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Showing 1–6 of 6 results
Advanced filters: Author: Joonil Cho Clear advanced filters
  • Helical nanostructures often exhibit intriguing physical phenomena. Here, the authors fabricate a helical porous material exhibiting both controlled handedness and macroscopic orientation, which promises applications in a wide array of disciplines.

    • Chunji Li
    • Joonil Cho
    • Yasuhiro Ishida
    ResearchOpen Access
    Nature Communications
    Volume: 6, P: 1-10
  • The Cancer Genome Atlas reports on molecular evaluation of 295 primary gastric adenocarcinomas and proposes a new classification of gastric cancers into 4 subtypes, which should help with clinical assessment and trials of targeted therapies.

    • Adam J. Bass
    • Vesteinn Thorsson
    • Jia Liu
    ResearchOpen Access
    Nature
    Volume: 513, P: 202-209
  • The Cancer Genome Atlas presents an integrative genome-wide analysis of genetic alterations in 279 head and neck squamous cell carcinomas (HNSCCs), which are classified by human papillomavirus (HPV) status; alterations in EGFR, FGFR, PIK3CA and cyclin-dependent kinases are shown to represent candidate targets for therapeutic intervention in most HNSCCs.

    • Michael S. Lawrence
    • Carrie Sougnez
    • Wendell G. Yarbrough
    ResearchOpen Access
    Nature
    Volume: 517, P: 576-582
  • This paper reports integrative molecular analyses of urothelial bladder carcinoma at the DNA, RNA, and protein levels performed as part of The Cancer Genome Atlas project; recurrent mutations were found in 32 genes, including those involved in cell-cycle regulation, chromatin regulation and kinase signalling pathways; chromatin regulatory genes were more frequently mutated in urothelial carcinoma than in any other common cancer studied so far.

    • John N. Weinstein
    • Rehan Akbani
    • Greg Eley
    ResearchOpen Access
    Nature
    Volume: 507, P: 315-322
  • Current clinical practice is organized according to tissue or organ of origin of tumors. Now, The Cancer Genome Atlas (TCGA) Research Network has started to identify genomic and other molecular commonalities among a dozen different types of cancer. Emerging similarities and contrasts will form the basis for targeted therapies of the future and for repurposing existing therapies by molecular rather than histological similarities of the diseases.

    • Kyle Chang
    • Chad J Creighton
    • Joshua M Stuart
    Comments & OpinionOpen Access
    Nature Genetics
    Volume: 45, P: 1113-1120