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Biomedical subjects

T Yoshikawa

Publications and source records attributed to T Yoshikawa.

At least 37 records · Page 2Linked to original sources

An orally active matrix metalloproteinase inhibitor, ONO-4817, reduces dextran sulfate sodium-induced colitis in mice.

OBJECTIVE: Over-expression of matrix metalloproteinases (MMPs) can accelerate tissue destruction and disrupt subsequent tissue repair. A dextran sulfate sodium (DSS) colitis model was established to examine the effects of MMP inhibition, by an orally active MMP inhibitor ONO-4847, on colonic inflammation. MATERIALS AND METHODS: Acute colitis was induced in female BALB/c mice by giving 8% DSS orally in drinking water for 7 days. The animals were randomized into groups receiving different concentrations of ONO-4847 or vehicle by oral gavage every day. mRNA levels of 4 MMPs and a tissue inhibitor of MMP (TIMP-1) were measured by RT-PCR in intestinal tissue isolated from mice after DSS administration. Colonic mucosal injury and inflammation were evaluated clinically, biochemically, and histologically. The clinical disease activity index (DAI), including body weight loss, stool consistency, and blood in feces, was examined. Moreover, mucosal tumor necrosis factor (TNF)-alpha and interferon (IFN)-gamma were determined by immunoassay. RESULTS: The intestinal expression of MMP-3, -7, 9, and -12 and TIMP-1 mRNA was upregulated after DSS administration. Shortening of the colon was significantly reversed by ONO-4847 at a dose of 30 mg/kg. DAI in DSS-treated mice was significantly lower in the ONO-4847-treated mice compared with the control mice. Histological study also showed a reduced infiltration of inflammatory cells, especially neutrophils, and reducedmucosal cell disruption in ONO-4847-treated mice compared with the control mice. The increases in tissue-associated myeloperoxidase activity and thiobarbituric acid-reactive substances after DSS administration were both significantly inhibited by co-administration with ONO-4847. ONO-4847 also inhibited increases in the mucosal TNF-alpha and IFN-gamma content after DSS administration. CONCLUSION: Improvements in DSS colitis in response to ONO-4847 suggest that activation of MMPs contributes to the initiation/amplification of colonic inflammatory injury by mechanisms including oxidative damage as well as enhancement of inflammatory cytokine release.

Administration, Oral↗

Expression of DCC and netrin-1 in normal human endometrium and its implication in endometrial carcinogenesis.

OBJECTIVE: Although DCC has been considered as a candidate tumor suppressor, the roles it plays in the uterine endometrium and in the carcinogenic process remains unclear. To define these roles more clearly, we examined the expression of DCC and its ligand, netrin-1, in the normal endometrium and in endometrial cancer. METHODS: The expression of DCC and netrin-1 in normal endometrial glands and in cancer cell lines was examined by RT-PCR and immunohistochemistry. The effects of exogenous DCC and netrin-1 expression were observed together with the respective expression vector transfection. RESULTS: Endometrial glands in the proliferative and early secretory phase expressed both DCC and netrin-1, but glands in the late-secretory phase tended to silence DCC expression. In addition, all of the endometrial cancer cell lines lost normal DCC expression. Restored DCC expression in the cancer cell lines in the absence of netrin-1 induced apoptosis. However, no changes were observed in the presence of netrin-1. CONCLUSION: Our observations suggest that DCC/netrin-1 signaling may commit cells to the transition of endometrial gland architecture or function from a proliferating to a secretory phase. In addition, the silencing of DCC expression may contribute to the escape of endometrial cancer cells from a DCC-regulated apoptotic program, thereby promoting malignant phenotypes.

Adult↗

Comprehensive expression analysis of a rat depression model.

Herein we report on a large-scale analysis of gene expression in the 'learned helplessness' (LH) rat model of human depression, using DNA microarrays. We compared gene expression in the frontal cortex (FC) and hippocampus (HPC) of untreated controls, and LH rats treated with saline (LH-S), imipramine or fluoxetine. A total of 34 and 48 transcripts were differentially expressed in the FC and HPC, respectively, between control and LH-S groups. Unexpectedly, only genes for NADH dehydrogenase and zinc transporter were altered in both the FC and HPC, suggesting limited overlap in the molecular processes from specific areas of the brain. Principal component analysis revealed that sets of upregulated metabolic enzyme genes in the FC and downregulated genes for signal transduction in the HPC can distinguish clearly between depressed and control animals, as well as explain the responsiveness to antidepressants. This comprehensive data could help to unravel the complex genetic predispositions involved in human depression.

Animals↗

Effects of growth hormone (GH) on mRNA levels of uncoupling proteins 1, 2, and 3 in brown and white adipose tissues and skeletal muscle in obese mice.

We have investigated whether GH treatment influences the expression of UCP1, 2 and 3 mRNA in a KK-Ay obese mouse model. KK-Ay mice (n = 10) and C57Bl/6J control mice (n = 10) were injected subcutaneously with human GH (1.0 mg/kg/day and 3.5 mg/kg/day) for 10 days, and compared with mice injected with physical saline. The KK-Ay obese mice weighed significantly less (p < 0.01 : 1.0 mg/kg/day, p < 0.05 : 3.5 mg/kg/day) and had smaller inguinal subcutaneous and perimetric white adipose tissue (WAT) pads (p < 0.05 : 3.5 mg/kg/day), but increased skeletal muscle weight (p < 0.05). The brown adipose tissue (BAT) weight did not change significantly. Not only plasma free fatty acid and glucose levels but also plasma insulin levels decreased. The reduced HOMA-IR (homeostasis model assessment-insulin resistance) values suggested that insulin resistance was improved by GH treatment. UCP1 mRNA levels increased after the 3.5 mg GH treatment by 2.8-fold (p < 0.01 vs. saline controls) and 2.0-fold (p < 0.05 vs. 1 mg GH treatment) in BAT, and by 6.0-fold in subcutaneous WAT (p < 0.05 vs. controls). UCP2 mRNA levels increased 2.2-fold (p < 0.05 vs. control) and 2.1-fold (p < 0.05 vs. 1 mg GH treatment) in BAT, and 2.0-fold (p < 0.05 vs. controls) in skeletal muscle. One mg GH administration also stimulated UCP1 mRNA expression by 2.5-fold (p < 0.05 vs. controls) and UCP3 mRNA expression by 2.8-fold (p < 0.05 vs. controls) in the muscle. On the other hand, lean mice showed no significant difference in body composition or plasma parameters. UCP1, 2 and 3 mRNA expression in lean mice did not show any significant change after treatment with GH. We conclude that GH treatment increased mRNA levels for not only UCP1, but also UCP 2 and 3 in BAT, WAT and muscle in a KK-Ay obese mouse model. These findings suggest that GH-induced thermogenesis may contribute to the reduction in WAT and energy expenditure.

Adipose Tissue↗

Interleukin-8 expression in the esophageal mucosa of patients with gastroesophageal reflux disease.

BACKGROUND: It has been reported that inflammatory cell infiltration can be detected in patients with endoscopically negative gastroesophageal reflux disease (GERD) as well as those with erosive reflux esophagitis. In this study, we examined the expression of mRNA for interleukin (IL)-8, a potent chemokine for neutrophils, in the esophageal mucosa of patients with GERD and compared the results with their endoscopic findings and symptoms. METHODS: Biopsy samples were obtained from 80 patients. Endoscopic diagnosis was performed according to the Los Angeles classification. Patients with typical symptoms such as heartburn despite normal endoscopic findings were classified as the non-erosive GERD group. Total cellular RNA was extracted from the biopsy samples and IL-8 mRNA was quantified by real-time polymerase chain reaction (PCR). Localization of IL-8 protein in the esophageal mucosa was done by immunostaining. RESULTS: Expression of IL-8 mRNA was correlated with the endoscopic grade of esophagitis or with inflammatory cell infiltration, but not with the symptoms of the patients. Expression of IL-8 mRNA was also detected in all patients with non-erosive GERD. The level of IL-8 expression in non-erosive GERD was low compared with that in erosive GERD, but was higher than that in normal controls. IL-8 immunostaining was found in the basal layers of the esophageal mucosa. Administration of lansoprazole, a proton-pump inhibitor, decreased both IL-8 mRNA and protein levels in the esophageal mucosa. CONCLUSION: These results suggest that IL-8 in the esophageal mucosa may be involved in the pathogenesis of esophageal inflammation, including non-erosive GERD.

Base Sequence↗

Heme oxygenase-1: a new therapeutic target for inflammatory bowel disease.

Heme oxygenase (HO) is the rate-limiting enzyme in the catabolism of heme, followed by production of biliverdin, free iron and carbon monoxide (CO). Three mammalian HO isozymes have been identified, one of which, HO-1, is a stress-responsive protein induced by various oxidative agents. HO-2 and HO-3 genes are constitutively expressed. Recent studies demonstrate that the expression of HO-1 in response to different inflammatory mediators may contribute to the resolution of inflammation and have protective effects in several organs against oxidative injury. Although the mechanism underlying the anti-inflammatory actions of HO-1 remains poorly defined, both CO and biliverdin/bilirubin have been implicated in this response. In the intestinal tract, HO-1 is shown to be transcriptionally induced in response to oxidative stress, preconditioning and acute inflammation. Recent studies suggest that the induction of HO-1 expression plays a critical protective role in intestinal damage models induced by trinitrobenzene sulphonic acid or dextran sulphate sodium, indicating that activation of HO-1 may act as an endogenous defensive mechanism to reduce inflammation and tissue injury in the intestinal tract. These in vitro and in vivo data suggest that HO-1 may be a novel therapeutic target in patients with inflammatory bowel disease.

Anti-Inflammatory Agents↗

Rosmarinic acid in perilla extract inhibits allergic inflammation induced by mite allergen, in a mouse model.

BACKGROUND: Perilla and its constituent rosmarinic acid have been suggested to have anti-allergic activity. However, few studies have examined the effects on allergic asthma. OBJECTIVE: The purpose of this study was to evaluate the effect of oral administration of perilla leaf extract, which contains high amount of rosmarinic acid, on a murine model of allergic asthma induced by house dust mite allergen. METHODS: C3H/He mice were sensitized by intratracheal administration of Dermatophagoides farinae (Der f). Mice were orally treated with rosmarinic acid in perilla extract (PE) (1.5 mg/mouse/day). RESULTS: Der f challenge of sensitized mice elicited pulmonary eosinophilic inflammation, accompanied by an increase in lung expression of IL-4 and IL-5, and eotaxin. Daily treatment with rosmarinic acid in PE significantly prevented the increases in the numbers of eosinophils in bronchoalveolar lavage fluids and also in those around murine airways. Rosmarinic acid in PE treatment also inhibited the enhanced protein expression of IL-4 and IL-5, and eotaxin in the lungs of sensitized mice. Der f challenge also enhanced allergen-specific IgG1, which were also inhibited by rosmarinic acid in PE. CONCLUSION: These results suggest that oral administration of perilla-derived rosmarinic acid is an effective intervention for allergic asthma, possibly through the amelioration of increases in cytokines, chemokines, and allergen-specific antibody.

Administration, Oral↗

Quantitative evaluation of antifungal activity of metallic oxide powders (MgO, CaO and ZnO) by an indirect conductimetric assay.

AIMS: To evaluate antifungal activities of MgO, CaO and ZnO powders quantitatively by indirect conductimetric assay. METHODS AND RESULTS: Candida albicans NBRC1060, Saccharomyces cerevisiae NBRC1950, Aspergillus niger NBRC4067 and Rhizopus stolonifer NBRC4781 were used as test micro-organisms. The indirect conductimetric assay, in which the change in electrical conductivity of an alkaline solution (NaOH) is produced by absorption of CO2 from microbial metabolism, could offer a simple and rapid evaluation of the antifungal activity within 24-48 h. The conductivity curves obtained for MgO, CaO and ZnO were analysed using the growth inhibition kinetic model proposed by Takahashi for calorimetric evaluation, and the kinetic parameters and minimum inhibitory concentration ([I]100) could be determined. MgO and CaO powders exhibited the antimicrobial activities against all fungi used in this study and showed little differences between types of fungi. However, although ZnO powder inhibited fungal growth, the values of [I]100 were over 100 mg ml-1. CONCLUSIONS: Although a common method for evaluating antifungal activity requires over 5-7 days, the indirect assay could provide a rapid and quantitative evaluation of antifungal activity within approx. 2 days, and MgO and CaO were found to have antifungal activities. SIGNIFICANCE AND IMPACT OF THE STUDY: The indirect assay can be applicable for simple and rapid evaluation of the antimicrobial activity of insoluble or slightly soluble materials with high turbidity such as antibacterial ceramic powders. Moreover, these materials can be useful for controlling fungi in food processing and the environment.

Antifungal Agents↗

Protective role of metallothionein in acute lung injury induced by bacterial endotoxin.

BACKGROUND: Metallothionein (MT) is a protein that can be induced by inflammatory mediators and participate in cytoprotection. However, its role in inflammation remains to be established. A study was undertaken to determine whether intrinsic MT protects against acute inflammatory lung injury induced by bacterial endotoxin in MT-I/II knock out (-/-) and wild type (WT) mice. METHODS: MT (-/-) and WT mice were given vehicle or lipopolysaccharide (LPS, 125 microg/kg) intratracheally and the cellular profile of the bronchoalveolar lavage (BAL) fluid, pulmonary oedema, lung histology, expression of proinflammatory molecules, and nuclear localisation of nuclear factor-kappaB (NF-kappaB) in the lung were evaluated. RESULTS: MT (-/-) mice were more susceptible than WT mice to lung inflammation, especially to lung oedema induced by intratracheal challenge with LPS. After LPS challenge, MT deficiency enhanced vacuolar degeneration of pulmonary endothelial cells and type I alveolar epithelial cells and caused focal loss of the basement membrane. LPS treatment caused no significant differences in the enhanced expression of proinflammatory cytokines and chemokines nor in the activation of the NF-kappaB pathway in the lung between the two genotypes. Lipid peroxide levels in the lungs were significantly higher in LPS treated MT (-/-) mice than in LPS treated WT mice. CONCLUSIONS: Endogenous MT protects against acute lung injury related to LPS. The effects are possibly mediated by the enhancement of pulmonary endothelial and epithelial integrity, not by the inhibition of the NF-kappaB pathway.

Animals↗

Neuro-Behçet's disease: analysis of apparent diffusion coefficients.

Little is known about the diffusion properties of brain lesions in neuro-Behçet's disease (NBD). We looked at 19 NBD lesions (13 active, six chronic) in six patients, using diffusion-weighted MRI (DWI). We calculated the apparent diffusion coefficients (ADC) of the lesions and compared them with normal contralateral brain, expressing this ratio as relative ADC (rADC). The rADC was 1.29+/-0.33 in active and 1.44+/-0.47 in chronic lesions, i.e., significantly higher than in the control regions. Increased diffusivity in both active and chronic phases in NBD is different from the pattern in ischaemic infarcts, so that ADC analysis might be helpful for differentiating between these conditions.

Adolescent↗

A new generic column switching system for quantitation in cassette dosing using LC/MS/MS.

Cassette dosing is a method in which multiple drugs are administered to a single animal at the same time, and the plasma concentrations of the individual compounds are simultaneously determined. This method enables high-throughput rapid screening for pharmacokinetic assessment of new drug candidates. An available gradient method was modified for cassette dosing analysis to attain the advantages of high sensitivity and applicability to a wide range of compounds. However, two problems arose; (1). the time-consuming optimization of mobile phases for each compound group, which limited applicability and (2). the remarkable suppression of ionization by polyethyleneglycol, which is commonly used in intravenous administration. To resolve these problems, a new column switching method was established to attain wider applicability and avoid the ionization suppression. This column switching system is very simple because the trap column and the analytical column are specified and the mobile phase is selected from only two species. Method optimization requires only the selection of the mobile phase and takes only a few hours. About 200 compounds, which were administered as about 50 cassettes, were analyzed using this column switching system. Assay validation of one cassette was carried out, and good accuracy and precision were obtained. About 90% of the compounds could be determined within 20% bias. These results showed that this new column switching system for cassette dosing is accurate enough for the screening of drug candidates and offers wide applicability for various compounds. This system was shown to be very useful for the determination of cassette dosing samples, containing multiple compounds.

Animals↗

Rapid LC-TOFMS method for identification of binding sites of covalent acylglucuronide-albumin complexes.

A method for rapid identification of binding sites of covalent adducts was developed using delta bilirubin as a model compound. Delta bilirubin, containing intact human serum albumin (HSA), was digested with trypsin and the peptide fragments were monitored at 436 nm, but no predominant peaks were detected indicating the instability of the digested peptides containing bilirubin-related compounds. Therefore, the high-performance liquid chromatography time-of-flight mass spectrometer (LC-TOFMS) data of digested fragments of delta bilirubin were compared with those of control digests of HSA, revealing a characteristic peptide in the digest mixture of delta bilirubin. This peptide was sequenced by high-performance liquid chromatography time-of-flight tandem mass spectrometry (LC-TOFMS/MS) and identified as LDELRDEGKASSAK (Leu182 to Lys195) with a modification of a 178 Da increase at Lys190. This indicated the Lys190 to be a predominant covalent binding site of BGs on HSA via the imine mechanism and the binding between the bilirubin moiety and the glucuronic acid moiety to be unstable to digestion with trypsin. The method of comparing LC-TOFMS data requires no specific detection such as fluorescence or radioactivity for every compound. This should accelerate the structure elucidation of covalent adducts and be helpful for studying the relationship between the structure of ligands and specific binding sites.

Animals↗

Oncolytic viral therapy using a spontaneously generated herpes simplex virus type 1 variant for disseminated peritoneal tumor in immunocompetent mice.

The present study demonstrates that a clonal derivative (HF10) of HSV-1 strain HF effectively treated disseminated peritoneal neoplasm in an immunocompetent animal model and that all of survived mice acquired resistance to rechallenge with tumor cells. The survival time of mice treated with HF10 was longer than that of mice treated with hrR3, indicating that the oncolytic effect of HF10 was more potent than that of hrR3 in this animal model. HF10 induces syncytia formation in vitro, whereas hrR3 forms rounded CPE. The sequential administration of HF10 gave a long term survival of more than 90 days after tumor injection, with no signs of disease, in 8 of the 9 treated mice. The results suggest that treatment of disseminated peritoneal tumor with HF10 induces a specific antitumor immune response. Genomic structure determination showed that HF10 has a deletion of 3.9-kilobase pair (kbp) in the right end of UL and UL/IRL junction, resulting in the loss of UL 56 expression. A 2.3 kbp deletion and extensive rearrangement were also observed in the left end of the genome.

Animals↗

Human herpesvirus-6 and -7 infections in transplantation.

Human herpesvirus-6 (HHV-6) and human herpesvirus-7 (HHV-7) are ubiquitous in the human population and cause exanthem subitum, a benign disease seen in infancy. The viruses remain latent in the body after primary infection, and reactivate in immunocompromised patients. HHV-6 infection occurs in nearly 50% of all bone marrow and in 20-30% of solid-organ transplant recipients, 2-3 weeks following the procedure. It has been suggested that the viral infection and activation result in clinical symptoms, including fever, skin rash, pneumonia, bone marrow suppression, encephalitis, and rejection. In order to understand the viral infection in greater detail, several studies investigating the route of viral transmission and diagnostic procedures have been carried out. In contrast to studies of HHV-6 infection in organ-transplant recipients, the number of studies examining HHV-7 infection in these patients is limited. According to several recent studies, HHV-7 may act as a cofactor for cytomegalovirus disease in organ-transplant recipients.

Bone Marrow Transplantation↗