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Immunoaffinity Capillary Electrophoresis in the Era of Proteoforms, Liquid Biopsy and Preventive Medicine: A Potential Impact in the Diagnosis and Monitoring of Disease Progression

Journal

BIOMOLECULES
Volume 11, Issue 10, Pages -

Publisher

MDPI
DOI: 10.3390/biom11101443

Keywords

proteoforms; isoforms; low abundance biomarkers; liquid biopsy; immunoaffinity capillary electrophoresis; molecular biorecognition; point-of-care instrument; proteomics; precision medicine; preventive medicine; cancer; telemedicine; exosomes; circulating tumor cells; circulating immunological cells

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Protein biomarkers, specifically proteoforms, play a crucial role in disease diagnosis and prognosis. Immunoaffinity capillary electrophoresis (IACE) is an emerging diagnostic tool that can isolate and detect proteoform biomarkers from liquid biopsy, offering rapid and accurate results with reliability and reproducibility. Additionally, IACE has the potential to monitor the efficacy of therapeutic agents and improve early detection of medical conditions through advancements in telemedicine and artificial intelligence.
Over the years, multiple biomarkers have been used to aid in disease screening, diagnosis, prognosis, and response to therapy. As of late, protein biomarkers are gaining strength in their role for early disease diagnosis and prognosis in part due to the advancements in identification and characterization of a distinct functional pool of proteins known as proteoforms. Proteoforms are defined as all of the different molecular forms of a protein derived from a single gene caused by genetic variations, alternative spliced RNA transcripts and post-translational modifications. Monitoring the structural changes of each proteoform of a particular protein is essential to elucidate the complex molecular mechanisms that guide the course of disease. Clinical proteomics therefore holds the potential to offer further insight into disease pathology, progression, and prevention. Nevertheless, more technologically advanced diagnostic methods are needed to improve the reliability and clinical applicability of proteomics in preventive medicine. In this manuscript, we review the use of immunoaffinity capillary electrophoresis (IACE) as an emerging powerful diagnostic tool to isolate, separate, detect and characterize proteoform biomarkers obtained from liquid biopsy. IACE is an affinity capture-separation technology capable of isolating, concentrating and analyzing a wide range of biomarkers present in biological fluids. Isolation and concentration of target analytes is accomplished through binding to one or more biorecognition affinity ligands immobilized to a solid support, while separation and analysis are achieved by high-resolution capillary electrophoresis (CE) coupled to one or more detectors. IACE has the potential to generate rapid results with significant accuracy, leading to reliability and reproducibility in diagnosing and monitoring disease. Additionally, IACE has the capability of monitoring the efficacy of therapeutic agents by quantifying companion and complementary protein biomarkers. With advancements in telemedicine and artificial intelligence, the implementation of proteoform biomarker detection and analysis may significantly improve our capacity to identify medical conditions early and intervene in ways that improve health outcomes for individuals and populations.

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