In the present paper, we investigated the involvement of cryptococcal melanogenesis and macrophage nitric oxide (NO) production in the accomplishment of anticryptococcal activity by microglial effector cells, using the murine cell line BV-2. We demonstrate that the constitutive levels of anticryptococcal activity exerted by BV-2 cells is significantly enhanced upon interferon gamma plus lipopolysaccharide treatment. The phenomenon, which occurs with no enhancement of phagocytic activity, is associated with the production of high levels of NO and is abolished by addition of N-G-monomethyl-L-arginine. Comparable patterns of results are observed employing either unopsonized or opsonized microbial targets, the latter microorganisms being markedly more susceptible to BV-2 cell antimicrobial activity. Furthermore, melanization of Cryptococcus neoformans significantly reduces its susceptibility to BV-2 antimicrobial activity, regardless of the fact that activated macrophages or opsonized microorganisms have been employed. In conclusion, our results provide evidence that NO-dependent events are involved in the fulfillment of anticryptococcal activity by activated microglial cells and that fungal melanization is a precious escamotage through which C. neoformans overcomes host defenses.

ROLE OF NITRIC-OXIDE AND MELANOGENESIS IN THE ACCOMPLISHMENT OF ANTICRYPTOCOCCAL ACTIVITY BY THE BV-2 MICROGLIAL CELL-LINE / Blasi, Elisabetta; Barluzzi, R; Mazzolla, R; Tancini, B; Saleppico, S; Puliti, M; Pitzurra, L; Bistoni, F.. - In: JOURNAL OF NEUROIMMUNOLOGY. - ISSN 0165-5728. - ELETTRONICO. - 58:(1995), pp. 111-116.

ROLE OF NITRIC-OXIDE AND MELANOGENESIS IN THE ACCOMPLISHMENT OF ANTICRYPTOCOCCAL ACTIVITY BY THE BV-2 MICROGLIAL CELL-LINE

BLASI, Elisabetta;
1995

Abstract

In the present paper, we investigated the involvement of cryptococcal melanogenesis and macrophage nitric oxide (NO) production in the accomplishment of anticryptococcal activity by microglial effector cells, using the murine cell line BV-2. We demonstrate that the constitutive levels of anticryptococcal activity exerted by BV-2 cells is significantly enhanced upon interferon gamma plus lipopolysaccharide treatment. The phenomenon, which occurs with no enhancement of phagocytic activity, is associated with the production of high levels of NO and is abolished by addition of N-G-monomethyl-L-arginine. Comparable patterns of results are observed employing either unopsonized or opsonized microbial targets, the latter microorganisms being markedly more susceptible to BV-2 cell antimicrobial activity. Furthermore, melanization of Cryptococcus neoformans significantly reduces its susceptibility to BV-2 antimicrobial activity, regardless of the fact that activated macrophages or opsonized microorganisms have been employed. In conclusion, our results provide evidence that NO-dependent events are involved in the fulfillment of anticryptococcal activity by activated microglial cells and that fungal melanization is a precious escamotage through which C. neoformans overcomes host defenses.
1995
58
111
116
ROLE OF NITRIC-OXIDE AND MELANOGENESIS IN THE ACCOMPLISHMENT OF ANTICRYPTOCOCCAL ACTIVITY BY THE BV-2 MICROGLIAL CELL-LINE / Blasi, Elisabetta; Barluzzi, R; Mazzolla, R; Tancini, B; Saleppico, S; Puliti, M; Pitzurra, L; Bistoni, F.. - In: JOURNAL OF NEUROIMMUNOLOGY. - ISSN 0165-5728. - ELETTRONICO. - 58:(1995), pp. 111-116.
Blasi, Elisabetta; Barluzzi, R; Mazzolla, R; Tancini, B; Saleppico, S; Puliti, M; Pitzurra, L; Bistoni, F.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/10177
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