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Biomedical subjects

R Kojima

Publications and source records attributed to R Kojima.

At least 37 records · Page 2Linked to original sources

Prevention of acute allograft rejection by antibody targeting of TIRC7, a novel T cell membrane protein.

A novel 75 kDa membrane protein, TIRC7, is described that exhibits a central role in T cell activation in vitro and in vivo. Modulation of TIRC7-mediated signals with specific anti-TIRC7 antibodies in vitro efficiently prevents human T cell proliferation and IL-2 secretion. Moreover, anti-TIRC7 antibodies specifically inhibit type 1 subset specific IFN-gamma expression but spare the type 2 cytokine IL-4. Diminished proliferation but not IFN-gamma secretion is reversible by exogenous rIL-2. An anti-TIRC7 antibody that cross-reacts with the 75 kDa rat homolog exhibits inhibition of rat alloimmune response in vitro and significantly prolongs kidney allograft survival in vivo. Targeting of TIRC7 may provide a novel therapeutic approach for modulation of the immune response.

Acute Disease↗

Characterization of the Hsp110/SSE gene family response to hyperosmolality and other stresses.

Hsp110, Osp94, and Hsp70RY are members of the recently described Hsp110/SSE subfamily of (heat and osmotic) stress proteins whose members are structurally related to the Hsp70/BiP gene superfamily. To date, little is known about the response of this gene family to stresses in vitro or in vivo. In this study, an analysis of mRNA expression showed that Hsp110 and Osp94, like Hsp70, are induced in renal murine inner medullary collecting duct (mIMCD3) epithelial cells by heat shock, hyperosmotic NaCl, and cadmium, whereas low pH had a suppressive effect on Osp94. H2O2 decreased expression of Osp94 while inducing levels of Hsp110 and Hsp70 message. Tunicamycin, hypertonic urea, and tumor necrosis factor- had no effects. Hsp70RY was responsive exclusively to cadmium chloride. Moreover, enhanced expression of Hsp110 and Osp94 was subsequent to induction of Hsp70 and was suppressed by inhibition of protein synthesis by cycloheximide. RT-PCR analysis showed Hsp110, Osp94, and Hsp70RY are ubiquitously expressed in mouse tissues. In murine kidney, there was a corticomedullary gradient of expression of Hsp110, Osp94, Hsp70RY, and Hsp70 but not Hsc70 or BiP. Furthermore, dehydration increased inner medullary expression of Hsp110 and Osp94. An analysis of stress tolerance in mIMCD3 cells showed that heat shock and hyperosmotic NaCl stress are cross-tolerant stresses, suggesting hyperosmolality is a physiological correlate of heat shock in mammalian kidney. Thus Hsp110 and Osp94 behave as heat shock proteins, although they are regulated differently than Hsp70.

Animals↗

N2733, 1-[3-(3-pyridyl)-acryloyl]-2-pyrrolidinone hydrochloride inhibits LPS-induced TNF-alpha production and improves survival in endotoxemic mice.

N2733, 1-[3-(3-pyridyl)-acryloyl]-2-pyrrolidinone hydrochloride, was examined for its effect on TNF-alpha production by human myeloid THP-1 cells stimulated with lipopolysaccharide (LPS). N2733 inhibited LPS-induced release of TNF-alpha from THP-1 cells with an IC50 of 11 microM. N2733 did not affect the cell viability at the concentration of 50 microM or 100 microM. This indicates that N2733 is a potent inhibitor for TNF-alpha production without severe cytotoxicity. N2733 was also studied in two murine endotoxin shock models induced with LPS. One model was DBA/2 mice injected with LPS (5.6 mg/kg, i.v.), which increased the serum level of TNF-alpha within 1 hr. Treatment of these mice with N2733 (100 mg/kg x 2, i.p.) decreased the serum level of TNF-alpha significantly. Another model was DBA/2 mice induced with LPS (30 mg/kg, i.v.), which reduced the survival rate to 30% during 7 days. Administrations of 30 mg/kg and 100 mg/kg N2733 (i.v.) restored the survival rates to 60% and 90% respectively. Our data demonstrate that N2733 inhibits LPS-induced TNF-alpha production, and this response is associated with an improvement in the survival rate of endotoxemic mice.

Animals↗

Lack of effect of transmembrane gradient of magnesium and sodium on regulation of cytosolic free magnesium concentration in rat lymphocytes.

The regulation of the intracellular concentration of Mg2+ ([Mg2+]i) is not fully understood. The level of Mg in lymphocytes is a good predictor of total body Mg status. We measured [Mg2+]i and total Mg in rat lymphocytes by using, respectively, the fluorescent Mg2+ indicator mag-fura-2 and atomic absorption spectrophotometry. The basal [Mg2+]i in rat lymphocytes was 328 +/- 23 micromol/l. An elevation to 5 mmol/l or the removal of extracellular Mg2+ did not affect [Mg2+]i. A reduction in extracellular Na+ did not influence [Mg2+]i for 60 min. The total Mg concentration in lymphocytes also remained stable. Results suggest that the permeability of the plasma membrane to Mg2+ is very low, and that Na+/Mg2+ exchange is not involved in the regulation of [Mg2+]i in rat lymphocytes.

Animals↗

Osmotic stress protein 94 (Osp94). A new member of the Hsp110/SSE gene subfamily.

Preservation of cell viability and function in the hyperosmolar environment of the renal medulla is a complex process that requires selective gene expression. We have identified a new member of the heat shock protein (hsp) 70 superfamily that is up-regulated in renal inner medullary collecting duct cells (mIMCD3 cells) during exposure to hyperosmotic NaCl stress. Known as osmotic stress protein 94, or Osp94, this 2935-base pair cDNA encodes an 838-amino acid protein that shows greatest homology to the recently discovered hsp110/SSE gene subfamily. Like the hsps, Osp94 has a putative amino-terminal ATP-binding domain and a putative carboxyl-terminal peptide-binding domain. The in vitro translated Osp94 product migrated as a 105-110-kDa protein on SDS-polyacrylamide gel electrophoresis. In mIMCD3 cells, Osp94 mRNA expression was greatly up-regulated by hyperosmotic NaCl or heat stress. In mouse kidney, Osp94 mRNA expression paralleled the known corticomedullary osmolality gradient showing highest expression in the inner medulla. Moreover, inner medullary Osp94 expression was increased during water restriction when osmolality is known to increase. Thus, Osp94 is a new member of the hsp110/SSE stress protein subfamily and likely acts as a molecular chaperone.

Amino Acid Sequence↗

Retinoic acid differentially up-regulates the gene expression of retinoic acid receptor alpha and gamma isoforms in embryo and adult rats.

The diverse biological effects of retinoic acid (RA) are exerted by its nuclear receptor-mediated gene expression. One of the two nuclear retinoic acid receptor subfamilies is composed of three subtypes of the all-transretinoic acid receptor (RAR-alpha, RAR-beta, and RAR-gamma). Furthermore, several isoforms are generated from each of three RARs by differential promoter usage and/or alternative splicing. It is thus thought that the developmental stage-specific actions of RA are modulated through the spatio-temporal expression of the subtype and isoforms of RARs. In this study, the auto-regulation of the RAR subtypes (RAR-alpha total, RAR-beta total and RAR-gamma total) and their major isoforms (RAR-alpha 1, alpha 2, RAR-beta 1, beta 2 and RAR-gamma 1, gamma 2) by RA was examined by means of Northern blotting in the 11.5 day embryo and maternal tissues by administering pregnant rats with an excess of all-trans RA. The expression of RAR-beta isoforms as well as the RAR-beta total was auto-regulated by RA in all maternal tissues and embryos examined. The gene expression of RAR-alpha 2, which was not affected by RA in the maternal tissues, was up-regulated in embryos, though there were no significant effects of RA on the levels of RAR-alpha 1 and the alpha total in the maternal tissues and the embryos. Likewise, RA did not affect the levels of RAR-gamma 1 and gamma total. However, unlike RAR-alpha 2, RAR-gamma 2 expression was up-regulated by RA only in the maternal tissues. Thus, these results indicates that two retinoic acid receptor isoforms (RAR-alpha 2 and RAR-gamma 2) are differentially auto-regulated in embryo and adult rats.

Animals↗

Transcriptional responses to tubule challenges.

Adaptation to physiological stimuli often involves changes in gene transcription. Studies of hyperosmolar stress in renal epithelial cells have provided an ideal paradigm for understanding regulation of gene expression. Renal epithelial cells respond very differently to hyperosmolar NaCl and urea and several strategies including cloning based on known biological function, candidate gene analysis, and differential display analysis have successfully identified many genes induced by these hyperosmolar challenges. Hyperosmolar NaCl produces adverse effects on cellular biosynthetic processes and compensatory increases are observed in transcription of transporters, stress proteins, and metabolic enzymes. In contrast, hyperosmolar urea fails to inhibit biosynthetic processes but, nonetheless, initiates a very specific program of gene expression in renal epithelial cells. This program appears to involve a urea sensor/receptor system which activates transcription and translation of the zinc-finger transcription factor Egr-1. This work highlights the concept that rapid analysis of differential gene expression will enable one to define cellular programs of gene expression involving up- and down-regulation of functionally-related gene families.

Animals↗

Breakdown of China's policy of restricting population movement.

"A notable distinction between population movement in China and that in other countries is that the former has been regulated by administrative authority.... In this paper, population movement forced by administrative power is referred to as policy-induced movement, whereas that caused by economic factors or disasters is regarded as spontaneous movement....This paper will analyze China's population movement over a forty-five-year period since the early 1950s by comparing policy-induced and spontaneous movement patterns."

Asia↗

Distribution of muscle fibre types in the thoracic and lumbar epaxial muscles of Japanese macaques (Macaca fuscata).

Histochemical properties are investigated in the thoracic and lumbar epaxial muscles of Japanese macaques, Macaca fuscata. Whole transverse sections of the muscles were removed at the different levels of the thoracic and lumbar vertebrae and muscle fibre types were classified into type I and type II fibres on the basis of their histochemical profiles. In the lumbar region the iliocostalis and longissimus muscles have many type II fibres. In the thoracic region the iliocostalis muscle has more type I fibres than the longissimus muscle. The intermammillares and mammilloaccessorii muscles which lie medially and deep to the longissimus muscle in the lumbar region have an extremely large number of type I fibres. These differences in the distribution of muscle fibre types among and within muscles suggest that functional differentiation exists among and within the muscles.

Animals↗

[Evaluation of late potentials in patients with acute myocardial infarction--relationship with right ventricular infarction].

Late Potential (LP) is known to be easily detected in inferior myocardial infarction (AMI) patients. And it is also well known that high incidence of LP positive in the patients with arrhythmogenic right ventricular dysplasia are seen. However, there is no report that LP in patients with right ventricular (RV) infarction is easily detectable. This following study was conducted to distinguish how LP was affected by RV infarction. 36 inferior AMI patients (27 male, 9 female) who were performed PTCA in acute stage were selected. They were divided into three groups in accordance to the position of infarct related artery (Group A is proxysmal RCA, Group B is distal RCA and Group C is LCx). There were no significant difference among these groups in terms of filtered QRS duration and last 40 msec RMS voltage. It was concluded that RV infarction could not affect to the rate of LP positive in inferior AMI patients.

Adult↗

In vivo isomerization of retinoic acids. Rapid isomer exchange and gene expression.

The in vivo isomerization of all-trans- and 9-cis-retinoic acids (RAs) was evaluated by high performance liquid chromatography after oral administration to rats. All-trans (2 ng/ml)- and 13-cis (1.8 ng/ml)-RAs, but not 9-cis-RA, were detected in the serum of normal rats. When an excess of either all-trans-RA or 9-cis-RA (100 micrograms/rat) was intragastrically administered to the retinoid-depleted rats, a rapid isomer exchange between 9-cis- and all-trans-RAs along with appearance of the administered RA occurred shortly after the dose (30 min). RA rapidly isomerized when an excess of either all-trans- or 9-cis-RA (1 mg/rat) was administered to normal rats. To examine whether the isomerized RAs elicit biological actions in vivo, the induction of target genes-[cellular retinol-binding protein type II (CRBP II) for 9-cis-RA and all-trans-retinoic acid receptor beta (RAR beta) for 9-cis- and all-trans-RAs] was determined. The degree of induction of the two genes did not differ 4 h after administration of either 9-cis-RA or all-trans-RA. However, unlike all-trans-RA, the RAR-specific synthetic retinoids did not induce the CRBP II gene. These results suggested that the apparent actions of 9-cis- and all-trans-RAs on gene expression in vivo may be mediated to some extent by the converted stereoisomer.

Animals↗

Effect of cimetidine and omeprazole on gastric ulcer healing of rats with limited food intake time.

The effects of cimetidine, omeprazole and atropine sulfate on the healing of acetic acid-induced gastric ulcers in rats with limited food intake time (9:00-10:00 a.m. and 5:00-6:00 p.m.) were evaluated 15 days after the acid injection. Oral repeated administration of cimetidine (25-100 mg/kg twice daily) or omeprazole (10-50 mg/kg once daily) dose dependently accelerated ulcer healing. Atropine sulfate (10 mg/kg twice daily, p.o.) was ineffective. A single oral administration of omeprazole (50 mg/kg) or cimetidine (100 mg/kg) resulted in potent and long-lasting anti-acid secretory and gastrin-releasing actions. The degree and duration of anti-acid secretion by atropine sulfate were equal to those of cimetidine, but the elevation of gastrin release by atropine sulfate was weak and temporary. These results indicate that the gastric ulcers of rats with a limited food intake time are useful for evaluating the healing effects of cimetidine and omeprazole on gastric ulcers. In addition, the effects of both drugs may be related to the increased gastrin release rather than to the reduced acid secretion.

Acetates↗

Positive and negative regulation of retinoid X receptor gene expression by thyroid hormone in the rat. Transcriptional and post-transcriptional controls by thyroid hormone.

The 9-cis-retinoic acid receptors (RXRs), belonging to the members of the steroid/thyroid hormone receptor superfamily, act as auxiliary proteins, heterodimerizing with other nuclear receptors such as retinoic acid receptors (RARs), vitamin D receptor, thyroid hormone receptors, and peroxisome-proliferator activated receptor, thereby transactivating target genes in a ligand-dependent manner. We have previously reported that in the rat, thyroid hormone (TH) positively and negatively regulates the hepatic mRNA levels of RXR beta and RXR gamma, respectively. In the present study, we have tried to elucidate the level at which TH regulates the gene expression of RXR beta and RXR gamma in the rat. A RNA synthesis inhibitor (actinomycin D), but not a protein synthesis inhibitor (cycloheximide), blocked the induction of RXR beta mRNA by TH. On the other hand, none of these drugs inhibited the decrease of RXR gamma mRNA levels caused by TH. Nuclear run-on assays showed that the transcription rate of the RXR beta gene was positively regulated by TH, whereas the transcription of RXR gamma gene was not controlled by TH. Taken together, these results indicate that the gene expression of RXR beta is positively regulated by TH at transcriptional level, while the negative regulation of the RXR gamma gene expression by TH may occur at a post-transcriptional level in intact rat. Thus, the RXR-mediated signal transductions may be modulated in part through TH control of the levels of RXR beta and RXR gamma.

Animals↗

Protective effects of an aged garlic extract on doxorubicin-induced cardiotoxicity in the mouse.

Protective effects of an aged garlic extract on the cardiotoxicity of doxorubicin (DOX) was evaluated using the mouse. DOX (1.5 mg/kg body wt i.p.) was administered three times per week for 40 days. An aged garlic extract, WG-1 (a preserved stock solution; Wakunaga Pharmaceutical) was administered intraperitoneally six times weekly. DOX caused changes in the electrocardiogram. In the control mice, the width of the QRS complex was 20 +/- 2.8 milliseconds, the R-R interval was 130 +/- 2.8 milliseconds, and the P-Q interval was 30 +/- 1.4 milliseconds. In mice treated with DOX for 40 days, the width of the QRS complex was 50 +/- 10 milliseconds (p < 0.05), the R-R interval was 240 +/- 30 milliseconds (p < 0.05), and the P-Q interval was 45 +/- 1.0 milliseconds (p < 0.01). These values were significantly smaller in mice treated with WG-1 + DOX than in mice treated with DOX. The width of the QRS complex was 29.3 +/- 5.8 milliseconds (p < 0.05), the R-R interval was 145.8 +/- 17.9 milliseconds (p < 0.01), and the P-Q interval was 37.8 +/- 3.5 milliseconds (p < 0.05). The lipid peroxidation in the heart homogenates prepared from DOX-treated mice, as measured by thiobarbituric acid-reactive substance (TBARS, nmol malondialdehyde/100 mg protein) was 332.5 +/- 67.0, which was significantly larger than that in the control mice (186.6 +/- 42.2) (p < 0.05). WG-1 decreased the level of TBARS in DOX-treated mice significantly. In the mice treated with WG-1 + DOX, TBARS was 221.3 +/- 31.6, which was significantly smaller than that of DOX-treated mice (p < 0.05). Histological study demonstrated that the heart treated with DOX had vacuolization in muscle cells, disrupted myofibrils, and swollen mitochondria. Mice that received WG-1 + DOX had no significant pathological lesions in the heart.

Animals↗