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Biomedical subjects

T Shigematsu

Publications and source records attributed to T Shigematsu.

At least 19 recordsLinked to original sources

Identification of chemotherapeutic refractory cases based on human chorionic gonadotropin values among patients with low-risk persistent trophoblastic disease treated with 8-day methotrexate-folinic acid.

PURPOSE: The aim of the present study was to establish the accurate cutoff points of post-treatment serum beta-hCG values in identifying chemotherapeutic refractory cases among patients with low-risk persistent trophoblastic disease (PTD) treated with 8-day methotrexate-folinic acid as the primary therapy. MATERIALS AND METHODS: The values of serum beta-hCG measured before initiating treatment and weekly thereafter in 26 patients with low-risk PTD undergoing 8-day methotrexate-folinic acid treatment were analyzed. Thereafter, we determined the weekly cutoff points to identify the patient refractory for treatment by means of receiver-operating characteristic (ROC) plots analysis. RESULTS: The values of cutoff points in the pretreatment, the post-treatment 1st, 2nd, 3rd, and 4th week were 18.6, 15.0, 5.4, 3.4, and 2.0 ng/ml, respectively, and the value of accuracy during these weeks was appropriate (> 80%). When using the cutoff points of one and two weeks after initiating treatment, the accuracy in identifying chemotherapeutic refractory patients was 87.5% and 88.0%, respectively, with the highest values exceeding 85%. The sensitivity and specificity at one week were 92.9 and 80.0%, respectively. Similarly, the sensitivity and specificity at two weeks were 93.3 and 80.0%, respectively. CONCLUSION: These results suggest that the cutoff points of one and two weeks after initiating treatment are useful in identifying chemotherapeutic refractory patients among low-risk PTD patients, receiving 8-day methotrexate-folinic acid treatment.

Antimetabolites, Antineoplastic↗

Preconditioning with ethanol prevents postischemic leukocyte-endothelial cell adhesive interactions.

Long-term ethanol consumption at low to moderate levels exerts cardioprotective effects in the setting of ischemia and reperfusion (I/R). The aims of this study were to determine whether 1) a single orally administered dose of ethanol [ethanol preconditioning (EtOH-PC)] would induce a biphasic temporal pattern of protection (early and late phases) against the inflammatory responses to I/R and 2) adenosine and nitric oxide (NO) act as initiators of the late phase of protection. Ethanol was administered as a bolus to C57BL/6 mice at a dose that achieved a peak plasma concentration of ~45 mg/dl 30 min after gavage and returned to control levels within 60 min of alcohol ingestion. The superior mesenteric artery was occluded for 45 min followed by 60 min of reperfusion beginning 10 min or 1, 2, 3, 4, or 24 h after ethanol ingestion, and the numbers of fluorescently labeled rolling and firmly adherent (stationary) leukocytes in single postcapillary venules of the small intestine were quantified using intravital microscopic approaches. I/R induced marked increases in leukocyte rolling and adhesion, effects that were attenuated by EtOH-PC 2-3 h before I/R (early phase), absent when assessed after 10 min, 1 h, and 4 h of ethanol ingestion, with an even more powerful late phase of protection reemerging when I/R was induced 24 h later. The anti-inflammatory effects of late EtOH-PC were abolished by treatment with adenosine deaminase, an adenosine A(2) (but not A(1)) receptor antagonist, or a NO synthase (NOS) inhibitor during the period of EtOH-PC. Preconditioning with an adenosine A(2) (but not an A(1)) receptor agonist in lieu of ethanol 24 h before I/R mimicked the protective actions of late phase EtOH-PC. Like EtOH-PC, the effect of preconditioning with an adenosine A(2) receptor agonist was abrogated by coincident NOS inhibition. These findings suggest that EtOH-PC induces a biphasic temporal pattern of protection against the proinflammatory effects of I/R. In addition, our observations are consistent with the hypothesis that the late phase of EtOH-PC is triggered by NO formed secondary to adenosine A(2) receptor-dependent activation of NOS during the period of ethanol exposure.

Adenosine↗

Calcium-sensing receptor gene polymorphism affects the parathyroid response to moderate hypercalcemic suppression in patients with end-stage renal disease.

AIM: The basic mechanism of secondary hyperparathyroidism is still unclear, but a change in Ca2+ sensing by parathyroid cells is possibly involved in this uremic complication. A rightward shift of the calcium set-point and an increase of the minimum secretion rate have been found in secondary hyperparathyroidism, indicating abnormal calcium sensing. METHODS: We evaluated the effect of calcium sensing receptor (CaR) gene polymorphism (codon G990R) on the response of the parathyroid gland to moderate hypercalcemic suppression in 77 ESRD patients on regular hemodialysis (HD using 2.5 mEq/l Ca2+ dialysate). All patients underwent an HD session with 3.0 mEq/l Ca2+ dialysate to suppress parathyroid hormone (PTH). Then we investigated the effect of CaR gene polymorphism on the parathyroid response to hypercalcemic stimulation. RESULTS: Patients were divided into 3 groups on the basis of genotype (GG = 33 patients (42.9%), GR = 39 patients (50.6%), RR = 5 patients (6.5%)). Baseline intact PTH levels in patients without the R allele were not significantly different from those in patients with the R allele (GG group, 181.4 +/- 31.1 pg/ml vs. GR and RR groups, 230 +/- 51.2 pg/ml: mean +/- SEM). The significant effect of moderate hypercalcemic suppression on the intact PTH level was observed in the GG group (p < 0.01) but not in the GR and RR groups, despite the identical increase in Ca2+. CONCLUSION: Our results suggest that CaR gene polymorphism (codon G990R) influences the responsiveness of the parathyroid gland to changes of extracellular Ca2+ in ESRD patients. The glands of patients with the GG genotype of the CaR gene may be more sensitive to extracellular Ca2+ changes.

Calcium↗

Immunohistochemical detection of lipid peroxidation products, protein-bound acrolein and 4-hydroxynonenal protein adducts, in actinic elastosis of photodamaged skin.

Acrolein and 4-hydroxy-2-nonenal (HNE) are both byproducts of a lipid peroxidation reaction. Actinic elastosis in photodamaged skin of aged individuals is characterized by the accumulation of fragmented elastic fibers in the sun-exposed areas. To study whether a lipid peroxidation reaction is involved in the accumulation of altered elastic fibers in actinic elastosis, skin specimens obtained from sun-damaged areas were immunohistochemically examined using the antibodies against acrolein and HNE. Both antibodies were found to react with the accumulations of elastic material. Double immunofluorescence labeling demonstrated that acrolein/elastin and HNE/elastin were colocalized in the actinic elastosis. Western blot analysis showed that the polypeptide with a molecular weight of 62 kDa reacted with anti-acrolein, anti-HNE and anti-elastin antibodies. The results suggest that acrolein and HNE may be associated with actinic elastosis.

Acrolein↗

Splanchnic ischaemia-reperfusion injury: mechanistic insights provided by mutant mice.

Reperfusion of ischaemic tissues often leads to microvascular dysfunction that is manifested as impaired endothelium-dependent dilation of arterioles, enhanced fluid filtration and leucocyte plugging in capillaries, and the trafficking of leucocytes and plasma protein extravasation in postcapillary venules. Efforts to define the mechanisms that underlie these microvascular responses to ischaemia and reperfusion have largely relied on pharmacological agents and monoclonal antibodies. Gene-targeting technology has been applied to the production of transgenic and knockout mice that are rapidly gaining acceptance as tools for mechanistic studies of ischaemia-reperfusion (I/R) injury that obviate some of the concerns (e.g. specificity) raised about previously employed experimental strategies. This review summarizes some of our efforts to apply gene-targeted mice to the study of I/R injury in the splanchnic vascular bed. A role for endothelial cell adhesion molecules (CAMs) and reactive oxygen metabolites is supported by results from mutant mice. Low density lipoprotein receptor mice also reveal that the microvascular and inflammatory responses to I/R are greatly exaggerated during chronic hypercholesterolaemia. The wide variety of mutant mice that have been produced for inflammation-related research makes this experimental strategy particularly promising for mechanistic investigations of the tissue responses to I/R.

Animals↗

Skeletal resistance to pth as a basic abnormality underlying uremic bone diseases.

Skeletal resistance to parathyroid hormone (PTH) was suggested initially as a mechanism of PTH hypersecretion in uremia. Because of the effective suppression of PTH by recently developed therapeutic modalities, this background abnormality has been uncovered and currently recognized as relative hypoparathyroidism in terms of its relation to bone turnover. Thus, PTH levels two to three times greater than normal are usually required to keep bone turnover normal in uremia. Recent studies suggested that PTH activity may be overestimated using the conventional intact PTH assay. In addition, several steps to osteoclastogenesis are suspected to be disturbed in uremia. Additional studies at cellular and molecular levels are needed to establish preventive and therapeutic modalities for this abnormality.

Bone Resorption↗

Comparison of intact PTH assay and whole PTH assay in long-term dialysis patients.

Adynamic bone disease has become a major problem in long-term dialysis patients. It has been suggested that higher levels of parathyroid hormone (PTH) are needed to maintain normal bone turnover in uremia. PTH levels currently are evaluated routinely by intact PTH assay, which may detect inactive 7-84 PTH fragments as well as 1-84 PTH. We examined the efficacy of whole PTH assay, which detects 1-84 PTH exclusively, in 99 nondiabetic patients on maintenance dialysis for more than 10 years, without any residual renal function. PTH levels determined by whole PTH assay were lower than those determined by intact PTH assay in all cases. Serum markers of bone metabolism, such as serum activity of bone alkaline phosphatase, correlated well with whole PTH levels. Because 7-84 PTH has been shown to inhibit the effects of 1-84 PTH, the biologic activity of circulating PTH in uremic patients may be much lower than the values assayed by conventional intact PTH assay. Despite an attempt to correlate 1-84 PTH/7-84 PTH ratio with bone histology, we could find only 1 patient out of 99 with 1-84 PTH/7-84 PTH ratio less than 1, which has been suggested to be indicative of low turnover bone. A cutoff value of this ratio should be set in the future for patients with a long hemodialysis history, with various modes of medical therapy.

Alkaline Phosphatase↗

Osteoprotegerin levels before and after renal transplantation.

Osteoprotegerin (OPG) is a newly identified glycoprotein that belongs to the tumor necrosis factor receptor superfamily and regulates bone mass by inhibiting osteoclastic bone resorption. The regulatory mechanism of OPG is still unclear after successful renal transplantation (RTX), however, resulting in resolution of uremia. The present study was designed to clarify the potential role of OPG in uremia and after RTX under immunosuppressive therapy. We evaluated circulating OPG levels by measuring them before and after RTX (postoperative days 2, 14, and 28). Our protocol of immunosuppressive drugs was dual therapy using cyclosporine and steroids. Serum OPG was quantitated using enzyme-linked immunosorbent assay. After successful RTX, serum OPG levels decreased significantly on day 14 and day 28 compared with the baseline level (P < 0.05). Creatinine clearance dramatically increased until day 14 and decreased thereafter. Serum OPG declines for the first 2 weeks after RTX owing to functioning allograft and decreases again for the next 2 weeks because of steroids and possible immunosuppressive agents.

Adult↗

Iron-Mediated regulation of alkaline proteinase production in Pseudomonas aeruginosa.

We analyzed the regulation by iron of alkaline proteinase (AP) production in Pseudomonas aeruginosa. Extracellular AP production was detected from the mid-logarithmic to the stationary phase by an antibody-based assay system, and was strongly repressed by iron in the medium. This repression was shown by Northern hybridization and primer extension to occur at the level of transcription. The primer extension analysis revealed that the start point of transcription of AP gene was the nucleotide position -84 from the start point of translation. Furthermore, we investigated whether this transcriptional repression involved PvdS protein. Using the mutant strain of pvdS, the alternative sigma factor gene revealed that the PvdS protein is required for the full expression of AP, and a previous study showed that expression of pvdS is also repressed by iron. Therefore, we thought that one mechanism of repression of AP production operated through reduction of the PvdS protein level. Purified AP decomposed the transferrin, and released iron from it. Purified AP added to the medium containing transferrin as the only iron source enhanced the growth of P. aeruginosa. Moreover, mutation in the AP gene decreased the growth rate in the medium containing the transferrin as the only iron source. These results clearly indicated that AP expression should occur in a free-iron-deficient environment and emphasized the importance of AP to iron acquisition in the infection site.

Apoproteins↗

MAdCAM mediates lymphocyte-endothelial cell adhesion in a murine model of chronic colitis.

Previous studies have revealed that the expression of several endothelial cell adhesion molecules [e.g., intercellular adhesion molecule-1 (ICAM-1), vascular cell adhesion molecule 1 (VCAM-1), and mucosal addressin cell adhesion molecule 1 (MAdCAM-1)] is dramatically elevated in the chronically inflamed colonic vasculature of severe combined immunodeficient (SCID) mice reconstituted with congenic CD4+, CD45RB(high) T lymphocytes. The objective of this study was to define the contribution of different endothelial cell adhesion molecules to the lymphocyte-endothelial cell (L/E) adhesion observed in the colonic microvasculature in this experimental model of inflammatory bowel disease. Fluorescently labeled T lymphocytes, isolated from spleens of normal BALB/C mice, were injected intravenously into SCID mice that had been reconstituted with CD4+, CD45RB(high) T lymphocytes either before (3 wk after reconstitution) or after (7 wk postreconstitution) the onset of clinical signs of colitis (i.e., diarrhea, loss of body wt). Intravital fluorescence microscopy was used to quantify L/E adhesion in different-sized venules of the colonic submucosa during the development of colitis. L/E adhesion was noted in some segments of the vasculature in precolitic SCID mice (3 wk after reconstitution) but not in similar-sized vessels of control (wild type and SCID) mice. L/E adhesion was observed in a greater proportion of venules and occurred with greater intensity in the mucosa of colitic mice (7 wk postreconstitution). Pretreatment with a blocking monoclonal antibody against MAdCAM-1, but not ICAM-1 or VCAM-1, significantly and profoundly reduced L/E adhesion in colitic mice. Immunohistochemical staining also revealed the localization of T cells on colonic endothelial cells expressing MAdCAM-1. These findings indicate that MAdCAM-1 is largely responsible for recruiting T lymphocytes into inflamed colonic tissue.

Animals↗

Vitamin D receptor gene polymorphism detected by digestion with Apa I influences the parathyroid response to extracellular calcium in Japanese chronic dialysis patients.

BACKGROUND: To play its physiological role, 1,25(OH)2D3 must bind to a specific vitamin D receptor (VDR) in the nucleus. We have previously reported that VDR gene polymorphism influences the parathyroid function in patients with end-stage renal disease (ESRD). In the present study, we have investigated the relationship between the parathyroid responsiveness and VDR gene polymorphism, as detected by the Apa I restriction enzyme, by changing the concentration of Ca2+ in the dialysate. METHODS: 58 Japanese ESRD patients undergoing renal replacement therapy in our institution were evaluated. Genomic DNA was extracted from peripheral leukocytes and digested at the intron between exon 8 and exon 9 of the VDR gene using Apa I enzyme. Then alleles were classified into genotype A (undigested allele) and genotype a (digested allele). Extracellular ionized calcium ([Ca2+]e), serum phosphate, and intact parathyroid hormone (PTH) were measured before and after each hemodialysis (HD) session with dialysates having different concentrations of Ca2+ (1.5 or 1.25 mmol/l). The significance of differences in statistical analyses was defined within confidence limits of 5.0%. RESULTS: The AA, Aa, and aa genotypes were observed in 7/58 patients (12.1%), 23/58 patients (39.6%), and 28/58 patients (48.3%), respectively. The PTH reduction after HD with the 1.5-mmol/l Ca dialysate did not differ significantly between group AA+Aa and group aa. On the other hand, the PTH increase was significantly higher in group aa than in group AA+Aa after HD with the 1.25-mmol/l Ca dialysate (p = 0.0107), despite a similar PTH level before HD. Similarly, the percent increase of PTH after HD with the 1.25-mmol/l Ca dialysate was significantly higher (p = 0.0112) in group aa (50.2 +/- 9.4%) than in group AA+Aa (19.7 +/- 7.2%). There were no significant differences between the two groups in [Ca2+]e nor in serum phosphorus (Pi) before and after HD with either dialysate. Group AA+Aa and group aa did not show statistically significant differences in age, female/male ratio, ratio of diabetic nephropathy, or dialysis period. CONCLUSIONS: The study results showed that the patients in group aa were more sensitive to changes in [Ca2+]e than those in group AA+Aa. Moreover, they suggested that the VDR gene polymorphism may affect parathyroid responsiveness to changes in [Ca2+]e, which in turn may influence onset and progression of hyperparathyroidism in ESRD patients.

Alleles↗

Influence of Ni2+ and Co2+ on methanogenic activity and the amounts of coenzymes involved in methanogenesis.

The requirement of Ni2+ and Co2+ addition on methanogenic activity and the coenzymes involved in methanogenesis were investigated in anaerobic continuous cultivation with synthetic wastewater using acetate as the sole carbon source. Addition of Ni2+ and Co2+ to the synthetic wastewater drastically increased the maximum dilution rate of the cultivation. The concentrations of coenzymes F430 and corrinoids in the biomass increased to 0.62 micromol-Ni/g-VSS and 0.67 micromol-Co/g-VSS, respectively with the increase of the dilution rate. Methanogenic activity of the culture broth also increased with an increase of dilution rate. However, without addition of Ni2+ and Co2+, F430 and corrinoids were not detected in the biomass and methanogenic activity was only a trace level at a dilution rate of 0.025 d(-1). When the amounts of Ni2+ and Co2+ added at a dilution rate of 0.6 d(-1) were lowered in steps, the concentrations of F430 and corrinoids in the biomass and methanogenic activity decreased with decreasing amounts of Ni2+ and Co2+ added. These results suggest that Ni2+ and Co2+ were required for the methane-producing reactions via increases of coenzymes F430 and corrinoids.

Journal Article↗

[PTH and bone metabolism in chronic dialysis patients].

The abnormal metabolism of calcium and bone is one of the most common complications seen in chronic dialysis patients. The activity of PTH has been mainly assessed by intact PTH assay; however, recent data suggest that this assay may overestimate PTH activity by detecting 7-84 PTH fragments in addition to 1-84 PTH molecules(whole PTH). Another issue in this field is that higher levels of PTH are needed to maintain normal bone turnover in uremic patients. Accumulated osteoprotegerin in uremic serum may be responsible for this skeletal resistance to PTH.

Biomarkers↗

[Continuous epidural administration of droperidol for the prevention of postoperative nausea].

Continuous antiemetic effect of epidural droperidol was evaluated by prospective, double-blinded study using 145 ASA physical status I-II patients undergoing major gynecological surgery. All patients received bolus epidural infusion of buprenorphine at the end of the operation and continuous epidural infusion of buprenorphine for 48 hours. Patients were divided into 3 groups, 49 patients of Group I received placebo, 50 patients of Group II received only bolus doses of droperidol 2.5 mg and the remaining 46 patients of Group III received continuous epidural infusion of droperidol 10 mg in 48 hours. Visual analogue scales for nausea, the incidence of emetic episodes and side effects were evaluated at 3 hr, 24 hr and 48 hr postoperatively. The scores for nausea were significantly lower in Group III (P < 0.05) compared with Group I 24 hr after the operation. The incidence of emesis was significantly lower in Group III (P < 0.05) as compared with Group I and II 48 hr after the operation. Extrapyramidal side effects and sedative effects were not observed in any patients. The continuous epidural administration of droperidol is effective in prevention of postoperative nausea and vomiting and the effect lasts during its infusion with no side effects.

Analgesia, Epidural↗

[The pathophysiology of adynamic bone disease].

Adynamic bone disease was first noted in the early 1980s. It now represents the predominant bone lesion in peritoneal dialysis patients and is nearly as prevalent as osteitis fibrosis in hemodialysis patients. Bone turnover is markedly reduced in this disorder but, A in contrast to osteomalacia, there is no increase in osteoid formation. Although the pathophysiology of adynamic bone disease is still obscure, skeletal resistance to the calcemic action of PTH is important factor. Recently several study, whose reveal the down regulation of PTH receptor, osteoclast inhibitory factor and a assay of PTH, whole PTH play a role on the pathophysiology of skeletal resistance, were reported.

English Abstract↗

[The role of hyperphosphatemia in the pathogenesis of secondary hyperparathyroidism].

Renal phosphate handling plays key role in phosphate metabolism. Kidney dysfunction induced hyperphosphatemia. The phosphatemia with renal insufficiency, especially uremia, indirectly progresses into secondary hyperparathyroidism via suppression of vitamin D/Ca system. This indirect effect on parathyroid is called "Trade-off theory". Recently, the direct effect of hyperphosphatemia on parathyroid has been reported independent of vitamin D/Ca system in renal failure. The control of serum phosphate is certainly important by restriction of phosphate intake in renal failure patients.

English Abstract↗