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Tumor necrosis factor-alpha and interferon-gamma modulation of nitric oxide and allograft survival
1Thoracic Surgery Research Laboratory, University of Michigan Medical School, Ann Arbor 48109, USA.
Abstract:
Tumor necrosis factor-alpha (TNF) and interferon-gamma (IFN) modulate immune responses, as TNF is postulated as a first messenger for priming immune cells and IFN as the second messenger for activation. Nitric oxide (NO) is also an important mediator of immune function, as NO produced by immune cells in response to cytokines such as TNF and IFN may be a cytotoxic end-product effector of immune activation. To examine TNF and IFN modulation of NO production and effects upon allograft survival, we studied the in vitro effect of TNF, IFN, and lipopolysaccharide (LPS, as a nonspecific immune stimulator and TNF promoter) singly or together on NO production in unstimulated rat splenocytes or in response to allogeneic stimulation in MHC mismatch (Brown-Norway, BN, vs Lewis, LEW) mixed lymphocyte reactions. Nitrite as a stable reaction product of NO was determined by a colorimetric method based on the Griess reaction. Interestingly, unstimulated cells had little NO production in response to TNF or IFN; however, following nonspecific (LPS) or allogeneic stimulation there was a significant upregulation of NO production that was synergistically enhanced by the presence of both TNF and IFN. Significantly, anti-TNF antibody inhibited NO production up to 60% in all groups. In vivo studies used a cardiac heterotopic allotransplant model, again BN to LEW. Control recipients received no immunotherapy. Experimental recipients received IFN alone, anti-IFN antibody, anti-TNF antibody, or anti-TNF and anti-IFN antibody. Results from these allograft experiments showed no influence on survival by IFN alone or anti-IFN antibody alone.(ABSTRACT TRUNCATED AT 250 WORDS)