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Nano-omics: nanotechnology-based multidimensional harvesting of the blood-circulating cancerome
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Nano-omics: nanotechnology-based multidimensional harvesting of the blood-circulating cancerome
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Nano-omics: nanotechnology-based multidimensional harvesting of the blood-circulating cancerome
Nano-omics: nanotechnology-based multidimensional harvesting of the blood-circulating cancerome
Journal Article

Nano-omics: nanotechnology-based multidimensional harvesting of the blood-circulating cancerome

2022
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Overview
Over the past decade, the development of ‘simple’ blood tests that enable cancer screening, diagnosis or monitoring and facilitate the design of personalized therapies without the need for invasive tumour biopsy sampling has been a core ambition in cancer research. Data emerging from ongoing biomarker development efforts indicate that multiple markers, used individually or as part of a multimodal panel, are required to enhance the sensitivity and specificity of assays for early stage cancer detection. The discovery of cancer-associated molecular alterations that are reflected in blood at multiple dimensions (genome, epigenome, transcriptome, proteome and metabolome) and integration of the resultant multi-omics data have the potential to uncover novel biomarkers as well as to further elucidate the underlying molecular pathways. Herein, we review key advances in multi-omics liquid biopsy approaches and introduce the ‘nano-omics’ paradigm: the development and utilization of nanotechnology tools for the enrichment and subsequent omics analysis of the blood-circulating cancerome.Liquid biopsy assays of diverse cancer-associated molecular alterations in blood, including genomic, epigenomic, transcriptomic, proteomic and metabolomics changes, offer considerable opportunities for early detection of cancer as well as improved management of the disease. In this Perspective, the authors review key advances in liquid biopsy-based multi-omics approaches for biomarker discovery. They also introduce the ‘nano-omics’ paradigm, whereby nanotechnology tools are used to capture and enrich various cancer-derived analytes from biofluids for subsequent omics analyses, with the aim of developing novel biomarker panels for early cancer detection.