A practical guide for assessing respiratory burst and phagocytic cell activity in the fathead minnow, an emerging model for immunotoxicity
Measures of respiratory burst and phagocytic cell activity are frequently utilized to assess cellular immune function in teleosts. Respiratory burst predominately occurs in neutrophils and causes the release of reactive oxygen species to kill pathogens. Phagocytosis is the process by which pathogens...
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doaj-ef9f538b76244a26a432193072b471ad2021-01-02T05:10:43ZengElsevierMethodsX2215-01612020-01-017100992A practical guide for assessing respiratory burst and phagocytic cell activity in the fathead minnow, an emerging model for immunotoxicityLeah M. Thornton Hampton0Marlo K. Sellin Jeffries1Barney J. Venables2Department of Biological Sciences, University of North Texas, Denton, TX, USA; Department of Biology, Texas Christian University, Fort Worth, TX, USADepartment of Biology, Texas Christian University, Fort Worth, TX, USA; Corresponding author.Department of Biological Sciences, University of North Texas, Denton, TX, USAMeasures of respiratory burst and phagocytic cell activity are frequently utilized to assess cellular immune function in teleosts. Respiratory burst predominately occurs in neutrophils and causes the release of reactive oxygen species to kill pathogens. Phagocytosis is the process by which pathogens are engulfed and destroyed by various immune cells. Though a variety of approaches have been utilized to measure respiratory burst and phagocytic cell activity, assays that rely only on common laboratory equipment (e.g., plate reader) may offer advantages over those that rely on more specialized equipment (e.g., flow cytometer). The goal of the current study was to optimize and validate the use of a colorimetric plate-based respiratory burst and fluorometric plate-based phagocytic cell activity assays for use with kidney cells from the fathead minnow (Pimephales promelas), an emerging immunotoxicity model. In addition, a protocol for the dissection of kidney tissue followed by the extraction of kidney cells, as well as recommendations and resources for future experiments utilizing each of these assays, are provided. • All methods are optimized for use with the fathead minnow or similar teleost species. • Respiratory burst and phagocytic cell activity are measured using a standard plate reader.http://www.sciencedirect.com/science/article/pii/S2215016120302120Kidney cell extractionPhagocytosisRespiratory burstCellular immune functionFish |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Leah M. Thornton Hampton Marlo K. Sellin Jeffries Barney J. Venables |
spellingShingle |
Leah M. Thornton Hampton Marlo K. Sellin Jeffries Barney J. Venables A practical guide for assessing respiratory burst and phagocytic cell activity in the fathead minnow, an emerging model for immunotoxicity MethodsX Kidney cell extraction Phagocytosis Respiratory burst Cellular immune function Fish |
author_facet |
Leah M. Thornton Hampton Marlo K. Sellin Jeffries Barney J. Venables |
author_sort |
Leah M. Thornton Hampton |
title |
A practical guide for assessing respiratory burst and phagocytic cell activity in the fathead minnow, an emerging model for immunotoxicity |
title_short |
A practical guide for assessing respiratory burst and phagocytic cell activity in the fathead minnow, an emerging model for immunotoxicity |
title_full |
A practical guide for assessing respiratory burst and phagocytic cell activity in the fathead minnow, an emerging model for immunotoxicity |
title_fullStr |
A practical guide for assessing respiratory burst and phagocytic cell activity in the fathead minnow, an emerging model for immunotoxicity |
title_full_unstemmed |
A practical guide for assessing respiratory burst and phagocytic cell activity in the fathead minnow, an emerging model for immunotoxicity |
title_sort |
practical guide for assessing respiratory burst and phagocytic cell activity in the fathead minnow, an emerging model for immunotoxicity |
publisher |
Elsevier |
series |
MethodsX |
issn |
2215-0161 |
publishDate |
2020-01-01 |
description |
Measures of respiratory burst and phagocytic cell activity are frequently utilized to assess cellular immune function in teleosts. Respiratory burst predominately occurs in neutrophils and causes the release of reactive oxygen species to kill pathogens. Phagocytosis is the process by which pathogens are engulfed and destroyed by various immune cells. Though a variety of approaches have been utilized to measure respiratory burst and phagocytic cell activity, assays that rely only on common laboratory equipment (e.g., plate reader) may offer advantages over those that rely on more specialized equipment (e.g., flow cytometer). The goal of the current study was to optimize and validate the use of a colorimetric plate-based respiratory burst and fluorometric plate-based phagocytic cell activity assays for use with kidney cells from the fathead minnow (Pimephales promelas), an emerging immunotoxicity model. In addition, a protocol for the dissection of kidney tissue followed by the extraction of kidney cells, as well as recommendations and resources for future experiments utilizing each of these assays, are provided. • All methods are optimized for use with the fathead minnow or similar teleost species. • Respiratory burst and phagocytic cell activity are measured using a standard plate reader. |
topic |
Kidney cell extraction Phagocytosis Respiratory burst Cellular immune function Fish |
url |
http://www.sciencedirect.com/science/article/pii/S2215016120302120 |
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