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Comparing Approaches to Normalize, Quantify, and Characterize Urinary Extracellular Vesicles

Authors :
Omar A. Z. Tutakhel
Marian C. Clahsen-van Groningen
Cristian A. Carvajal
René J. M. Bindels
Thierry P P van den Bosch
David Severs
Juan Pablo Rigalli
Robert A. Fenton
Roger Carles-Fontana
Cathy A Cuevas
Joost G. J. Hoenderop
Charles J. Blijdorp
Ewout J. Hoorn
Martijn H van Heugten
Rob Willemsen
Fons A. J. van de Loo
Usha M. Musterd-Bhaggoe
Martin E. van Royen
Onno J. Arntz
Eric Barros
Thomas A Hartjes
Guido Jenster
Internal Medicine
Pathology
Clinical Genetics
Urology
Source :
J Am Soc Nephrol, Blijdorp, C J, Tutakhel, O A Z, Hartjes, T A, van den Bosch, T P P, van Heugten, M H, Rigalli, J P, Willemsen, R, Musterd-Bhaggoe, U M, Barros, E R, Carles-Fontana, R, Carvajal, C A, Arntz, O J, van de Loo, F A J, Jenster, G, Clahsen-van Groningen, M C, Cuevas, C A, Severs, D, Fenton, R A, van Royen, M E, Hoenderop, J G J, Bindels, R J M & Hoorn, E J 2021, ' Comparing Approaches to Normalize, Quantify, and Characterize Urinary Extracellular Vesicles ', Journal of the American Society of Nephrology : JASN, vol. 32, no. 5, pp. 1210-1226 . https://doi.org/10.1681/ASN.2020081142, Journal of the American Society of Nephrology, 32, 1210-1226, Journal of the American Society of Nephrology, 32(5), 1210-1226. American Society of Nephrology, Journal of the American Society of Nephrology, 32, 5, pp. 1210-1226
Publication Year :
2020

Abstract

Background Urinary extracellular vesicles (uEVs) are a promising source for biomarker discovery, but optimal approaches for normalization, quantification, and characterization in spot urines are unclear. Methods Urine samples were analyzed in a water-loading study, from healthy subjects and patients with kidney disease. Urine particles were quantified in whole urine using nanoparticle tracking analysis (NTA), time-resolved fluorescence immunoassay (TR-FIA), and EVQuant, a novel method quantifying particles via gel immobilization. Results Urine particle and creatinine concentrations were highly correlated in the water-loading study (R2 0.96) and in random spot urines from healthy subjects (R2 0.47-0.95) and patients (R2 0.41-0.81). Water loading reduced aquaporin-2 but increased Tamm-Horsfall protein (THP) and particle detection by NTA. This finding was attributed to hypotonicity increasing uEV size (more EVs reach the NTA size detection limit) and reducing THP polymerization. Adding THP to urine also significantly increased particle count by NTA. In both fluorescence NTA and EVQuant, adding 0.01% SDS maintained uEV integrity and increased aquaporin-2 detection. Comparison of intracellular- and extracellular-epitope antibodies suggested the presence of reverse topology uEVs. The exosome markers CD9 and CD63 colocalized and immunoprecipitated selectively with distal nephron markers. Conclusions uEV concentration is highly correlated with urine creatinine, potentially replacing the need for uEV quantification to normalize spot urines. Additional findings relevant for future uEV studies in whole urine include the interference of THP with NTA, excretion of larger uEVs in dilute urine, the ability to use detergent to increase intracellular-epitope recognition in uEVs, and CD9 or CD63 capture of nephron segment-specific EVs.

Details

ISSN :
15333450 and 10466673
Volume :
32
Issue :
5
Database :
OpenAIRE
Journal :
Journal of the American Society of Nephrology : JASN
Accession number :
edsair.doi.dedup.....1c0c64668a5a8ea0fb9f5169d71f5c4d
Full Text :
https://doi.org/10.1681/ASN.2020081142