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Biomedical subjects

M Ema

Publications and source records attributed to M Ema.

At least 37 records · Page 2Linked to original sources

Evaluation of early embryonic loss induced by tributyltin chloride in rats: phase- and dose-dependent antifertility effects.

In our previous study, tributyltin chloride (TBTCl) on days 0-7 of pregnancy was found to produce implantation failure in rats. The objective of the present study was to determine the susceptible period for the antifertility effect of TBTCl in rats. Inseminated females were orally administered TBTCl at 8.1, 16.3, or 32.5 mg/kg on days 0-3 of pregnancy, or at 8.1, 16.3, 32.5, or 65.1 mg/kg on days 4-7 of pregnancy. Pregnancy outcome was determined on day 20 of pregnancy. Dosing with TBTCl on days 0-3 of pregnancy at 16.3 mg/kg and higher produced a significant increase in the rate of implantation failure. Dosing with TBTCl on days 4-7 of pregnancy caused a significant increase in the incidence of postimplantation loss at 16.3 mg/kg and higher in females with implantations. No increase in the incidence of fetal malformations was found in any TBTCl-treated groups. It could be concluded that the susceptibility to and manifestation of the antifertility effects of TBTCl vary with the gestational stage at the time of administration.

Administration, Oral↗

cDNA cloning and predicted primary structure of scallop sarcoplasmic reticulum Ca(2+)-ATPase.

Sarcoplasmic reticulum (SR) Ca(2+)-ATPase of the scallop cross-striated adductor muscle was purified with deoxycholate and digested with lysyl endopeptidase for sequencing of the digested fragments. Overlapping cDNA clones of the ATPase were isolated by screening the cDNA library with an RT-PCR product as a hybridization probe, which encodes the partial amino acid sequence of the ATPase. The predicted amino acid sequence of the ATPase contained all the partial sequences determined with the proteolytic fragments and consisted of the 993 residues with approximately 70% overall sequence similarity to those of the SR ATPases from rabbit fast-twitch and slow-twitch muscles. An outline of the structure of the scallop ATPase molecule is predicted to mainly consist of ten transmembrane and five 'stalk' domains with two large cytoplasmic regions as observed with the rabbit ATPase molecules. The sequence relationship between scallop and other sarco/endoplasmic reticulum-type Ca(2+)-ATPases is discussed.

Amino Acid Sequence↗

Alcohol-induced vascular damage of brain is ameliorated by administration of magnesium.

Ethanol ingestion can cause irreversible neuronal and vascular damage in the brain and stroke-like events. Using an intact in vivo rat brain (pial) model, TV image-intensification, cultured cerebral vascular muscle cells, digital-image analysis, and a novel Mg2+ ion-selective electrode to measure extracellular ionized Mg2+, studies were designed to determine whether: 1) perivascular or systemic administration (i.v. or intra-arterial) of magnesium aspartate HCI (MgA) exert vasodilator effects on arterioles (65-130 microm o.d.) and venules (60-135 microm); 2) nonvasodilator doses of MgA could modify vascular spasms induced by BaCl2 and ethanol; 3) nonvasodilator doses of MgA could ameliorate or prevent the cerebral vascular damage induced by high doses of ethanol; and 4) ethanol depletes cerebral vascular muscle of intracellular Mg ions ([Mg2+]i). Perivascular application of MgA (0.01-100 micromol) produced dose-dependent vasodilatation of cerebral arterioles and venules; arterioles yielded greater vasodilator responses compared to venules. Nonvasodilator doses of Mg (1.0, 4.0 micromol/min), administered i.v. or intra-arterially, into a branch of the internal carotid artery, prevented: 1) the spasmogenic actions of ethanol and Ba2+; and 2) the vasculotoxic actions (rupture of postcapillary venules and focal hemorrhages) of ethanol. In addition, ethanol depleted cerebral vascular muscle cells of [Mg2+]i; blood levels of ionized Mg2+ rose after IP ethanol. Despite the fact that systemic infusion of low nonvasodilator doses did not result in dilatation of the pial arterioles and venules, plasma total and ionized Mg rose 18-230%, depending upon dose of MgA and time of plasma sampling. These data support the idea that Mg2+ can act as a local vasodilator on brain microvessels and possess antispasmodic properties on brain arterioles and venules. In addition, our results indicate that Mg may possess some unique cerebral vascular protective properties against the vasculotoxic effects of ethanol. Lastly, these findings suggest ethanol-induced cerebrovasospasm and vascular damage appear to be associated with a rapid loss of [Mg2+]i from cerebral vascular muscle cells.

Animals↗

Regulation of dioxin receptor function by omeprazole.

The intracellular dioxin (aryl hydrocarbon) receptor mediates signal transduction by dioxin (2,3,7,8-tetrachlorodibenzo-p-dioxin) and related environmental pollutants and functions as a ligand-activated transcription factor. In this study we have examined the effects on dioxin receptor function of a potentially novel ligand, omeprazole, which is widely clinically used as a gastric anti-ulcer drug. In primary human hepatocytes omeprazole potently induced cytochrome P4501A1 mRNA expression, whereas this effect was not detected in mouse primary hepatocytes. In human hepatoma cells omeprazole was found to induce transcription of reporter genes via the xenobiotic response element that is recognized by the ligand-activated dioxin receptor. In contrast, the human dioxin receptor was not activated by omeprazole upon expression in a receptor-deficient mouse hepatoma cell line. In a reconstituted yeast (Saccharomyces cerevisiae) model system, however, both the mouse and human dioxin receptors were potently activated by omeprazole. Although omeprazole failed to displace dioxin in in vitro ligand binding assays, a residue within the ligand binding domain that is critical for dioxin binding in vitro was also critical for omeprazole responsiveness in vivo. Consistent with this observation, both omeprazole and dioxin responsiveness of the dioxin receptor was inhibited in mutant yeast cells expressing low levels of the molecular chaperone hsp90 that is critical for ligand binding activity. The sulfoxide group that is essential for formation of a planar conversion product of omeprazole was found to be critical for dioxin receptor activation. Taken together, these data suggest that omeprazole represents a precursor for a novel class of dioxin receptor agonists that are bona fide dioxin receptor ligands but generated in a strictly species-specific manner.

Animals↗

A novel bHLH-PAS factor with close sequence similarity to hypoxia-inducible factor 1alpha regulates the VEGF expression and is potentially involved in lung and vascular development.

We have isolated and characterized a cDNA for a novel Per-Arnt/AhR-Sim basic helix-loop-helix (bHLH-PAS) factor that interacts with the Ah receptor nuclear translocator (Arnt), and its predicted amino acid sequence exhibits significant similarity to the hypoxia-inducible factor 1alpha (HIF1alpha) and Drosophila trachealess (dTrh) gene product. The HIF1alpha-like factor (HLF) encoded by the isolated cDNA bound the hypoxia-response element (HRE) found in enhancers of genes for erythropoietin, vascular endothelial growth factor (VEGF), and various glycolytic enzymes, and activated transcription of a reporter gene harboring the HRE. Although transcription-activating properties of HLF were very similar to those reported for HIF1alpha, their expression patterns were quite different between the two factors; HLF mRNA was most abundantly expressed in lung, followed by heart, liver, and other various organs under normoxic conditions, whereas HIF1alpha mRNA was ubiquitously expressed at much lower levels. In lung development around parturition, HLF mRNA expression was markedly enhanced, whereas that of HIF1alpha mRNA remained apparently unchanged at a much lower level. Moreover, HLF mRNA expression was closely correlated with that of VEGF mRNA. Whole mount in situ hybridization experiments demonstrated that HLF mRNA was expressed in vascular endothelial cells at the middle stages (9.5 and 10.5 days postcoitus) of mouse embryo development, where HIF1alpha mRNA was almost undetectable. The high expression level of HLF mRNA in the O2 delivery system of developing embryos and adult organs suggests that in a normoxic state, HLF regulates gene expression of VEGF, various glycolytic enzymes, and others driven by the HRE sequence, and may be involved in development of blood vessels and the tubular system of lung.

Amino Acid Sequence↗

Effect of the day of administration on the developmental toxicity of tributyltin chloride in rats.

The objective of this study was to determine the susceptible day for the teratogenicity of tributyltin chloride (TBTCI) by a single administration on one of the days during organogenesis. Pregnant rats were given a single dose of TBTCI by gastric intubation at 100 mg/kg on either day 7, day 8, or day 9 and at 200 mg/kg on either day 7, day 8, day 9, day 10, day 11, day 12, day 13, day 14, or day 15 of pregnancy. The maternal body weight gain in the period immediately following administration in all TBTCI-treated groups was significantly decreased. A significant increase in the incidence of postimplantation loss was found after administration of TBTCI on day 7, day 8, and day 9 at 100 and 200 mg/kg and on day 10 and day 11 at 200 mg/kg. A significantly increased incidence of fetuses with external malformations was detected when TBTCI was given on day 8 at 100 and 200 mg/kg and on day 11, day 12, day 13, and day 14 at 200 mg/kg, and the most pronounced effect occurred after administration on day 13 of pregnancy. Cleft palate was observed exclusively after administration during late organogenesis. It could be concluded that the manifestation and susceptibility of the developmental toxicity of TBTCI vary with the developmental stages at the time of administration and that TBTCI has the biphasic sensitivity to teratogenicity on day 8 and days 11-14 of pregnancy.

Abnormalities, Drug-Induced↗

Developmental toxicity evaluation of phthalic acid, one of the metabolites of phthalic acid esters, in rats.

The objective of this study was to evaluate the developmental toxicity of phthalic acid (PA), which is one of the metabolites of phthalic acid esters (PAEs). Pregnant rats were given PA at a dose of 0 (control), 1.25, 2.5, or 5.0% in the diet on day 7 through day 16 of pregnancy. Average daily intakes of PA were 1021 mg/kg for the 1.25% group, 1763 mg/kg for the 2.5% group, and 2981 mg/kg for the 5.0% group. Maternal toxicity occurred in the 2.5 and 5.0% groups as can be seen by significant decreases in the maternal body weight gain and food consumption during the administration period. No significant changes in maternal parameters were found in the 1.25% group. Neither deaths nor clinical signs of toxicity were noted in any groups. No significant changes induced by PA were detected in the incidence of postimplantation loss and number and sex ratio of live fetuses. Significant decreases in the weight of male fetuses and number of ossification center of the caudal vertebrae were found in the 5.0% group. Morphological examinations of fetuses revealed no evidence of teratogenesis. Thus it appears unlikely that PA may be responsible for the production of the developmental toxicity of PAEs.

Animals↗

Loss of teratogenic response to 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) in mice lacking the Ah (dioxin) receptor.

BACKGROUND: The aryl hydrocarbon receptor (AhR or dioxin receptor) is a ligand-activated transcription factor that is considered to mediate pleiotropic biological responses such as teratogenesis, tumour promotion, epithelial hyperplasia and the induction of drug-metabolizing enzymes to environmental contaminants usually represented by 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD). In contrast to the role of AhR in the regulatory mechanism of xenobiotic-metabolizing enzymes, there is no direct proof that the AhR is involved in the teratogenic effects of TCDD. RESULTS: To gain insight into the physiological and teratogenic role of the AhR, we have used gene targeting in mice to disrupt the murine Ahr gene by homologous recombination. Ahr-null mice were viable and fertile and were apparently normal at birth, but displayed a slightly slower growth rate than wild-type mice for the first few weeks of life. When pregnant dams were administered with TCDD by gavage, at a dose of 40 microg/kg body weight at gestation day 12.5, none of the Ahr-null mutant foetuses were sensitive to the teratogenic effects of TCDD, although almost all wild-type foetuses suffered from cleft palate and hydronephrosis. In heterozygous Ahr+/- genotypes, nearly all foetuses suffered from hydronephrosis in response to TCDD treatment, while haplo-insufficiency was observed in the incidence of cleft palate. CONCLUSION: These results clearly show that the AhR is involved in the malformation of the palate and kidney in mouse embryos caused by TCDD and suggests that the mechanism of its involvement differs between the cleft palate and hydronephrosis.

Animals↗

Pre-implantation embryonic loss induced by tributyltin chloride in rats.

The effect of tributyltin chloride (TBTCl) administered during early pregnancy on pregnancy maintenance was evaluated in rats. Inseminated females were orally administered TBTCl at a dose of 0, 8.1, 12.2 or 16.3 mg/kg on day 0 through day 7 of pregnancy. Females were sacrificed on day 20 of pregnancy and pregnancy outcome was determined. Pregnancy failure, which was evidenced by absence of implantation sites, was found in 0 of the 10, in 2 of the 11, in 10 of the 14 and in 10 of the 13 females at 0, 8.1, 12.2 and 16.3 mg/kg, respectively. The rate of pregnancy failure was significantly higher in the 12.2 and 16.3 mg/kg groups than that in the control group. In females with successful pregnancy, the numbers of corpora lutea, implantations and post-implantation loss per litter were comparable across all groups. No increase in the incidence of malformed fetuses was found in any TBTCl-treated groups. Thus it appears that TBTCl causes pregnancy failure after administration during very early pregnancy.

Administration, Oral↗

cDNA cloning of a murine homologue of Drosophila single-minded, its mRNA expression in mouse development, and chromosome localization.

A combination of the RT-PCR method and subsequent screening of the cDNA library of mouse skeletal muscle with the cDNA isolated by RT-PCR used as a probe led to isolation of cDNAs encoding a polypeptide (mSim) with bHLH and PAS domains which show high similarity to the corresponding regions of Drosophila Sim, a master regulator in neurogenesis. Experiments using a GST-fusion protein demonstrated that mSim heterodimerizes with Arnt (Ah receptor nuclear translocator), even more efficiently than AhR (Ah receptor) does with Arnt. RNA blot analysis using RNAs from various tissues of mice indicated that mSim transcript is expressed in several limited tissues such as muscle, kidney and lung of adult animals. Distribution of mSim mRNA was always accompanied with that of Arnt. All the results suggest a regulatory role of mSim in partnership with Arnt. Chromosomal location of the mSim gene was determined by fluorescent in situ hybridization to be localized on the C3.3-C4 band of mouse chromosome 16 which is syntenic with the human chromosome 21q22 carrying the Down syndrome critical region, where a gene highly homologous to the Drosophila sim was localized. Whole mount in situ hybridization using a unique part of mSim cDNA sequence showed that mSim mRNA was expressed in the ventral diencephalon, branchial arches and limbs. These findings will provide an approach to the cause of the Down syndrome as well as the elucidation of the functional roles of mSim in animal development.

Age Factors↗

Phase specificity of developmental toxicity after oral administration of mono-n-butyl phthalate in rats.

The objective of this study was to further characterize the developmental toxicity of mono-n-butyl phthalate (MBuP), which is one of the major metabolites of n-butyl benzyl phthalate (BBP) and di-n-butyl phthalate (DBP). Pregnant rats were given MBuP by gastric intubation at a dose of 500, 625 or 750 mg/kg on days 7-9, days 10-12, or days 13-15 of pregnancy. A significantly increased incidence of postimplantation loss was noted in pregnant rats given MBuP on days 7-9 and days 10-12 at doses of 625 mg/kg and above and on days 13-15 at doses of 500 mg/kg and above. No evidence of teratogenicity was found when MBuP was given on days 10-12 of pregnancy. A significantly increased incidence of fetuses with external malformations was found after treatment with MBuP on days 7-9 and days 13-15 at doses of 625 and 750 mg/kg. A significantly increased incidence of fetuses with skeletal malformations was observed after treatment with MBuP on days 7-9 at doses of 500 mg/kg and above and on days 13-15 at doses of 625 mg/kg and above. Deformity of the cervical vertebrae was predominantly observed following treatment with MBuP on days 7-9. Cleft palate and fusion of the sternebrae were exclusively found following treatment with MBuP on days 13-15. It could be concluded that the manifestation of deviant development induced by MBuP varies with the developmental stage at the time of administration.

Administration, Oral↗

Change of embryotoxic susceptibility to di-n-butyltin dichloride in cultured rat embryos.

Di-n-butylin dichloride (DBTCl), which is commonly used as heat and light stabilizer for polyvinyl chloride (PVC) plastics, is a teratogen in vivo. In the present study, the toxic effects were investigated of DBTCl on cultured rat embryos during three different stages of organogenesis. Rat embryos explanted on gestational day (GD) 8.5, GD 9.5, and GD 11.5 were cultured for 68, 46, and 48 h and were exposed to a range of DBTCl concentrations for the first 24, 46, and the last 46 h of culture, respectively. Significant decreases in the placental diameter at > or = 10 ng/ml and in the number of somite pairs and the morphological score at 30 ng/ml were noted in embryos cultured from GD 8.5. Significant decreases in the yolk sac diameter and the crown-rump length at 100 ng/ml, in the number of somite pairs at > or = 50 ng/ml, and in the morphological score at > or = 30 ng/ml were found in embryos cultured from GD 9.5. No adverse effects on these parameters were detected in embryos cultured from GD 11.5 even at 300 ng/ml. Dysmorphogenesis in embryos cultured from GD 8.5, GD 9.5, and GD 11.5 was observed at > or = 10, > or = 50, and 300 ng/ml, respectively. Incomplete turning and craniofacial defects in embryos cultured from GD 8.5 and GD 9.5 and defects of the forelimb buds and tail in embryos cultured from GD 11.5 were frequently observed. These results show that in vitro exposure to DBTCl interferes with normal development of embryos during three different stages of organogenesis and that susceptibility to the embryotoxicity, including the dysmorphogenic potential of DBTCl, varies with developmental stage.

Animals↗

Trypsin promotes C6 glioma cell proliferation in serum- and growth factor-free medium.

C6 glioma cells could be successively subcultured and maintained in serum- and growth factor-free medium (SF/GFF medium). C6 cell proliferation in SF/GFF medium was positively correlated with the initial cell density at plating. This correlation disappeared when the medium had been renewed early after cell adhesion (3 h after plating), suggesting that C6 cell growth depends on some diffusible factor in the medium before renewal, and that this factor is not secreted from C6 cells in the assay culture but is transferred from the cell suspension. The supernatant of trypsinized C6 cell suspension (SCS), trypsin-EDTA solution for routine cell harvesting use, and modified trypsin of protein sequencing grade all promoted C6 cell proliferation at, appropriate dilutions or concentrations under SF/GFF conditions. The growth promoting effects of SCS and trypsin-EDTA solution were completely inhibited by soybean trypsin inhibitor. These results demonstrate that the serine protease trypsin has a proliferative effect on C6 cells continuously subcultured in SF/GFF medium. In addition, it is suggested that trypsin used for cell dispersion is transferred from cell suspension into the culture, where it promotes C6 cell growth after passage in our SF/GFF subculture system.

Animals↗

Developmental toxicity of mono-n-benzyl phthalate, one of the major metabolites of the plasticizer n-butyl benzyl phthalate, in rats.

Mono-n-benzyl phthalate (MBeP), one of the major metabolites of the plasticizer n-butyl benzyl phthalate, was evaluated for developmental toxicity in Wistar rats. Rats were given MBeP by gastric intubation at 0, 250, 313, 375, 438 or 500 mg/kg from day 7 through day 15 of pregnancy. Significant decreases in the maternal body weight gains and food consumption during administration period were observed at 313 mg/kg and above and at 250 mg/kg and above, respectively. Significant increase in the incidence of postimplantation loss per litter was found at 438 and 500 mg/kg. The incidences of fetuses with external malformations at 438 mg/kg, of fetuses with skeletal malformations at 313 mg/kg and above and of fetuses with internal malformations at 375 mg/kg and above were higher than those in the control group. Defects in the cervical and thoracic vertebrae, ribs and kidney were frequently observed.

Abnormalities, Drug-Induced↗

Two new members of the murine Sim gene family are transcriptional repressors and show different expression patterns during mouse embryogenesis.

From a cDNA library of mouse skeletal muscle, we have isolated mouse Sim1 (mSim1) cDNA encoding a polypeptide of 765 amino acids with striking amino acid identify in basic helix-loop-helix (89% identify) and PAS (89 % identify) domains to previously identified mSim2, although the carboxy-terminal third of the molecule did not show any similarity to mSim2 or Drosophila Sim (dSim). Yeast two-hybrid analysis and coimmunoprecipitation experiments demonstrated that both of the mSim gene products interacted with Arnt even more efficiently than AhR, a natural partner of Arnt, suggesting a functional cooperativity with Arnt. In sharp contrast with dSim having transcriptional-enhancing activity in the carboxy-terminal region, the two mSims possessed a repressive activity toward Arnt in the heterodimer complex. This is the first example of bHLH-PAS proteins with transrepressor activity, although some genetic data suggest that dSim plays a repressive role in gene expression (Z. Chang, D. Price, S. Bockheim, M. J. Boedigheimer, R. Smith, and A. Laughon, Dev. Biol. 160:315-322, 1993; D. M. Mellerick and M. Nirenberg, Dev. Biol. 171:306-316, 1995). Whole-mount in situ hybridization showed restricted and characteristic expression patterns of the two mSim mRNAs in various tissues and organs during embryogenesis, such as those for the somite, the nephrogenic cord, and the mesencephalon (for mSim1) and those for the diencephalon, branchial arches, and limbs (for mSim2). From sequence similarity and chromosomal localization, it is concluded that mSim2 is an ortholog of hSim2, which is proposed to be a candidate gene responsible for Down's syndrome. The sites of mSim2 expression showed an overlap with the affected regions of the syndrome, further strengthening involvement of mSim2 in Down's syndrome.

Amino Acid Sequence↗

cDNA cloning and tissue-specific expression of a novel basic helix-loop-helix/PAS factor (Arnt2) with close sequence similarity to the aryl hydrocarbon receptor nuclear translocator (Arnt).

We isolated mouse cDNA clones (Arnt2) that are highly similar to but distinct from the aryl hydrocarbon receptor (AhR) nuclear translocator (Arnt). The composite cDNA covered a 2,443-bp sequence consisting of a putative 2,136-bp open reading frame encoding a polypeptide of 712 amino acids. The predicted Arnt2 polypeptide carries a characteristic basic helix-loop-helix (bHLH)/PAS motif in its N-terminal region with close similarity (81% identity) to that of mouse Arnt and has an overall sequence identity of 57% with Arnt. Biochemical properties and interaction of Arnt2 with other bHLH/PAS proteins were investigated by coimmunoprecipitation assays, gel mobility shift assays, and the yeast two-hybrid system. Arnt2 interacted with AhR and mouse Sim as efficiently as Arnt, and the Arnt2-AhR complex recognized and bound specifically the xenobiotic responsive element (XRE) sequence. Expression of Arnt2 successfully rescued XRE-driven reporter gene activity in the Arnt-defective c4 mutant of Hepa-1 cells. RNA blot analysis revealed that expression of Arnt2 mRNA was restricted to the brains and kidneys of adult mice, while Arnt mRNA was expressed ubiquitously. In addition, whole-mount in situ hybridization of 9.5-day mouse embryos showed that Arnt2 mRNA was expressed in the dorsal neural tube and branchial arch 1, while Arnt transcripts were detected broadly in various tissues of mesodermal and endodermal origins. These results suggest that Arnt2 may play different roles from Arnt both in adult mice and in developing embryos. Finally, sequence comparison of the currently known bHLH/PAS proteins indicates a division into two phylogenetic groups: the Arnt group, containing Arnt, Arnt2, and Per, and the AhR group, consisting of AhR, Sim, and Hif-1alpha.

Amino Acid Sequence↗