4.5 Article

Multi-omics approaches to human biological age estimation

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出版社

ELSEVIER IRELAND LTD
DOI: 10.1016/j.mad.2019.111192

关键词

Aging; Aging biomarkers; Biological age; Multi-omics approach

资金

  1. state task on theme Molecular-genetic mechanisms of aging, lifespan, and stress resistance of Drosophila melanogaster [AAAA-A18-118011120004-5]
  2. complex UrB RAS Programme A combination of factors of different nature (low temperature, lack of lighting, restrictive diet, and geroprotector) to maximize the lifespan of Drosophila [18-7-4-23, AAAA-A18-118011120008-3]
  3. RFBR [19-34-90058]
  4. [AAAA-A19-119021590022-2]

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Multi-omics approach nowadays increasingly applied to molecular research in many fields of life sciences. Biogerontology is not an exception; multi-omics gives possibility to evaluate complex biomarkers (or panels) which consist of quantitative as well as phenotypic ones. It is especially important because of weak understanding of the nature of aging. The difficulty now is distinguishing between causes and effects of aging. The application of the whole set of metabolome, methylome, transcriptome, proteome or metagenome data in aging biomarker design becomes the only way to create a holistic view of aging landscape without missing undiscovered mechanisms and levels of organization. We found patents, up-to-date multi-omics datasets and studies, which include bioinformatics innovations to predict biological age in humans. We hope that the review will be also useful for clinicians, because it follows majorly translational purposes.

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