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Polymorphonuclear Cell Chemotaxis and Suicidal NETosis: Simultaneous Observation Using fMLP, PMA, H7, and Live Cell Imaging
Article
Pai, Delou, Gruber, Michael
, Pfaehler, Sophie-Marie
, Bredthauer, Andre
, Lehle, Karla and Trabold, Benedikt
(2020)
Polymorphonuclear Cell Chemotaxis and Suicidal NETosis: Simultaneous Observation Using fMLP, PMA, H7, and Live Cell Imaging.
Journal of Immunology Research 2020 (141594), pp. 1-10.
DOI to cite this document: 10.5283/epub.44158
Abstract
Chemotaxis and the formation of suicidal neutrophil extracellular traps (suicidal NETosis) are key functions of polymorphonuclear cells (PMNs). Neutrophil extracellular traps in particular are known to be significantly involved in the severity of inflammatory and immunological disorders such as rheumatoid arthritis and Crohn's disease. Therefore, detailed knowledge of PMNs is essential for ...
Chemotaxis and the formation of suicidal neutrophil extracellular traps (suicidal NETosis) are key functions of polymorphonuclear cells (PMNs). Neutrophil extracellular traps in particular are known to be significantly involved in the severity of inflammatory and immunological disorders such as rheumatoid arthritis and Crohn's disease. Therefore, detailed knowledge of PMNs is essential for analyzing the mechanisms involved in, and developing new therapies for, such diseases. To date, no standard method to analyze these cell activities has been established. This study used in vitro live cell imaging to simultaneously observe and analyze PMN functions. To demonstrate this, the effects of phorbol-12-myristat-13-acetat (PMA, 0.1-10 nM), N-formylmethionine-leucyl-phenylalanine (fMLP, 10 nM), and protein kinase C inhibitor 1-(5-isoquinolinesulfonyl)-2-methylpiperazine (H7) on PMN chemotaxis and suicidal NETosis were studied. PMA (1 nM-10 nM) resulted in significant concentration-dependent behavior in chemotaxis and an earlier onset of maximum oxidative burst and NET formation of up to 44%. When adding H7, PMA-triggered PMN functions were reduced, demonstrating that all three functions rely mostly on protein kinase C (PKC) activity, while PKC is not essential for fMLP-induced PMN activity. Thus, the method here described can be used to objectively quantify PMN functions and, especially through the regulation of the PKC pathway, could be useful in further clinical studies of immunological disorders.
Involved Institutions
Details
| Item type | Article | ||||
| Journal or Publication Title | Journal of Immunology Research | ||||
| Publisher | Hindawi | ||||
| Open Access Type | Gold (with APC) | ||||
| Place of Publication | LONDON | ||||
| Volume | 2020 | ||||
| Number of Issue or Book Chapter | 141594 | ||||
| Page Range | pp. 1-10 | ||||
| Date | 17 August 2020 | ||||
| Date of publication | 12 Nov 2020 13:23 | ||||
| Institutions | Medicine > Lehrstuhl für Anästhesiologie Medicine > Lehrstuhl für Herz-, Thorax- und herznahe Gefäßchirurgie | ||||
| Identification Number |
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| Keywords | SIGNAL-TRANSDUCTION; HUMAN NEUTROPHILS; DEPENDENT ADHESION; MIGRATION; | ||||
| Dewey Decimal Classification | 600 Technology > 610 Medical sciences Medicine | ||||
| Status | Published | ||||
| Refereed | Yes, this version has been refereed | ||||
| Created at the University of Regensburg | Yes | ||||
| URN of the UB Regensburg | urn:nbn:de:bvb:355-epub-441581 | ||||
| Item ID | 44158 |
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