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Biomedical subjects

T Homma

Publications and source records attributed to T Homma.

At least 19 recordsLinked to original sources

Intracellular stability of alpha fragments of beta-galactosidase: effects of amino-terminally fused polypeptides.

Intracellular stability of alpha fragments of beta-galactosidase in Escherichia coli has been studied by pulse-chase/immunoprecipitation experiments. An alpha fragment encoded by the pUC118 vector was relatively stable with an estimated half-life of about 12 min at 37 degrees C, whereas another vector, pSTV28, encoded a less stable alpha fragment that had a different carboxy-terminal sequence. Stability of the fragment was found to be affected markedly by amino-terminal attachment of other sequences. An amino-terminal fusion of a sequence derived from cytoplasmic domain 4 of the SecY protein shortened the half-life of the alpha fragment to less than 1 min. In contrast, an amino-terminal sequence from the NusG protein had no apparent effect on the stability of the fragment. In a fusion protein in which the intact SecY protein was fused to the alpha fragment, stabilization of the SecY part by overproduction of the partner SecE protein resulted in an increased alpha complementation activity of beta-galactosidase. These results indicate that stability of alpha fragment can be dictated by the stability of the fused protein. The alpha fragment of beta-galactosidase, which is unique in that it is largely unstructured but can be "active" in alpha complementation, may be used as an in vivo indicator of stability of proteins attached to it.

Amino Acid Sequence

Posterior migration of cervical spinal cord between split laminae as a complication of laminoplasty.

STUDY DESIGN: This is a case report. OBJECTIVE: To focus attention on a possible neurologic complication of laminoplasty. SUMMARY OF BACKGROUND DATA: An iatrogenic spinal cord lesion developed after laminoplasty as an operative complication of unknown cause. METHODS: Two patients had iatrogenic damage to the spinal cord from an unknown cause after laminoplasty of the cervical spine, but recovered soon after an additional laminectomy. They were evaluated with regard to the mechanism of damage and prevention. RESULTS: The spinal cord damage occurred when the spinal cord migrated posteriorly and deformed between the split laminae at the apex of the lordosis, where the maximum posterior displacement of the spinal cord was achieved. CONCLUSION: This damage was caused by a relatively narrower canal resulting from the split laminae of the apex of the adjacent laminae.

Aged

Nitric oxide and endothelin in pathophysiological settings.

The role of the endothelium is now known to encompass the generation of many potent cytokines which impact endothelial cells, adjacent tissue such as smooth muscle cells, and distant sites in an autocrine, paracrine, and endocrine manner, respectively. This review addresses two of these cytokines, nitric oxide and endothelin, and describes how each effects the functions of endothelial cells, including regulation of platelet aggregation and coagulation, regulation of vasomotor tone, modulation of inflammation, and the regulation of cellular proliferation. The emphasis is on the increasingly recognized importance of the autocrine and paracrine mechanisms by which nitric oxide and endothelin act. In particular, autoinduction of endothelin is proposed as a central mechanism underlying endothelin's renowned effects. Additionally, specific nitric oxide/endothelin interactions are discussed by which each cytokine modulates the production and actions of the other. The net effect observed in a variety of physiological and pathophysiological settings, therefore, reflects a balance of these opposing functions.

Cell Division

Role of cytochrome P-450 epoxygenase metabolites in EGF signaling in renal proximal tubule.

Epidermal growth factor (EGF) is a potent epithelial cell mitogen and induces eicosanoid production in many cell types. The present study examined signaling mechanisms for EGF in the renal proximal tubule, where high concentrations of cytochrome P-450 epoxygenase have been reported. In primary cultures of rabbit proximal tubule cells, EGF (30 nM) increased endogenous epoxyeicosatrienoic acid (EET) levels 5.3 +/- 1.4-fold within 10 min (n = 6). In these cells EGF-stimulated [3H]thymidine incorporation was significantly inhibited by the cytochrome P-450 inhibitors ketoconazole or clotrimazole but not by the cyclooxygenase inhibitor indomethacin. In fura 2-loaded proximal tubule cells, EGF caused a concentration-dependent increase in cytosolic Ca2+ concentration ([Ca2+]i), due to Ca2+ influx, which was inhibited by either ketoconazole or SKF-525A but not by indomethacin. Addition of 5,6-EET (0.5 microM) also induced Ca2+ influx in proximal tubule cells, whereas 8,9-11,12-, or 14,15-EET did not. In cells treated with bis(2-amino-5-methylphenoxy)ethane N,N,N',N'-tetraacetic acid tetraacetoxy-methyl ester to chelate [Ca2+]i, EGF-stimulated [3H]thymidine incorporation. These results indicate that EGF increases EET levels in proximal tubule and suggest that 5,6-EET or its metabolites may be a modulator of EGF-induced [Ca2+]i increases and involved in mitogenesis.

8,11,14-Eicosatrienoic Acid

Modulation of muscle protein metabolism in disseminated intravascular coagulation.

Muscle protein degradation and intracellular protease activities were investigated in disseminated intravascular coagulation (DIC), which is frequently associated with severe catabolic states such as sepsis and multiple organ failure. DIC was introduced in rats by repeated intravenous thrombin injections. Saline was injected in control rats. In the 28 rats (14 with DIC and 14 controls), the bilateral soleus (SOL) muscles were incubated in an oxygenated medium without cycloheximide (CH) to determine the release of tyrosine (Tyr) into the incubated medium. From 24 rats (12 with DIC and 12 controls), the SOL and extensor digitorum longus (EDL) muscles were harvested to measure the activities of proteasome and of cathepsins L and B. The contralateral muscles were incubated in a medium with 0.5 mM CH to determine the release of Tyr and 3-methylhistidine (3-MH). The release of Tyr without CH (net proteolysis) from SOL muscles with DIC was greater than in controls (218 +/- 83.3 vs. 145 +/- 47.7 pmol/mg/h. However, the release of Tyr and 3-MH with CH (total proteolysis) and the activities of proteasome and cathepsins in DIC were nearly the same as those in controls. In both DIC and control rats, the total release of Tyr and proteasome activity were greater in SOL than in EDL muscles. These results suggest that reutilization of Tyr, reflecting protein synthesis, is suppressed in DIC and that the red slow muscle is more active in nonfibrillar proteolysis than the white fast muscle.

Animals

Induction of heparin-binding epidermal growth factor-like growth factor mRNA in rat kidney after acute injury.

Previous studies have suggested that EGF or other members of the EGF family of mitogenic proteins are involved in proliferation of renal tubular epithelial cells occurring during recovery from injury to the kidney. The present studies examined whether expression of mRNA for the recently identified heparin-binding EGF-like growth factor (HB-EGF) is regulated in response to renal injury induced by either ischemia/reperfusion or mercuric chloride. Increased expression of HB-EGF mRNA was demonstrated in the post-ischemic kidney within 45 min of unilateral ischemia/reperfusion in the rat. Induction of HB-EGF mRNA occurred only when ischemia was followed by reperfusion, and was not eliminated by removal of blood cells from the post-ischemic kidney by saline perfusion. In situ hybridization with 35S-labeled antisense riboprobes of HB-EGF indicated that compared with control, there was increased HB-EGF mRNA expression in the 6 h post-ischemic kidney in the inner cortex and outer medulla in a patchy distribution, with the greatest expression in the inner stripe of the outer medulla. Expression occurred primarily in tubular epithelial cells. Recombinant human HB-EGF stimulated [3H]-thymidine incorporation in both primary cultures of rabbit proximal tubule cells and NRK 52E normal rat kidney epithelial cells, with potency similar to that of EGF. Induction of HB-EGF mRNA was observed in tubules freshly isolated from rat renal cortex or outer medulla when the tubules were subjected to reoxygenation after incubation in anoxic conditions. The nephrotoxin, mercuric chloride, also caused induction of HB-EGF mRNA both in vivo and in isolated rat cortical tubules. The anoxia/reoxygenation-induced expression of HB-EGF mRNA in isolated tubules was inhibited by the free radical scavengers, di- and tetra-methylthiourea, indicating involvement of reactive oxygen species. These findings indicate that HB-EGF mRNA is inducible in the kidney in vivo by acute tubular injury and suggest that HB-EGF may act as an autocrine/paracrine growth factor involved in proliferation of tubular epithelial cells and repair of the kidney.

Animals

Effects of leukocyte and platelet depletion on ischemia--reperfusion injury to dog pancreas.

BACKGROUND/AIMS: Ischemia-reperfusion injury has been studied in various organs. Effects of leukocyte and platelet depletion on ischemia-reperfusion injury were evaluated using the isolated, perfused dog pancreas in vivo. METHODS: Pancreatic exocrine and endocrine functions were stimulated by an intra-arterial injection of cholecystokinin (10(-12) mol) and intravenous injection of glucose and arginine (1 g/kg body wt), respectively. The functions before and after 60 minutes of ischemia were evaluated in the no treatment and in the leukocyte and platelet depletion groups. RESULTS: Cholecystokinin increased prostaglandin I2 and thromboxane A2 production and stimulated exocrine pancreatic secretion. Glucose and arginine stimulated insulin and glucagon release from the pancreas. Sixty minutes of ischemia followed by 60 minutes of reperfusion damaged the pancreatic acinar and ductular cells. Ischemia of 60 minutes followed by 90 minutes of reperfusion damaged beta cells. Removal of leukocytes (97.6%) and platelets (99.4%) by using a filter throughout the experiment prevented the ischemia-reperfusion injury, reduced plasma lipid peroxide and thromboxane A2, and increased prostaglandin I2 levels. CONCLUSIONS: Leukocytes and platelets seem to damage the pancreas during ischemia-reperfusion by increasing the peroxidation of structurally important cell membrane lipids and reduced the thromboxane A2 prostaglandin I2 ratio, a predictor of cellular injury.

6-Ketoprostaglandin F1 alpha

Epitope analysis of SPan-1 and DUPAN-2 using synthesized glycoconjugates sialyllact-N-fucopentaose II and sialyllact-N-tetraose.

Epitope analysis of SPan-1 and DUPAN-2 was compared with that of CA19-9 using the synthesized glycoconjugate sialyllacto-N-fucopentaose II (SLF II, sialyl-Lewis(a)) and its precursor, sialyllact-N-tetraose (LSTa, sialyl-Lewis(c)), conjugated to human serum albumin. The CA19-9 and DUPAN-2 assay systems specifically recognized SLF II and LSTa, respectively. The SPan-1 assay system recognized both SLF II and LSTa, although the reactivity with the former was far stronger than that with the latter. These results were, in general, compatible with those obtained from assaying these markers in the sera of two pancreatic cancer patients with definite Lewis-negative phenotype and in the sera of 39 CA19-9-negative pancreatic cancer patients. In conclusion, DUPAN-2 is the precursor of CA19-9 and is accumulated in the sera of pancreatic cancer patients with Lewis-negative phenotype and SPan-1 has an advantage over CA19-9 in the diagnosis of patients with Lewis-negative phenotype, although both markers have almost the same sensitivity for this malignancy.

Antibodies, Monoclonal

CA19-9 as a screening and diagnostic tool in symptomatic patients: the Japanese experience.

Although the prognosis for pancreatic cancer is generally poor, the Japanese Pancreatic Cancer Register reported in 1992 that the survival rate for resected pancreatic cancer was much higher than that for more conservative treatment. T1 and T2 pancreatic tumors are much more frequently resectable than are T3 and T4 tumors, and the 5-year survival rate for unresected T2, T3, and T4 cases is 0%. These findings emphasize the importance of early diagnosis of resectable pancreatic cancer. CA19-9 has shown satisfactory sensitivity in detecting advanced pancreatic cancer; we sought to determine the effectiveness of CA19-9 as part of a screening program for early cancer. Using elastase 1, CA19-9, and ultrasonography, we developed and tested a program of mass screening on persons presenting with and without abdominal complaints.

Adult

[Evaluation of physical exercise and fatigue sensation by CFSI (Cumulative Fatigue Symptoms Index)].

Cumulative Fatigue Symptoms Index (CFSI) is used for workers' subjective assessment of feeling of fatigue and of symptoms. Until now, this index has been used in the analysis of members of the same occupation. The purpose of this study is to examine fatigue symptoms in workers and to assess by CFSI the effect of regular physical exercise. Study participants were an exercise group (n = 67) and a non-exercise group (n = 115) of older workers, aged from 30 to 69 years. The CFSI questionnaire was distributed to all participants and the former group (exercise) answered two descriptive questions concerning the aim and subjective effects of physical exercise. As a result, it was found that mental fatigue symptoms decreased in the exercise group even after considering the differences in managerial position, subjective senses on health and marital status which are related to degree of feelings of fatigue. Weakened vitality was significantly less in the exercise group than the non-exercise group. Therefore, we concluded that weakened vitality would be needed to be regarded on an assessment scale for effects caused by exercise. It has also been considered that we should investigate general fatigue in assessing physical fatigue relating to one's lifestyle.

Adult

Effect of coexisting cells on the NGF-inducing neurite growth from PC12h-R.

Possible roles of coexisting cells in inducing neurite growth from a nerve cell were studied. Nerve growth factor (NGF)-inducing neurite growth from PC12h-R (a cell line derived from cultured nerve cells) was investigated at various cell densities. At the cell density 10(2)-10(4) cells/ml neurites appeared even without NGF. In contrast, no neurite appeared without NGF in single cell culture. The neurite growth observed in plural cell culture without NGF was only partially inhibited by antibody to NGF receptor (Ab-NGFR). However, the effect of the used medium alone was mostly inhibited by Ab-NGFR. These results suggest that the neurite inducing potency of coexisting cells is via different sites than the NGF receptor.

Animals

Schedule-dependent inhibition of thymidylate synthase by 5-fluorouracil in gastric cancer.

BACKGROUND: An optimal treatment schedule of 5-fluorouracil (5-FU) remains to be clarified. METHODS: A randomized study was conducted to investigate schedule-dependent thymidylate synthase (TS) inhibition by 5-FU in 16 patients with gastric cancer who underwent surgical resection. Surgical specimens of tumor, normal gastric mucosa, and regional lymph nodes were obtained 12 hours after administration of 5-FU either as a continuous infusion (1000 mg/m2 for 48 hours) or as a bolus injection (500 mg/m2 x 2 in 48 hours). RESULTS: The total TS activity (567.8 +/- 294 fmol/mg protein) and the rate of TS inhibition (74.7 +/- 23.1%) in cancer tissues were significantly higher in the continuous-infusion group than in the bolus-injection group (228.5 +/- 104.6 fmol/mg protein and 48.8 +/- 12%, respectively). Likewise, the total TS activity (807.4 +/- 440.3 fmol/mg protein) and the rates of TS inhibition in lymph nodes (72.3 +/- 17.1%) and in normal gastric mucosa (85.1 +/- 12.2%) were significantly higher in the continuous-infusion group than those in the bolus-injection group (232.4 +/- 142.3 fmol/mg protein and 53.6 +/- 17.0% in lymph nodes and 46.5 +/- 14.3% in normal gastric mucosa, respectively). There was a significant correlation between the total TS activity and TS inhibition. CONCLUSIONS: Continuous infusion of 5-FU provides a superior antimetabolic effect in the treatment of gastric cancer, which may lead to a superior antitumor effect.

Aged

Activation of S6 kinase by repeated cycles of stretching and relaxation in rat glomerular mesangial cells. Evidence for involvement of protein kinase C.

Quiescent rat glomerular mesangial cells were exposed to repeated cycles of stretching and relaxation, and the effects on the rate of collagen production, proliferation, and S6 kinase activity were investigated. Stretch/relaxation induced increases in production of both collagen and non-collagenous proteins. Proliferation of mesangial cells was stimulated by stretch/relaxation and epidermal growth factor, but not by angiotensin II; however, administration of angiotensin II augmented stretch/relaxation-induced cell proliferation. Cytosolic S6 kinase activity was stimulated by stretch/relaxation, angiotensin II, epidermal growth factor, or phorbol 12-myristate 13-acetate. The increased S6 kinase activity was detectable within 30 min after initiation of stretch/relaxation and was blocked by either inhibitors of protein kinase C or prior down-regulation of protein kinase C following prolonged incubation with phorbol 12-myristate 13-acetate. Both translocation of protein kinase C from the cytosolic to the membrane fraction and phosphorylation of an endogenous 80-kDa protein were observed within 5 min of initiation of stretch/relaxation. These results demonstrate that in mesangial cells, mechanical factors alone can induce increases in production of collagen and non-collagenous proteins and in cell proliferation. The observation that stretch/relaxation induced stimulation of S6 kinase activity through protein kinase C-dependent mechanisms suggests that activation of protein kinase C may be a key event in initiating adaptive responses of mesangial cells to increased workload.

Adenosine Triphosphate

Effects of the S2-serotonergic receptor antagonist, ketanserin, on cerulein-induced pancreatitis in the rat.

We investigated the effects of ketanserin, a S 2 (5-hydroxytryptamine 2; 5-HT 2)-serotonergic receptor antagonist, on cerulein-induced pancreatitis in the rat. Large pharmacological doses of cerulein induced acute pancreatitis in the rat. Ketanserin reduced the cerulein-induced increase in serum amylase concentration in a dose-dependent manner. Treatment with 10 mg/kg of ketanserin per os markedly improved cerulein-induced pancreatitis and was associated with a significant reduction of the increase in serum amylase concentration. In addition, a very specific serotonin S 2 antagonist, ritanserin which has no antihypertensive effect, also reduced the cerulein-induced increase in the serum amylase concentration. These results suggest that S 2 (5-HT 2) may play a role in pathophysiology of cerulein-induced pancreatitis in the rat.

Acute Disease

Establishment of a multi-dose study of chondroitin sulfate iron colloid for evaluation of the reticuloendothelial system function.

The assay system of chondroitin sulfate iron colloid (CSFe) was established to evaluate the reticuloendothelial system (RES) function in individual rabbits. In the multi-dose study of CSFe, CSFe was repeatedly administered to each individual rabbit with increasing doses (0.6, 1.2, 2.4, 6.0 mg/kg) at set intervals. Blood samples were serially collected after injection of CSFe and the concentration of CSFe in serum was directly measured as an iron concentration by modifying the previously described assay method [1] to minimize the sample volume. The clearance rate of CSFe at each injected dose was computed by the least-squares method and the double-reciprocal plotting of the doses against the phagocytic velocities by the Lineweaver-Burk method was obtained in each rabbit. The maximum phagocytic velocity (Vmax) and the CSFe concentration producing 1/2 Vmax (Kp) obtained in ten rabbits were 0.129 +/- 0.025 mg/kg per min and 0.417 +/- 0.121 mg/kg (mean +/- S.D.), respectively. The results obtained from this multi-dose study were comparable to our previous results obtained from the mean values of five groups given different doses [1]. The clearance rates of CSFe (0.6, 1.2, 6 mg/kg) decreased after the co-injection of 80 mg/kg of carbon colloid. The calculated Vmax and Kp in 29 rabbits were 0.125 mg/kg per min and 1.167 mg/kg. The Kp was apparently greater than that of the control (Vmax = 0.128 mg/kg per min, Kp = 0.421 mg/kg). Carbon colloid (80 mg/kg) was injected to six rabbits after the completion of the first multi-dose study of CSFe and then the second multi-dose study of CSFe was repeated after 24 h. No differences were found in Vmax and Kp between the two studies as were in the control group (10 rabbits) where saline was injected instead of carbon colloid. These results indicated that carbon colloid (80 mg/kg) gives a competitive and reversible inhibition on the RES. This multi-dose study of CSFe may be applicable for a bed-side analysis of the RES function in a patient.

Animals

Endothelin-1 receptor antagonist: effects on endothelin- and cyclosporine-treated mesangial cells.

Endothelin-1 (Et) has profound effects on glomerular microcirculation and mesangial cell contraction. A parameter of mesangial cell contraction was examined by measuring myosin light chain phosphorylation (MLCP) in glomerular mesangial cells in the presence and absence of a newly developed endothelin-1 receptor antagonist (EtA). Addition of Et alone (10 nM) caused a marked increase in MLCP, which, on average, rose by 53 +/- 6% above the level in cells exposed to vehicle (P less than 0.0005). This effect was shown to continue for at least one hour; MLCP at 60 minutes was 64 +/- 12% higher than controls, (P less than 0.025), constituting a unique observation of an in vitro parameter which parallels the characteristic in vivo effect of Et. Treatment of cells with EtA virtually abolished this Et-induced increase in MLCP, which rose by only 2 +/- 3% and -1 +/- 4% for doses of EtA of 44 nM and 66 nM, respectively. Examination of the intracellular calcium concentration, [Ca2+]i, revealed that EtA almost completely abolished the transient increase in [Ca2+]i evoked by Et and also suppressed the early portions of the sustained increase in [Ca2+]i. EtA was ineffective in abolishing [Ca2+]i increase in response to arginine vasopressin. Finally, to evaluate EtA's efficacy in a pathophysiologic setting, we also studied mesangial cells exposed to cyclosporine (Cs). Exposure of mesangial cells to Cs (10(-5) M) for 60 minutes caused a significant increase in MLCP, on average, by 38 +/- 6% above control (P less than 0.0005), while cells exposed to Cs in the presence of EtA increased MLCP significantly less, by only 15 +/- 9%. These data provide further evidence for Et's long-lasting cellular actions, and demonstrate inhibitory effects of an Et receptor antagonist after direct cellular exposure to Et and also after Cs exposure, a pathophysiologic setting which likely involves Et.

Amino Acid Sequence

Secretion of beta-2-microglobulin from human hepatoblastoma and hepatoma cells on stimulation with interleukin-6.

beta 2-microglobulin (beta 2-M) was secreted in a dose- and time-dependent manner after interleukin-6 (IL-6) treatment of human hepatoblastoma (HuH-6) and hepatoma cells (HuH-7). Pancreatic secretory trypsin inhibitor, which is one of the acute phase proteins secreted in these cells, was also secreted dose- and time-dependently in HuH-6 cells and dose-dependently in HuH-7 cells. It is conceivable that IL-6 induces the production of beta 2-M as an acute phase protein in the liver.

Carcinoma, Hepatocellular