Spironolactone induces apoptosis in human mononuclear cells. Association between apoptosis and cytokine suppression

Spironolactone (SPIR) has been described to suppress accumulation of pro-inflammatory cytokines. Here, the suppression of TNF-alpha in lipopolysaccharide (LPS)-stimulated mononuclear cell cultures was confirmed. However, SPIR was also found to induce apoptosis, prompting the investigations of a poss...

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Veröffentlicht in:Apoptosis (London) 2006-04, Vol.11 (4), p.573-579
Hauptverfasser: Mikkelsen, M, Sønder, S U, Nersting, J, Bendtzen, K
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Sprache:eng
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Zusammenfassung:Spironolactone (SPIR) has been described to suppress accumulation of pro-inflammatory cytokines. Here, the suppression of TNF-alpha in lipopolysaccharide (LPS)-stimulated mononuclear cell cultures was confirmed. However, SPIR was also found to induce apoptosis, prompting the investigations of a possible association between the two effects: The apoptosis-inducing and the cytokine-suppressive effects of SPIR correlated with regard to the effective concentration range. Also, pre-incubation experiments demonstrated a temporal separation of the two effects of < or = 4 h, with TNF-alpha suppression preceding apoptosis. An association between the two effects was also seen when testing several SPIR analogues. Contrary to TNF-alpha, the levels of IL-1beta increased in SPIR-treated cultures. However, the amount of IL-1beta in the supernatants depended upon the order of SPIR and LPS addition, as IL-1beta was non-detectable in cultures treated with SPIR prior to LPS, whereas elevated IL-1beta levels were seen when SPIR was added after LPS-stimulation. It is possible that the extracellular accumulation of IL-1beta is due to an increased release of already produced IL-1beta as a result of cell death. In conclusion, suppression of cytokine production by SPIR may be associated with its apoptotic potential, either directly (apoptosis is a consequence of suppressed cytokine production, or vice-versa) or indirectly (suppressed cytokine production and apoptosis are parallel but otherwise unrelated phenomena).
ISSN:1360-8185
1573-675X
DOI:10.1007/s10495-006-4919-3