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T Shoda

Publications and source records attributed to T Shoda.

At least 19 recordsLinked to original sources

Testicular toxicity of nitrofurazone causing germ cell apoptosis in rats.

In order to clarify the mechanism underlying testicular toxicity of nitrofurazone (NF), two experiments were performed. In experiment 1, sequential histopathological examination of testes after a single oral administration of 100 or 300 mg/kg NF to male rats demonstrated that degeneration of pachytene spermatocytes with an eosinophilic, shrunken appearance in stages VII-VIII and vacuolation of Sertoli cells were first observed 12 h after treatment. By 24 h, degeneration of pachytene spermatocytes in stages VII-XII and diplotene spermatocytes were observed. On post-treatment day 4, neither spermatocytes nor spermatids located inside the pachytene spermatocytes in stage VII were seen anywhere. Generation of seminiferous epithelium progressed with recovery to almost normal morphology after 12 weeks, although some morphological changes were still present. No lesions were apparent in spermatogonia, preleptotene spermatocytes, leptotene spermatocytes, zygotene spermatocytes or Leydig cells. Degenerate pachytene spermatocytes and some round spermatids seen after 24 h showed positive TdT-mediated dUTP-biotin nick end labeling (TUNEL). In addition, DNA laddering patterns were detected with agarose gel electrophoresis, and increased electron density of nuclei and cytoplasm of degenerating spermatocytes with nuclear chromatin focal aggregations were observed by electron microscopy, indicating that cell death was attributable to apoptosis. In experiment 2, sequential serum sex-related hormone levels were assayed after a single oral administration of 300 mg/kg NF to male rats and revealed a significant increase of testosterone and a decrease of progesterone at 6 h, and decreases of luteinizing hormone at 12 h and testosterone at 24 h. Prolactin tended to decrease from 12 h after treatment and the decrease was significant at 48 h. No significant changes were observed in levels of follicle-stimulating hormone or estradiol. The probability that NF damages germ cells by causing a hormonal imbalance is extremely low, since no pattern of hormonal imbalance that could be regarded as the cause of the testicular degeneration was observed until 12 h after NF treatment when pachytene spermatocytes began to degenerate. The present experiments suggest that NF damages Sertoli cells and pachytene spermatocytes in stages VII-XII directly.

Administration, Oral↗

The multiple untranslated first exons system of the human estrogen receptor beta (ER beta) gene.

In order to investigate the regulatory mechanism of the expression of the human estrogen receptor beta (ER beta) gene, we have analyzed the structure of the 5'-untranslated region of the ER beta mRNA in the normal uterine endometrium and liver using the 5'-rapid amplification of the cDNA ends method. The sequence analysis revealed the presence of the two isoforms of the ER beta mRNA containing the distinct 5'-untranslated regions. The genomic analysis revealed that the two isoforms of the message originated from the two distinct untranslated first exons, termed the exon 0K and exon 0N, which were spliced to the exon 1. We termed the two isoforms of the message the ER beta mRNA (0K-1) and ER beta mRNA (0N-1). We further analyzed the distribution of the ER beta mRNA (0K-1) and ER beta mRNA (0N-1) in the ejaculated spermatozoa, liver, uterine endometrium and myometrium, and peripheral leukocytes using the reverse transcription-polymerase chain reaction. The distributions of the two mRNA isoforms were different from each other. From these results, it is indicated for the first time that the expression of the human estrogen receptor beta (ER beta) gene is regulated, at least in part, by the multiple untranslated first exons and promoters system.

5' Untranslated Regions↗

Activation of mu-opioid receptor induces expression of c-fos and junB via mitogen-activated protein kinase cascade.

BACKGROUND: Opioid-induced long-term functional alterations of the nervous system, such as tolerance, addiction, and dependence, conceivably involve changes in gene expression. The authors have previously reported that opioid receptors are functionally coupled to extracellular signal-regulated kinase, a class of the mitogen-activated protein kinase. To address whether activation of the opioid receptor induces changes in gene expression through the activation of extracellular signal-regulated kinase, the authors examined mu-opioid receptor (MOR)-induced immediate early gene expression. METHODS: Chinese hamster ovary cells stably expressing MOR were used. Cells were stimulated by MOR agonists after 24-h serum starvation. Expression of c-fos and junB genes was analyzed by RNA blot hybridization. To explore the mechanism of MOR-mediated c-fos and junB expression, activity of a transcription factor, Elk-1, was assessed by reporter assay. Furthermore, to investigate the functional consequences of c-fos and junB induction, MOR-mediated formation of the functional transcription factor complex AP-1 was examined by reporter assay and electrophoretic mobility shift assay. RESULTS: Mu-opioid receptor activation induced c-fos and junB messenger RNAs, which were inhibited by pretreatment of the cells with pertussis toxin and PD98059, an inhibitor of extracellular signal-regulated kinase cascade. MOR stimulation elevated Elk-1-mediated transcriptional activity by about 10-fold. AP-1-mediated transcriptional activity was stimulated by MOR agonists by about twofold. Electrophoretic mobility shift assay revealed that AP-1 binding activity in the nuclear extract was elevated by MOR activation and further showed that products of c-fos and junB genes are involved in formation of AP-1 complex. CONCLUSIONS: Mu-opioid receptor activation induces c-fos and junB expression and elevates AP-1-mediated transcriptional activities via the mitogen-activated protein kinase cascade.

Animals↗

The novel untranslated exon "exon 0T" encoded between the exon 0 and exon 1 of the rat estrogen receptor alpha (ER alpha) gene.

We have recently isolated two untranslated first exons, exon 0N and exon 0S, of rat estrogen receptor alpha (ER alpha) gene from the liver by use of 5'-rapid amplification of the cDNA ends (5'-RACE) method. In this communication, we further analyzed the 5'-untranslated region (UTR) of the ER alpha mRNA in rat anterior hypophysis in order to investigate the existence of the other 5'-untranslated exon(s) of rat ER alpha gene. Total RNA from the anterior hypophysis of 8-week-old female Wistar strain male rats was subjected to 5'-RACE with antisense primers located in exon 1 of the rat ER alpha gene and one of the positive clones (clone 35) was sequenced. The nucleotide sequence of clone 35 revealed the insertion of a previously unidentified exon (which we termed "exon 0T") between exon 0 (the first reported 5'-UTR form of rat ER alpha mRNA) and exon 1 of rat ER alpha mRNA. Analysis of rat genomic DNA indicated that exon 0T was located between exon 0 and exon 1 of rat ER alpha gene. We further investigated the distribution of ER alpha mRNA containing exon 0T in several brain regions and various peripheral tissues of 8-week-old male and female Wistar strain rats by use of reverse transcription-polymerase chain reaction (RT-PCR). The distribution of the ER alpha mRNA (0T-1) was essentially similar to that of ER alpha mRNA in which exon 0 was spliced onto exon 1 reported previously. These results indicate that (1) exon 0T is a novel untranslated exon of rat ER alpha gene which is located between exon 0 and exon 1 on rat genomic DNA, (2) exon 0T is inserted between exon 0 and exon 1 of ER alpha mRNA by alternative splicing, and (3) this alternative splicing may occur in tissues where the transcription of ER alpha gene is initiated from exon 0.

5' Untranslated Regions↗

[A case of ovarian cancer with metastatic tumor in the liver with paclitaxel and carboplatin systemic chemotherapy was very effective].

An 82-year-old woman was admitted to the Dept. of Obstetrics and Gynecology, Yamanashi Medical University to try to identify the origin of a liver metastatic tumor. CT examination revealed a small tumor located adjacent to the uterine cervix in a cul-de-sac. With biopsy using MR, it was clearly shown histologically that the origin of the tumor was the ovary. Systemic chemotherapy with paclitaxel and carboplatin was selected as the most reasonable treatment for this case because of the patient's age. After 6 courses of this chemotherapy, the tumor in the cul-de-sac disappeared and the tumor in the liver decreased markedly. Furthermore, no severe side effects were seen during this treatment. This result indicated that systemic chemotherapy with paclitaxel and carboplatin is effective and safe in cases of advanced ovarian cancer.

Adenocarcinoma↗

A new spontaneously diabetic non-obese Torii rat strain with severe ocular complications.

A new spontaneously diabetic strain of the Sprague-Dawley rat was established in 1997 and named the SDT (Spontaneously Diabetic Torii) rat. In this research, we investigated the characteristics of the disease condition in the SDT rats. The time of onset of glucosuria was different between male and female SDT rats; glucosuria appeared at approximately 20 weeks of age in male rats and at approximately 45 weeks of age in female rats. A cumulative incidence of diabetes of 100% was noted by 40 weeks of age in male rats, while it was only 33.3% even by 65 weeks of age in female rats. The survival rate up to 65 weeks of age was 92.9% in male rats and 97.4% in female rats. Glucose intolerance was observed in male rats from 16 weeks of age. The clinical characteristics of the male SDT rats were (1) hyperglycemia and hypoinsulinemia (from 25 weeks of age); (2) long-term survival without insulin treatment; (3) hypertriglyceridemia (by 35 weeks of age); however, no obesity was noted in any of the male rats. The histopathological characteristics of the male rats with diabetes mellitus (DM) were (1) fibrosis of the pancreatic islets (by 25 weeks of age); (2) cataract (by 40 weeks of age); (3) tractional retinal detachment with fibrous proliferation (by 70 weeks of age) and (4) massive hemorrhaging in the anterior chamber (by 77 weeks of age). These clinical and histopathological characteristics of the disease in SDT rats resemble those of human Type 2 diabetes with insulin hyposecretion. In conclusion, SDT rat is considered to be a potentially useful model for studies of diabetic retinopathy encountered in humans.

Animals↗

The novel isoform of the progesterone receptor cDNA in the human testis and detection of its mRNA in the human uterine endometrium.

A novel isoform (termed isoform S) of the progesterone receptor (PR) cDNA (PR isoform S cDNA) which consists of a previously unidentified 5' sequence and exons 4-8 of the intracellular PR gene has been cloned from the human testicular cDNA library. The 5' sequence of the message was confirmed to be derived from a novel exon (termed exon S) by genomic cloning. The expression level of the PR isoform S mRNA was higher in the spermatozoon than in the uterine endometrium with a lower expression level of the PR isoforms B and A mRNAs in the spermatozoon than in the endometrium. These results implied that the PR isoform S which was possibly translated from the PR isoform S mRNA in the spermatozoon might be related to the cell surface membrane PR. Moreover, the PR isoform S in the uterine endometrium might play some physiological and/or pathogenic roles.

Base Sequence↗

Tumor-promoting activities of hydroquinone and 1,1-dimethylhydrazine after initiation of newborn mice with 1-methyl-1-nitrosourea.

To clarify the suitability of a newborn-mouse carcinogenesis assay to detect tumor-promoting activities of carcinogens, the non-genotoxic hydroquinone (HQ) and genotoxic 1,1-dimethylhydrazine (UDMH) were administered to mice during the promotion stage after treatment with 1-methyl-1-nitrosourea (MNU) (20 mg/kg body wt, single intraperitoneal injection) at day 9 after birth. Initiated males and females thus received either HQ at 0.8% in basal diet, or UDMH, at 20 mg/kg body wt once weekly by subcutaneous injection, from day 14 until the end of the experiment at 30 weeks of age. Uninitiated newborn mice, given an injection of the vehicle (0.01 M citrate buffer (pH 5.5), 20 mg/kg body wt), also received HQ or UDMH in the same way. Histopathologically, focal proliferative lesions were found in the livers of male mice and in the lungs of both male and female mice in the MNU-treated groups. HQ significantly increased the incidence and multiplicity of altered hepatocellular foci, the combined incidence of hepatocellular adenomas and carcinomas in males and the incidence and multiplicity of lung adenomas and the combined incidence of lung adenomas and carcinomas in female mice. In addition, four out of eleven MNU + HQ-treated male mice developed lung carcinomas, showing a significant elevation in multiplicity. UDMH also exhibited a tendency to increase the incidence and multiplicity of lung adenomas in female mice. Thus tumor-promoting effects of HQ or UDMH were apparently exerted in the target organs and the MNU-initiated two-stage newborn-mouse carcinogenesis assay may be useful for detection of genotoxic or non-genotoxic carcinogenicity.

Adenoma↗

Opioid potentiation of N-type Ca2+ channel currents via pertussis-toxin-sensitive G proteins in NG108-15 cells.

Opioids have both inhibitory and stimulatory effects on neurotransmitter release. While the inhibitory effect has been ascribed to presynaptic inhibition of Ca2+ channels, the cellular mechanism underlying the stimulatory effect is not clear. In order to address this issue, we analyzed the effects of [d-Ala2, d-Leu5]-enkephalin (DADLE) on whole-cell Ba2+ currents (IBa) through voltage-gated Ca2+ channels in NG108-15 neuroblastoma x glioma hybrid cells. Application of DADLE inhibited and washout of DADLE transiently potentiated IBa. Furthermore, potentiation of IBa was elicited even in the presence of DADLE, when inhibition was relieved by a large depolarizing prepulse. DADLE-induced potentiation, as well as inhibition, had both voltage-sensitive and -insensitive components and was abolished by treatment with ICI174864, a delta-opioid antagonist, pertussis toxin (PTX) and omega-conotoxin GVIA. Potentiation developed over @3 min and took 5-20 min to recover, whereas inhibition was complete within 30 s and recovered within 1 min. Although this potentiation should contribute to DADLE-induced desensitization of Ca2+ channel inhibition, it was not the sole mechanism for desensitization. We conclude that the delta-opioid receptor exerts a dual action on N-type Ca2+ channels via PTX-sensitive G proteins, i.e., rapid inhibition followed by slowly developing potentiation.

Barium↗

The relationship between decrease in Cx32 and induction of P450 isozymes in the early phase of clofibrate hepatocarcinogenesis in the rat.

To examine the relationship between the decrease in connexin 32 (Cx32) and induction of P450 isozymes in the early phase of clofibrate hepatocarcinogenesis, a total of 20 male F344 rats were initiated with a single intraperitoneal injection of 150 mg/kg of diethylnitrosamine (DEN) or given the saline vehicle alone and starting 2 weeks later given diet containing 0.18, 0.09, and 0% clofibrate for 6 weeks. All animals were subjected to two-thirds partial hepatectomy at week 3 and killed at week 8. Absolute and relative (ratios to body weight) liver weights were significantly increased in the DEN + clofibrate groups compared with the DEN-alone group. Diffuse hepatocellular hypertrophy with granular cytoplasmic eosinophilia characterized by a marked increase in peroxisomes and smooth endoplasmic reticulum, was observed in the clofibrate treated rats. Induction of cytochrome P450 (CYP) 4A1 and 2B1/2 was noted in the DEN + clofibrate groups, this being most marked in the CYP 2B1 case. Immunohistochemically, positive immunostaining for anti-CYP 4A1 and CYP 2B1 were observed diffusely and centrilobularly, respectively. The numbers and areas of Cx32-positive spots per hepatocyte in the centrilobular areas in the treated rats were significantly decreased in an essentially dose-dependent manner, but no changes were observed in periportal areas. The numbers and areas of foci positive for glutathione S-transferase placental form (GST-P) were decreased in a dose dependent manner in the clofibrate treated groups. These results suggest that the CYP 2B1/2 induction and Cx32 decrease in centrilobular hepatocytes, similarly to those thought to be involved in the hepatic promotion mechanism of phenobarbital, may also play important roles in clofibrate actions in the liver, in addition to its causation of oxidative DNA injury.

Animals↗

Elective induction of labor at 39 weeks of gestation: a prospective randomized trial.

OBJECTIVE: To clarify the safety of elective induction of labor at 39 weeks of gestation. STUDY DESIGN: Prospective randomized study. SUBJECTS AND METHODS: Uncomplicated nulliparas (N = 194) were randomly assigned at 36 weeks of gestation. Labor was electively induced in 63 women at 39 weeks of gestation in the active management group (I group, N = 98). Spontaneous labor onset was expected with semi-weekly nonstress test (NST) and amniotic fluid index (AFI) by 42 weeks of gestation in the expectant group (E group, N = 96). Perinatal events were compared between the 2 groups. RESULTS: A significantly higher incidence of meconium-stained amnios (19.4% vs 3.2%) and fetal resuscitation (16.7% vs 4.8%) was found in the E group than in the I group. Also, although a significantly higher incidence of epidural analgesia was noted in the I group (89%) than in the E group (54%) (labor onset > or = 39 weeks, N = 72), the duration of the 1st stage was shorter in I group and the duration of the 2nd stage was not significantly different. No other significant difference was noted between the 2 groups in terms of the rate of C-section, blood loss, incidence of pathological FHR, birth weight, Apgar score, umbilical arterial pH, or admission to NICU. CONCLUSION: Active management of labor at 39 weeks could be made as safely as expectant management with modified biophysical profile monitoring.

Adult↗

Nociceptin receptor-mediated Ca2+ channel inhibition and its desensitization in NG108-15 cells.

It has been shown that the membrane of hybrid NG108-15 neuroblastoma x glioma cells contains a high-affinity binding site for nociceptin. In the present study, we first demonstrated the expression of nociceptin receptor mRNA in NG108-15 cells. Application of nociceptin to NG108-15 cells produced a concentration-dependent (EC50 = 29 nM) inhibition of Ca2+ channel currents in a pertussis toxin-sensitive fashion. This nociceptin-induced inhibition of Ca2+ channel currents was prevented in the presence of omega-conotoxin GVIA, a blocker of the N-type Ca2+ channel, and had both voltage-dependent and -independent components. Prolonged application of nociceptin elicited homologous desensitization of the inhibition with a time constant of 5.3 min. These results indicate that the nociceptin receptor is coupled to the N-type Ca2+ channel via pertussis toxin-sensitive G proteins in NG108-15 cells and that this coupling is associated with rapid and homologous desensitization.

Animals↗

Adaptations to chronic agonist exposure of mu-opioid receptor-expressing Chinese hamster ovary cells.

To investigate cellular adaptation responses induced by chronic agonist treatment of the mu-opioid receptor, Chinese hamster ovary (CHO) cells were stably transfected with the rat mu-opioid receptor cDNA. Chronic treatment with agonists selective for the mu-opioid receptor, [D-Ala2, N-MePhe4, Gy-ol5]enkephalin (DAMGO), morphine and fentanyl, time- and dose-dependently induced down-regulation of the mu-opioid receptor. The down-regulation was not significantly affected by pretreatment with pertussis toxin, but was completely blocked by treatment with hypertonic sucrose, suggesting that receptor internalization mediated by clathrin-coated vesicles is an essential step in the mu-opioid receptor down-regulation. On the other hand, forskolin-stimulated cyclic AMP formation was increased by chronic DAMGO treatment, which was inhibited by pertussis toxin pretreatment. These results indicate that two adaptation responses induced by chronic agonist treatment of the mu-opioid receptor-expressing CHO cells, down-regulation of the mu-opioid receptor and supersensitization of adenylate cyclase, are mediated by distinct mechanisms.

Animals↗

Tyrosine kinase inhibitors suppress N-type and T-type Ca2+ channel currents in NG108-15 cells.

Modulation of Ca2+ channel activity by protein kinases constitutes one of the major mechanisms regulating neuronal functions. Here, we explored the possible modulation of neuronal Ca2+ channels by protein tyrosine kinases (PTKs). To this end, the effects of PTK inhibitors on whole-cell Ba2+ currents (IBa) through voltage-gated Ca2+ channels were analysed in differentiated NG108-15 neuroblastoma x glioma hybrid cells. Genistein suppressed IBa in a concentration-dependent fashion (IC50 = 22 microM). Although daidzein, an analogue of genistein that is devoid of PTK inhibitory activity, also suppressed IBa, we estimated that specific PTK inhibition by genistein reduced IBa amplitude by 30%. In addition, lavendustin A (20 microM) and herbimycin A (20 microM), two other distinct PTK inhibitors, depressed IBa by 22% and 20%, respectively. Genistein suppressed N-type and T-type currents, sparing L-type current, and its effect was independent of G protein activation. The results suggest that the activity of neuronal Ca2+ channels can be modulated by PTKs, opening the possibility that some of the functions of PTKs in the nervous system are mediated by Ca2+ channel modulation.

Animals↗

Desensitization and resensitization of delta-opioid receptor-mediated Ca2+ channel inhibition in NG108-15 cells.

1. To approach the mechanisms underlying desensitization of the opioid receptor-mediated Ca2+ channel inhibition, the effects of prolonged application of [D-Ala2, D-Leu5]enkephalin (DADLE) on Ba2+ currents (I(Ba)) through Ca2+ channels were analysed in NG108-15 neuroblastoma x glioma hybrid cells. 2. Inhibition of I(Ba) by 100 nM DADLE desensitized by 57% with a time constant of 4.4 min. 3. Maximal desensitization of the delta-opioid receptor-Ca2+ channel coupling was attained by 1 microM DADLE. The EC50 value for desensitization was estimated to be 78 nM. 4. RNA blot hybridization analysis and immunoblot analysis revealed the expression of beta-adrenoceptor kinase-1 (betaARK1) in NG108-15 cells. 5. Heparin, an inhibitor of betaARK, significantly reduced the magnitude and rate of desensitization, whereas Rp-cyclic AMPS and PKI (14-24)amide, inhibitors of cyclic AMP-dependent protein kinase (PKA), or long-term treatment with phorbol 12-myristate 13-acetate to induce down-regulation of protein kinase C (PKC) had no significant effect. 6. Recovery from desensitization (resensitization) proceeded with a time constant of 6.7 min. Okadaic acid, an inhibitor of serine/threonine phosphatases 1 and 2A, significantly attenuated the degree of resensitization. 7. In summary, we have characterized the time course and concentration-dependence of the desensitization of DADLE-induced I(Ba) inhibition in NG108-15 cells. This desensitization was reversible after removal of DADLE. It is suggested that betaARK, but neither PKA nor PKC, is involved in desensitization, while serine/threonine phosphatases mediate resensitization.

Animals↗