The Microfluidic Toolbox for Analyzing Exosome Biomarkers of Aging

As the fields of aging and neurological disease expand to liquid biopsies, there is a need to identify informative biomarkers for the diagnosis of neurodegeneration and other age-related disorders such as cancers. A means of high-throughput screening of biomolecules relevant to aging can facilitate...

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Main Authors: Jonalyn DeCastro, Joshua Littig, Peichi Peggy Chou, Jada Mack-Onyeike, Amrita Srinivasan, Michael J. Conboy, Irina M. Conboy, Kiana Aran
Format: Article
Language:English
Published: MDPI AG 2021-01-01
Series:Molecules
Subjects:
Online Access:https://www.mdpi.com/1420-3049/26/3/535
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spelling doaj-30aa4109c1bc4486a3f0a314619390af2021-01-21T00:06:32ZengMDPI AGMolecules1420-30492021-01-012653553510.3390/molecules26030535The Microfluidic Toolbox for Analyzing Exosome Biomarkers of AgingJonalyn DeCastro0Joshua Littig1Peichi Peggy Chou2Jada Mack-Onyeike3Amrita Srinivasan4Michael J. Conboy5Irina M. Conboy6Kiana Aran7Keck Graduate Institute, The Claremont Colleges, Claremont, CA 91711, USAKeck Graduate Institute, The Claremont Colleges, Claremont, CA 91711, USAPitzer College, The Claremont Colleges, Claremont, CA 91711, USAKeck Graduate Institute, The Claremont Colleges, Claremont, CA 91711, USAClaremont McKenna College, The Claremont Colleges, Claremont, CA 91711, USADepartment of Bioengineering, University of California, Berkeley, CA 94720, USADepartment of Bioengineering, University of California, Berkeley, CA 94720, USAKeck Graduate Institute, The Claremont Colleges, Claremont, CA 91711, USAAs the fields of aging and neurological disease expand to liquid biopsies, there is a need to identify informative biomarkers for the diagnosis of neurodegeneration and other age-related disorders such as cancers. A means of high-throughput screening of biomolecules relevant to aging can facilitate this discovery in complex biofluids, such as blood. Exosomes, the smallest of extracellular vesicles, are found in many biofluids and, in recent years, have been found to be excellent candidates as liquid biopsy biomarkers due to their participation in intercellular communication and various pathologies such as cancer metastasis. Recently, exosomes have emerged as novel biomarkers for age-related diseases. Hence, the study of exosomes, their protein and genetic cargo can serve as early biomarkers for age-associated pathologies, especially neurodegenerative diseases. However, a disadvantage of exosome studies includes a lack in standardization of isolating, detecting, and profiling exosomes for downstream analysis. In this review, we will address current techniques for high-throughput isolation and detection of exosomes through various microfluidic and biosensing strategies and how they may be adapted for the detection of biomarkers of age-associated disorders.https://www.mdpi.com/1420-3049/26/3/535exosomesagingmicrofluidics
collection DOAJ
language English
format Article
sources DOAJ
author Jonalyn DeCastro
Joshua Littig
Peichi Peggy Chou
Jada Mack-Onyeike
Amrita Srinivasan
Michael J. Conboy
Irina M. Conboy
Kiana Aran
spellingShingle Jonalyn DeCastro
Joshua Littig
Peichi Peggy Chou
Jada Mack-Onyeike
Amrita Srinivasan
Michael J. Conboy
Irina M. Conboy
Kiana Aran
The Microfluidic Toolbox for Analyzing Exosome Biomarkers of Aging
Molecules
exosomes
aging
microfluidics
author_facet Jonalyn DeCastro
Joshua Littig
Peichi Peggy Chou
Jada Mack-Onyeike
Amrita Srinivasan
Michael J. Conboy
Irina M. Conboy
Kiana Aran
author_sort Jonalyn DeCastro
title The Microfluidic Toolbox for Analyzing Exosome Biomarkers of Aging
title_short The Microfluidic Toolbox for Analyzing Exosome Biomarkers of Aging
title_full The Microfluidic Toolbox for Analyzing Exosome Biomarkers of Aging
title_fullStr The Microfluidic Toolbox for Analyzing Exosome Biomarkers of Aging
title_full_unstemmed The Microfluidic Toolbox for Analyzing Exosome Biomarkers of Aging
title_sort microfluidic toolbox for analyzing exosome biomarkers of aging
publisher MDPI AG
series Molecules
issn 1420-3049
publishDate 2021-01-01
description As the fields of aging and neurological disease expand to liquid biopsies, there is a need to identify informative biomarkers for the diagnosis of neurodegeneration and other age-related disorders such as cancers. A means of high-throughput screening of biomolecules relevant to aging can facilitate this discovery in complex biofluids, such as blood. Exosomes, the smallest of extracellular vesicles, are found in many biofluids and, in recent years, have been found to be excellent candidates as liquid biopsy biomarkers due to their participation in intercellular communication and various pathologies such as cancer metastasis. Recently, exosomes have emerged as novel biomarkers for age-related diseases. Hence, the study of exosomes, their protein and genetic cargo can serve as early biomarkers for age-associated pathologies, especially neurodegenerative diseases. However, a disadvantage of exosome studies includes a lack in standardization of isolating, detecting, and profiling exosomes for downstream analysis. In this review, we will address current techniques for high-throughput isolation and detection of exosomes through various microfluidic and biosensing strategies and how they may be adapted for the detection of biomarkers of age-associated disorders.
topic exosomes
aging
microfluidics
url https://www.mdpi.com/1420-3049/26/3/535
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