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L J Slobbe

Publications and source records attributed to L J Slobbe.

3 recordsLinked to original sources

In vitro control of Mycobacterium bovis by macrophages.

Mycobacterium bovis is frequently seen inside macrophages in vivo. The outcome of M. bovis infection depends on T cell interactions with macrophages, however mycobacteria are thought to be relatively resistant to macrophage killing. Little is known about the immunological mechanisms which control intracellular growth of M. bovis, and in the absence of T cell help the organism is capable of intracellular survival and replication. We have investigated the role of macrophages in controlling growth of virulent M. bovis or M. bovis BCG in vitro. At a multiplicity of infection of 5:1, macrophages from a range of animal species including cattle, deer, possums, ferrets and mice restricted growth of BCG while M. bovis grew progressively. Inter-species variation in controlling growth of M. bovis by alveolar macrophages was observed. Pre-treatment of macrophages with interferon-gamma and lipopolysaccharide inhibited intracellular growth of M. bovis. Addition of freshly recruited macrophages further inhibited M. bovis, and intracellular growth was arrested by activated fresh macrophages. Our observations suggest that naïve macrophages can prevent BCG growth, while T cell activation in conjunction with freshly recruited macrophages is required for preventing growth of M. bovis.

Analysis of Variance↗

Macrophage function in deer.

Macrophage inflammatory and immune functions were characterised in red deer (cervus elaphus), for use as a model for natural infection with bovine tuberculosis. Highly enriched populations of deer macrophages were obtained from 14 day cultures of plastic-adherent peripheral blood mononuclear cells. Cervine macrophages produced superoxide anion in response to respiratory burst stimuli (serum-opsonised zymosan and phorbol myristic acetate), but nitric oxide production could not be detected under the conditions tested. The lysosomal enzymes acid phosphatase and lysozyme were detected at the intercellular and extracellular level. Stimulation with bacterial lipopolysaccharide extract (Escherichia coli LPS) enhanced the production of superoxide and acid phosphatase with a peak increase in activity observed after 2h. Production of interleukin 1 (IL-1) and tumour necrosis factor (TNF), determined using cytokine-sensitive cell lines and mRNA analysis (Northern blotting), indicated maximal secretion of both cytokines after 24 h stimulation with LPS, preceded by a peak in message accumulation at 2-6 h post-stimulation. Cervine macrophages stimulated proliferative responses in T cell-enriched lymphocyte populations derived from the peripheral blood of autologous animals that had been primed to mycobacterial antigens (Mycobacterium bovis Bacille Calmette-Guerin, BCG). Macrophages were able to stimulate responses after pulsing with particulate (BCG) or soluble (purified protein derivative) mycobacterial antigens. These results indicate that macrophage inflammatory and immune responses in red deer are similar to those in other mammalian species, and that macrophages may play an important role in resistance to mycobacterial infection.

Animals↗

In vitro responses of cervine macrophages to bacterial stimulants.

The function of cervine (deer) mononuclear phagocytes is poorly defined. In the present study, the potential of cervine macrophages to generate phagocytic and immunoregulatory responses following stimulation with bacterial products was investigated. Blood-derived macrophages of red deer were cultured in vitro with particulate stimulants (Mycobacterium bovis BCG and Staphylococcus aureus SAC) or soluble stimulants (M. bovis PPD and Escherichia coli LPS), prior to assessment of phagocytic responses, prostaglandin secretion and cytokine production. Particulate stimulants induced vigorous phagocytic responses (superoxide anion generation, lysosomal enzyme release), secretion of prostaglandin E2 and transcription of mRNA specific for the cytokines IL-1 beta, IL-10 and TNF alpha, while soluble products invoked weaker responses. These results are discussed in relation to the role of cervine mononuclear phagocytes in regulating and participating in inflammatory and immune processes relevant to bacterial challenge.

Animals↗