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Deeper understanding of mold-induced cytokine signatures could promote advances in the diagnosis and treatment of invasive mycoses and mold-associated hypersensitivity syndromes. Currently, most T-cellular immunoassays in medical mycology require the isolation of mononuclear cells and have limited robustness and practicability, hampering their broader applicability in clinical practice. Therefore, we developed a simple, cost-efficient whole blood (WB) assay with dual α-CD28 and α-CD49d co-stimulation to quantify cytokine secretion in response to Aspergillus fumigatus antigens. Dual co-stimulation strongly enhanced A. fumigatus-induced release of T-cellular signature cytokines detectable by enzyme-linked immunosorbent assay (ELISA) or a multiplex cytokine assay. Furthermore, T-cell-dependent activation and cytokine response of innate immune cells was captured by the assay. The protocol consistently showed little technical variation and high robustness to pre-analytic delays of up to 8 h. Stimulation with an A. fumigatus lysate elicited at least 7-fold greater median concentrations of key T-helper cell signature cytokines, including IL-17 and the type 2 T-helper cell cytokines IL-4 and IL-5 in WB samples from patients with Aspergillus-associated lung pathologies versus patients with non-mold-related lung diseases, suggesting high discriminatory power of the assay. These results position WB-ELISA with dual co-stimulation as a simple, accurate, and robust immunoassay for translational applications, encouraging further evaluation as a platform to monitor host immunity to opportunistic pathogens.
We compared the feasibility of 4 cytomegalovirus (CMV)- and Aspergillus-reactive T-cell immunoassay protocols in allogenic stem cell transplant recipients. While enzyme-linked immunospot performed best overall, logistically advantageous whole blood–based assays performed comparably in patients with less severe lymphocytopenia. CMV-induced interferon-gamma responses correlated strongly across all protocols and showed high concordance with serology.
Occupational mold exposure can lead to Aspergillus-associated allergic diseases including asthma and hypersensitivity pneumonitis. Elevated IL-17 levels or disbalanced T-helper (Th) cell expansion were previously linked to Aspergillus-associated allergic diseases, whereas alterations to the Th cell repertoire in healthy occupationally exposed subjects are scarcely studied. Therefore, we employed functional immunoassays to compare Th cell responses to A. fumigatus antigens in organic farmers, a cohort frequently exposed to environmental molds, and non-occupationally exposed controls. Organic farmers harbored significantly higher A. fumigatus-specific Th-cell frequencies than controls, with comparable expansion of Th1- and Th2-cell frequencies but only slightly elevated Th17-cell frequencies. Accordingly, Aspergillus antigen-induced Th1 and Th2 cytokine levels were strongly elevated, whereas induction of IL-17A was minimal. Additionally, increased levels of some innate immune cell-derived cytokines were found in samples from organic farmers. Antigen-induced cytokine release combined with Aspergillus-specific Th-cell frequencies resulted in high classification accuracy between organic farmers and controls. Aspf22, CatB, and CipC elicited the strongest differences in Th1 and Th2 responses between the two cohorts, suggesting these antigens as potential candidates for future bio-effect monitoring approaches. Overall, we found that occupationally exposed agricultural workers display a largely balanced co-expansion of Th1 and Th2 immunity with only minor changes in Th17 responses.
Bereits in Vorstudien konnte dargelegt werden, dass eine signifikante Korrelation zwischen der T-Zell-Zytokin-Antwort und der berufs- bzw. umweltbedingten Schimmelpilzbelastung besteht. Ziel der vorliegenden Studie war, eine mögliche Kombination von Biomarkern ausfindig zu machen, die veränderte T-Zell-Antworten auf A. fumigatus- Antigene bei beruflich Exponierten im Vergleich zu Kontrollprobanden/-innen vorhersagen kann. Um geeignete Marker für das Bio-Monitoring zu finden, wurden zur T-Zell-Aktivierung ein myzeliales A. fumigatus - Lysat und 12 proteinogene Antigene in ELISpot-Versuchen für die Signaturzytokine IFN-γ (TH1), IL-5 (TH2) und IL-17A (TH17) der Haupt-TH-Subpopulationen getestet.
Es zeigten sich bei den Biolandwirten/-innen erwartungsgemäß erhöhte TH1- und TH2-Antworten auf die Mehrzahl der verwendeten spezifischen A. fumigatus-Antigene, die möglicherweise eine Schimmelpilzbelastung serologisch nachweisbar machen. Insbesondere die spezifischen A. fumigatus-Antigene Aspf22, CatB und CipC konnten eine Trennschärfe zwischen den beiden Kohorten hinsichtlich ihrer IFN-γ- und IL-5-Zytokinantwort erzielen. Unterschiede in der TH17-Antwort aufgrund chronischer beruflicher Sporenbelastung ohne Krankheitskorrelat konnten nicht explizit festgestellt werden. Weiterhin ergab sich, dass erhöhte TH2-Immunreaktionen, sofern sie mit einer adäquaten TH1-gerichteten Immunantwort einhergehen und damit eine ausgeglichene TH2/TH1-Balance besteht, nicht zwangsläufig zu Hypersensitivitätserkrankungen führen. Im Vergleich zu Langzeitexponierten wurden teilweise überlappende TH-Zellfrequenzen bei beruflich exponierten Biolandwirten/-innen ermittelt. Welche entscheidende Rolle Treg-Zellen bei der Eindämmung überschießender Immunantworten einnehmen, kann hieraus erahnt werden.