.

Authors:  Blanaid C Mee; Paul Carroll; Simona Donatello; Elizabeth Connolly; Mairead Griffin; Barbara Dunne; Louise Burke; Richard Flavin; Hala Rizkalla; Ciara Ryan; Brian Hayes; Charles D'Adhemar; Niamh Banville; Nazia Faheem; Cian Muldoon; Eoin F Gaffney
Journal:  Biopreserv Biobank       Date:  2011-12       Impact factor: 2.300

4.  Emerging technologies for the genomic analysis of cancer.

Authors:  John Nemunaitis; Neil N Senzer
Journal:  F1000 Biol Rep       Date:  2009-05-08

5.  Proteomics, pathway array and signaling network-based medicine in cancer.

Authors:  David Y Zhang; Fei Ye; Ling Gao; Xiaoliang Liu; Xin Zhao; Yufang Che; Hongxia Wang; Libo Wang; Josephine Wu; Dong Song; Wei Liu; Hong Xu; Bo Jiang; Weijia Zhang; Jinhua Wang; Peng Lee
Journal:  Cell Div       Date:  2009-10-28       Impact factor: 5.130

6.  Carbonate Apatite and Hydroxyapatite Formulated with Minimal Ingredients to Deliver SiRNA into Breast Cancer Cells In Vitro and In Vivo.

Authors:  Rowshan Ara Islam; Hamed Al-Busaidi; Rahela Zaman; Syafiq Asnawi Zainal Abidin; Iekhsan Othman; Ezharul Hoque Chowdhury
Journal:  J Funct Biomater       Date:  2020-09-10
  6 in total

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