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Biomedical subjects

F Itoh

Publications and source records attributed to F Itoh.

At least 37 records · Page 2Linked to original sources

Mucins and immune reactions to mucins in ulcerative colitis.

Ulcerative colitis (UC) is an inflammatory bowel disease of undetermined etiology. Mucins, mainly produced by goblet cells, protect colon cells from various kinds of stress. Alteration in the quality or quantity of mucins may be the cause of the disease. Another possible cause is immune reactions to colonic cells. Anti-MUC1 antibodies were detected in the sera of patients with UC. Antibodies would destroy the colonic cells through antibody-dependent cell-mediated cytotoxicity. We reviewed the significance of mucins as well as humoral and cellular immunity in the pathogenesis of UC.

Antibodies↗

MUC1 mucin core protein binds to the domain 1 of ICAM-1.

BACKGROUND: MUC1 is aberrantly expressed on a variety of epithelial tumors. We have reported that MUC1 plays important roles in separation from primary site, invasion into the stromal tissue, and protection from immune responses. The aim of this study is to determine the precise binding of MUC1 to intercellular adhesion molecule 1 (ICAM-1) that accelerates the cancer metastasis. METHODS: A cell aggregation assay between MUC1 cDNA transfectants and ICAM-1 expressing cells was employed. An anti-MUC1 antibody, anti-ICAM-1 antibody or synthetic peptide of MUC1 core protein was added to the assay to inhibit the cell aggregation. RESULTS: MUC1 transfectants showed a significantly higher aggregation rate compared to the control cells. This aggregation was further enhanced by the inhibition of O-glycan biosynthesis. It was inhibited by either an anti-MUC1 antibody recognizing the tandem repeat domain of MUC1 core protein or an anti-ICAM-1 antibody identifying domain 1. It was also inhibited by a synthetic MUC1 peptide of 40 amino acids corresponding to two tandem repeats. CONCLUSIONS: The results revealed that a tandem repeat domain of MUC1 mucin core protein binds to domain 1 of ICAM-1, suggesting a potential role of MUC1- ICAM-1 interaction in the metastasis of epithelial tumors.

Animals↗

Effects of heat exposure on adrenergic modulation of insulin and glucagon secretion in sheep.

The effects of heat exposure on the adrenergic modulation of pancreatic secretion were investigated. Five ewes fed at maintenance level (ME base) were housed in thermoneutral (TN; 20 degrees C) and hot (30 degrees C) environments. Heat exposure caused an increase in respiration rate and a slightly higher rectal temperature, and decreases in basal insulin and glucose concentrations. Infusions of saline plus epinephrine caused increases in glucagon and glucose concentrations, and no significant change in insulin secretion. Phentolamine (an adrenergic alpha-antagonist) plus epinephrine augmented insulin secretion; however, this insulin secretory response was inhibited by heat exposure. Propranolol (a beta-antagonist) plus epinephrine produced a slight decrease in insulin secretion in the TN environment, whereas no effect was observed during heat exposure. While glucagon secretion through alpha-adrenergic stimulation was not affected by heat exposure, homeostatic signals controlling insulin release seemed to be affected during heat exposure. We thus hypothesised that insulin concentration is decreased in sheep fed at maintenance level in hot environments, and that this response is mediated in part by a modulation of beta-adrenergic function.

Adrenergic alpha-Antagonists↗

Twenty-six-week carcinogenicity study of sulfamethoxazole in CB6F1-Tg-rasH2 mice.

Sulfamethoxazole (SMX), a hormone-mediated rodent-specific nongenotoxic carcinogen, was administered to CB6F1 mice carrying a human prototype c-Ha-ras gene (Tg-rasH2) at doses of 0, 25, 100 or 400 mg/kg/day and to the wild-type mice at a dose of 400 mg/kg/day in feed for 26 weeks to evaluate the carcinogenicity and to validate the Tg-rasH2 model. N-Methyl-N-nitrosourea was administered at an intraperitoneal dose of 75 mg/kg to Tg-rasH2 as a positive control and the experimental system was confirmed to be valid. Histopathological examination revealed adenomas of the lung and Harderian gland and hemangiosarcoma of the spleen at low frequencies in the Tg-rasH2 treated with SMX; however, no statistically significant differences were observed either in the onset or prevalence rates of these neoplasms compared with that in the control group. Between the wild-type mice and Tg-rasH2, the onset rate and prevalence of the neoplasms were not significantly different, but the neoplasms tended to be more frequent in Tg-rasH2 mice showing a sensitivity to tumorigenicity. Follicular epithelial cell hyperplasia was observed in the thyroid gland in the groups of Tg-rasH2 given 100 mg/kg SMX or more, but no neoplastic lesion was observed. SMX was judged to be negative for carcinogenic potential in Tg-rasH2 in the present study.

Animals↗

Expression of the gamma(2) chain of laminin-5 at the invasive front is associated with recurrence and poor prognosis in human esophageal squamous cell carcinoma.

PURPOSE: Preferential expression of the gamma(2) chain of laminin-5 in invading carcinoma cells has been implicated in tumor invasion. The aim of this study was to clarify the clinicopathological and prognostic significance of laminin gamma(2) chain expression in esophageal squamous cell carcinoma (SCC). EXPERIMENTAL DESIGN: We analyzed the association between immunohistochemically detected laminin gamma(2) chain expression in esophageal SCC and clinicopathological characteristics, and we investigated whether laminin gamma(2) chain is a predictor of recurrence and/or survival. RESULTS: The cytoplasm of carcinoma cells was stained for laminin gamma(2) at levels much stronger than those in normal esophageal basement membrane. The immunoreactivities at the invasive front were often more intense than those at the superficial layer. Sections with immunostaining signals in >30% of carcinoma cells at the invasive front, which were observed in 44 of 100 cases, were judged to be positive for laminin gamma(2) chain. Laminin gamma(2) chain positivity was significantly correlated with depth of invasion, lymph node metastasis, distant metastasis, advanced pTNM stage, recurrence, and recurrence within the first postoperative year. Patients with laminin gamma(2) chain-positive carcinoma had a significantly shorter disease-free and overall survival time than did those with laminin gamma(2) chain-negative carcinoma. Laminin gamma(2) chain retained its significant predictive value for disease-free and overall survival in multivariate analysis that included conventional clinicopathological factors. CONCLUSIONS: Our results suggest that the laminin gamma(2) chain plays a key role in the progression of esophageal carcinoma and that its detection is useful for the prediction of recurrence and poor prognosis.

Biomarkers, Tumor↗

[Toxicity study of cefmatilen hydrochloride hydrate (S-1090) (5)--Six-month repeated oral dose toxicity study and supplement study in rats].

Cefmatilen hydrochloride hydrate (S-1090) was orally administered to rats at dose levels of 100, 300 and 1000 mg potency/kg once daily for 6 months. All the S-1090 treated groups showed soft feces, reddish-brown feces (due to chelated products of S-1090 or its decomposition products with Fe3+ in the diet), abdominal distention, increased food and water consumption, lower urine pH, and a decrease of white blood cells counts (except for males of the 100 mg potency/kg group). One male in the 300 mg potency/kg group showed mucous feces and marked decrease in body weight, and diet in the middle stage of the administration period. In necropsy of the survivors of all treated groups, marked cecal enlargement was noted. No remarkable changes were observed in the other examination items. From the early stage of the withdrawal period, animals in the 1000 mg potency/kg group showed again soft or mucous feces and a marked decrease in body weight. Of these animals, one male died and another male was sacrificed in a moribund state at about 2 weeks of the withdrawal period. Enterocolitis was observed in these cases. Almost all animals recovered within 3 weeks of withdrawal. A supplemental study of the 6-month toxicity study was conducted to examine the mechanisms of enterocolitis and the changes observable in the 100 or 300 mg potency/kg groups after drug withdrawal. As a reference, cefdinir (CFDN), an oral cephem antibiotic the same as S-1090, was added in the 1000 mg potency/kg group. No deaths occurred in any groups. Decreased intestinal flora were noted in all the groups treated with S-1090 or CFDN at the end of the dosing period. At 2 weeks of the withdrawal period, C. difficile and its D-1 toxin in the cecal contents were highly detected in the S-1090 300 and 1000 mg potency/kg groups and CFDN group. Inflammatory changes in the cecum and colon were observed in these groups. At 4 weeks of the withdrawal period, intestinal flora in the S-1090 groups almost returned to the condition before dosing, but those in the CFDN group were retained highly. Cecal D-1 toxin in the CFDN group was positive and higher than in the S-1090 groups. It was thus considered that the critical condition with enterocolitis resulted from C. difficile, which proliferated more rapidly than the other bacteria and D-1 toxin produced by this bacteria in the withdrawal period. Above changes were commonly observed in the CFDN group. The NOAEL of S-1090 was assessed to be 100 mg potency/kg/day which induced no enteritis.

Administration, Oral↗

Frequent alterations of the beta-catenin and TCF-4 genes, but not of the APC gene, in colon cancers with high-frequency microsatellite instability.

High-frequency microsatellite instability (MSI-H) due to defective DNA mismatch repair (MMR) is a characteristic of the majority of tumors from kindreds with hereditary nonpolyposis colorectal cancer (HNPCC) and a subset of sporadic cancers. To better understand the molecular characteristics of colon cancers with MSI-H, we analyzed these cancers for alterations of genes, such as APC, beta-catenin, and TCF-4 genes, involved in the Wnt signaling pathway. Following the National Cancer Institute (NCI) criteria, 385 unselected colon cancers were classified as follows: 50 (13%) MSI-H tumors, 36 (9%) low-frequency MSI (MSI-L) tumors, and 299 (78%) microsatellite stable (MSS) tumors. The frequency of APC mutations was significantly lower in MSI-H tumors (9 out of 50) than in MSI-L (12 out of 20) and MSS (66 out of 100) tumors (P = 0.0005 and P < 0.0001, respectively). In contrast, the frequency of exon 3 mutations in the beta-catenin gene was higher in MSI-H tumors (10 out of 50) than in MSI-L tumors (0 out of 30; P = 0.0110) and MSS tumors (3 out of 100; P = 0.0010). Frameshift mutations in a (A)9 tract of the TCF-4 gene were detected in 44% (22 out of 50) of MSI-H tumors, but not in any of the 20 MSI-L tumors or 40 MSS tumors. In total, 78% of MSI-H tumors and 84% of the remaining tumors had at least one alteration in APC, beta-catenin, or the TCF-4 genes. Although further analysis is needed to functionally characterize the consequences of each of these alterations on beta-catenin/TCF target gene expression, our results suggest that the activation of the Wnt signaling pathway plays a pivotal role in colon tumorigenesis, irrespective of MSI status.

Adenocarcinoma↗

p53-inducible wip1 phosphatase mediates a negative feedback regulation of p38 MAPK-p53 signaling in response to UV radiation.

The stress-responsive p38 MAPK, when activated by genotoxic stresses such as UV radiation, enhances p53 activity by phosphorylation and leads to cell cycle arrest or apoptosis. Here we report that a member of the protein phosphatase type 2C family, Wip1, has a role in down-regulating p38-p53 signaling during the recovery phase of the damaged cells. Wip1 was originally identified as a gene whose expression is induced following gamma or UV radiation in a p53-dependent manner. We found that Wip1 is also inducible by other environmental stresses, such as anisomycin, H(2)O(2) and methyl methane sulfonate. UV-induction of Wip1 requires p38 activity in addition to the wild-type p53. Wip1 selectively inactivates p38 by specific dephosphorylation of its conserved threonine residue. Furthermore, Wip1 expression attenuates UV-induced p53 phosphorylation at Ser33 and Ser46, residues previously reported to be phosphorylated by p38. Wip1 expression also suppresses both p53-mediated transcription and apoptosis in response to UV radiation. These results suggest that p53-dependent expression of Wip1 mediates a negative feedback regulation of p38-p53 signaling and contributes to suppression of the UV-induced apoptosis.

Animals↗

Frequent hypermethylation of CpG islands and loss of expression of the 14-3-3 sigma gene in human hepatocellular carcinoma.

The 14-3-3 sigma gene has been implicated in G2/M cell cycle arrest by p53. Frequent inactivation of the 14-3-3 sigma gene by hypermethylation of CpG islands has recently been reported in human breast carcinoma. The aim of this study was to examine the methylation status of CpG islands of the 14-3-3 sigma gene in hepatocellular carcinoma (HCC). The methylation status of the 14-3-3 sigma gene was evaluated in four normal liver tissues and 19 paired specimens of carcinoma and adjacent non-tumorous liver tissues using bisulfite-single strand conformation polymorphism (bisulfite-SSCP), a combination of sodium bisulfite modification and fluorescence-based polymerase chain reaction (PCR)-SSCP. The 14-3-3 sigma protein expression was examined by immunohistochemical staining. Hypermethylation of CpG islands of the 14-3-3 sigma gene was detected in 89% (17/19) of the HCC tissues but not in any of the four normal liver tissues. All of the 14 methylation-positive HCC samples analysed by immunohistochemistry showed loss of 14-3-3 sigma expression, while both of the methylation-negative HCC samples retained the expression, and a significant correlation was found between methylation and loss of expression. Lower levels of methylation were detected in adjacent non-tumorous liver tissues (6/16 in cirrhotic tissues and 1/3 in chronic hepatitis tissues), but the 14-3-3 sigma expression was retained in all of these tissues. In a methylation-positive HCC cell line, HLE, 5-aza-2'-deoxycytidine (5-aza-dC)-induced demethylation of CpG islands led to reactivation of gene expression, indicating that hypermethylation plays a causal role in inactivation of the 14-3-3 sigma gene in HCC. Hypermethylation and the resulting loss of expression of the 14-3-3 sigma gene corresponds to one of the most common abnormalities reported to date in HCC, suggesting their crucial role in the development and/or progression of HCC.

14-3-3 Proteins↗

Rat homologue of the human M(r) 110000 antigen is the protein that expresses widely in various tissues.

The rat homologue of the human M(r) 110000 antigen, which cross-reacts with anti-carcinoembryonic antigen antibodies, was isolated from a rat lung cDNA library. The deduced amino acid sequence revealed a signal peptide, cysteine-rich and immunoglobulin-like region, serine-threonine region, and N-glycosylation sites in the extracellular portion. Northern blot analysis demonstrated a wide distribution of the mRNA in adult rat tissues and A10 rat vascular smooth muscle cells. Therefore, the rat homologue of the human M(r) 110000 antigen may be a receptor or a cell adhesion molecule rather than a specific carcinogenic antigen.

Amino Acid Sequence↗

Inactivation of the 14-3-3 sigma gene is associated with 5' CpG island hypermethylation in human cancers.

The cell cycle checkpoint plays an important role in maintaining the integrity of cells. Recently, one of the 14-3-3 protein family members, 14-3-3sigma, was shown to be regulated by p53 and to play a role in the G2-M-phase checkpoint. To determine whether 14-3-3sigma is inactivated in human cancers, the methylation status of the 5' region of 14-3-3sigma was investigated in a series of gastric, colorectal, and hepatocellular cancer cell lines. Of 22 cell lines examined, 6 showed aberrant methylation. The methylation status of 14-3-3sigma was found to be correlated with loss of expression, which was restored by 5-aza-2'-deoxycytidine treatment. Furthermore, normal G2 arrest after DNA damage was not demonstrated in the cell lines with methylation. In primary gastric cancers, 14-3-3sigma hypermethylation was observed frequently in 26 of 60 (43%) cases and observed more frequently in poorly differentiated adenocarcinomas (P = 0.0017). Our findings suggest that 14-3-3sigma is inactivated by aberrant methylation of the 5' region in various human cancers and that it might play an important role in the development of undifferentiated gastric cancers.

14-3-3 Proteins↗

Quantitative DNA methylation analysis by fluorescent polymerase chain reaction single-strand conformation polymorphism using an automated DNA sequencer.

A novel DNA methylation assay technique, termed bisulfite single-strand conformation polymorphism (bisulfite-SSCP), is a combination of sodium-bisulfite modification and fluorescence-based polymerase chain reaction (PCR)-SSCP. After bisulfite treatment followed by PCR amplification, methylated and unmethylated alleles can be simultaneously separated in a nondenaturing gel using an automated DNA sequencer. Using bisulfite-SSCP, methylation of hMLH1 was detected in a quantitative manner. This method is not only simple, quick, accurate, and quantitative, but detailed information about methylation is also available with less work. Methylation analysis of large numbers of samples for multiple loci will be facilitated by bisulfite-SSCP.

Adaptor Proteins, Signal Transducing↗

Identification of genes highly expressed in G2-arrested Chinese hamster ovary cells by differential display analysis.

Abnormal cell cycle regulation is believed to be an important step in tumorigenesis. In mammalian cells, DNA damage commonly leads to cell cycle arrest in G2; however, little is known about the detailed biochemical mechanisms underlying the DNA damage-induced G2 arrest. In order to identify genes differentially expressed in association with G2 arrest, differential display analysis was performed between exponentially growing Chinese hamster ovary (CHO) cells and G2-arrested CHO cells induced by etoposide, SN-38, or X-radiation. We identified five cDNA clones whose expression was up-regulated in G2-arrested CHO cells. Sequence analysis revealed that three clones were homologous to known genes: isogene I of translation initiation factor eIF-4A, ribosomal protein L13, and translation repressor NAT1. The remaining two clones showed no homology to known genes. These results indicate that DNA damage can alter the expression of multiple genes, including translational regulators.

Animals↗