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Biomedical subjects

I Naruse

Publications and source records attributed to I Naruse.

50 records · Page 3Linked to original sources

Brain abnormalities induced by murine cytomegalovirus injected into the cerebral ventricles of mouse embryos exo utero.

Murine cytomegalovirus (MCMV) was injected into the cerebral ventricle of mouse embryos on day 13 of gestation after exposing the embryos out of the uterus in the abdominal cavity of the mother. The embryos were allowed to develop to day 18 of gestation, then taken out from the abdominal cavity. Macroscopically, there were four expanded and three distorted brains out of 19 surviving embryos, whereas no brain abnormality was noticed in 13 embryos injected with culture medium instead of MCMV in the same way. Histopathological examination showed hydrocephalic lesions with strong dilatation of the ventricles and atrophy of the cerebral cortex, and inflammatory lesions with granulomatous proliferation of the ventricular walls with disappearance of the cortical zonation. Immunohistochemically, MCMV-induced nuclear antigen-positive cells were frequently observed in the wall of the ventricles and occasionally scattered in the cerebral cortex, white matter, and the nucleus basalis. Some fetuses injected with MCMV in the same way were recovered from the abdominal cavities on day 18 of gestation and transferred to foster nurse mothers. They showed massive cerebral necrosis after feeding for 9 days after birth. Brain abnormalities of mouse embryos after intraventricular injection with MCMV may provide an experimental model of brain damage induced by congenital cytomegalovirus infection.

Animals↗

Amelioration of the teratogenicity of cadmium by the metallothionein induced by bismuth nitrate.

The participation of maternal hepatic metallothionein (MT) in the amelioration of cadmium teratogenicity in mice was examined. Pretreatment with bismuth nitrate (subcutaneously) ameliorated the teratogenicity, including exencephaly and abnormalities of the axial skeleton, caused by a single intraperitoneal injection of cadmium sulfate. Pretreatment with bismuth nitrate for 3 days induced MT drastically in maternal liver and kidney. Six and 24 hr after the injection of cadmium sulfate, the accumulation of maternal hepatic cadmium increased and that in the decidua, including embryos, decreased after pretreatment with bismuth nitrate. Mouse embryos on day 7 of gestation were cultured for 48 hr. Exposure to cadmium sulfate in vitro induced unfused brain fold, which corresponds to exencephaly in vivo. From the in vitro experiment, it was suggested that the teratogenicity of cadmium on day 7 of gestation is a direct action against the mouse embryo. In the present experiment it was suggested that pretreatment with bismuth nitrate induced maternal hepatic and renal MT; cadmium was therefore trapped and detoxicated, and consequently embryos were exposed to a lower concentration of cadmium.

Abnormalities, Drug-Induced↗

Susceptibility of brain cells to murine cytomegalovirus infection in the developing mouse brain.

Mouse embryos were infected with murine cytomegalovirus (MCMV) by injecting the virus into the cerebral ventricles in the late stage of gestation; the brains of the offspring were than analyzed using the histological and immunohistochemical methods. Brains of the offspring, which were injected with relatively high titers of MCMV [1 X 10(4) plaque-forming units (pfu)] on day 13 of gestation exo utero or on day 15 of gestation in utero, showed massiv necrosis of the cerebral cortex with gliomesodermal proliferation around 9 to 10 days after birth. In these brains, viral antigen-positive cells were observed in zonal arrangement in the lesion-free cortex and in the hippocampus. Immunohistochemical double staining showed that some of the viral antigen-positive cells had also reacted with antibody to neuron-specific enolase at the same time, but had hardly reacted with antibodies to brain-type creatine kinase or glial fibrillary acidic protein. Brains of the offspring, which were injected with relatively low titers of virus (1 x 10(3) pfu) on day 15 of gestation, showed zonal arrangement of viral antigen-positive cells mainly in the cerebral cortex and in the hippocampus 7 days after birth, although the numbers of the positive cells were low. Fourteen days after birth, some of these offspring showed atrophy of the cerebral cortex and the hippocampus. These results suggest that some of the neuronal cells in the cerebral cortex and the hippocampus have special susceptibility to MCMV infection.

Animals↗

Strain differences in the teratogenicity induced by sodium valproate in cultured mouse embryos.

Strain differences in the teratogenicity of valproic acid (VPA) have been reported in mice. Finnell and Chernoff (Proc. Grnwd. Genet. Ctr. 5:162-163, 1985) showed that 300 mg/kg of VPA twice a day on days 6-8 of gestation induced exencephaly in 82% of SWV embryos but in 0% of C57BL/6J embryos. In the present experiment, we have collected similar results and investigated this strain difference using whole embryo culture in an attempt to determine whether maternal or embryonic factors are responsible for the difference. Mouse embryos were explanted on day 8.5 (plug day 0), and embryos at the 6-8-somite stage were cultured for 48 hours in rat serum containing various doses of sodium valproate (NaVP). All the embryos died within 24 hours with 4.5-mM and higher doses of NaVP in C57BL/6NCr1BR (C57) and with 3.0-mM and higher doses in SWV. Unfused brain folds were recognized in embryos treated with 3.0-mM and higher doses in C57, and with 1.0-mM and higher doses in SWV. Irregular somite formation was observed in many embryos treated with 1.6-mM and higher doses in C57 and with 1.0-mM and higher doses in SWV. These results indicate that SWV embryos have 1.5-3 times the sensitivity of C57 embryos to the embryolethal and teratogenic effects of NaVP. Furthermore, the results suggest that the basis of the strain difference resides within the embryo rather than the mother.

Animals↗

Murine cytomegalovirus infection of cultured mouse embryos.

Isolated mouse whole embryos of 7.5 days' gestation were infected with murine cytomegalovirus (MCMV) and cultured in pure rat serum. Although the MCMV infection had little effect on the survival and development of the embryos during 3 days of cultivation, immunohistochemical analysis of their serial sections using monoclonal antibody showed MCMV-infected cells in various portions of the embryos. This monoclonal antibody, when tested with the use of infected cultured mouse fibroblasts, reacted with nuclear antigen within 2 hours after infection and also reacted with nuclear inclusions in the late phase of infection. The viral antigen-positive cells detected by the monoclonal antibody were present in almost all of the ectoplacental cone and the yolk sac and in about 82% of the embryos. In the embryos, antigen-positive cells were frequently observed in the epithelium of the digestive tracts, endothelial cells of the blood vessels, and the mesodermal cells. In some of the embryos, viral antigen-positive cells were clearly observed in a small percentage of the blood cells. These findings indicate that blood cells, in addition to cell migration during embryogenesis, may play an important role in transmission of infectious virus into the embryos. Mouse whole embryo culture infected with MCMV can provide a model for the study of cellular tropism related to congenital infection by cytomegalovirus.

Animals↗

Prevention of polydactyly manifestation in Polydactyly Nagoya (Pdn) mice by administration of cytosine arabinoside during pregnancy.

Male mice heterozygous for the dominant polydactyly gene Pdn (Polydactyly Nagoya) were crossed with normal or heterozygous females of the same strain. Pregnant females were treated with 5 mg/kg of cytosine arabinoside (Ara-C) on day 12 of gestation. The offspring were removed on day 18 of gestation and examined for external malformations, and the fore- and hindlimbs were examined by means of bone- and cartilage-stained cleared specimens. In +/+ x Pdn/+ matings, Pdn/+ fetuses, bearing preaxial polydactyly of the distal phalangeal type in the hindlimb and deformity of the 1st digit in the forelimb, were obtained in about 50% of the nontreated group. In treated fetuses, however, the incidence of polydactyly and deformity of the 1st digit decreased to 1.4 and 10.1%, respectively. Nontreated Pdn/Pdn fetuses exhibited preaxial polydactyly of the duplicated or triplicated metacarpal/metatarsal type both in the fore- and hindlimbs. In the treated Pdn/Pdn fetuses, the number of preaxial extra digits decreased in both limbs. Some hindlimbs of the treated Pdn/Pdn fetuses exhibited five metatarsals, normally. In the vitally stained specimens at 6 and 24 hours after injection of Ara-C, preaxial marginal necrotic zones (fMI) were observed in almost all of the treated embryos from +/+ x Pdn/+ matings. However, approximately half of the embryos did not exhibit fMI in the nontreated control group at the same stage. Those embryos deficient in fMI were regarded as Pdn/+. These findings indicated that a subteratogenic dose of Ara-C prevented the genetic expression of polydactyly in almost all Pdn/+ and some cases of Pdn/Pdn mice.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Experimental induction of two inner cell masses in mouse embryos by vinblastine treatment in vitro.

Induction of artificial fission of the inner cell mass in an in vitro embryonal culture system was attempted. Mouse blastocysts were collected from uteri on day 3 of gestation and exposed to vinblastine sulfate after removal of zona pellucida. Embryos in the control group had a single inner cell mass on the trophectoderm and developed to the postblastocyst stage. On the other hand, the inner cell masses of the embryos in experimental groups subdivided into two or more. The present results, therefore, revealed that the vinblastine treatment at the blastocyst stage induced fission of the inner cell mass in mouse embryos. Further studies are planned in improved culture conditions to determine whether each inner cell mass subdivision develops into independent embryos.

Animals↗

Polydactyly Nagoya, Pdn: A new mutant gene in the mouse.

A new hereditary polydactyly (gene symbol Pdn) was found in the course of breeding JCL : ICR mice. The genetic analysis indicated that the polydactyly was an autosomal dominant trait. The homozygotes died within two days after birth. The homozygous fetuses or newborn had 1-3 extra-digits both in te fore- and hindlimbs on the preaxial side. They occasionally showed exencephaly, cleft palate, open eyelid, short tibia and fibula or deformed sternum. The heterozygotes had one extra-digit preaxial side. They occasionally showed exencephaly, heterozygotes had one extra-digit preaxially in the hindlimb and an enlarged first digit on the forelimb which often showed bifurcated distal phalanx. A tab on the postaxial side of the forelimb was found in all homozygotes and in some heterozygotes.

Animals↗

Prolonged cold storage abolishes endothelium-dependent relaxing responses to A23187 and substance P in porcine coronary arteries.

In the presence of potassium (K+), A23187 and substance P elicited endothelium-dependent relaxations of porcine coronary arteries. Isoproterenol or hypoxia elicited endothelium-independent relaxations. Rubbing the artery potentiated the contractile response to a low K+ concentration (15.4 mM). After intact arteries had been stored at 5 degrees C for 3 days, K(+)-induced maximal tension was not affected, but contractile responses to 15 mM K+ were potentiated with a decrease in ED50, suggesting that cold storage produces a supersensitivity to K+. Endothelium-dependent relaxations were abolished after 3 days of cold storage, while endothelium-independent relaxations were not inhibited. Cold storage of arteries with l-arginine (1 mM) for 3 days did not alter the relaxation responses to substance P and A23187, indicating that l-arginine does not prevent the loss of endothelium-dependent relaxation. Cold storage for 5 days inhibited the maximal tension to K+ and abolished the supersensitivity. Scanning electron micrographs showed that endothelial cells can be damaged by prolonged cold storage. The changes in tension response of the artery were correlated with the time course of endothelial cell loss resulting from cold storage.

Animals↗

A phase II study of 72-hour continuous infusion consisting of cisplatin and 5-fluorouracil for treatment of non-small cell lung cancer.

A combination chemotherapy consisting of a 72-hour continuous infusion of cisplatin (CDDP; 100 mg/m2/72 h) and 5-fluorouracil (5-FU; 3 g/m2/72 h) was conducted for inoperable non-small cell lung cancer (NSCLC). Sixty patients were accepted for this study between June 1988 and December 1990. Forty-seven patients were male (median age 68). Thirty-four patients had stage III and 26 had stage IV disease. The response rate was 25.0% (95% confidence interval, CI, 14.0-36.0%), median survival was 15.7 months. In squamous cell carcinoma, the response rate was 35.5% (95% CI, 18.7-52.3%) and median survival was 15.1 months. In non-squamous cell carcinoma, the response rate was 13.8% (95% CI, 1.2-26.4%) and median survival was 17.7 months. There was a significant difference in response rate (p < 0.01), but no significant difference in survival (p = 0.36). Grade 3 leukopenia was 11.7%, grade 3 and 4 thrombocytopenia was 13.3%. Grade 3 nausea and vomiting were 8.3%. One patient had grade 4 renal toxicity. However, there was no treatment-related death. This regimen was well tolerated. In multivariate analysis, the significant parameters were CEA, performance status and response. In conclusion, 72-hour continuous infusion of CDDP and 5-FU for treatment of NSCLC provides similar response and toxicity as previously reported regimens using CDDP.

Adult↗

CYFRA 21-1: an indicator of survival and therapeutic effect in lung cancer.

CYFRA 21-1 is a new tumor marker using two different monoclonal antibodies which recognize the divergent epitope on the N- or C-terminal region of domain 2 of cytokeratin 19 fragment, respectively. In this study, we investigated the relationship between levels of CYFRA 21-1 and survival duration, as well as the efficacy of chemotherapy associated with changes in CYFRA 21-1. Serum samples were obtained from 87 patients with nonoperable lung cancer (35 cases with squamous-cell carcinoma, 33 with adenocarcinoma, 3 with large-cell carcinoma, and 16 with small-cell carcinoma). The cutoff point was set at 3.5 ng/ml. In a CYFRA 21-1 assay, significantly more patients with squamous-cell carcinoma and adenocarcinoma were positive compared to patients with small-cell and large-cell carcinomas (p = 0.0017). Following chemotherapy, blood levels of CYFRA 21-1 decreased significantly in responders versus nonresponders (p = 0.0246). A significant correlation was noted between survival periods and pretreatment levels of CYFRA 21-1 (p = 0.0036). The present study suggests that CYFRA 21-1 might be useful as a possible indicator of survival and therapeutic effect for lung cancer.

Aged↗

Weekly CODE chemotherapy with recombinant human granulocyte colony-stimulating factor for relapsed or refractory small cell lung cancer.

We used cisplatin, vincristine, doxorubicin, and etoposide (CODE) plus recombinant human granulocyte colony-stimulating factor (rhG-CSF) weekly for salvage chemotherapy in relapsed or refractory small cell lung cancer (SCLC). We reviewed the medical charts of patients between January 1993 and December 1996 at the National Nishi-Gunma Hospital. Twenty patients were treated with salvage chemotherapy. The overall response rate was 55.0%. The median survival time of extensive disease patients from the start of CODE therapy was 23 weeks and the 1-year survival rate was 21.0%. Toxicities were severe, especially in myelosuppression. CODE could be selected as a salvage therapy for chemotherapy- relapsed SCLC cases.

Aged↗

Transformation of human glioma cell lines with the p16 gene inhibits cell proliferation.

We examined the genomic status of the p16 gene in 5 human glioma cell lines by Southern blot analysis. The p16 gene was located in the 9p21 chromosomal region and homozygous deletion was detected in 4 of 5 (80%) human glioma cell lines and 5 of 15 (33%) clinical samples. We transfected the full-length human p16 gene into p16-null human glioma cell line, U251MG cells, using the plasmid vector pRc/CMV-p16 and evaluated the effect of p16 gene transfer on the growth suppression of malignant glioma cells. The transfection of p16 cDNA caused growth suppression through G1 cell cycle arrest in U251MG cells. We also examined the effect of p16 gene transfer on the chemosensitivity to cis-diamminedichloroplatinum II (CDDP), 1-(4-amino-2-methyl-5-pyrimidinyl)methyl-3-(2-chloroethyl) -3-nitrosourea hydrochloride (ACNU), and 5'-azacytidine (AZC). We did not detect any change in them after p16 gene transfer. These results might suggest that deletion of p16 genes promoted unrestrained growth in human glioma but has no relationship to the chemosensitivity to CDDP, ACNU and AZC.

Antineoplastic Agents↗

High concentrations of recombinant adenovirus expressing p16 gene induces apoptosis in lung cancer cell lines.

In this study, we discussed the effects of treatment with recombinant adenovirus expressing p16 (AX-p16) on cell growth and cell death. Ax-p16 at 10 m.o.i. groups showed growth inhibition 3 days after gene transfection, but the cells regrew and did not undergo cell death. On the other hand, Ax-p16 at 300 m.o.i. groups showed complete cell growth inhibition leading to cell death which was apparent 7 days after p16 gene transfection. In the high m.o.i. Ax-mock groups, cell death was marked just after infection, but had diminished by 7 days after infection. Downregulation of pRB was detected only in Ax-p16 at 300 m.o.i. groups. These data suggest that a) high m.o.i. condition of Ax-p16 gives therapeutic benefits due to the combined effects of adenovirus and high expression of p16; and b) the cell killing mechanism of the p16 transgene is different from that of high m.o.i. adenoviral infection.

Adenoviruses, Human↗