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Updated: Apr 18, 2026

Generation of Natural Killer Cells from Human Expanded Potential Stem Cells
Published on: January 13, 2023
Vanadium pentoxide prevents NK-92MI cell proliferation and IFNγ secretion through sustained JAK3 phosphorylation
Francisco Gallardo-Vera1, Daniel Diaz2, Miguel Tapia-Rodriguez3
1a Laboratorio Inmunobiología, Departamento de Biología Celular y Tisular, Facultad de Medicina .
Abstract:
Vanadium is a major air pollutant with toxic and carcinogenic effects; it also exercises immunosuppressive effects on the adaptive immune response. Its effect on the innate immune response is poorly explored. The aim of this study was to identify if vanadium pentoxide (V2O5) impairs the function of immunoregulatory NK cells and to determine possible mechanisms associated with this effect. Interleukin-2-independent NK-92MI cells were exposed to different V2O5 concentrations for 6, 12, or 24 h periods. Cell proliferation was then evaluated using CFSE staining, apoptosis by Annexin V binding, and necrosis by 7-AAD staining. The release of IL-2, -4, -6, -10, -17A, IFNγ, and TNFα by the cells were assessed using a human CBA kit. Expression of CD45, SOCS1, JAK3, pJAK3, STAT5, pSTAT5, IL-2R, IL-15R, Fas, and FasL in/on the cells was determined by flow cytometry; JAK3 and pJAK3 expression were also evaluated via confocal microscopy. The results indicated that V2O5 could inhibit NK-92MI cell proliferation and induce cell apoptosis in a dose- and time-related manner. V2O5 also inhibited IL-2, IL-10, and IFNγ secretion but mostly only after 24 h of exposure and with primarily the higher doses tested. V2O5 had no effect on expression of JAK3 and STAT5, but did cause an increase in pJAK3 and appeared to lead (trend) to reductions in levels of phosphorylated STAT5. V2O5 increased the expression of IL-2R, IL-15R, Fas, and FasL at concentrations above the 50-100 µM range. V2O5 had no effect on expression of the CD45 membrane phosphatase, but it did cause an increase in the expression of SOCS1. These results indicate that a key toxic effect of V2O5 on NK cells is a dysregulation of signaling pathways mediated by IL-2. These effects could help to explain the previously-reported deleterious effects on innate immune responses of hosts exposed to inhaled V2O5.
Insights
Vanadium pentoxide (V2O5) exposure inhibits natural killer (NK) cell proliferation and induces apoptosis. This toxic effect on NK cells involves dysregulation of interleukin-2 (IL-2) signaling pathways, impacting innate immunity.
Area of Science:
- Environmental Toxicology
- Immunology
- Innate Immunity
Background:
- Vanadium pentoxide (V2O5) is a significant air pollutant with known toxic and carcinogenic properties.
- While V2O5's immunosuppressive effects on adaptive immunity are documented, its impact on innate immune responses remains largely unexplored.
- Natural killer (NK) cells are crucial for innate immunity, and their function in response to V2O5 exposure needs investigation.
Purpose of the Study:
- To investigate the effects of V2O5 on the function of immunoregulatory NK cells.
- To identify potential mechanisms underlying V2O5-induced impairment of NK cell activity.
Main Methods:
- NK-92MI cells were exposed to varying concentrations of V2O5 for different durations (6, 12, 24 hours).
- Cell proliferation (CFSE staining), apoptosis (Annexin V), and necrosis (7-AAD) were assessed.
- Cytokine release (IL-2, -4, -6, -10, -17A, IFNγ, TNFα) and cell surface marker expression (CD45, SOCS1, JAK3, pJAK3, STAT5, pSTAT5, IL-2R, IL-15R, Fas, FasL) were analyzed via flow cytometry and confocal microscopy.
Main Results:
- V2O5 inhibited NK-92MI cell proliferation and induced apoptosis in a dose- and time-dependent manner.
- Exposure to V2O5 reduced the secretion of IL-2, IL-10, and IFNγ, particularly at higher doses and after 24 hours.
- V2O5 increased expression of IL-2R, IL-15R, Fas, and FasL, and upregulated SOCS1, while affecting JAK/STAT signaling pathways and decreasing pSTAT5 levels.
Conclusions:
- V2O5 exerts toxic effects on NK cells by inhibiting proliferation and inducing apoptosis.
- Dysregulation of IL-2 signaling pathways, including altered receptor expression and STAT5 phosphorylation, is a key mechanism of V2O5 toxicity in NK cells.
- These findings provide insights into the detrimental impact of inhaled V2O5 on innate immune responses.
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