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Biomedical subjects

A Kawabe

Publications and source records attributed to A Kawabe.

At least 19 recordsLinked to original sources

Gene expression profiling in human esophageal cancers using cDNA microarray.

Human esophageal cancer cell lines and human esophageal cancer tissues were profiled on cDNA microarrays. In esophageal cancer cell lines, KYAE and OE-33 (adenocarcinomas) were distinguished from KYSE series (squamous cell carcinomas). Although SK-GT-4 and TE7 were derived from adenocarcinomas, they had a comparatively similar expression profile to the KYSE series. A set of genes whose expression commonly either increased or decreased in cancer cell lines was identified. Genes that were characteristically expressed in KYAE and OE-33 were also identified. The gene expression profiles of cancer tissues (CTs) were remarkably different from those of the cancer cell lines (CCLs). Notable differences between CCLs and CTs were observed in matrix metalloproteinases, plasminogen activator, collagens, paxillin, and thrombospondin 2, etc., whose expression was not increased in CCLs but increased in CTs. Twenty-three genes were extracted to categorize patients according to their prognoses, and clustering analyses, using these genes, were performed successfully.

Adenocarcinoma↗

Suppression of N-nitrosomethylbenzylamine (NMBA)-induced esophageal tumorigenesis in F344 rats by JTE-522, a selective COX-2 inhibitor.

Recent studies have demonstrated that overexpression of cyclooxygenase-2 (COX-2) and elevation of COX-2-mediated synthesis of prostaglandin E(2) (PGE(2)) were observed in various cancers including esophageal cancer, but their roles in carcinogenesis of the esophagi still remain unclear. To address the issue, we observed the reduction of N:-nitrosomethylbenzylamine (NMBA)-induced tumorigenesis in rat esophagi via JTE-522 (4-[4-cyclohexyl-2-methyloxazol-5-yl]-2-fluorobenzenesulfonamide), a selective COX-2 inhibitor. In this study, 54 F344 male rats were divided into nine groups; JTE-522 (3, 9 and 30 mg/kg) was administered orally. We also examined the effects of JTE-522 on COX-2 mRNA and synthesis of PGE(2). In the group in which JTE-522 was administered intermittently at a daily dose of 30 mg/kg, the number of NMBA-induced esophageal tumors per rat significantly reduced, to 62% (P< 0.05), but the size of the tumors was not significantly inhibited. In the group in which JTE-522 was administered continuously five times weekly for 24 weeks at a daily dose of 9 mg/kg, both the number and size of tumors significantly reduced, to 29 and 44%, respectively (P<0.05). Furthermore, JTE-522 suppressed not only tumor formation but also developing carcinomas (P<0.0021) [corrected]. In this study, treatment with NMBA alone resulted in an approximately 5-fold rise in expression of COX-2 mRNA detected by semi-quantitative RT-PCR analysis and an approximately 7-fold increase in the production of PGE(2) measured by ELISA compared with the normal esophageal mucosa. The up-regulated COX-2 expression did not decrease with the treatment of JTE-522 at the 3, 9 and 30 mg/kg doses; however, the increased levels of PGE(2) synthesis were significantly decreased by administering JTE-522 (P<0.01). Our study suggests that COX-2-mediated PGE(2) is important in NMBA-induced esophageal tumorigenesis in rats, and therefore may be a promising chemotherapeutic target for the prevention and treatment of esophageal cancer, especially with selective COX-2 inhibitors.

Animals↗

Blocking the glycine-binding site of NMDA receptors prevents the progression of ischemic pathology induced by bilateral carotid artery occlusion in spontaneously hypertensive rats.

This study was designed to investigate the participation of N-methyl-D-aspartate (NMDA) receptors in the progression of the pathology induced by bilateral carotid artery occlusion (BCAo) in spontaneously hypertensive rats (SHRs). We examined the effects of the selective NMDA receptor glycine-binding site antagonist SM-18400 on the mortality rate, deterioration of neurological signs, and formation of brain edema in the SHR-BCAo model. SM-18400 (15 or 30 mg/kg) was administered via the tail vein immediately and 2 h after BCAo. Neurological signs were monitored continuously for 8 h after BCAo, and the mortality rates were followed for 5 days. All SM-18400-treated animals were still alive 5 h after BCAo, whereas 38% of the animals died in the vehicle-treated group. The mortality rates of the SM-18400-treated groups were still lower than those of the vehicle-treated group 5 days after BCAo. In addition, SM-18400 markedly prevented the deterioration of neurological signs. The water content of the telencephalon and diencephalon/mesencephalon in the vehicle-treated group, measured 3 h after BCAo, was significantly higher than in the sham-operated group. SM-18400 significantly inhibited the increase in water content in both regions in a dose-dependent manner. These findings suggest that NMDA receptors participate in the increase in the mortality rate, deterioration of neurological signs, and formation of brain edema following ischemic brain damage in the SHR-BCAo model, and that SM-18400 can prevent ischemic insults.

Animals↗

The suppression of small GTPase rho signal transduction pathway inhibits angiogenesis in vitro and in vivo.

Angiogenesis consists of multistep pathways such as the degradation of the matrix, proliferation of the endothelial cells, motility of the endothelial cells, formation of the cord structure and network formation of microvessels. The small GTPase Rho participates in cell motility through actin fiber polymerization. The role of the small GTPase Rho signal transduction pathway in regulating angiogenesis, however, is still unknown. In this study, we investigated the role of the small GTPase Rho signal transduction pathway in angiogenesis in vitro and in vivo using the exoenzyme, Clostridium botulinum C3 transferase, which specifically suppresses Rho and a compound, Y-27632, which suppresses p160ROCK (Rho-associated coiled-coil containing protein kinase). In this paper, we showed that the small GTPase Rho-p160ROCK signal transduction pathway played an important role in angiogenesis both in vitro and in vivo. These results suggest that inhibition of the small GTPase Rho signal transduction pathway by the p160ROCK inhibitor could be a possible new strategy for angiogenic diseases.

Amides↗

Histological response of cisplatin predicts patients' survival in oesophageal cancer and p53 protein accumulation in pretreatment biopsy is associated with cisplatin sensitivity.

The aim of this study was to evaluate whether cisplatin sensitivity relates to patient's prognosis in oesophageal squamous cell carcinoma and to find a useful chemosensitivity molecular marker. 59 oesophageal squamous cell carcinoma (SCC) patients received cisplatin 30 mg/m2/week treatment of two to five cycles, followed by oesophagectomy. We analysed retrospectively whether the histological effect was related to patient's prognosis. Furthermore, to evaluate the relationship between the effect of preoperative cisplatin treatment and p53 and cyclin D1 expression, we investigated p53 and cyclin D1 expression in pretreatment biopsy samples using an immunohistochemical analysis and compared the results with the histological effect to cisplatin in the resected oesophagus. The cases that showed immunohistochemical p53 staining in the pretreatment biopsy samples were resistant to cisplatin (P = 0.032). However, there was no relationship between cyclin D1 expression and histological effect (P = 0.230). Nevertheless, combined analysis of p53 and cyclin D1 can predict histological effect (P = 0.032). The prognosis of cisplatin-sensitive cases was significantly better than that of cisplatin-resistant cases (P = 0.041). Cox's multivariate analysis revealed that the histological effect was an independent prognostic factor. In contrast, p53 protein accumulation and cyclin D1 were not. Histological response after neoadjuvant cisplatin treatment is a prognostic factor for oesophageal SCC and cisplatin chemotherapy may be selected according to the findings of p53 and cyclin D1 expression.

Antineoplastic Agents↗

DNA polymorphism at the cytosolic phosphoglucose isomerase (PgiC) locus of the wild plant Arabidopsis thaliana.

DNA variation in a 4.7-kb region of the cytosolic phosphoglucose isomerase (PgiC) locus was investigated for 21 ecotypes of Arabidopsis thaliana. The estimated nucleotide diversity was 0.0038, which was one-third of those in previously investigated loci. Since most of the nucleotide variations (93%) were singleton and doubleton, Tajima's test statistic was significantly negative. About 50% of nucleotide polymorphisms in exons were replacement, which caused significance in McDonald and Kreitman's test when compared with Arabis gemmifera and Cardaminopsis petraea. These results indicated that DNA polymorphism at the PgiC locus was not under neutrality. There were two divergent sequence types in the PgiC region, which were associated with allozyme variation. The Fast allozyme was shown to have originated from the Slow allozyme, since two outgroup species had the Slow form. A phylogenetic tree of ecotypes with the Fast allozyme had the shape of a star phylogeny. Mismatch distribution of the Fast allozyme ecotypes resembled that expected under an expanding population model. These results suggest positive selection for the Fast allozyme of the PGIC in A. thaliana.

Arabidopsis↗

TGF-alpha as well as VEGF, PD-ECGF and bFGF contribute to angiogenesis of esophageal squamous cell carcinoma.

It has been demonstrated that vascular endothelial growth factor (VEGF) is associated with tumor progression as an angiogenic factor in esophageal squamous cell carcinoma (SCC)s. However, the role of other angiogenic factors such as transforming growth factor-alpha (TGF-alpha), platelet-derived endothelial cell growth factor (PD-ECGF), and basic fibroblast growth factor (bFGF) are still unknown in esophageal SCCs. In this study, we detected the expression of VEGF, TGF-alpha, PD-ECGF and bFGF in tissue specimens from 96 patients with SCC of the esophagus by immunohistochemical staining. To evaluate angiogenesis, endothelial cells were stained immunohistochemically and microvessel density (MVD) was counted in 24 cases. The positive rates for VEGF, TGF-alpha, PD-ECGF and bFGF were 65% (62/96), 67% (64/96), 66% (63/96), and 49% (47/96), respectively. Only TGF-alpha expression had a strong correlation with the average MVD (p=0.0059). However, the MVD increased as the number of positive factors for these 4 factors increased (p=0.0023). The expression of all of these factors significantly correlated to the depth of tumor invasion, and lymph node metastasis. Finally, survival analysis of the patients revealed that VEGF, TGF-alpha, and PD-ECGF were significant prognostic factors. However, multivariate analysis revealed that these factors were not prognostic. Thus, we suggest that TGF-alpha as well as VEGF, PD-ECGF and bFGF may be associated with angiogenesis, and the progression and metastasis of esophageal squamous cell carcinoma.

Adult↗

PTEN/MMAC1 expression in esophageal squamous cell carcinomas.

The PTEN/MMAC1 gene at 10q23.3 is a novel tumor suppressor gene candidate. Various kinds of tumors have mutations in this gene. However, in some cancers PTEN/MMAC1 gene may be inactivated by mechanisms other than gene deletion and mutation, including promoter methylation or translational modification. The aim of this study was to determine whether there are abnormalities in the expression of PTEN/MMAC1 gene in esophageal cancer. Reverse transcription polymerase chain reaction and western blot were used to examine PTEN/MMAC1 expression in human esophageal squamous cell lines and normal cultured esophageal epithelial cells. Immunohistochemical staining was carried out to detect PTEN/MMAC1 expression in surgically resected esophageal squamous cell carcinomas and normal esophageal epithelium. All 30 esophageal cancer cell lines (KYSE series) and normal cultured esophageal epithelial cells expressed PTEN/MMAC1 mRNA. Western blot analysis confirmed that all the cell lines expressed PTEN/MMAC1 protein and there was no difference in expression level. Immunohistochemical study showed that the PTEN/MMAC1 protein was localized dominantly in the cytoplasm and strongly stained in all 42 surgically resected esophageal squamous cell carcinomas and normal esophageal epithelium. PTEN/MMAC1 is rarely associated with esophageal squamous cell carcinoma carcinogenesis.

Carcinoma, Squamous Cell↗

Fast atom bombardment tandem mass spectrometric analysis of phospholipids in Drosophila melanogaster.

Direct determination of the phospholipid components in adult Drosophila melanogaster was carried out by using fast atom bombardment tandem mass spectrometry (FAB-MS/MS) of both the positive and negative ions. Approximately 50 molecular species were detected, including phosphatidylethanolamine (PE), phosphatidylcholine (PC), phosphatidylserine (PS) and phosphatidylinositol (PI). Eight PE, one PC and three PS molecular species were identified. Some variations with age and a few differences among the D. melanogaster strains in the PE and PC molecular species were found. There was a difference in the fatty acid structure of a 741 Da PE molecular species between the wild-types and a mutant strain (EthAR201) which requires a higher concentration of diethylether for anesthesia than the wild-types; in the mutant sn-1-oleoyl-2-linoleoyl (18:1/18:2) but in the wild-types sn-1-linoleoyl-2-oleoyl (18:2/18:1) were speculated. This suggests that this technique will be useful for the screening of phospholipid molecular species mutation.

Aging↗

DNA variation in the wild plant Arabidopsis thaliana revealed by amplified fragment length polymorphism analysis.

To investigate the level and pattern of DNA variation of Arabidopsis thaliana at the entire genome level, AFLP analysis was conducted for 38 ecotypes distributed throughout the world. Ten pairs of selective primers were used to detect a total of 472 bands, of which 374 (79. 2%) were polymorphic. The frequency distribution of polymorphic bands was skewed toward an excess of singleton variation. On the basis of AFLP variation, nucleotide diversity for the entire genome was estimated to be 0.0106, which was within the range reported previously for specific nuclear genes. The frequency distribution of pairwise distance was bimodal because of an ecotype (Fl-3) with a large number of unique bands. Linkage disequilibrium between polymorphic AFLPs was tested. The proportion of significant linkage disequilibria was close to random expectation after neglecting the ecotype Fl-3. This result indicates that the effect of recombination could not be ignored in this selfing species. A neighbor-joining tree was constructed on the basis of the AFLP variation. This tree has a star-like topology and shows no clear association between ecotype and geographic origin, suggesting a recent spread of this plant species and limited migration between its habitats.

Arabidopsis↗

DNA variation in the basic chitinase locus (ChiB) region of the wild plant Arabidopsis thaliana.

Nucleotide variation in a 2.2-kbp region of basic chitinase (ChiB) locus in 17 ecotypes of Arabidopsis thaliana was compared with previously investigated regions to investigate genetic mechanisms acting on DNA polymorphism. In the ChiB region, dimorphic DNA variation was detected, as in the Adh and ChiA regions. Nucleotide diversity (pi) of the entire region was 0.0091, which was similar to those of the two other regions. About half of polymorphic sites (37/87) in the ChiB region were observed in only two ecotypes. Tajima's D was negative but not significantly, while Fu and Li's D* was positive. Neither McDonald-Kreitman nor Hudson, Kreitman, Aguadé tests showed a significant result, indicating that these loci were under similar evolutionary mechanisms before and after speciation. Linkage disequilibria were observed within the three regions because of dimorphic polymorphisms. Interlocus linkage disequilibrium was not detected between the Adh and the two chitinase regions, but was observed between the ChiA and ChiB regions. This could be due to epistatic interaction between the two chitinase loci, which are located on different chromosomes.

Alcohol Dehydrogenase↗

[A case of stage IV esophageal cancer successfully treated by chemoradiation].

A 63-year-old man was admitted to our institution with a hard tumor on the left side of the neck. He was diagnosed as having advanced esophageal cancer (Stage IV) with a massive supraclavicular lymph node metastasis, and the lesion was thought to be unresectable. He was treated with chemotherapy (CDDP-VDS-5-FU) and radiation therapy, and all the tumors completely disappeared on endoscopic and CT examination. A stricture with scarring was detected in the esophagus at 6 months after treatment. No neoplastic tissue was detected in the lesion, and his dysphagia was relieved by dilation of the stricture. Recurrence on the left side of the neck was detected by CT at 2.5 years after chemoradiation therapy. However, the tumor has not grown over the 2-year interval since then, so it seems to be dormant. He has now survived with a good QOL for 5 years since the first hospital admission. We conclude that advanced esophageal cancer can be treated with chemoradiation therapy if the patient is in sufficiently good overall condition.

Antineoplastic Combined Chemotherapy Protocols↗

Laparoscopic ultrasonography and operative cholangiography prevent residual common bile duct stones in laparoscopic cholecystectomy.

We retrospectively evaluated the role of intraoperative cholangiography (IOC) combined with laparoscopic intraoperative ultrasonography (LIOU) for detection of common bile duct (CBD) stones in patients undergoing laparoscopic cholecystectomy. We reviewed 184 patients with biliary stones. Preoperatively, all patients underwent ultrasonography (US); 183 of the patients were investigated by cholangiography (oral and intravenous cholangiography in 145 and endoscopic retrograde cholangiography in 44). LIOU was carried out in all patients and IOC was done in 183. LIOU visualized the bile duct in 94.6% of the patients and IOC was successful in 95.6%. CBD stones were detected in a total of 17 patients, 9 (52.9%) of whom were positive on preoperative investigations. The sensitivity for detecting CBD stones was 29.4% with US, 22.2% with oral and intravenous cholangiography, 50.0% with endoscopic retrograde cholangiography, 82.4% with LIOU, and 93.3% with IOC. The diameter of the stones visualized intraoperatively (4.4 +/- 1.2 mm) was smaller than that of the stones detected preoperatively (6.9 +/- 2.6 mm). The stones were removed during laparoscopy in 15 patients and after conversion to laparotomy in 2. None of the patients had residual CBD stones after follow-up for 6 to 50 months. Intraoperative examination using both LIOU and IOC was useful for prevention of residual CBD stones.

Adult↗

Characterization of recombinant and brain neuropsin, a plasticity-related serine protease.

Activity-dependent changes in neuropsin gene expression in the hippocampus implies an involvement of neuropsin in neural plasticity. Since the deduced amino acid sequence of the gene contained the complete triplet (His-Asp-Ser) of the serine protease domain, the protein was postulated to have proteolytic activity. Recombinant full-length neuropsin produced in the baculovirus/insect cell system was enzymatically inactive but was readily converted to active enzyme by endoprotease processing. The activational processing of prototype neuropsin involved the specific cleavage of the Lys32-Ile33 bond near its N terminus. Native neuropsin that was purified with a purity of 1,100-fold from mouse brain had enzymatic characteristics identical to those of active-type recombinant neuropsin. Both brain and recombinant neuropsin had amidolytic activities cleaving Arg-X and Lys-X bonds in the synthetic chromogenic substrates, and the highest specific activity was found against Boc-Val-Pro-Arg-4-methylcoumaryl-7-amide. The active-type recombinant neuropsin effectively cleaved fibronectin, an extracellular matrix protein. Taken together, these results indicate that this protease, which is enzymatically novel, has significant limbic effects by changing the extracellular matrix environment.

Amino Acid Sequence↗