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H Shimada

Publications and source records attributed to H Shimada.

At least 253 records · Page 14Linked to original sources

Determining the appropriate stimulus intensity for studying the dipole moment in somatosensory evoked fields: a preliminary study.

OBJECTIVE: To establish a simple method of determining the appropriate stimulus intensity for studying the dipole moment in somatosensory evoked fields. METHODS: In 17 patients (20 hemispheres), the authors studied the relationship between the dipole moment and stimulus intensity, which was quantified using the threshold of thenar muscle twitch (TMT). The dipole moment was measured at 1.0, 1.5 and 2.0 TMT. Two measurements were obtained at 1.5 TMT to determine the procedure's margin of error. RESULTS: There was no significant difference between the dipole moments measured at 1.5 and 2.0 TMT. CONCLUSIONS: Setting the stimulus intensity at 1.5 TMT or more ensures a consistent response.

Aged↗

Multi-organ metastatic capability of Chinese hamster ovary cells revealed by green fluorescent protein (GFP) expression.

Stable high-level green fluorescent protein (GFP)-expressing Chinese hamster ovary cells (CHO) were used to visualize the degree of metastatic behavior of this cell line in nude and SCID mice. A stable GFP high-expression CHO clone, selected in 1.5 microM methotrexate, was injected subcutaneously in nude and severe combined immunodeficient (SCID) mice and implanted orthotopically in the ovary of nude mice. CHO proved to be highly metastatic from both the subcutaneous and orthotopic sites as brightly visualized by GFP fluorescence. High-level GFP-expression allowed the visualization of metastatic tumor in fresh live host tissue in great detail. Metastases were visualized by GFP expression in the lung, pleural membrane, spleen, kidney, ovary, adrenal gland, and peritoneum after orthotopic implantation in nude mice. Metastases were visualized by GFP expression mainly in the lung, pleural membrane after subcutaneous implantation in nude mice. Metastases were visualized in the lung and pleural membrane, liver, kidney, and ovary after subcutaneous implantation in SCID mice. The construction of highly fluorescent stable GFP transfectants of CHO has revealed the multi-organ metastatic capability of CHO cells. CHO has such a high degree of malignancy that it is metastatic from both the orthotopic and subcutaneous transplant sites. This highly malignant GFP-expressing cell-line with multi-organ metastatic affinity should serve as a powerful tool to study tumor-host interaction.

Animals↗

RNA maturation of the rice SPK gene may involve trans-splicing.

A gene encoding a calcium-dependent seed-specific protein kinase (SPK) is abundantly expressed in developing rice seeds (Kawasaki, T et al. Gene (1993) 129, 183-189). Rice genomic clones encoding SPK were isolated using the entire cDNA fragment as a probe. Physical mapping of these genomic clones indicated that the genomic region corresponding to the entire cDNA was divided into two different regions, SPK-A and SPK-B, located on different rice chromosomes. The results of RACE-PCR analyses showed that the respective transcripts from SPK-A and SPK-B contained additional sequences which were not found in the SPK cDNA, and that these sequences were removed like introns during maturation of the SPK mRNA. These results suggest that two different RNAs were independently transcribed from SPK-A and SPK-B and joined, possibly by trans-splicing.

Base Sequence↗

Hbox1 and Hbox7 are involved in pattern formation in sea urchin embryos.

In spite of their potential importance in evolution, there is little information about Hox genes in animal groups that are related to ancestors of deuterostome. It has been reported that only two Hox genes (Hbox1 and Hbox7) are expressed significantly in sea urchin embryos. Expression of Hbox1 protein is restricted to the aboral ectoderm, and Hbox7 expression is restricted to oral ectoderm, endoderm and secondary mesenchyme cells in sea urchin embryos after the gastrula stage. With the aim of gaining insight into the role of Hbox1 and Hbox7 in sea urchin development, Hbox1 and Hbox7 overexpression experiments were performed. Overexpression of Hbox1 repressed the development of oral ectoderm, endoderm and mesenchyme cells. On the contrary, overexpression of Hbox7 repressed the development of aboral ectoderm and primary mesenchyme cells. The data suggest that Hbox1 and Hbox7 are expressed in distinct non-overlapping territories, and overexpression of either one inhibits territory-specific gene expression in the domain of the other. It is proposed that an important function of both Hbox1 and Hbox7 genes is to maintain specific territorial gene expression by each one, in its domain of expression, while repressing the expression of the other in this same domain.

Amino Acid Sequence↗

Lim1 related homeobox gene (HpLim1) expressed in sea urchin embryos.

A cDNA clone for the LIM class homeobox gene (HpLim1) of the sea urchin, Hemicentrotus pulcherrimus, was isolated. HpLim1 contains two LIM domains and a LIM-class homeodomain, and amino acid sequences of these three domains are highly homologous to corresponding domains of Lim1 of other animals. Accumulation of HpLim1 transcripts begins at hatching, and declines after the mesenchyme blastula stage. HpLim1 mRNA was localized in the vegetal plates of hatched blastulae, but it was not detectable in primary mesenchyme cells (PMC) ingressed into the blastocele. HpLim1 mRNA-injected embryos became spherical with markedly reduced gut formation, failed to express marker proteins for aboral ectoderm and mesoderm, and mainly expressed an oral ectoderm marker. These results imply that while short-term expression of HpLim1 in the vegetal plate is needed for differentiation of aboral ectoderm, endoderm and PMC, ectopic expression of HpLim1 suppresses normal differentiation directing all embryonic cells to differentiate into oral ectoderm.

Amino Acid Sequence↗

Furanonaphthoquinone analogs possessing preferential antitumor activity compared to normal cells.

The 50% growth inhibition toxicity (IC50 at 72 h) of 16 synthetic and 2 phytochemical natural analogs of furanonaphthoquinones (naphtho[2,3-b]furan-4,9-dione; FNQ) and 2 analogs of isofuranonaphthoquinones was assayed in vitro in respect to established human cervical cancer and lung adenocarcinoma cells in comparison with human uterine endocervical, tracheal and bronchiolar epithelial cells and fibroblasts. Prostate, cholangio, colon, laryngeal, and tongue carcinoma cell lines and two osteosarcoma cell lines were also used for the assay. The IC50 ratio of normal cells to cancer cells was estimated in order to represent preferential antitumor activity. Two analogs, 2-methylnaphtho[2,3-b]furan-4, 9-dione (FNQ3) and 2-methyl-5(or 8)-hydroxynaphtho[2,3-b]furan-4, 9-dione (FNQ13) showed 10.4 to 14.1 IC50 ratios for all carcinoma cells used, indicating a wide spectrum. Among different carcinomas, there was no difference or variety in the IC50 ratio of a single analog. A moderate IC50 ratio (3.1-4.7) was also found in nine analogs, but seven others were equally cytotoxic (less than 2.6) to both cancer and normal cells. Two isofuranonaphthoquinone derivatives were ineffective, but a thieno derivative was equally cytotoxic to all cells tested. On the basis of the IC50 ratio data and the structure of the furanonaphthoquinones, the following structural activity (selectivity) relationship can be postulated: (i) the presence of an alkyl group at position 2 enhances the IC50 ratio, particularly the methyl group; (ii) a hydroxyl group at position 5 or 8 enhances the IC50 ratio; and (iii) methylation of the phenolic hydroxyl group leads to a decrease of potency. These results indicate that FNQ3, 13, and some other analogs are more preferentially cytotoxic to human tumor cells than to normal cells, unlike mitomycin-C, adriamycin, carboplatin, and methotrexate which are cytotoxic to the both. In nude mouse xenograft tests, FNQ3 demonstrated a significant antitumor activity with T/C% values of 16. 6 to 41.6 against several human carcinoma and osteosarcoma cells.

Animals↗

Genetic instability did not lead to p53 mutations in an extremely early-onset breast cancer in a cancer-prone family.

BACKGROUND: A positive family history is a major contributor to risk of development of breast cancer. METHODS: Somatic and germ line mutations of p53 and genetic instability were evaluated for an extremely early-onset breast cancer case in a cancer-prone family. RESULTS: The mode of inheritance in this case was clearly autosomal dominant. DNA replication error was recognized by detecting microsatellite allelic alterations. However, mutations of p53 were not found at either somatic or germ-line level. CONCLUSION: These genetic studies suggest that an increased genetic instability did not lead to p53 gene mutations in this breast cancer patient.

Adult↗

Evaluation of the mouse lymphoma tk assay (microwell method) as an alternative to the in vitro chromosomal aberration test.

In order to evaluate the utility of the mouse lymphoma assay (MLA) for detecting in vitro clastogens and spindle poisons and to compare it with the in vitro chromosomal aberration test (CA), we conducted an international collaborative study of the MLA that included 45 Japanese laboratories and seven overseas laboratories under the cooperation of the Ministry of Health and Welfare of Japan and the Japanese Pharmaceutical Manufacturer's Association. We examined 40 chemicals; 33 were reportedly positive in the CA but negative in the bacterial reverse mutation assay, six were negative in both assays and one was positive in both. We assayed mutations of the thymidine kinase (TK) locus (tk) of L5178Y tk +/- mouse lymphoma cells using the microwell method. According to our standard protocol, cells were exposed to the chemical for 3 h, cultured for 2 days and TK-deficient mutants were expressed in 96-well plates under trifluorothymidine. Each chemical was coded and tested by two or three laboratories. Among the 34 CA-positive chemicals, positive MLA results were obtained for 20 and negative results were obtained for nine. The remaining five chemicals were inconclusive or equivocal because of discrepant inter-laboratory results or reproduced discrepant results, respectively. Among the six CA-negative chemicals, one was negative in the MLA, two were positive and three were inconclusive. Thus, the MLA could detect only 59% (20/34) of CA-positive chemicals. We concluded that the MLA was not as sensitive as the CA. Some MLA-negative chemicals evoked positive responses in the CA only after long continuous treatment. These might also be genotoxic in the MLA with long continuous treatment. Improvement of the MLA protocol, including alteration of the duration of the treatment, might render the MLA as sensitive as the CA.

Animals↗

Cytochemical energy-filtering transmission electron microscopy of mitochondrial free radical formation in paraquat cytotoxicity.

The generation of oxygen free radicals was investigated using cytochemistry and its energy-filtering transmission electron microscopy in reference to the toxic mediator for the herbicide paraquat. When isolated intact mitochondria from rat livers were incubated in a medium containing paraquat and NADH, a mitochondrial NADH-quinone oxidoreductase activity generated superoxide anions to cause the destruction of mitochondria which resulted in cell death. The superoxide anions were immediately converted into hydrogen peroxide, which then formed cerium perhydroxide deposits in the presence of cerium ions and precipitated on the outer surface of the mitochondrial outer membrane. This localization was also specifically identified by energy spectral imaging and image-electron energy loss spectral analyses. Precipitation reaction was scavenged by the addition of either cytochrome c or catalase and inhibited by dicoumarol (an inhibitor of NAD(P)H-quinone oxidoreductases). These cytochemical energy-filtering transmission electron microscopic results indicated that paraquat generated free radicals from the outer membrane of mitochondria.

Animals↗

Genetic association between cytochrome P-450 2D6 gene polymorphism and plasma concentration of haloperidol in Japanese schizophrenics.

Haloperidol is one of the major neuroleptics partly metabolized by cytochrome P-450 2D6 (CYP2D6), which has over 10 genetic polymorphisms. The purpose of this study was to investigate whether individual haloperidol plasma concentration was affected by CYP 2D6 gene polymorphisms. The genomic DNA of 56 subjects who have been taking haloperidol were analysed by restriction fragment length polymorphism (RFLP) method to detect the major Caucasian mutations, CYP 2D6A, 2D6B, and the major oriental population mutation, 2D6J. We found 10 cases of the CYP 2D6J mutation, only one case of the CYP 2D6B mutation, and no cases of the CYP 2D6A mutation in the present subjects. Contrary to expectations, haloperidol plasma concentration of the CYP 2D6B mutation case showed a lower haloperidol plasma concentration than the mean value of that of wild type homozygous cases. Haloperidol plasma concentration of 10 subjects who had the CYP 2D6J mutation cases showed no significant difference from that of the wild type homozygous group. These results suggest that the major genetic polymorphisms of CYP 2D6 do not seem to be one of the factors which affect individual haloperidol plasma concentration in Japanese schizophrenics.

Adult↗

An Arabidopsis cell cycle -dependent kinase-related gene, CDC2b, plays a role in regulating seedling growth in darkness.

The Arabidopsis CDC2b gene has been defined as a plant-specific cell cycle-dependent kinase-related gene, although it lacks the conserved cyclin binding motif, and its exact function is not known. Here, we report that in etiolated seedlings, the expression of the CDC2b gene is correlated with elongation rate of the hypocotyl. Inhibition of CDC2b gene expression by using an inducible antisense construct resulted in short-hypocotyl and open-cotyledon phenotypes when transgenic seedlings were grown in the dark. The severity of these phenotypes in dark-grown seedlings could be correlated with the level of the antisense gene expression. The short hypocotyl of seedlings underexpressing CDC2b was a result of inhibition of cell elongation rather than a reduction in cell number, whereas in cotyledons, inhibition of CDC2b expression resulted in large, open cotyledons with amyloplasts rather than etioplasts. Although the nuclear DNA was less compact in the antisense hypocotyl cells, DNA content and endoreduplication were not affected. Cell division of the shoot apical meristem also was not affected by antisense expression. The short-hypocotyl phenotype of these transgenic plants was partially rescued by the addition of brassinolide. Brassinolide can only induce CDC2b expression in darkness. These results suggest a role for the CDC2b gene in seedling growth via regulation of hypocotyl cell elongation and cotyledon cell development.

Arabidopsis↗

Frequent expression of midkine gene in esophageal cancer suggests a potential usage of its promoter for suicide gene therapy.

We have examined the expression of midkine (MK), a neurotrophic factor with heparin-binding activity, in human esophageal cancer cells. Seven esophageal cell lines tested expressed the transcript and 8 out of 14 human esophageal tumor specimens were positively stained with anti-MK antibody, while surrounding normal esophageal tissues in these specimens were not stained. The 5'-flanking, 2.3 kb genomic region of the MK gene was shown to drive the transcription of a reporter gene in the esophageal cell lines in a cis acting manner. Forced expression in esophageal cancer cells of herpes simplex virus-thymidine kinase gene mediated by the flanking region of the MK gene conferred sensitivity to a prodrug, ganciclovir. The 5'-upstream region of the MK gene thus possesses putative promoter activity which can be used for suicide gene-based gene therapy for esophageal cancer.

Aged↗

Percutaneous cephalic vein approach for permanent pacemaker implantation.

Implantation of permanent pacemaker leads into the cephalic vein within the deltopectoral groove is enhanced by introduction of a flexible guidewire into the brachial vein at the antecubital fossa, which is then advanced to the subclavian vein. The cephalic vein within the deltopectoral groove is easily found by incision with the guidewire as a marker. A pacing lead or leads can be inserted along the guidewire or by using a sheath advanced over the guidewire. The procedure was performed on 32 patients and the pacing leads of 28 procedures (DDD 15, VDD 9 and WI 4) were inserted using the cephalic vein without complications.

Aged↗

Outer membrane protein A-promoted actin condensation of brain microvascular endothelial cells is required for Escherichia coli invasion.

Escherichia coli is the most common gram-negative bacterium that causes meningitis during the neonatal period. We have previously shown that the entry of circulating E. coli organisms into the central nervous system is due to their ability to invade the blood-brain barrier, which is composed of a layer of brain microvascular endothelial cells (BMEC). In this report, we show by transmission electron microscopy that E. coli transmigrates through BMEC in an enclosed vacuole without intracellular multiplication. The microfilament-disrupting agents cytochalasin D and latrunculin A completely blocked E. coli invasion of BMEC. Cells treated with the microtubule inhibitors nocodazole, colchicine, vincristin, and vinblastine and the microtubule-stabilizing agent taxol also exhibited 50 to 60% inhibition of E. coli invasion. Confocal laser scanning fluorescence microscopy showed F-actin condensation associated with the invasive E. coli but no alterations in microtubule distribution. These results suggest that E. coli uses a microfilament-dependent phagocytosis-like endocytic mechanism for invasion of BMEC. Previously we showed that OmpA expression significantly enhances the E. coli invasion of BMEC. We therefore examined whether OmpA expression is related to the recruitment of F-actin. OmpA(+) E. coli induced the accumulation of actin in BMEC to a level similar to that induced by the parental strain, whereas OmpA(-) E. coli did not. Despite the presence of OmpA, a noninvasive E. coli isolate, however, did not show F-actin condensation. OmpA(+)-E. coli-associated condensation of F-actin was blocked by synthetic peptides corresponding to the N-terminal extracellular domains of OmpA as well as BMEC receptor analogues for OmpA, chitooligomers (GlcNAcbeta1-4GlcNAc oligomers). These findings suggest that OmpA interaction is critical for the expression or modulation of other bacterial proteins that will subsequently cause actin accumulation for the uptake of bacteria.

Actins↗

Enhanced effects of monoclonal antibody carboplatin immunoconjugates uptake and anti-tumor effects with angiotensin II and tumor necrosis factor.

The most important factor influencing the use of monoclonal antibody immunoconjugates for cancer treatment is effectiveness of enhancement for tumor targeting. We call attention to the vasoactive agents angiotensin II (ATII) for selective increase in tumor blood flow and cytokine tumor necrosis factor (TNF) to improve the vascular permeability of the tumor. Tumor localization and biodistribution were investigated by nude mice transplanted human colon adenocarcinoma (LS-180) with radiolabeled carboplatin immunoconjugates. Tumor activity 48 h after administration of ATII and TNF was significantly higher than in the control group. However, nonspecific accumulation in normal organs was not observed. In vivo anti-tumor effects in animals with ATII and TNF was significantly stronger than in those given the same dose drug alone or immunoconjugates alone. These results indicate that ATII and TNF could be useful tools for induction of stronger inhibition of tumor growth without systemic toxicity.

Adenocarcinoma↗

Interruption of activin A autocrine regulation by antisense oligodeoxynucleotides accelerates liver tumor cell proliferation.

Administration of activin A, a member of the transforming growth factor-beta superfamily inhibits hepatocyte proliferation in vitro and reduces liver mass in vivo. However, a role of endogenous activin A in local growth modulation has not been established in any system. The aim of this study was to examine the production of activin A in the human hepatoma cell line HLF and to explore a possible autocrine role of activin as a cell growth inhibitor by blocking production of endogenous activin using antisense oligodeoxynucleotides. Administration of exogenous activin A suppressed HLF cell growth, and immunoreactive activin A was shown to be produced in the cells at confluency by Western blotting analysis. Cells were exposed to phosphorothioate-modified oligodeoxynucleotides, synthesized with antisense or randomly shuffled base sequences of activin betaA subunit messenger RNA, under serum-free conditions. Uptake of the oligodeoxynucleotides into the cells was confirmed by use of fluorescein isothiocyanate-labeled oligodeoxynucleotides. Administration of antisense oligodeoxynucleotides reduced activin A production as confirmed by both competitive PCR and Western blotting. Activin betaA antisense oligodeoxynucleotides significantly increased cell proliferation compared with controls. These findings are consistent with the existence of an autocrine role of activin A as an inhibitor of hepatocyte proliferation.

Activins↗