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YAN Shi-Kai, LIU Run-Hui, JIN Hui-Zi, LIU Xin-Ru, YE Ji, SHAN Lei, ZHANG Wei-Dong. “Omics” in pharmaceutical research:overview, applications, challenges, and future perspectives[J]. 中国天然药物, 2015, 13(1): 3-21.
引用本文: YAN Shi-Kai, LIU Run-Hui, JIN Hui-Zi, LIU Xin-Ru, YE Ji, SHAN Lei, ZHANG Wei-Dong. “Omics” in pharmaceutical research:overview, applications, challenges, and future perspectives[J]. 中国天然药物, 2015, 13(1): 3-21.
YAN Shi-Kai, LIU Run-Hui, JIN Hui-Zi, LIU Xin-Ru, YE Ji, SHAN Lei, ZHANG Wei-Dong. “Omics” in pharmaceutical research:overview, applications, challenges, and future perspectives[J]. Chinese Journal of Natural Medicines, 2015, 13(1): 3-21.
Citation: YAN Shi-Kai, LIU Run-Hui, JIN Hui-Zi, LIU Xin-Ru, YE Ji, SHAN Lei, ZHANG Wei-Dong. “Omics” in pharmaceutical research:overview, applications, challenges, and future perspectives[J]. Chinese Journal of Natural Medicines, 2015, 13(1): 3-21.

“Omics” in pharmaceutical research:overview, applications, challenges, and future perspectives

“Omics” in pharmaceutical research:overview, applications, challenges, and future perspectives

  • 摘要: In the post-genomic era, biological studies are characterized by the rapid development and wide application of a series of omics technologies, including genomics, proteomics, metabolomics, transcriptomics, lipidomics, cytomics, metallomics, ionomics, interactomics, and phenomics. These omics are often based on global analyses of biological samples using high through-put analytical approaches and bioinformatics and may provide new insights into biological phenomena. In this paper, the development and advances in these omics made in the past decades are reviewed, especially genomics, transcriptomics, proteomics and metabolomics; the applications of omics technologies in pharmaceutical research are then summarized in the fields of drug target discovery, toxicity evaluation, personalized medicine, and traditional Chinese medicine; and finally, the limitations of omics are discussed, along with the future challenges associated with the multi-omics data processing, dynamics omics analysis, and analytical approaches, as well as amenable solutions and future prospects.

     

    Abstract: In the post-genomic era, biological studies are characterized by the rapid development and wide application of a series of omics technologies, including genomics, proteomics, metabolomics, transcriptomics, lipidomics, cytomics, metallomics, ionomics, interactomics, and phenomics. These omics are often based on global analyses of biological samples using high through-put analytical approaches and bioinformatics and may provide new insights into biological phenomena. In this paper, the development and advances in these omics made in the past decades are reviewed, especially genomics, transcriptomics, proteomics and metabolomics; the applications of omics technologies in pharmaceutical research are then summarized in the fields of drug target discovery, toxicity evaluation, personalized medicine, and traditional Chinese medicine; and finally, the limitations of omics are discussed, along with the future challenges associated with the multi-omics data processing, dynamics omics analysis, and analytical approaches, as well as amenable solutions and future prospects.

     

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