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Extracellular Vesicle Uptake Assay via Confocal Microscope Imaging Analysis.
Kim, Chi-Ju; Kuczler, Morgan D; Dong, Liang; Kim, Junyoung; Amend, Sarah R; Cho, Yoon-Kyoung; Pienta, Kenneth J.
Affiliation
  • Kim CJ; The Brady Urological Institute, Johns Hopkins University School of Medicine; Department of Biomedical Engineering, School of Life Sciences, Ulsan National Institute of Science and Technology (UNIST); ckim143@jh.edu.
  • Kuczler MD; The Brady Urological Institute, Johns Hopkins University School of Medicine.
  • Dong L; The Brady Urological Institute, Johns Hopkins University School of Medicine; Department of Urology, Renji Hospital, Shanghai Jiao Tong University School of Medicine.
  • Kim J; Department of Biomedical Engineering, School of Life Sciences, Ulsan National Institute of Science and Technology (UNIST); Center for Soft and Living Matter, Institute for Basic Science (IBS).
  • Amend SR; The Brady Urological Institute, Johns Hopkins University School of Medicine.
  • Cho YK; Department of Biomedical Engineering, School of Life Sciences, Ulsan National Institute of Science and Technology (UNIST); Center for Soft and Living Matter, Institute for Basic Science (IBS); ykcho@unist.ac.kr.
  • Pienta KJ; The Brady Urological Institute, Johns Hopkins University School of Medicine.
J Vis Exp ; (180)2022 02 14.
Article in En | MEDLINE | ID: mdl-35225262
There is a need for practical assays to visualize and quantify the cells' extracellular vesicle (EV) uptake. EV uptake plays a role in intercellular communication in various research fields; cancer biology, neuroscience, and drug delivery. Many EV uptake assays have been reported in the literature; however, there is a lack of practical, detailed experimental methodology. EV uptake can be assessed by fluorescently labeling EVs to detect their location within cells. Distinguishing between internalized EVs in cells and the superficial EVs on cells is difficult, yet critical, to accurately determine the EV uptake. Therefore, an assay that efficiently quantifies EV uptake through three-dimensional (3D) fluorescence confocal microscopy is proposed in this work. Fluorescently labeled EVs were prepared using a nano-filtration-based microfluidic device, visualized by 3D confocal microscopy, and then analyzed through advanced image-processing software. The protocol provides a robust methodology for analyzing EVs on a cellular level and a practical approach for efficient analysis.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Extracellular Vesicles Type of study: Guideline Language: En Journal: J Vis Exp Year: 2022 Type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Extracellular Vesicles Type of study: Guideline Language: En Journal: J Vis Exp Year: 2022 Type: Article