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Biomedical subjects

M Niimi

Publications and source records attributed to M Niimi.

At least 55 records · Page 3Linked to original sources

Mechanisms of fluconazole resistance in Candida albicans isolates from Japanese AIDS patients.

Four Candida albicans isolates, TIMM 3163, TIMM 3164, TIMM 3165 and TIMM 3166, with reduced fluconazole susceptibility were obtained from three AIDS patients in Japan, and the mechanisms of their drug resistance were studied. All isolates showed lower levels of intracellular accumulation of fluconazole than ATCC 10231, a susceptible control strain of C. albicans. Increased amounts of CDR1 and CDR2 mRNA encoding putative ATP binding cassette (ABC) transporters were associated with the azole resistance of all TIMM isolates, apart from TIMM 3164. In addition, increased Cdr1p levels were immunodetected in the cell membrane fractions of all the TIMM strains except for TIMM 3164. Gene amplification was not responsible for CDR1 overexpression and there were no significant differences in the mRNA levels of CDR3 or CDR4 (ABC transporters) in the azole-susceptible and -resistant cells. CaMDR1 (a major facilitator superfamily) gene expression was not observed in any of the resistant isolates or the control strain. These results suggest that energy-dependent drug efflux associated with increased expression of CDR1 and CDR2 is involved in the fluconazole resistance mechanisms in two of the four isolates, TIMM 3165 and TIMM 3166. TIMM 3164 demonstrated energy-dependent drug efflux without overexpression of CDR1-4 or CaMDR1, indicating that some other pump may be operating. Despite showing low levels of drug efflux and overexpression of CDR1 and CDR2, efflux in TIMM 3163 was not energy dependent, suggesting that the expressed Cdr1p non-functional Cdr1p and that other resistance mechanisms may operate in this strain.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Functional expression of Candida albicans drug efflux pump Cdr1p in a Saccharomyces cerevisiae strain deficient in membrane transporters.

Analysis of the transport functions of individual Candida albicans plasma membrane drug efflux pumps is hampered by the multitude of endogenous transporters. We have stably expressed C. albicans Cdr1p, the major pump implicated in multiple-drug-resistance phenotypes, from the genomic PDR5 locus in a Saccharomyces cerevisiae mutant (AD1-8u(-)) from which seven major transporters of the ATP-binding cassette (ABC) family have been deleted. High-level expression of Cdr1p, under the control of the S. cerevisiae PDR5 promoter and driven by S. cerevisiae Pdr1p transcriptional regulator mutation pdr1-3, was demonstrated by increased levels of mRNA transcription, increased levels of nucleoside triphosphatase activity, and immunodetection in plasma membrane fractions. S. cerevisiae AD1-8u(-) was hypersensitive to azole antifungals (the MICs at which 80% of cells were inhibited [MIC(80)s] were 0.625 microg/ml for fluconazole, <0.016 microg/ml for ketoconazole, and <0.016 microg/ml for itraconazole), whereas the strain (AD1002) that overexpressed C. albicans Cdr1p was resistant to azoles (MIC(80)s of fluconazole, ketoconazole, and itraconazole, 30, 0.5, and 4 microg/ml, respectively). Drug resistance correlated with energy-dependent drug efflux. AD1002 demonstrated resistance to a variety of structurally unrelated chemicals which are potential drug pump substrates. The controlled overexpression of C. albicans Cdr1p in an S. cerevisiae background deficient in other pumps allows the functional analysis of pumping specificity and mechanisms of a major ABC transporter involved in drug efflux from an important human pathogen.

Acid Anhydride Hydrolases↗

Neuropeptide Y in central control of feeding and interactions with orexin and leptin.

Neuropeptide (NPY) increases feeding when injected into the brain. In this study, we tested the hypothesis that its action might be related to feeding regulation of the orexin and leptin systems in rats. Intracerebroventricular administration of NPY (1 nmol/5 microL) stimulated feeding in rats. Injection of an antibody to orexin-A inhibited feeding, suggesting that endogenous orexin exerts a stimulatory tone on feeding. Intracerebroventricular injection of orexin antiserum before injection of NPY significantly attenuated the feeding response to NPY. On the other hand, ip pretreatment with leptin (2 mg/kg) significantly decreased food intake and inhibited NPY-induced feeding. We then examined whether orexin-containing neurons are activated under the stimulation of feeding in response to intracerebroventricular NPY or suppression of feeding in response to ip leptin, using Fos-like immunoreactivity (FLI) as a marker of neural activation. We observed that FLI was induced in the paraventricular, supraoptic, and dorsomedial nuclei as well as the lateral hypothalamic area (LHA) following administration of NPY. Double staining with anti-Fos and antiorexin antibodies revealed that 23.4% of the orexin-containing neurons in the LHA expressed FLI after NPY injection. Approximately 7.8% of the orexin-positive neurons in the LHA coexpressed Fos after leptin plus NPY. Our data indicate that a functional interaction among NPY, orexin, and leptin exists that may contribute to the central regulation of appetite.

Animals↗

Central administration of neuromedin U activates neurons in ventrobasal hypothalamus and brainstem.

Neuromedin U (NMU) is a peptide isolated from the porcine spinal cord. Recently, two receptors for NMU have been identified and characterized. A recent study indicated that NMU is an anorectic chemical in the brain. The present study shows that NMU has an action in the brain to inhibit food intake in rats. Intracerebroventricular injection of NMU inhibited dark-phase feeding. Animals injected with NMU showed a strong increase in Fos-immunoreactive nuclei in the paraventricular nucleus (PVN) and supraoptic nucleus (SON) of the hypothalamus, and in the parabrachial nucleus of the brain stem. Double immunohistochemistry revealed that a high number of oxytocin-immunoreactive neurons in the PVN and SON contained Fos after intracerebroventricular injection of NMU. In addition, a small proportion of vasopressinergic cells within the PVN and SON were found to contain Fos. The effect of NMU on the hypothalamus and brain stem contributes to the inhibitory effects of NMU on feeding behavior.

Animals↗

Cavernous angioma of the corpus callosum mimicking an astrocytic tumor--case report.

A 49-year-old female presented with a mass at the genu of corpus callosum manifesting as vertiginous sensation persisting for a couple of months. The preoperative diagnosis based on neuroimaging was astrocytic tumor, probably an oligodendroglioma. The mass was totally excised through a left interhemispheric approach without postoperative neurological deficits. Histological examination of the mass revealed only vascular components with tiny hemorrhage, compatible with cavernous angioma. Cavernous angioma at the genu of corpus callosum is very rare, and definitive diagnosis can be achieved only through surgery. Surgical intervention should be considered before starting radiotherapy without histological confirmation.

Corpus Callosum↗

[The role of anorectic and orexigenic peptides(CART, NPY etc)].

Leptin inhibits food intake and increase energy expenditure via an interaction with specific leptin receptors located in the hypothalamus. Leptin receptors have been identified in cocaine and amphetamine-regulated transcript(CART), neuropeptide Y(NPY), galanin-containing neurons of the arcuate nucleus, respectively, and in corticotropin-releasing hormone(CRH)-containing neurons of the paraventricular nucleus, suggesting that these peptides are mediators of leptin's action in the hypothalamus. Anabolic pathways such as those including NPY and galanin promote feeding and are inhibited by leptin, whereas catabolic pathways which include CART and CRH have the opposite effect and are stimulated by leptin. In the current review we examine the significant role of the CART, CRH, NPY and galanin in the regulation of energy balance.

Animals↗

Nondepleting anti-CD4 monoclonal antibody enhances the ability of oral alloantigen delivery to induce indefinite survival of cardiac allografts: oral tolerance to alloantigen.

BACKGROUND: We examined whether oral administration of alloantigen could induce the prolonged survival of cardiac allografts. METHODS: Hearts from CBK (H2k+Kb) transgenic or (C57BL/10xCBA)F1 (H2bxH2k) mice were transplanted into CBA (H2k) recipients pretreated orally with 1 x 10(7) donor splenocytes in the presence or absence of a nondepleting anti-CD4 (YTS 177, 200 microg/dose). RESULTS: Modest prolongation of CBK cardiac grafts was induced in CBA mice fed with multiple doses of CBK splenocytes (MST 42 days compared with controls fed with syngeneic CBA splenocytes, 12 days). When the CD4 monoclonal antibody, YTS177, was administered for 2 days before the first oral delivery of CBK splenocytes, all mice accepted their grafts indefinitely (MST > 100 days versus mice treated with anti-CD4 alone, 11.5 days). To determine if feeding multiple doses of alloantigen was essential, CBA mice were given CBK splenocytes orally on a single occasion in combination with the anti-CD4. The majority of the grafts survived indefinitely (MST >100 days). This oral treatment regimen also induced indefinite prolongation of (C57BL/10xCBA)F1 cardiac grafts. CONCLUSION: The induction of unresponsiveness by oral administration of alloantigen can be augmented by a nondepleting anti-CD4, YTS177, when given before the first oral delivery of allogeneic cells.

Administration, Oral↗

Visualization of the in vivo generation of donor antigen-specific effector CD8+ T cells during mouse cardiac allograft rejection: in vivo effector CD8+ T cell generation during allograft rejection.

BACKGROUND: An adoptive transfer system was used to study the fate of alloreactive CD8+ H-2Kb-specific TCR transgenic (DES+) T cells in vivo after transplantation. METHODS: A trace population of 2.0x10(6) CD8+DES+ T cells were adoptively transferred into syngeneic CBA.Ca (H-2k) mice 24 hr before transplantation of an H-2Kb+ or H-2Kb- cardiac allograft. RESULTS: H-2Kb specific T cells proliferated and produced interleukin-2 and interferon-gamma in response to H-2Kb+, but not H-2Kb- cardiac allografts. CD8+DES+ T cells that infiltrated the H-2Kb+ cardiac allografts developed a distinct cell surface and cytokine phenotype compared with the CD8+DES+ T cells that remained in the periphery. H-2Kb-specific graft infiltrating T cells (a) underwent a larger number of cell divisions (> =3), (b) increased in size, (c) up-regulated CD69, and (d) down-regulated CD62L. CONCLUSIONS: These results demonstrate that alloantigen-specific T cells can be monitored in vivo during the immune response to an allograft and that the fate of CD8+ T cells specific for the allogeneic class I molecules expressed by the graft is different between cells in the periphery and those that infiltrate the graft.

Adoptive Transfer↗

The importance of H2 haplotype sharing in the induction of specific unresponsiveness by pretransplant blood transfusions.

BACKGROUND: The beneficial effect on graft survival achieved by pretransplant blood transfusions is well established. Previous studies have shown that the degree of major histocompatibility complex (MHC) (mis)-match between the transfusion donor and the recipient plays a determining role. However, other factors are also involved. In this study, we explored the hypothesis that, in addition to sharing of MHC antigens between the transfusion donor and the recipient, the MHC type of the organ donor is also of importance. METHODS: To mimic the human situation, F1 mice, rather than inbred strains, were pretreated with haplotype-shared allogeneic whole blood transfusions and transplanted with hearts of organ donors with different matched or mismatched H2 haplotypes. RESULTS: When a heart was transplanted 1 week after donor-specific transfusion (DST; blood transfusion donor=organ donor), an excellent prolongation of graft survival was obtained (median survival time: 77 days vs. 9 days in untreated mice). However, this was only the case when a haplotype was shared with the recipient; a DST given with no match between organ donor (=BT donor) and recipient did not induce any prolongation. Furthermore, in order to obtain the optimal beneficial effect of a haplotype-shared blood transfusion, the other haplotype of the transfusion donor had to be mismatched with the recipient. The immunogenetic studies showed that haplotype-shared blood transfusions in combinations where the H2 type of the organ donor differed from that of the transfusion donor are less efficient in inducing prolongation of graft survival. CONCLUSIONS: These results demonstrate that haplotype-shared blood transfusions can induce a significantly prolonged survival of cardiac allografts in F1 mice. The immunogenetic studies suggest that presentation of alloantigen-derived peptides in the context of self MHC (the indirect pathway of allorecognition) is essential for the beneficial effect of haplotype-shared blood transfusions.

Animals↗

Immature dendritic cells generated with low doses of GM-CSF in the absence of IL-4 are maturation resistant and prolong allograft survival in vivo.

Dendritic cells (DC) were cultured from mouse bone marrow (BM) progenitors in low concentrations of granulocyte-macrophage colony-stimulating factor (GM-CSF) (GM(lo) DC) by two different protocols. The phenotype and functional properties of these GM(lo) DC were compared to those of standard BM-DC cultures generated in high concentrations of GM-CSF (GM(hi) DC) or in low GM-CSF plus IL-4 (GM(lo)/IL-4 DC). An effect of IL-4 on maturation was observed only at low but not high doses of GM-CSF. Compared to mature DC, GM(lo) DC were phenotypically immature, weak stimulators of allogeneic and peptide-specific T cell responses, but substantially more potent in presentation of native protein. Immature GM(lo) DC were resistant to maturation by lipopolysaccharide, TNF-alpha or anti-CD40 monoclonal antibodies, as the expression of co-stimulatory molecules was not increased, and stimulatory activity in oxidative mitogenesis was not enhanced. These maturation-resistant immature GM(lo) DC induced T cell unresponsiveness in vitro and in vivo. GM(lo) DC also prolonged haplotype-specific cardiac allograft survival (from 8 days to >100 days median survival time) when they were administered 7 days (but not 3, 14 or 28 days) before transplantation. Our findings may have important implications for future studies in T cell tolerance induction in vivo.

Adoptive Transfer↗

Vascular anatomy of gracilis muscle: arterial findings to enhance graciloplasty.

Dynamic graciloplasty has recently been developed for reconstruction of anal function in patients who are fecally incontinent in preference to permanent abdominal colostomy. Since the muscular portion of gracilis is wrapped around the neoanus, the length of the gracilis arc influences the functional outcome of graciloplasty. Although dissection of the main pedicle (i.e. the main artery and vein) can facilitate gracilis to have enough muscle arc, it has been unclear whether there are any vessels proximal to the main pedicle or through the origin of the muscle which could support blood flow into the whole of gracilis. In this study, the vascular anatomy of gracilis in both legs of 26 Japanese cadavers was examined. All muscles had a main pedicle, mean maximum diameter 1.08 mm, entering at the proximal one-third of the muscle. However, only 18 muscles (34.6%) had an accessory artery in the proximal portion in addition to the main pedicle. Some arteries always exist at the origin of the muscle, having a mean maximum diameter of 0.34 mm, suggesting that they might be able to support the whole gracilis without supply from the main pedicle.

Female↗