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Biomedical subjects

A Nakane

Publications and source records attributed to A Nakane.

At least 37 records · Page 2Linked to original sources

Tumour necrosis factor and interferon-gamma are required in host resistance against virulent Rhodococcus equi infection in mice: cytokine production depends on the virulence levels of R. equi.

Rhodococcus equi is a facultative intracellular bacterial pathogen that causes pneumonia in foals and immunosuppressed humans. There are at least three virulence levels of R. equi and these pathogenicities are associated, in mice, with the presence of virulence plasmids. This study focused on cytokine secretion, in mice, in the course of a primary infection with sublethal doses of R. equi strains of different virulence levels (virulent, intermediately virulent and avirulent). Tumour necrosis factor (TNF) and interferon-gamma (IFN-gamma), but not interleukin-4 (IL-4) and interleukin-10 (IL-10), were induced endogenously in mice in relation to the multiplication and clearance of virulent and intermediately virulent strains of R. equi. These cytokines were not detected in mice infected with avirulent R. equi. Deaths occurred among mice treated with monoclonal antibodies (mAbs) against either TNF or IFN-gamma prior to sublethal dose infection with virulent and intermediately virulent strains of R. equi, but not with avirulent R. equi. These results suggested that cytokine production depended largely on the virulence levels of R. equi: TNF and IFN-gamma were required early during infection with virulent R. equi to limit replication and clearance of bacteria within the organs, but they were not necessary for limiting infection with avirulent R. equi.

Actinomycetales Infections↗

Complement receptor type 3 plays an important role in development of protective immunity to primary and secondary Corynebacterium pseudotuberculosis infection in mice.

The present study was performed to investigate the role of CR3, the type 3 complement receptor, in host defense against primary and secondary Corynebacterium (C.) pseudotuberculosis infection in mice. Treatment of mice with 5C6, an anti-CR3 monoclonal antibody (mAb), resulted in unrestricted multiplication of bacteria in the organs and dramatically increased mortalities of the infected mice. Histological examinations showed the inflammation, degeneration and necrosis of organs and revealed that the infection-enhancing effect of 5C6 mAb was associated with the failure of mice to focus mononuclear phagocytes at sites of bacterial multiplication. These results suggest that CR3 plays an important role in host defense against primary as well as secondary C. pseudotuberculosis infection in mice.

Animals↗

Tumor necrosis factor alpha and gamma interferon are required for the development of protective immunity to secondary Corynebacterium pseudotuberculosis infection in mice.

The production and role of endogenous cytokines during the course of secondary Corynebacterium (C.) pseudotuberculosis infection were investigated in mice. When immunized mice were challenged on day 28 after primary infection, tumor necrosis factor alpha (TNF-alpha) and interferon gamma (IFN-gamma) were found to appear at 3 hr and to reach the maximum at 24 hr after challenge. Spleen cells of mice primarily infected from 2 to 8 weeks before produced a significant amount of TNF-alpha and IFN-gamma when stimulated with formalin-killed bacteria. However, they could not produce detectable amounts of IL-4. The administration of anti-TNF-alpha monoclonal antibody (MAb) and IFN-gamma MAb increased bacterial proliferation in the organs of immune mice and exacerbated the secondary infection. Injection of anti-CD4 MAb alone or anti-CD4 plus anti-CD8 MAbs resulted in significantly increased mortality and a marked suppression of bacterial elimination as well as cytokine production of secondarily infected mice, while the treatment with anti-CD8 MAb alone showed no effect on either the resistance or cytokine production of mice. These results suggest that CD4, probably Th1 T cells, play an important role for establishment of protective immunity against secondary C. pseudotuberculosis infection by secreting TNF-alpha and IFN-gamma.

Animals↗

Host resistance against Listeria monocytogenes is reciprocal during the course of infection in alymphoplastic aly mutant mice.

The aly is a unique spontaneous autosomal recessive mutation in mice that causes a systemic defect of lymph nodes and Peyer's patches. We investigated host resistance against Listeria monocytogenes infection in the mutant. The 50% lethal dose of L. monocytogenes in aly/aly mice was 10-fold higher than their heterozygotes, termed aly/+mice, or their wild-type C57BL/6 mice. The bacterial growth in the spleens and livers of aly/aly mice was more efficient early in infection, and their listericidal activity of peritoneal macrophages was higher than those of aly/+mice. In contrast, the complete elimination of bacteria from the spleens and livers of infected mice in the late stage of infection, in which a T-cell-dependent mechanism is required, was delayed in the aly/aly mice. Moreover, an acquired resistance against secondary infection with L. monocytogenes was markedly diminished in the aly/aly mice. The production of endogenous interferon-gamma (IFN-gamma) and tumor necrosis factor-alpha (TNF-alpha), which are critical in antilisterial resistance, was reduced in the aly/aly mice during the infection. The production of IFN-gamma, and interleukin-4 was also diminished in the spleen cell cultures of aly/aly mice when stimulated with heat-killed L. monocytogenes or the T-cell receptors were directly stimulated with anti-CD3-epsilon monoclonal antibody. These results suggest that acquired immunity against L. monocytogenes infection is attenuated in aly/aly mice, and that the insufficient production of IFN-gamma and TNF-alpha might be involved in the immunodeficiency.

Animals↗

Cytotoxic effect of endodontic bacteria on periapical fibroblasts.

This study was conducted to investigate the effects of sonicated bacterial extracts (SBEs) from anaerobic Gram-negative bacteria on periapical fibroblast obtained from the apical portion of human periodontal ligaments. Porphyromonas endodontalis, Porphyromonas gingivalis, Prevotella intermedia, and Fusobacterium nucleatum were chosen from among the endodontic bacteria isolated from root canals having a periapical lesion and compared in terms of their cytotoxicity. The purpose of this study was to examine which bacteria are involved in the development of periapical inflammation. The anaerobes were cultured under strict anaerobic conditions, and the bacterial cells were then harvested by centrifugation after incubation. The concentrated cell suspensions were sonicated and subsequently centrifuged. An SBE was made of each of the filtered supernatants. Each SBE was added to cultures of periapical fibroblasts. The cell growth and proliferation were measured by the MTT method after 3, 5, and 7 days. The SBEs from P. endodontalis, P. gingivalis, and F. nucleatum inhibited the growth of the fibroblasts, whereas the SBE from P. intermedia did not inhibit it. The SBEs from P. gingivalis and F. nucleatum inhibited the fibroblast growth more strongly than did the P. endodontalis, P. gingivalis, and F. nucleatum may participate in the development of periapical lesions.

Bacterial Proteins↗

Systemic dissemination by intrarectal infection with Listeria monocytogenes in mice.

Orally ingested Listeria monocytogenes is known to penetrate into Peyer's patches (PP) and translocate to the spleen and liver. Herein, extraintestinal dissemination of the bacterium independent of PP was investigated. Dissemination of Listeriae to the spleen and liver was observed in intrarectally infected mice as well as in intragastrically infected animals in spite that no Listeriae were detected in the small intestines of mice infected intrarectally. Decreased numbers of intestinal intraepithelial lymphocytes (iIEL) and increased numbers of lymphocytes in the contents of the small and large intestines were observed after intragastric infection and in the large intestine after intrarectal infection, giving the assumption that the leakage of iIEL caused by injury of epithelial layers in intestines might occur during infection. These results suggest that L. monocytogenes might be able to disseminate through small and large intestines in part by a PP-independent mechanism.

Animals↗

Role of endogenous tumor necrosis factor alpha and gamma interferon in resistance to Corynebacterium pseudotuberculosis infection in mice.

The production and roles of endogenous tumor necrosis factor alpha (TNF-alpha) and gamma interferon (IFN-gamma) in the infection of Corynebacterium (C.) pseudotuberculosis were investigated in mice. The maximum levels of TNF-alpha and IFN-gamma were detected on day 4 after infection. The administration of anti-TNF-alpha monoclonal antibody (mAb) as well as anti-IFN-gamma mAb increased bacterial proliferation in the organs, leading to the death of infected mice, but anti-IFN-gamma mAb showed a less marked effect than anti-TNF-alpha mAb. The suppressive effect of anti-TNF-alpha and anti-IFN-gamma mAbs on anticorynebacterial resistance was augmented by the simultaneous administration of these antibodies. Anti-TNF-alpha mAb was found to be highly effective when administered on day 0 and day 4, suggesting that TNF-alpha produced during the early stage of infection is critical for the generation of resistance. Histologically, many microabscesses, severe follicular swelling and lymphocyte destruction were observed in mice treated with anti-TNF-alpha or anti-IFN-gamma mAb. Injection of anti-CD4 or anti-CD8 mAb also resulted in significantly increased mortality and a marked suppression of IFN-gamma production, but had no effect on TNF-alpha production. Carrageenan also showed a marked effect on the exacerbation of infection. Taken together, these results suggest that endogenously produced TNF-alpha and IFN-gamma are both essential to the host defense against C. pseudotuberculosis infection and that these cytokines may have an additive effect.

Animals↗

Neuropeptides in the livers of mice during bacterial infections.

Neuropeptides such as substance P (SP) and vasoactive intestinal peptide (VIP) are known to act as immunomodulators. We investigated the induction of SP and VIP in the livers of mice infected with Listeria monocytogenes or injected with Tsukamurella paurometabolum. VIP was detected in the livers of mice after L. monocytogenes infection by an immunohistochemical technique and preproVIP mRNA, which was detected by reverse transcription-polymerase chain reaction (PCR), was induced post infection. However, no SP was detected. In contrast, SP, but not VIP was detected within granulomas in the livers of T. paurometabolum-injected mice, suggesting VIP and SP might be selectively induced in the liver by different bacterial infections.

Actinomycetales↗

Protective role of nitric oxide in Staphylococcus aureus infection in mice.

This study was carried out to determine the role of nitric oxide (NO) in Staphylococcus aureus infection in mice. NO production in spleen cell cultures was induced by heat-killed S. aureus. Expression of mRNA of the inducible isoform of NO synthase (iNOS) was induced in the spleens and kidneys of S. aureus-infected mice. When mice were treated with monoclonal antibodies (MAbs) against tumor necrosis factor alpha (TNF-alpha) or gamma interferon (IFN-gamma) before S. aureus infection, the induction of iNOS mRNA expression in the kidneys was inhibited. These MAbs also inhibited NO production in spleen cell cultures stimulated with heat-killed S. aureus. NO production in the spleen cell cultures and levels of urinary nitrate plus nitrite were suppressed by treatment with aminoguanidine (AG), a selective inhibitor of iNOS. The survival rates of AG-treated mice were significantly decreased by either lethal or sublethal S. aureus infections. However, an effect of AG administration on bacterial growth was not observed in the spleens and kidneys of mice during either type of infection. Production of TNF-alpha and IFN-gamma was not affected by AG treatment in vitro and in vivo. These results suggest that NO plays an important role in protection from lethality by the infection, but the protective role of NO in host resistance against S. aureus infection was not proved. Moreover, our results show that TNF-alpha and IFN-gamma regulate NO production while NO may not be involved in the regulation of the production of these cytokines during S. aureus infection.

Animals↗

Epitope analysis of staphylococcal enterotoxin A using different synthetic peptides.

The antigenic determinants (or epitopes) of staphylococcal enterotoxin A (SEA) were analyzed using synthetic peptides and rabbit antibodies to their corresponding peptides. Of 12 different synthetic peptides tested, peptides A-1 (corresponding to the amino acid sequence 1-20), A-5 (81-100), and A-8 (141-160) were reactive with anti-SEA antibodies. However, all synthetic peptides were found to elicit antibodies reactive with native SEA molecule. These findings suggest that native SEA molecule contains at least 3 different antigenic determinants.

Animals↗

Induction of LIF-mRNA by TGF-beta 1 in Schwann cells.

Schwann cell is a cell type that forms myelin sheath and provides trophic supports for neuronal cells by producing neurotrophic factors such as neurotrophins and neurokines in both normal and traumatic situations. It was recently reported that after lesion of sciatic nerve, mRNA for cholinergic differentiation factor (CDF)/leukemia inhibitory factor (LIF) is induced in nonneuronal cells in the nerve. However, the source of LIF-mRNA and the mechanism of LIF-mRNA regulation have remained largely unknown. In the present study, we searched for factors regulating the LIF-mRNA expression in cultured Schwann cells isolated from newborn rat sciatic nerve. Among various growth factors and cytokines tested, TGF beta-1 exerted the most prominent effect on the induction of LIF-mRNA in the cultured Schwann cells. The effect of TGF-beta 1 on the increase of LIF-mRNA levels was suppressed by either staurosporine or H-7 suggesting the role of PKC or PKC-like protein kinase activity in the induction of LIF-mRNA. The induction of LIF mRNA by TGF-beta 1 was suppressed in the co-culture of the Schwann cells with embryonic rat DRG neurons. The addition of ascorbic acid, which is known to promote myelination in this co-culture system, further suppressed the TGF-beta 1 induction of LIF-mRNA. These results suggest that Schwann cells respond to TGF-beta 1 in a lesion situation to produce LIF, which supports neuronal survival and regeneration. The re-establishment of neuron-Schwann cell interaction would in turn suppress the LIF production to terminate its action during the lesion situation.

Age Factors↗

Macrophage antigen-1 positive cells are essential in the defense against Theiler's virus strain GD VII infection in the spinal cord.

Acute encephalomyelitis caused by Theiler's virus strain GD VII resembles human poliomyelitis, and T cells are essential in eliminating the virus from the brain, though not from the spinal cord. We speculated that macrophage-lineage cells might play a crucial role in eliminating the virus from the spinal cord. To analyse the role of macrophage-lineage cells in the infection, antibodies specific for beta2 integrin, as well as an anti-leukocyte function antigen 1 (LFA-1) monoclonal antibody (MAb) and an anti-complement receptor type 3 (CR3) MAb were used to deplete the corresponding cell populations in Theiler's virus-infected mice. Infiltration of CD8+ T cells into the brain and spinal cord was inhibited by the administration of the anti-LFA-1 MAb, and viral replication was augmented only in the brain. The number of CD4+ T cells and macrophage antigen-1 (Mac-1[+]) cells in the brain and spinal cord were not decreased by anti-LFA-1 MAb treatment. Anti-CR3 MAb treatment led to decrease of Mac-1(+) cells in the brain and spinal cord. The viral replication in the spinal cord of anti-CR3 MAb treated mice was augmented, but not that in the brain. These results indicate that the defense mechanism against Theiler's virus strain GD VII is dependent on Mac-1(+) cells in the spinal cord.

Animals↗

Virulent and avirulent Rhodococcus equi infection in T-cell deficient athymic nude mice: pathologic, bacteriologic and immunologic responses.

We investigated the pathologic, bacteriologic and immunologic responses of BALB/c-nu/nu mice (nude mice) and BALB/c mice (euthymic mice) infected intravenously with virulent and avirulent Rhodococcus equi ATCC 33701, and its plasmid-cured derivative ATCC 33701P-, to evaluate the role of T lymphocytes. Adaptive transfer of immune and normal spleen cells into nude mice was also investigated. Nude and euthymic mice were inoculated with 10(6) ATCC 33701 or 10(6) ATCC 33701P- intravenously (i.v.) and killed at 0, 7, 14, 21, 28 and 35 days post-inoculation, except dead cases. In athymic nude mice infected with ATCC 33701, deteriorating systemic inflammatory responses developed during the experimental period and multiplication of the bacteria continued until the end of the experiment. Nude mice developed splenomegaly and multifocal gross hepatic necrosis with some mortality. Splenomegaly was caused by diffuse proliferation of bacteria-laden macrophages and epithelioid cells, and gross hepatic necrosis was caused by the formation of thromboses and granulomatous lesions. Infection of euthymic mice with a sublethal dose of ATCC 33701 resulted in transient granuloma formation in the liver and spleen, production of specific antibodies against the virulent bacteria and gradual elimination thereof. In contrast, infection with ATCC 33701P- produced few lesions after rapid elimination and no antibody production against bacteria in either normal or athymic nude mice. In nude mice given normal and immune spleen cells, histopathological lesions and granulomas formed only in the liver and spleen, in addition to specific antibodies against 15- to 17-kDa antigens. The pathological lesions observed in the nude mice given immune spleen cells were similar to those seen in the mice given normal spleen cells, but they were less severe than those in mice given normal spleen cells. Mice given immune spleen cells showed a significantly higher elevation of antibody production than mice given normal spleen cells. These results suggested that protection against virulent R. equi in mice depends mainly on cell-mediated immune responses, whereas avirulent R. equi in mice are cleared by innate immune responses.

Actinomycetales Infections↗

The protective role of endogenous cytokines in host resistance against an intragastric infection with Listeria monocytogenes in mice.

It has been demonstrated that endogenous cytokines including gamma-interferon (IFN-gamma), tumour necrosis factor-alpha (TNF-alpha), and interleukin-6 (IL-6) play a protective role but that IL-4 plays a detrimental role in systemic Listeria monocytogenes infection in mice. The diverse roles of IL-10 have been reported in antilisterial resistance. In this paper, we studied the role of endogenous cytokines in host resistance against an intragastric infection with L. monocytogenes in mice. The expression of cytokine mRNAs including IFN-gamma, TNF-alpha, IL-4, IL-6, or IL-10, which were amplified by reverse transcription-PCR, was observed in intestinal intraepithelial lymphocytes irrespective of L. monocytogenes infection. Increased numbers of L. monocytogenes were detected in the ileal contents of infected mice which received monoclonal antibodies (mAbs) against IFN-gamma, TNF-alpha, IL-4, IL-6, or IL-10. By contrast, mAbs against IL-4 or IL-6 showed little effect on the growth of L. monocytogenes in the mesenteric lymph nodes (MLNs), spleen, and liver, but anti-IFN-gamma mAb and anti-TNF-alpha mAb suppressed the defense in these organs. Anti-IL-10 mAb enhanced bacterial elimination from the MLNs but not from the spleen or liver. These results suggest that the role of endogenous cytokines may differ between systemic and intestinal defenses.

Animals↗

Cytokines in the serum and brain in mice infected with distinct species of Lyme disease Borrelia.

This study describes the detection of cytokines, interleukin-1 alpha (IL-1 alpha), tumor necrosis-factor alpha (TNF alpha) and interleukin-6 (IL-6) in the serum and brain homogenates of susceptible and resistant strains of mice infected with distinct species/strains of Borrelia. Significant elevation of inflammatory cytokines was found in the sera of susceptible C3H/ HeN mice but not in the sera of resistant BALB/c mice on days 7 and 45 after inoculation. Brain cytokines were observed in C3H/HeN mice infected with B. garinii and B. afzelii and the production was associated with the presence of spirochetes. B. japonica was the only exception in disease-susceptibility and cytokine production of mice. These results suggest that there are differences in pathogenic potential amongst Borrelia strains, and that the susceptible mice demonstrate a stronger cytokine response and greater frequency of recovery of Borrelia from the brain than do the resistant mice.

Animals↗

Reciprocal action of interferon-gamma and interleukin-4 promotes granulomatous inflammation induced by Rhodococcus aurantiacus in mice.

An intravenous injection of Rhodococcus aurantiacus to mice causes granulomatous inflammation dependent on endogenous interferon-gamma (IFN-gamma). The present study examined the role of endogenous interleukin-4 (IL-4) on granulomatous inflammation. Endogenous IL-4 in the spleen extracts was not detected during the phase of granuloma formation by enzyme-linked immunosorbent assay (ELISA). However, IL-4 protein level was elevated during the phase of granuloma regression. IL-4 mRNA expression in the livers and spleens was also elevated during the phase of granuloma regression. In addition, IL-4 levels during the phase of granuloma formation were increased by treatment with anti-IFN-gamma monoclonal antibody (mAb), suggesting that endogenous IFN-gamma might inhibit IL-4 production during the phase of granuloma formation. Administration of anti-IL-4 mAb on weeks 3 and 4 after the inoculation inhibited the regression of granulomas and augumented IFN-gamma level at 5 weeks. Endogenous IFN-gamma was produced by CD4+ T cells during the phase of granuloma regression and endogenous IL-4 was produced by both CD4+ and CD8+ T cells. These findings suggest that during the phase of granuloma formation endogenous IL-4 might be inhibited by IFN-gamma, while during the phase of granuloma regression endogenous IL-4 might play a crucial role in the reduction of granulomas and IFN-gamma production.

Actinomycetales Infections↗

Endogenous interleukin-4, but not interleukin-10, is involved in suppression of host resistance against Listeria monocytogenes infection in interferon-depleted mice.

The production and roles of endogenous interleukin-4 (IL-4) and IL-10 in a sublethal infection with Listeria monocytogenes were studies in normal mice and anti-gamma interferon (IFN-gamma) monoclonal antibody (MAb)-pretreated mice. In normal mice, the expression of mRNAs for IL-4 and IL-10, which was amplified by reverse transcription-PCR, was induced in the spleens and livers either early or late in infection, although the serum IL-4 and IL-10 were not detectable by enzyme-linked immunosorbent assays. In vivo administration of anti-IL-4 MAb showed no effect on antilisterial resistance, whereas anti-IL-10 MAb partially diminished the defense. In anti-IFN-gamma MAb-pretreated mice, a delay in the bacterial elimination from the spleens and livers was observed and high titers of serum IL-4 and IL-10 were induced late in infection. Production of endogenous IL-4 and IL-10 was suppressed in both CD4+ cell-and CD8+ cell depleted mice. The suppression of antilisterial resistance in anti-IFN-gamma MAb-pretreated mice was canceled when anti-IL-4 MAb was injected late in infection, whereas anti-IL-10 MAb showed no effect. These results suggest that the host immune responses were polarized into the T-helper 2 phenotype in anti-IFN-gamma MAb-pretreated mice and that inhibition of host resistance against L. monocytogenes by depletion of IFN-gamma might be attributable to IL-4 produced by T cells polarized into the T-helper 2 phenotype as well as the inhibition of the IFN-gamma effects.

Animals↗

Transforming growth factor beta is protective in host resistance against Listeria monocytogenes infection in mice.

The role of transforming growth factor beta (TGF-beta) in host resistance against Listeria monocytogenes infection was studied with mice. The constitutive expression of TGF-beta 1 mRNA was observed in the spleens and livers of mice before and after infection. Injecting the mice with anti-TGF-beta 1 peptide serum resulted in diminished antilisterial resistance, whereas the administration of human platelet-derived TGF-beta 1 enhanced the resistance. Moreover, mice were protected against lethal infection when treated with TGF-beta 1. These results suggest the TGF-beta 1 might be involved in antilisterial resistance. On the other hand, injecting the mice with TGF-beta 1 resulted in a decrease in the titers of endogenous gamma interferon, tumor necrosis factor alpha, and interleukin-6, which are crucial in antilisterial resistance, in sera and in extracts of spleen and liver. Thus, a complicated mechanism might be involved in the role of TGF-beta 1 in host resistance against L. monocytogenes infection.

Animals↗