Search PubMed⌕ Search

Biomedical subjects

T Hori

Publications and source records attributed to T Hori.

At least 19 recordsLinked to original sources

Effects of canine oviduct epithelial cells on movement and capacitation of homologous spermatozoa in vitro.

In this study, the interaction between canine sperms and oviduct epithelial cells (OECs) was examined in vitro. The oviducts of eight bitches in the follicular (F-) phase and six bitches in the luteal (L-) phase were removed under halothane inhalation anesthesia. The entire oviduct was opened longitudinally, and the oviductal epithelium of bitches in the F- and L-phases was scraped with a scalpel into tissue culture medium (Eagle's MEM) containing 10% estrous bitch serum and 10% diestrous bitch serum, respectively. The OEC collected were preincubated for 24h and then coincubated with ejaculated canine sperms at 38 degrees C under an atmosphere of 5% CO2 in air. The percentages of sperms exhibiting active tail movement (% TM), hyperactivated sperms (% HA), and acrosome-reacted sperms (% AR) were investigated until 72 h after the start of coincubation. The percentage of sperms labeled with fluoresceinated Ca indicator (% Ca) was evaluated to assess the influx of Ca into sperms cytoplasm during capacitation. Canine sperms attached to both ciliated OEC and non-ciliated OEC. All of the mean % TM of the OEC-binding sperms in the F-OEC and L-OEC media after 24, 48, and 72 h of coincubation were significantly higher than the values of the freely swimming sperms (P< or =0.01). Conversely, the mean % AR and % Ca of the OEC-binding sperms were significantly lower (P<0.01). All of the mean % HA and % AR of the freely swimming sperms in the F-OEC medium after 24, 48, and 72 h of coincubation were significantly higher than the values of the sperms in the L-OEC medium (P< or =0.01). These results indicate that attachment of canine sperms to the OEC prolongs their viability and motility arid inhibits Ca influx into the sperms and sperm capacitation. These phenomena may be responsible for maintaining the active movement and the fertile life of canine sperms in homologous oviducts.

Acrosome↗

Prostanoids in the preoptic hypothalamus mediate systemic lipopolysaccharide-induced hyperalgesia in rats.

The systemic administration of lipopolysaccharide (LPS), an experimental model of systemic bacterial infection is known to modulate nociception. It increases the prostaglandin E(2) (PGE(2)) levels in the preoptic area of the hypothalamus (POA) and the microinjection of PGE(2) into the POA and the neighboring basal forebrain induces hyperalgesia. We, therefore, hypothesized that the PGE(2) synthesized in these regions mediates intravenous (i.v.) LPS-induced hyperalgesia. To test this hypothesis, we microinjected cyclooxygenase (COX) inhibitors into several sites in the rat hypothalamus and observed their effects on the LPS (0.1-100 microg/kg, i.v.)-induced changes in nociceptive behavior as assessed by a plantar test. LPS (10 and 100 microg/kg, i.v.) reduced the paw-withdrawal latency at 90 min and 45-60 min after injection, respectively, both thus indicating a hyperalgesic effect. This hyperalgesia was observed only in the period before the development of fever which started 120-135 min after the LPS injection. The LPS (100 microg/kg, i.v.)-induced hyperalgesia was completely abolished by pretreatment with the microinjection of diclofenac (an inhibitor of COX-1 and 2) at 1.0 ng into the bilateral POA. Furthermore, it was also blocked by the microinjection of NS-398 (a selective COX-2 inhibitor) at 1.0 ng into the bilateral POA and the horizontal limb of the diagonal band of Broca (DBB), but not the lateral hypothalamic area, the paraventricular hypothalamic nucleus, and the ventromedial hypothalamic nucleus. These findings suggest that LPS (i.v.)-induced hyperalgesia is mediated predominantly through a COX-2 induced prostanoids in the POA and the DBB in rats.

Animals↗

Genomewide-linkage and haplotype-association studies map intracranial aneurysm to chromosome 7q11.

Rupture of intracranial aneurysms (IAs) causes subarachnoid hemorrhage, a devastating condition with high morbidity and mortality. Angiographic and autopsy studies show that IA is a common disorder, with a prevalence of 3%-6%. Although IA has a substantial genetic component, little attention has been given to the genetic determinants. We report here a genomewide linkage study of IA in 104 Japanese affected sib pairs in which positive evidence of linkage on chromosomes 5q22-31 (maximum LOD score [MLS] 2.24), 7q11 (MLS 3.22), and 14q22 (MLS 2.31) were found. The best evidence of linkage is detected at D7S2472, in the vicinity of the elastin gene (ELN), a candidate gene for IA. Fourteen distinct single-nucleotide polymorphisms (SNPs) were identified in ELN, and no obvious allelic association between IA and each SNP was observed. The haplotype between the intron-20/intron-23 polymorphism of ELN is strongly associated with IA (P=3.81x10-6), and homozygous patients are at high risk (P=.002), with an odds ratio of 4.39. These findings suggest that a genetic locus for IA lies within or close to the ELN locus on chromosome 7.

3' Untranslated Regions↗

Structural analyses of the UTF1 gene encoding a transcriptional coactivator expressed in pluripotent embryonic stem cells.

The UTF1 is a transcriptional coactivator expressed mainly in pluripotent embryonic stem cells. Here, we have isolated a genomic DNA fragment carrying the UTF1 gene and found that the gene contains two exons interrupted by a short intron. The gene possesses four GC boxes, but no TATA box in the 5'-flanking region. This is reminiscent of a housekeeping gene type promoter and the functional relevance of these motifs is confirmed by the transient transfection analyses. As to the gene product, our analyses have led to the identification of two different species. One of them corresponds to the full-length protein, while the other is produced by utilizing the second methionine codon for the translation initiation. The oligo-capping analyses reveal multiple transcription start sites. Interestingly, some of them are localized downstream of the first methionine codon, indicating that such transcripts produce a protein starting from the second methionine codon. Chromosomal mapping analyses locate the gene at 7F5, the syntenic region of the human chromosome (10q26) where the human UTF1 gene is located.

Amino Acid Sequence↗

Transduction of antisense cyclin D1 using two-step gene transfer inhibits the growth of rat hepatoma cells.

Cyclin D1, one of the G(1) cyclins, is frequently overexpressed in several types of carcinomas and is thought to play an important role in tumorigenesis and tumor progression including hepatocellular carcinoma. We constructed a retrovirus vector-carrying rat cyclin D1 cDNA in the reverse orientation, resulting in expression of antisense (AS) cyclin D1 mRNA. For efficient transduction of this recombinant retrovirus, two-step gene transfer was performed. The rat hepatoma cell line (dRLh84) was infected with this recombinant retrovirus after preinfection with adenovirus expressing the retrovirus receptor. In the rat hepatoma cells, AS cyclin D1 mRNA was expressed, inducing a decrease in the expression of endogenous cyclin D1 mRNA and an inhibition of cell growth. Moreover, two-step gene transfer of AS cyclin D1 into s.c. hepatoma xenografts resulted in inhibition of tumor growth and prolonged animal survival. In the virus-infected tumor xenografts, expression of cyclin D1 was immunohistochemically inhibited, and apoptosis of hepatoma cells was detected. These findings suggest that transduction of AS cyclin D1 is useful as an adjunct to standard treatments for hepatocellular carcinoma.

Animals↗

Comparison of source localization of interictal epileptic spike potentials in patients estimated by the dipole tracing method with the focus directly recorded by the depth electrodes.

The purpose of the study was to investigate the accuracy of location of equivalent current dipoles estimated by the dipole tracing method (DT) utilizing a realistic 3-shell (scalp-skull-brain) head model (SSB-DT). Three patients with intractable complex partial seizures, diagnosed as having typical temporal seizures were investigated. We recorded the interictal spike potentials with surface electrodes (International 10/20 system) and with intracerebral depth electrodes simultaneously. We compared the location of dipoles of the spikes estimated by the SSB-DT with the focus of the spikes determined by the recording from the depth electrodes. We found that the location of the dipoles estimated by SSB-DT corresponded to the location of the depth electrodes, which could record the epileptic spikes. This finding proved that SSB-DT is reliable and valid for estimating neural activity in deep locations such as the limbic system.

Action Potentials↗

Exposure to bisphenol A during the fetal and suckling periods disrupts sexual differentiation of the locus coeruleus and of behavior in the rat.

This study tested the effect of exposure to bisphenol A (BPA) early in life on the sexual differentiation in the brain and behavior in Wistar rats. We administered BPA only to mother rats during pregnancy and lactation at a dosage of approximately 1.5 mg/kg per day far less than the no-observed-adverse-effect level (NOAEL; 50 mg/kg per day). Control female offspring showed a higher activity, a lower avoidance memory, and larger locus coeruleus than the male controls, while the BPA-exposed group did not show any sexual dimorphism. BPA did not affect the reproductive organs or sex hormones. Our results suggest that the current methods to determine the NOAEL of artificial industrial chemicals may not be sufficient to detect a disruption of the sexual differentiation in the brain.

Animals↗

A novel orthotopic implantation model of human esophageal carcinoma in nude rats: CD44H mediates cancer cell invasion in vitro and in vivo.

A new orthotopic esophageal cancer model was developed by implanting fragments of xenografts of T.T human esophageal squamous carcinoma cells into the cervical esophagus of athymic rats. The rats had symptoms analogous to the human clinical course such as respiratory distress, dysphagia, vomiting of blood, or Horner syndrome, followed by death resulting from suffocation. Microscopic metastases of lymph node were observed around the tumor in 3 of 18 rats. A new cell line (T.T-1) was established from these metastases. Flow cytometry showed that T.T-1 and T.T parental cells had nearly the same surface levels of beta1-integrin, alpha2-integrin, alpha3-integrin and E-cadherin, and no expression of CD44v3, CD44v6 and alpha5-integrin. T.T-1 cells had a higher level of CD44H, however, and a greater binding efficiency to the extracellular matrix components; laminin, type IV collagen, hyaluronic acid, and fibronectin than T.T cells. Anti-CD44H antibody significantly decreased the binding efficiency of T.T-1 cells. T.T-1 cells were also significantly more invasive than T.T cells through all the extracellular matrix components except hyaluronic acid. After orthotopic implantation histological examination showed that T.T-1 tumors invaded beyond the esophageal mucosa and tracheal muscle layer and obstructed the esophagus and trachea. No invasion was observed with T.T tumors. Rats with T.T-1 or T.T tumors survived an average of 32.0 and 50.7 days, respectively (p < 0.01). In addition T.T-1 tumors expressed higher levels of CD44H mRNA than T.T tumors. In summary, our newly developed orthotopic implantation model is a valid model of esophageal cancer because it followed the same clinical course experienced by humans. Moreover, using cells derived from this model, we were able to demonstrate that CD44H is involved in esophageal cancer cell invasion.

Animals↗

Gene therapy targeting for hepatocellular carcinoma: selective and enhanced suicide gene expression regulated by a hypoxia-inducible enhancer linked to a human alpha-fetoprotein promoter.

We previously reported that the retroviral vector expressing the herpes simplex virus-thymidine kinase gene under the control of 0.3-kb human alpha-fetoprotein (AFP) gene promoter (AF0.3) provided the cytotoxicity to ganciclovir (GCV) in high-AFP-producing human hepatoma cells but not in low-AFP-producing cells. Therefore, specific enhancement of AFP promoter activity is likely to be required to induce enough cytotoxicity in low-AFP-producing hepatoma cells. In this study, we constructed a hybrid promoter, [HRE]AF, in which a 0.4-kb fragment of human vascular endothelial growth factor 5'-flanking sequences containing hypoxia-responsive element (HRE) was fused to AF0.3 promoter. By means of the reporter gene transfection assay, hypoxia-inducible transcriptions that were mediated by [HRE]AF promoter were detected in low- and non-AFP-producing human hepatoma cells, but not in nonhepatoma cells. When the herpes simplex virus-thymidine kinase gene controlled by [HRE]AF promoter was transduced into hepatoma and nonhepatoma cells by a retroviral vector, the exposure to 1% O2 induced GCV cytotoxicity specifically in the hepatoma cells. Moreover, in nude mice bearing solid tumor xenografts, only the tumors consisting of the virus-infected hepatoma cells gradually disappeared by GCV administration. These results indicate that the hypoxia-inducible enhancer of the human vascular endothelial growth factor gene, which is directly linked to human AFP promoter, involves selective and enhanced tumoricidal activity in gene therapy for hepatocellular carcinoma.

Animals↗

Orexinergic innervation of POMC-containing neurons in the rat arcuate nucleus.

A pre-embedding double immunostaining technique was used to study the synaptic relationships between orexin-like immunoreactive axon terminals and preopiomelanocortin (POMC)-like immunoreactive neurons in the rat arcuate nucleus. Most of the synapses were axo-dendritic, while some axo-somatic synapses were also found. Both the axo-somatic and axodendritic synapses were symmetrical. In some cases the presynaptic orexin-like immunoreactive axon terminals contained a few large dense-cored vesicles. The results suggest that the orexinergic axon terminals in the arcuate nucleus may play an important role in the regulation of food intake via synapses through POMC neurons.

Animals↗

Additive and inhibitory effects of simultaneous treatment with growth factors on DNA synthesis through MAPK pathway and G1 cyclins in rat hepatocytes.

Several growth factors play an important role in liver regeneration. Once hepatic injury occurs, liver regeneration is stimulated by hepatocyte growth factor (HGF), transforming growth factor (TGF)-alpha, and heparin-binding epidermal growth factor-like growth factor (HB-EGF), whereas TGF-beta1 terminates liver regeneration. In this study, we analyzed the effect of a combination of HGF and epidermal growth factor (EGF) on mitogen-activated protein kinase (MAPK) activity and G1 cyclin expression in primary cultured rat hepatocytes. Treatment with a combination of HGF and EGF, in comparison with that of either HGF or EGF, induced tyrosine phosphorylation of both c-Met and EGF receptor (EGFR) independently and additively stimulated MAPK activity and cyclin D1 expression, resulting in additive stimulation of DNA synthesis. On the other hand, although TGF-beta1 treatment did not affect tyrosine phosphorylation of c-Met and EGFR, MAPK activity, and cyclin D1 expression, which were stimulated by HGF and EGF, DNA synthesis was completely inhibited through a marked decrease in cyclin E expression. These results indicate that potent mitogens, such as HGF, TGF-alpha, and HB-EGF, could induce the additive enhancement of liver regeneration cooperatively through an increase in Ras/MAPK activity followed by cyclin D1 expression, and that TGF-beta1 suppresses the growth factor-induced signals between cyclin D1 and cyclin E, resulting in the inhibition of DNA synthesis.

Animals↗

Promotion of chemically induced rat esophageal tumorigenesis with post-initiation ethanol modification.

Post-initiation ethanol modification on N-nitrosomethylbenzylamine (NMBA)-induced rat esophageal carcinogenesis model was investigated in male, 6-week-old, F344 rats that received s.c. injections, 3 times per week, of 0.5 mg/kg NMBA for the first 5 weeks and then were treated with 0% (Group 1), 3.3% (Group 2), and 10% (Group 3) ethanol in the drinking water for up to 20 weeks. Group 4 received 10% ethanol without NMBA administration and Group 5 was maintained without any chemical treatment. There were no statistical differences in the incidence and multiplicity of esophageal tumors among Groups 1 to 3. However, the multiplicity of hyperplasias was statistically greater in Group 3 than in Groups 1 or 2. Esophageal epithelia of all rats in Groups 4 and 5 demonstrated a normal histology. BrdU labelling indices of tumors and hyperplasias in NMBA-treated groups were essentially similar, although cycline D1 was overexpressed to a greater extent in tumors and also hyperplasias of Group 3 than in Groups 1 or 2. The results indicated ethanol to exert weak promotion effects through cycline D1 overexpression on rat esophageal tumorigenesis initiated with NMBA.

Animals↗

Effects of single and repeated phencyclidine administration on the expression of metabotropic glutamate receptor subtype mRNAs in rat brain.

Recent animal studies regarding phencyclidine (PCP), which induces psychotic symptoms in humans, have suggested that group II metabotropic glutamate receptors (mGluRs) represent a novel target for the treatment of PCP psychosis. In the present study, we used in situ hybridization to investigate the gene expressions of the mGluR 1-5 subtypes following single and repeated administration of PCP in rats. A single administration of PCP (7.5mg/kg, i.p.,) resulted in a significant decrease in the mGluR5 mRNA expression of group I mGluR in the subcortical regions (thalamus (-15%), central gray (-23%), inferior colliculus (-23%), and nucleus accumbens (-10%)) and hippocampal formation (CA1 (-14%), CA2 (-15%), CA3 (-18%), and dentate gyrus (-18%)). After repeated PCP administration for 14 days, the mGluR2 mRNA expression of group II mGluR in the anterior cingulate cortex (-23%) and the mGluR4 mRNA expression of group III mGluR in the cortical regions (parietal (-11%), temporal (-13%) and entorhinal cortices (-18%)), the caudate putamen (-12%), thalamus (-17%), and subiculum (-25%) were significantly decreased. These results indicate that PCP affects not only group II mGluR but also group I and III of mGluR, and it is of particular interest that mGluR2 subtype is involved in a development of behavioral abnormality following repeated PCP administration. Single and repeated administrations of PCP independently regulate the expression of mGluR subtypes of mRNA in the brain.

Animals↗

The vanishing point of the mismatch negativity at sleep onset.

OBJECTIVE: To determine when the mismatch negativity (MMN) disappears at sleep onset, event-related potentials (ERPs) were recorded continuously from wakefulness to sleep. METHODS: Ten healthy young students were told to fall asleep ignoring the tones presented through a loudspeaker above their head. Standard (1000 Hz, P=0.90), high deviant (1200 Hz, P=0.05), and low deviant (1050 Hz, P=0.05) tones were presented in a quasirandom order with a fixed stimulus onset asynchrony of 500 ms. ERP waveforms were obtained separately for 5 successive stages characterized by typical electroencephalographic (EEG) patterns of the sleep onset period. The EEG staging was made manually with very short (5 s) scoring epochs. RESULTS: The MMN appeared in wakefulness and in the early phase of stage 1 sleep (EEG stage II) but disappeared when low-voltage theta waves emerged after alpha flattening (EEG stage III). Instead, P240 and N360 developed particularly for high deviant tones. CONCLUSIONS: Concurrently with the disappearance of alpha waves, the automatic change detection system in wakefulness seems to stop operating and a different sleep-specific system becomes dominant.

Adult↗

Transcripts of the MHM region on the chicken Z chromosome accumulate as non-coding RNA in the nucleus of female cells adjacent to the DMRT1 locus.

The male hypermethylated (MHM) region, located near the middle of the short arm of the Z chromosome of chickens, consists of approximately 210 tandem repeats of a BamHI 2.2-kb sequence unit. Cytosines of the CpG dinucleotides of this region are extensively methylated on the two Z chromosomes in the male but much less methylated on the single Z chromosome in the female. The state of methylation of the MHM region is established after fertilization by about the 1-day embryonic stage. The MHM region is transcribed only in the female from the particular strand into heterogeneous, high molecular-mass, non-coding RNA, which is accumulated at the site of transcription, adjacent to the DMRT1 locus, in the nucleus. The transcriptional silence of the MHM region in the male is most likely caused by the CpG methylation, since treatment of the male embryonic fibroblasts with 5-azacytidine results in hypo-methylation and active transcription of this region. In ZZW triploid chickens, MHM regions are hypomethylated and transcribed on the two Z chromosomes, whereas MHM regions are hypermethylated and transcriptionally inactive on the three Z chromosomes in ZZZ triploid chickens, suggesting a possible role of the W chromosome on the state of the MHM region.

Animals↗