Activation of lymphocytes can effectively produce a large amount of cytokines. The types of cytokines produced may depend on stimulating reagents and treatments. To find an optimal method to stimulate cytokine production and evaluate its effect on immunotoxicity assessments, the authors analyzed production of IL-2, IL-4, IL-6, IL-10, IL-13, IFN-γ, TNF-α, GM-CSF, RANTES and TGF-β in undiluted rat whole blood culture (incubation for 0, 2, 4, 6, 8 or 10 h) with different concentrations of PMA/ionomycin, PHA, Con A, LPS and PWM. We also evaluated the effects of cyclosporin A and azathioprine on cytokine production. The results revealed a rapid increase of IL-2, IFN-γ, TNF-α, RANTES and TGF-β secretion within 6 h after stimulation with 25 ng/mL PMA and 1 μg/mL ionomycin. The inhibition of these cytokine profiles reflected the effects of immunosuppressants on the immune system. Therefore, the results of this is study recommend the detection of cytokine profiles in undiluted whole blood stimulated 6 h with 25 ng/mL PMA and 1 μg/mL ionomycin as a powerful immunotoxicity assessment method.
References
[1]
Van der Meide, P.H.; Schellekens, H. Cytokines and the immune response. Biotherapy 1996, 8, 243–249, doi:10.1007/BF01877210.
Corsini, E.; Roggen, E.L. Immunotoxicology: Opportunities for non-animal test development. Altern. Lab. Anim. 2009, 37, 387–397.
[4]
Galbiati, V.; Mitjans, M.; Corsini, E. Present and future of in vitro immunotoxicology in drug development. J. Immunotoxicol. 2010, 7, 255–267, doi:10.3109/1547691X.2010.509848.
[5]
Foster, J.R. The functions of cytokines and their uses in toxicology. Int. J. Exp. Pathol. 2001, 82, 171–192, doi:10.1111/j.1365-2613.2001.iep192.x.
[6]
House, R.V. Theory and practice of cytokines assessment in immunotoxicology. Methods 1999, 19, 17–27, doi:10.1006/meth.1999.0823.
[7]
Liu, Z.; Yuan, X.; Luo, Y.; He, Y.; Jiang, Y.; Chen, Z.K.; Sun, E. Evaluating the effects of immunosuppressants on human immunity using cytokine profiles of whole blood. Cytokine 2009, 45, 141–147, doi:10.1016/j.cyto.2008.12.003.
[8]
Myrianthefs, P.M.; Lazaris, N.; Venetsanou, K.; Smigadis, N.; Karabatsos, E.; Anastasiou-Nana, M.I.; Baltopoulos, G.J. Immune status evaluation of patients with chronic heart failure. Cytokine 2007, 37, 150–154, doi:10.1016/j.cyto.2007.03.007.
[9]
Schuerwegh, A.J.; de Clerck, L.S.; Bridts, C.H.; Stevens, W.J. Comparison of intracellular cytokine production with extracellular cytokine levels using two flow cytometric techniques. Cytometry B Clin. Cytom. 2003, 55, 52–58.
[10]
De Waal, E.J.; Timmerman, H.H.; Dortant, P.M.; Kranjc, M.A.; van Loveren, H. Investigation of a screening battery for immunotoxicity of pharmaceuticals within a 28-day oral toxicity study using azathioprine and cyclosporin A as model compounds. Regul. Toxicol. Pharmacol. 1995, 21, 327–338, doi:10.1006/rtph.1995.1047.
[11]
Schulte, A.; Althoff, J.; Ewe, S.; Richter-Reichhelm, H.B.; BGVV Group Investigators. Two immunotoxicity ring studies according to OECD TG 407-comparison of data on cyclosporin A and hexachlorobenzene. Regul. Toxicol. Pharmacol. 2002, 36, 12–21, doi:10.1006/rtph.2002.1568.
Keski-Nisula, L.; Roponen, M.; Hirvonen, M.R.; Heinonen, S.; Pekkanen, J. Stimulated cytokines production correlates in umbilical arterial and venous blood at delivery. Eur. Cytokines Netw. 2004, 15, 347–352.
[14]
Olsen, I.; Sollid, L.M. Pitfalls in determining the cytokines profile of human T cells. J. Immunol. Methods 2013, 390, 106–112, doi:10.1016/j.jim.2013.01.015.