A simple method to quantitate IP-10 in dried blood and plasma spots.

BACKGROUND: Antigen specific release of IP-10 is an established marker for infection with M.tuberculosis. Compared to IFN-γ, IP-10 is released in 100-fold higher concentrations enabling the development of novel assays for detection. Dried blood spots are a convenient sample for high throughput newbo...

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Main Authors: Martine G Aabye, Jesper Eugen-Olsen, Anne Marie Werlinrud, Line Lindebo Holm, Tamara Tuuminen, Pernille Ravn, Morten Ruhwald
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3384664?pdf=render
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spelling doaj-b28afc063d4e427bb6044cd939e9b8172020-11-25T02:57:22ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0176e3922810.1371/journal.pone.0039228A simple method to quantitate IP-10 in dried blood and plasma spots.Martine G AabyeJesper Eugen-OlsenAnne Marie WerlinrudLine Lindebo HolmTamara TuuminenPernille RavnMorten RuhwaldBACKGROUND: Antigen specific release of IP-10 is an established marker for infection with M.tuberculosis. Compared to IFN-γ, IP-10 is released in 100-fold higher concentrations enabling the development of novel assays for detection. Dried blood spots are a convenient sample for high throughput newborn screening. AIM: To develop a robust and sensitive ELISA-based assay for IP-10 detection in plasma, dried blood spots (DBS) and dried plasma spots (DPS); to validate the ELISA in clinically relevant samples; and to assess the performance of the assay for detection of Cytomegalovirus (CMV) and M.tuberculosis specific immune responses. METHOD: We raised mice and rat monoclonal antibodies against human IP-10 and developed an ELISA. The assay was validated and applied to the detection of CMV and M.tuberculosis specific responses in 18 patients with immune reactivity towards M.tuberculosis and 32 healthy controls of which 22 had immune reactivity towards CMV and none towards M.tuberculosis. We compared the performance of this new assay to IFN-γ. RESULTS: The ELISA was reliable for IP-10 detection in both plasma and filter paper samples. The linear range of the ELISA was 2.5-600 pg/ml. IFN-γ was not readily detectable in DPS samples. IP-10 was stabile in filter paper samples for at least 4 weeks at 37 °C. The correlation between IP-10 detected in plasma, DPS and DBS samples was excellent (r(2)>0.97). CONCLUSIONS: This newly developed assay is reliable for IP-10 quantification in plasma, DBS and DPS samples from antigen stimulated and non-stimulated whole blood. The filter paper assays enable easy sample acquisition and transport at ambient temperature e.g. via the postal system. The system can potentially simplify diagnostic assays for M.tuberculosis and CMV infection.http://europepmc.org/articles/PMC3384664?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Martine G Aabye
Jesper Eugen-Olsen
Anne Marie Werlinrud
Line Lindebo Holm
Tamara Tuuminen
Pernille Ravn
Morten Ruhwald
spellingShingle Martine G Aabye
Jesper Eugen-Olsen
Anne Marie Werlinrud
Line Lindebo Holm
Tamara Tuuminen
Pernille Ravn
Morten Ruhwald
A simple method to quantitate IP-10 in dried blood and plasma spots.
PLoS ONE
author_facet Martine G Aabye
Jesper Eugen-Olsen
Anne Marie Werlinrud
Line Lindebo Holm
Tamara Tuuminen
Pernille Ravn
Morten Ruhwald
author_sort Martine G Aabye
title A simple method to quantitate IP-10 in dried blood and plasma spots.
title_short A simple method to quantitate IP-10 in dried blood and plasma spots.
title_full A simple method to quantitate IP-10 in dried blood and plasma spots.
title_fullStr A simple method to quantitate IP-10 in dried blood and plasma spots.
title_full_unstemmed A simple method to quantitate IP-10 in dried blood and plasma spots.
title_sort simple method to quantitate ip-10 in dried blood and plasma spots.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description BACKGROUND: Antigen specific release of IP-10 is an established marker for infection with M.tuberculosis. Compared to IFN-γ, IP-10 is released in 100-fold higher concentrations enabling the development of novel assays for detection. Dried blood spots are a convenient sample for high throughput newborn screening. AIM: To develop a robust and sensitive ELISA-based assay for IP-10 detection in plasma, dried blood spots (DBS) and dried plasma spots (DPS); to validate the ELISA in clinically relevant samples; and to assess the performance of the assay for detection of Cytomegalovirus (CMV) and M.tuberculosis specific immune responses. METHOD: We raised mice and rat monoclonal antibodies against human IP-10 and developed an ELISA. The assay was validated and applied to the detection of CMV and M.tuberculosis specific responses in 18 patients with immune reactivity towards M.tuberculosis and 32 healthy controls of which 22 had immune reactivity towards CMV and none towards M.tuberculosis. We compared the performance of this new assay to IFN-γ. RESULTS: The ELISA was reliable for IP-10 detection in both plasma and filter paper samples. The linear range of the ELISA was 2.5-600 pg/ml. IFN-γ was not readily detectable in DPS samples. IP-10 was stabile in filter paper samples for at least 4 weeks at 37 °C. The correlation between IP-10 detected in plasma, DPS and DBS samples was excellent (r(2)>0.97). CONCLUSIONS: This newly developed assay is reliable for IP-10 quantification in plasma, DBS and DPS samples from antigen stimulated and non-stimulated whole blood. The filter paper assays enable easy sample acquisition and transport at ambient temperature e.g. via the postal system. The system can potentially simplify diagnostic assays for M.tuberculosis and CMV infection.
url http://europepmc.org/articles/PMC3384664?pdf=render
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