Transcriptome Profiling in Human Diseases: New Advances and Perspectives

被引:151
|
作者
Casamassimi, Amelia [1 ]
Federico, Antonio [2 ,3 ]
Rienzo, Monica [4 ]
Esposito, Sabrina [4 ]
Ciccodicola, Alfredo [2 ,3 ]
机构
[1] Univ Campania Luigi Vanvitelli, Dept Biochem Biophys & Gen Pathol, Via L De Crecchio, I-80138 Naples, Italy
[2] CNR, Inst Genet & Biophys Adriano Buzzati Traverso, I-80131 Naples, Italy
[3] Univ Naples Parthenope, Dept Sci & Technol, I-80143 Naples, Italy
[4] Univ Campania Luigi Vanvitelli, Dept Environm Biol & Pharmaceut Sci & Technol, I-81100 Caserta, Italy
关键词
transcriptome profiling; RNA sequencing; alternative transcripts; noncoding RNA; multi-omics; human diseases; biomarkers; therapeutic targets; LONG NONCODING RNAS; GENE-EXPRESSION PATTERNS; MESSENGER-RNA; CIRCULAR RNAS; SEQ; SEQUENCE; CANCER; SIGNATURES; GENOMICS; BREAST;
D O I
10.3390/ijms18081652
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In the last decades, transcriptome profiling has been one of the most utilized approaches to investigate human diseases at the molecular level. Through expression studies, many molecular biomarkers and therapeutic targets have been found for several human pathologies. This number is continuously increasing thanks to total RNA sequencing. Indeed, this new technology has completely revolutionized transcriptome analysis allowing the quantification of gene expression levels and allele-specific expression in a single experiment, as well as to identify novel genes, splice isoforms, fusion transcripts, and to investigate the world of non-coding RNA at an unprecedented level. RNA sequencing has also been employed in important projects, like ENCODE (Encyclopedia of the regulatory elements) and TCGA (The Cancer Genome Atlas), to provide a snapshot of the transcriptome of dozens of cell lines and thousands of primary tumor specimens. Moreover, these studies have also paved the way to the development of data integration approaches in order to facilitate management and analysis of data and to identify novel disease markers and molecular targets to use in the clinics. In this scenario, several ongoing clinical trials utilize transcriptome profiling through RNA sequencing strategies as an important instrument in the diagnosis of numerous human pathologies.
引用
收藏
页数:15
相关论文
共 50 条
  • [21] Advances in transcriptome analysis of human brain aging
    Seokjin Ham
    Seung-Jae V. Lee
    Experimental & Molecular Medicine, 2020, 52 : 1787 - 1797
  • [22] Advances in transcriptome analysis of human brain aging
    Ham, Seokjin
    Lee, Seung-Jae V.
    EXPERIMENTAL AND MOLECULAR MEDICINE, 2020, 52 (11): : 1787 - 1797
  • [23] The microbiome in pancreatic diseases: Recent advances and future perspectives
    Ammer-Herrmenau, Christoph
    Pfisterer, Nina
    Weingarten, Mark F. J.
    Neesse, Albrecht
    UNITED EUROPEAN GASTROENTEROLOGY JOURNAL, 2020, 8 (08) : 878 - 885
  • [24] Insights into the pathobiology of Paracoccidioides brasiliensis from transcriptome analysis -: advances and perspectives
    Silva, Simoneide S.
    Paes, Hugo C.
    Soares, Celia M. A.
    Fernandes, Larissa
    Felipe, Maria Sueli S.
    MYCOPATHOLOGIA, 2008, 165 (4-5) : 249 - 258
  • [25] Transcriptome profiling of polyunsaturated fatty acids cascades genes in neurodegenerative diseases
    Chistyakov, D.
    Azbukina, N.
    Ptizina, E.
    Sergeeva, M.
    FEBS OPEN BIO, 2021, 11 : 360 - 360
  • [26] Therapeutic neovascularization for peripheral arterial diseases: advances and perspectives
    Zhou, B.
    Poon, M-C.
    Pu, W. T.
    Han, Z. C.
    HISTOLOGY AND HISTOPATHOLOGY, 2007, 22 (06) : 677 - 686
  • [27] Insights into the pathobiology of Paracoccidioides brasiliensis from transcriptome analysis—advances and perspectives
    Simoneide S. Silva
    Hugo C. Paes
    Célia M. A. Soares
    Larissa Fernandes
    Maria Sueli S. Felipe
    Mycopathologia, 2008, 165 : 249 - 258
  • [28] Transcriptome profiling of human Th9 cells
    Parmentier, C.
    Cousins, D.
    IMMUNOLOGY, 2011, 135 : 80 - 80
  • [29] Transcriptome Profiling of Purified Human Trophoblast Cells.
    Hamada, Hirotaka
    Sato, Tetsuya
    Okae, Hiroaki
    Yaegashi, Nobuo
    Arima, Takahiro
    REPRODUCTIVE SCIENCES, 2016, 23 : 322A - 323A
  • [30] Transcriptome Profiling of Human Pre-Implantation Development
    Zhang, Pu
    Zucchelli, Marco
    Bruce, Sara
    Hambiliki, Fredwell
    Stavreus-Evers, Anneli
    Levkov, Lev
    Skottman, Heli
    Kerkela, Erja
    Kere, Juha
    Hovatta, Outi
    PLOS ONE, 2009, 4 (11):