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Biomedical subjects

H Inoue

Publications and source records attributed to H Inoue.

At least 973 records · Page 54Linked to original sources

High-density lipoprotein cholesterol level and smoking modify the prognosis of patients with coronary vasospasm.

A cardiovascular event analysis was performed in a subset of 80 consecutive patients with vasospastic coronary artery disease. During the follow-up period (30 +/- 2 months, mean +/- SD), 9 patients had vascular accidents, including acute myocardial infarction, unstable angina, and stroke (Group A), while the remaining 71 patients were eventfree (Group B). Serum total-cholesterol, low-density lipoprotein cholesterol, and triglyceride levels were not different between the two groups at the baseline as well as after follow-up. However, the HDL-C level at baseline was significantly lower in Group A (33.5 +/- 2.6 mg/dl) than in Group B (41.9 +/- 1.7 mg/dl, p < 0.05). The HDL-C level increased significantly during the follow-up in Group B (delta HDL-C: 6.2 +/- 1.2 mg/dl, p < 0.01), but not in Group A (delta HDL-C: -3.2 +/- 2.7 mg/dl). The HDL-C level after follow-up was significantly lower in Group A (30.3 +/- 2.9 mg/dl) than in Group B (48.1 +/- 1.5 mg/dl, p < 0.01). Current smokers at the end of the follow-up period were more prevalent in Group A (67%) than in Group B (11%, p < 0.01). Cardiovascular accidents occurred more often in current smokers (6/14, 43%) at the end of the follow-up than in current nonsmokers, including quitters (3/66, 5%; p < 0.05). The HDL-C level was increased significantly (delta HDL: 6.2 +/- 1.3 mg/dl, p < 0.01) in the latter patients, but not in the former (delta HDL: -0.4 +/- 2.9 mg/dl).(ABSTRACT TRUNCATED AT 250 WORDS)

Angina, Unstable↗

Changes in phenotypic gene expression in rat mandibular condylar cartilage cells during long-term culture.

Gene expression patterns have been investigated in prolonged cultures of rat mandibular condylar cartilage (MCC) cells to examine the possibility of culture-induced phenotypic changes. MCC cells were isolated from newborn rats and grown in the presence of 10% fetal bovine serum (FBS) and basic fibroblast growth factor (bFGF). MCC cells were passaged and cultured in the presence of 10% FBS and bFGF until confluent. After confluence, the medium was changed to that supplemented with 10% FBS, ascorbate, and beta-glycerophosphate (day 1). Mineralization and gene expression of MCC cells have been investigated. Mineralization, visualized by staining with Alizarin red, was observed to begin at day 13 in culture, and increased up to day 22 in culture, which was the length of this study. Type II collagen and aggrecan mRNAs were highly expressed at the start of culture (day 1-4) and decreased in a time-dependent manner. Type I collagen, alkaline phosphatase, and osteopontin mRNAs expressed biphasic patterns that peaked at the start of culture and the beginning of mineralization (day 13-16). Osteonectin mRNA was expressed throughout the culture period. Osteocalcin mRNA was expressed before the beginning of mineralization peaking at day 7. These observations suggest that the gene expression patterns of MCC cells can be categorized into two different periods in prolonged culture: maturation (day 1-10) and mineralization (day 13-22). The day culture system of MCC represents a new model system in which the differentiation of embryonic MCC cells can be examined.

Aggrecans↗

Relationships between translation of pro alpha1(I) and pro alpha2(I) mRNAs during synthesis of the type I procollagen heterotrimer.

Final assembly of the procollagen I heterotrimeric molecule is initiated by interactions between the carboxyl propeptide domains of completed, or nearly completed nascent pro alpha chains. These interactions register the chains for triple helix folding. Prior to these events, however, the appropriate nascent chains must be brought within the same compartments of the endoplasmic reticulum (ER). We hypothesize that the co-localization of the synthesis of the nascent pro alpha1(I) and pro alpha2(I) chains results from an interaction between their translational complexes during chain synthesis. This has been investigated by studying the polyribosomal loading of the pro alpha-chain messages during in vitro translation in the presence and absence of microsomal membranes, and in cells which have the ability to synthesize the pro alpha1 homotrimer or the normal heterotrimer. Recombinant human pro alpha1(I) and pro alpha2(I) cDNAs were inserted into plasmids and then transcribed in vitro. The resulting RNAs were translated separately and in mixture in a cell-free rabbit reticulocyte lysate +/- canine pancreatic microsomes. Cycloheximide (100 mu g/ml) was added and the polysomes were collected and fractionated on a 15-50% sucrose gradient. The RNA was extracted from each fraction and the level of each chain message was determined by RT-PCR. Polysomes from K16 (heterotrimer-producing), W8 (pro alpha1(I) homotrimer), and A2' (heterotrimer + homotrimer) cells were similarly analyzed. Translations of the pro alpha1(I) and pro alpha2(I) messages proceeded independently in the cell-free, membrane-free systems, but were coordinately altered in the presence of membrane. The cell-free + membrane translation systems mimicked the behavior of the comparable cell polysome mRNA loading distributions. These data all suggest that there is an interaction between the pro alpha chain translational complexes at the ER membrane surface which temporally and spatially localize the nascent chains for efficient heteromeric selection and folding.

Animals↗

Lymphokine-activated killer cell function of lymphocytes from regional lymph nodes in patients with gastric carcinoma.

Lymphokine-activated killer (LAK) cells generated by culture of regional lymph node cells (LNC) with interleukin 2 (IL 2) for 4 and 11 days were examined for their functional capabilities in comparison with those of peripheral blood mononuclear cells (PBM) in 25 patients with gastric carcinoma. The cytotoxic activity of LAK cells induced from LNC for 4-day culture with IL 2 was significantly lower than that from PBM. However, the LNC-LAK cytotoxicity was markedly increased up to almost the same level as that of PBM after 11-day culture. The production of interferon-gamma (INF-gamma) and tumor necrosis factor-alpha (TNF-alpha) from nonadherent LAK cells in LNC was also significantly reduced as compared to that from PBM 4 days after culture, when stimulated with or without tumor target, Raji cells. After 11-day culture with IL 2, however, the levels of these cytokines produced by LNC-LAK cells either with or without stimulation by tumor target were comparable to those by PBM-LAK cells, although the release of these cytokines was markedly reduced when compared to that after 4-day culture. Phenotypic analysis revealed decreased proportion of cells mediating NK activity in LNC before and 4 days after culture. CD56+ and CD57+ cells in LNC were increased after 11-day culture, although the percentages of these cells were still low as compared to those in PBM. The proportions of OKIa1+ and CD25+ cells were uniformly increased after 4 and 11-day culture in both cell populations. Changes in subpopulations of CD4+ and CD8+ cells in LNC were not apparently different from PBM. These results indicated the differential LAK cell function of cells from regional lymph nodes from PBM in patients with gastric carcinoma.

Adult↗

The levels of granulocyte colony-stimulating factor in the plasma of the bone marrow aspirate in various hematological disorders.

We developed a sensitive method of measurement of granulocyte colony-stimulating factor (G-CSF) by an enzyme-linked immunosorbent assay, which we applied in the plasma of the bone marrow aspirate in 70 patients with various hematological disorders. The lowest limit of detection by this method is 2 pg/ml. G-CSF was detected in all but two of the patients. Compared to the G-CSF level in normal healthy controls, those in non-Hodgkin's malignant lymphoma, aplastic anemia, agranulocytosis and multiple myeloma were significantly higher, while the level in refractory anemia was not different. The G-CSF level in acute myelogenous leukemia patients was either elevated or decreased regardless of the French-American-British subgroup. The level in acute lymphoblastic leukemia was not different from the normal value, as was that in refractory anemia with an excess of blasts, and that in chronic lymphocytic leukemia. A patient with chronic myelomonocytic leukemia showed initial elevation of G-CSF with normalization after entering complete remission. The G-CSF level in chronic myelogenous leukemia was significantly decreased, although one patient in hematological remission who was under alpha-interferon therapy showed normal levels. The level in polycythemia vera was not significantly different from the normal value. The G-CSF level for the entire group showed an inverse, although not statistically significant, correlation with the percentages of myeloid cells of the bone marrow (r = -0.174, p = 0.1703, n = 80). These results are thought to reflect the regulatory mechanism of granulopoiesis in the bone marrow in various hematological disorders, and it is concluded that this method may be of clinical use in the treatment of patients with these disorders and in the selection of candidates likely to benefit from G-CSF administration.

Agranulocytosis↗

Hematopoietic stem cells found in lineage-positive subsets in the bone marrow of 5-fluorouracil-treated mice.

It is known that treatment of mice with 5-fluorouracil (5-FU, 150 mg/kg) confers radioprotection. To investigate this effect, we performed bone marrow transplantation (BMT) using C57BL/6-Ly5 congenic mice treated with 5-FU five days prior to experiments. The mononuclear cells (MNC) in 5-FU-treated bone marrow (BM) were 10 times more radioprotective than those in untreated BM. Moreover, the number of BM MNC expressing c-kit on their surface from 5-FU-treated mice was markedly decreased relative to those from untreated controls. These results showed that the surface characteristics of cells that contributed to this radio-protective effect differ from those of stem cells as reported recently. BM MNC of mice treated with 5-FU were separated on the basis of expression of the lineage-specific antigens (Lin), c-kit, and Ly6A/E. When injected into lethally irradiated mice, 1,000 Lin+ and Lin-c-kit+Ly6A/E+ cells showed radioprotective effects such that 100% and 60% survived, respectively. Flow cytometric analysis 165 days after BMT showed that 88.8% and 65.1% of peripheral blood (PB) in mice transplanted with Lin+ and Lin-c-kit+Ly6A/E+ was derived from donor mice, respectively. After six months, donor-derived Lin-c-kit+Ly6A/E+ cells which showed radioprotective effects on a secondary irradiated host were detected from mice transplanted with Lin+ cells from 5-FU-treated mice. Taken together, these findings demonstrated that stem cells expressing Lin+ present in the BM of mice treated with 5-FU other than Lin-c-kit+Ly6A/E+ cells and these Lin+ cells play an important role in the recovery of myeloablative mice.

Animals↗

An ovarian tumor of probable Wolffian origin with hormonal function.

In 1973, the histopathologic features of nine neoplasms with a distinctive appearance were reported under the term "female adnexal tumor of probable Wolffian origin." Although to date more than 40 cases of this disease have been reported in the literature, there have been only a few reports that the tumors might be endocrinologically active. We report on a hormonally active tumor of this type.

Estradiol↗

Ozone exposure suppresses epithelium-dependent relaxation in feline airway.

We examined the effect of exposure to ozone on the epithelium-dependent relaxation (EpDR) of bronchioles evoked by electrical field stimulation (EFS) in a feline model with hyperresponsive airways induced by exposure to ozone. Airway responsiveness was assessed by measuring the increases in total pulmonary resistance (RL) produced by aerosolized acetylcholine (ACh) in vivo. Airway responsiveness was also measured in vitro in dissected bronchiolar ring preparations. Exposure to ozone (3 ppm, 2h) significantly increased the airway responsiveness in vivo. The concentration of ACh required increasing RL to 200% of the baseline value, decreased from 1.97 mg/ml (GSEM 1.94) to 0.12 mg/ml (GSEM 1.77, p < 0.01) after exposure to ozone. EFS evoked atropine-, guanethidine-, and tetrodotoxin-resistant relaxations in the control bronchiolar rings precontracted by 5-hydroxytryptamine. Such relaxation was significantly suppressed by the mechanical denudation of epithelium, confirming that it was epithelium dependent. The amplitude of the EpDR was significantly suppressed in the animals exposed to ozone. These results suggest that EpDR is present in cats, and that its inhibition may contribute to the development of airway hyperresponsiveness.

Acetylcholine↗

Difference in thymidylate synthetase activity in involved nodes compared with primary tumor in breast cancer patients.

Thymidylate synthetase (TS) is a key enzyme as a methyl donor in the methylation reaction from dUMP to dTMP. TS activity was assessed in various tissue of mammary disorders. The descending order of TS activity was as follows: cancer-positive nodes, primary cancers, cancer-negative nodes, benign lesions, and normal parenchyma. Significant differences in TS activity were found between the positive nodes and each of the other tissues (p < 0.01). In node-positive cases, a significant correlation in TS activity was found between the primary cancers and positive nodes (r = 0.616, p = 0.033). There was no correlation between the nodal status and the TS activity in primary cancers. In 11 of 12 cases, the TS activity of positive nodes was higher than the 'calculated' TS activity of the primary cancer, which was defined as the TS activity per unit weight of cancer cells. A significant correlation was found between the calculated TS activity and the mitotic frequency in primary cancers (r = 0.697, p = 0.0001). On the other hand, a significant correlation could not be found between the TS activity and the mitotic frequency in positive nodes (r = 0.364, p = 0.244).

Breast↗

Specific effect of magnesium ion on 2',3'-cyclic AMP synthesis from adenosine and trimeta phosphate in aqueous solution.

Phosphorylation of adenosine by trimetaphosphate was investigated using various catalysts in aqueous solution under mild conditions at pH approximately 7.0 and at 41 degrees C. The product was primarily 2',3'-cyclic AMP together with smaller amounts of ATP. Magnesium ion was found to have a remarkable catalytic effect of approximately one hundred times greater than the other chemicals tested. The mechanism for the specific effect of magnesium ion is discussed.

Adenosine↗

Inhibition by actinomycin D of neurogenic mouse ear oedema.

We have investigated the effects of actinomycin D on mouse ear oedema induced by capsaicin, neuropeptides, and established inflammatory mediators. Actinomycin D (0.5 mg/kg, i.v.) significantly (P < 0.01) inhibited ear oedema induced by topical application of capsaicin, while adriamycin (6.0 mg/kg, i.v.) and cycloheximide (6.0 mg/kg, i.v.) had no effect on oedema. The ear oedema induced by intradermal injection of neuropeptides such as mammalian tachykinins, calcitonin gene-related peptide (CGRP), and vasoactive intestinal peptide (VIP), was markedly (P < 0.05, P < 0.01 or P < 0.001) suppressed by actinomycin D. The drug was also effective (P < 0.01 or P < 0.001) in inhibiting bradykinin (BK)- and compound 48/80-induced ear oedema, but did not inhibit oedema induced by histamine, 5-HT, leukotriene C4 (LTC4), and platelet activating factor (PAF) at a dose of 1 mg/kg. In mast cell-deficient W/WV mice, actinomycin D (1.0 mg/kg, i.v.) failed to inhibit substance P (SP)-induced ear oedema whereas spantide (0.5 mg/kg, i.v.) was an effective (P < 0.01) inhibitor of oedema formation. Furthermore, actinomycin D (10-100 microM) dose-dependently prevented histamine release from rat peritoneal mast cells evoked by SP, compound 48/80, and the ionophore A23182, respectively. These results strongly suggest that an inhibitory effect of actinomycin D on neurogenic inflammation is due primarily to the prevention of mast cell activation mediated by neuropeptides, rather than an interaction with DNA or receptors of neuropeptides.

Animals↗

Involvement of substance P as a mediator in capsaicin-induced mouse ear oedema.

We examined the involvement of substance P (SP) in mouse ear oedema induced by topical application of capsaicin (250 micrograms/ear). Reapplication of capsaicin at 4 h, 24 h, and 48 h after initial treatment did not induce a second oedema response. Oedema induced after the second application was significantly (p < 0.01 or p < 0.001) suppressed for up to 30 days but was observed when capsaicin was applied 40 days after initial treatment. Topical pretreatment of ears with capsaicin at 4 h, 24 h and 48 h before i.v. injection of SP (5 micrograms/kg) did not cause a significant inhibition of plasma extravasation in ear skin. NK1 receptor antagonists such as RP 67580 (ED50:0.19 mg/kg, i.v.), spantide II (ED50:0.33 mg/kg, i.v.), and GR 82334 (ED50:0.26 mg/kg, i.v.), inhibited capsaicin-induced ear oedema, whereas SR 48968 (2.0 mg/kg, i.v.), a NK2 receptor antagonist, had no effect. Furthermore, RP 67580 (0.5 kg/mg, i.v.) inhibited the oedema response induced by reapplication of capsaicin at 50 days after initial treatment. These results indicate that tachyphylaxis of capsaicin-induced oedema is reversible and suggest that this response may be due mainly to a reduction of SP in sensory neurones but not to any loss of responsiveness of NK1 receptors. We also conclude that SP and NK1 receptors are involved predominantly in the development of capsaicin-induced mouse ear oedema.

Animals↗

Effects of serine protease inhibitors on accumulation of polymorphonuclear leukocytes in the lung induced by acute pancreatitis in rats.

The administration of a high-dose of a serine protease inhibitor is recommended in patients complicated by multiple organ failure (MOF), including adult respiratory distress syndrome (ARDS), induced by acute pancreatitis. The accumulation of polymorphonuclear leukocytes (PMN) in affected organs is considered to be one of the causative factors of MOF. Adhesion to endothelial cells (EC), via adhesion molecules, and the transendothelial migration of PMN is closely associated with the accumulation of PMN. We examined the effects of two serine protease inhibitors, ulinastatin (UT) and gabexate mesilate (GM), on EC-PMN adhesion and transendothelial migration in human umbilical vein EC and 51Cr-labeled PMN in vitro. EC-PMN adhesion, and the expression of intercellular adhesion molecule-1 (ICAM-1) and endothelial cell adhesion molecule-1 (ELAM-1) on EC induced by IL-1 beta and TNF alpha, were reduced by the pretreatment of EC with these inhibitors. The transendothelial migration of PMN stimulated by IL-8 was also inhibited by pretreating PMN with UT or GM. We also examined whether these inhibitors reduced PMN accumulation in the lung in rats with acute pancreatitis induced by a closed duodenal loop. The myeloperoxidase activity in and histological findings of the lung suggested that UT and GM reduced PMN accumulation. In conclusion, serine protease inhibitors may inhibit PMN accumulation in ARDS due to acute pancreatitis.

Acute Disease↗

Effects of short-term administration of the CCK receptor antagonist, KSG-504, on regeneration of pancreatic acinar cells in acute pancreatitis in rats.

Cholecystokinin (CCK) receptor antagonists have been reported on have an inhibitory effect on acute experimental pancreatitis, but their long-term administration is also reported to block pancreatic regeneration. We examined whether the short-term administration of KSG-504 (KSG), a synthetic CCK-A receptor antagonist, inhibited the regeneration of pancreatic acinar cells after ethionine-induced acute pancreatitis in rats. KSG (50 mg/kg), given 12 times by subcutaneous injection at 6-h intervals, prevented the reduction of protein, amylase, and trypsinogen levels, and the DNA content of the pancreas and facilitated the recovery of these values. Ornithine decarboxylase activity in pancreatic tissue and a 5-bromo-2'-deoxyuridine labeling study indicated that DNA synthesis was accelerated in rats treated with KSG. These findings suggest that the short-term administration of KSG inhibits the development of ethionine-induced acute pancreatitis and facilitates the regeneration of acinar cells.

Acute Disease↗