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Biomedical subjects

I Ohsawa

Publications and source records attributed to I Ohsawa.

At least 19 recordsLinked to original sources

Acute alteration in bone mineral density and biochemical markers for bone metabolism in nephrotic patients receiving high-dose glucocorticoid and one-cycle etidronate therapy.

It is widely known that glucocorticoids induce and accelerate osteoporosis. High-dose glucocorticoids are administrated daily to patients in the acute phase of nephrotic syndrome. It could be inferred that high-dose glucocorticoids rapidly decrease patients' basal bone mineral density (BMD) and this accelerates the natural progress of osteoporosis associated with aging or menopause. Nine nephrotic patients (male/female: 5/4) without previous prednisolone administration were chosen to measure BMD and the level of the markers for bone turnover before and after treatment for 3 months (total prednisolone administration: 4.5 +/- 0.0 g). Twenty-three patients under remission with prednisolone administration (male/female: 14/9) were included in the long-term treatment group. Patients in this group whose %YAM in the lateral lumbar spine was less than 89% were classified into a low BMD group (n = 10, male/female: 3/7). They were administered etidronate disodium at 200 mg/day for 14 days. BMD and % of young adult mean (YAM) in the lumbar spine (L2-L4 in lateral objection) and other regions were measured by dual-energy X-ray absorptiometry. As markers of bone metabolism, the urinary level of deoxypyridinoline (Dpd) was determined to evaluate osteogenesis, and serum osteocalcin was measured to evaluate bone resorption. BMD of the lumbar spine significantly decreased in the 3-month treatment group (752 +/- 96 mg/cm(2), 7 +/- 4% reduction) compared with the pretreatment group (810 +/- 85 mg/cm(2)). BMD in the long-term treatment group decreased continuously (683 +/- 135 mg/cm(2)). No significant differences were noted in other measurement sites. BMD in the etidronate treatment group increased significantly (597 +/- 55 mg/cm(2)) compared with the pretreatment group (549 +/- 76 mg/cm(2)). Etidronate did not change BMD at the sites with a normal BMD. Among the biochemical markers (BM) examined, the urinary level of Dpd (nMol/liter. Cr) significantly increased in the 3-month treatment group (8.6 +/- 5.1 nMol/liter.Cr) compared with the pretreatment group (5.8 +/- 2.0 nMol/liter. Cr). No significant differences were seen in the BMs measured in the long-term treatment group. The urinary Dpd level of the etidronate treatment group decreased (3.9 +/- 1.4 nMol/liter. Cr) compared with the pretreatment group. These data indicate that etidronate could improve the accelerated bone resorption. In conclusion, high-dose glucocorticoid therapy causes rapid bone resorption and accelerates the natural progress of osteoporosis associated with aging or menopause. Etidronate administration prevents the progress of osteoporosis in nephrotic patients. Preventive treatment should be performed when the estimated BMD in 3 months falls below the baseline by more than 7 +/- 4%, reaching the therapeutic range.

Adolescent↗

Additive effects of estrogen deficiency and diabetes on bone mineral density in rats.

We investigated the combined effects of estrogen deficiency and diabetes on bone mineral density (BMD) and bone metabolism in rats. Ten-week-old, female rats were randomly divided into four groups: controls (C), an ovariectomized group (O), a streptozotocin-induced diabetic group (S), and a combined ovariectomy and streptozotocin-induced diabetic group (OS). The BMD of the lumbar spine and the femur were measured before grouping and at 23 weeks old. At the end of the experiment, blood samples were obtained via cardiac puncture, and bone gla protein (BGP), tartrate-resistant acid phosphatase (TRAP) and 1,25-dihydroxyvitamin D levels were measured. The rats in the C, O, S, and OS groups, in that order, had higher levels of BMD of the lumbar spine and femur at 23 weeks of age. The BGP levels in the S and OS groups were significantly lower than in C and O groups. Significantly higher 1,25-dihydroxyvitamin D was observed in the O group compared with the C, S and OS groups. No differences were obtained in TRAP among four groups. Our data suggest that the combined effects of estrogen deficiency and diabetes on BMD are not synergistic or counteractive but additive.

Alkaline Phosphatase↗

Complement activation through the lectin pathway in patients with Henoch-Schönlein purpura nephritis.

Henoch-Schönlein purpura nephritis (HSPN) is considered a form of systemic vasculitis of the small blood vessels with immune pathogenesis. In this disorder, the complement system is recognized as an important mechanism of glomerular injury. The aim of this study is to determine whether the lectin pathway, a novel pathway of complement activation, is related to the pathogenesis of HSPN. Renal biopsy material from 10 patients with HSPN was studied immunohistochemically and examined for a clinicopathologic correlation. Serum levels of complement components, including mannose-binding lectin (MBL), and plasma levels of complement activation products were also evaluated in these patients and compared with levels in patients with immunoglobulin A (IgA) nephropathy or mesangial proliferative glomerulonephritis (GN) without IgA deposition (non-IgA GN). Glomerular deposition of components of the pathway, MBL and MBL-associated serine protease (MASP-1), as well as C3b/C3c, C5b-9, and C4-binding protein (C4-bp), was detected in 8 of 10 patients. Although no significant correlation was found between glomerular deposition of MBL/MASP-1 and histological or clinical findings, the biopsies on all patients with MBL/MASP-1 deposits were performed within 20 weeks from the onset of disease. Levels of plasma C4d, the activation fragment of C4, and C4-bp, a soluble regulatory protein of the pathway, were greater in patients with HSPN than in those with non-IgA GN. However, there was no difference in serum MBL levels between the three groups of patients (HSPN, IgA nephropathy, and non-IgA GN). These results suggest that complement activation through the lectin pathway was involved at the onset of HSPN, and this mechanism might be important in the disease pathogenesis.

Adolescent↗

Glomerular and extraglomerular immune complex deposits in a bone marrow transplant recipient.

A 44-year-old man developed nephrotic syndrome 9 months after HLA-identical sibling bone marrow transplantation. Membranous changes consisted mainly of alterations of glomeruli, which were interpreted as chronic graft-versus-host disease (GVHD) caused by lodging of the circulating immune complex. In the tubules, a lumpy deposition of IgG and complement breakdown products was distributed along the tubular basement membrane, which coincided with the peculiar deposits ascertained by electron microscopy. These findings suggest that an extraglomerular reaction should be considered in evaluating renal involvement of GVHD.

Adult↗

Nitric oxide decreases insulin resistance induced by high-fructose feeding.

The effect of nitric oxide (NO) on insulin resistance was studied in high-fructose-fed rats. A sequential hyperinsulinemic euglycemic clamp procedure was employed (insulin infusion rates: 3 and 30 mU/kg BW/min) in 12 high-fructose-fed rats and 12 chow-fed rats while awake. Half of the high-fructose-fed and the chow-fed rats, respectively, were continuously given sodium nitroprusside (SNP, 3 ng/kg BW/min) during the clamp study. Blood glucose was clamped at the fasting level in each rat. Plasma insulin levels during the 3 and 30 mU/kg BW/min insulin infusions were 30 and 400 microU/ml, respectively. Metabolic clearance rate of glucose (MCR) was regarded as an index of whole body insulin action. At both 3 and 30 mU/kg BW/min insulin infusions, high-fructose feeding showed a significant decrease in MCR compared with the chow-fed rats. However, decreased MCRs were stimulated by SNP administration and reached similar levels as the chow-fed rats. SNP infusion did not influence MCRs in the chow-fed rats. Therefore it could be concluded that NO can improve insulin resistance induced by high-fructose feeding.

Animals↗

The role of sialidase in the development of hypocomplementemia in postinfectious acute glomerulonephritis.

The role of sialidase in complement activation and in development of hypocomplementemia in patients with postinfectious acute glomerulonephritis (AGN) was investigated. In sera from 17 patients with AGN and 14 healthy controls, sialidase activity and serum levels of free and total sialic acid were measured by previously established methods. Circulating sialidase activity and serum levels of free and total sialic acid and haptoglobin were increased, and the C3 level was decreased in the acute phase of AGN. There was no correlation between free sialic acid and total sialic acid, which increased in parallel with serum levels of haptoglobin, one of the acute-phase reactants. A follow-up study of these parameters in a typical case reflected this tendency and suggested that increased sialidase after infection, in addition to complement activation by the infectious substance, could play a role in development of hypocomplementemia. To clarify this mechanism, purified neuraminidase was incubated with normal human serum under various conditions. Complement breakdown products were measured in the incubation mixture by enzyme-linked immunosorbent assay using monoclonal antibodies against iC3b, Bb, and C4d neoantigens. iC3b was generated dose-dependently in the presence of neuraminidase. Further examination revealed that iC3b and Bb were generated in the incubation mixture with neuraminidase and NHS and that C4d was not detected in the same mixture. These findings indicate that neuraminidase activates the alternative complement pathway. These in vitro data, together with the former in vivo data led us to conclude that increased sialidase after infection could accelerate the complement amplification system, resulting in hypocomplementemia in the acute phase of postinfectious AGN.

Acute Disease↗

Amino-terminal region of secreted form of amyloid precursor protein stimulates proliferation of neural stem cells.

Beta-amyloid precursor protein (APP) has been reported to be expressed in the CNS from the early stages of development. However, the functional role of APP during early development remains unclear. In the present study, we found that the secreted form of APP (sAPP) significantly enhanced proliferation of neural stem cells. Cells were prepared from 13-day embryonic rat neocortex, which was dissected with a Pasteur pipette to make cell clusters. After 12 h of cultivation in the medium without serum, cells around the centre of the cluster were still nestin-positive proliferative cells, i.e. neural stem cells. To determine whether the proliferation of cells was regulated by sAPP, cultures were treated with recombinant sAPP695, the secreted form of human APP695 produced by yeast. Both DNA synthesis and expression of proliferating cell nuclear antigen markedly increased after 5 h of sAPP695 addition. The enhancement of DNA synthesis by sAPP695 stimulation was blocked by the 22C11 monoclonal antibody specific for the amino-terminal region of sAPP. Then, we examined the effect of the amino-terminal fragment of sAPP and the epitope peptide of 22C11 antibody, and found that both of them also promoted DNA synthesis, suggesting that the amino-terminal region of sAPP is responsible for the biological activity. Our findings indicate the possibility that sAPP enhances proliferation of neural stem cells in vivo and plays an important role during the early CNS development.

Amyloid beta-Protein Precursor↗

Complement activation accelerates glomerular injury in diabetic rats.

A known inhibitor of the complement cascade (K-76 COONa) was administered to an inbred diabetic rat model to investigate whether the complement system may play a role in the progression of diabetic glomerulosclerosis. Drinking water containing K-76 COONa was available continuously to inbred diabetic rats (Otsuka Long-Evans Tokushima Fatty, OLETF) from the age of 25 to 55 weeks (Group L). Drinking water without K-76 COONa was similarly available to OLETF rats (Group H) and nondiabetic control rats (Long-Evans Tokushima Otsuka, LETO) (Group C). The levels of plasma glucose (mg/dl) at the 55th week were 156 +/- 16 in Group C, 252 +/- 18 in Group L and 349 +/- 93 in Group H. There was no significant difference in the degree of diabetes between Group L and Group H. The levels of urinary protein at 55 weeks of age (mg/day) were 2.1 +/- 0.4 in Group C, 11. 6 +/- 1.5 in Group L and 18.0 +/- 2.8 in Group H. The level of urinary protein was significantly decreased by the administration of K-76 COONa. Histological examination of renal specimens from the sacrificed rats at 55 weeks of age revealed diffuse mesangial expansion in almost all glomeruli in Group H, exudative lesions in 30% of glomeruli in Group H, and only mild mesangial expansion was recognized in Group L. Immunofluorescence study revealed brilliant staining of C3 and immunoglobulins (Ig) in Group H; trace staining of Ig and no staining of C3 were recognized in Group L. The incubation study with guinea pig serum and glomeruli from rats revealed that Ig and complement components also bound to injured glomeruli in vitro. These data indicate that the complement cascade is activated by injured glomeruli and this activation exacerbates diabetic glomerulosclerosis.

Animals↗

Troglitazone improves insulin-stimulated glucose utilization associated with an increased muscle glycogen content in obese Zucker rats.

Recent studies have demonstrated that troglitazone has the capacity to improve insulin resistance. The present study was undertaken to determine the effect of troglitazone on in vivo insulin action, the activities of the pyruvate dehydrogenase (PDH) complex and 3-hydroxyacyl-CoA dehydrogenase (3-HADH) in muscle, and muscle GLUT-4 and glycogen content in obese and lean Zucker rats. Rats were fed a normal chow diet with and without troglitazone as a food admixture (0.2%) for 3 weeks. In vivo insulin action was measured by the sequential euglycemic clamp technique at two different insulin infusion rates (6 and 30 mU/kg BW/min). At the basal (fasting) state and after the clamp studies, the activities of PDH complex and 3-HADH, and the amounts of GLUT-4 and glycogen contained in the red gastrocnemius muscles were determined. Troglitazone treatment produced a significant rise in the metabolic clearance rate of glucose (MCR) during the 6-mU/kg BW/min insulin clamp study (19.5+/-3.9 vs 9.9+/-1.5 ml/kg BW/min, mean+/-SE, P<0.05) in obese rats, but not in lean rats. Troglitazone significantly increased the muscle glycogen content after the clamp study, compared to non-treated rats, in obese rats (9.9+/-0.5 vs 6.5+/-0.4 mg/g tissue, P<0.05) and has the tendency to increase the activity state of PDH complex in obese and lean rats at the fasting state. However, no effect of the drug on muscle GLUT-4 content was found. These results indicate that troglitazone may improve insulin sensitivity associated with increased muscle glycogen content.

3-Hydroxyacyl CoA Dehydrogenases↗

Relationship between insulin and blood pressure in Japanese obese subjects.

OBJECT: The association of obesity and hypertension is well recognized. However, the nature of the relationship between increased body weight and blood pressure (BP) elevation has remained obscure. PATIENTS AND METHODS: We evaluated BP, insulin sensitivity, insulin clearance and fasting plasma insulin concentration in 19 younger (over 40 years) and in 15 older (more than 40 years) obese subjects to determine the relationships between BP and other factors. Insulin sensitivity and clearance were determined with the euglycemic clamp technique. RESULTS: BP was not associated with insulin sensitivity although most of the subjects showed insulin resistance. In the younger obese group, a positive correlation between diastolic BP and body mass index (kg/m2) was found (r=0.740; p=0.043). In the older obese group, systolic and diastolic BP were correlated with fasting plasma insulin levels (r=0.705; p=0.003; r=0.574; p=0.025, respectively), and systolic BP was inversely correlated with insulin clearance (r=-0.715, p=0.003). CONCLUSION: These results suggest that insulin is an important factor in BP elevation in older obese subjects, but not in younger obese subjects.

Adolescent↗

Inhibitory effect of free sialic acid on complement activation and its significance in hypocomplementemic glomerulonephritis.

The role of free sialic acid on complement activation was investigated. The serum levels of free sialic acid and total sialic acid were measured by previously described methods in 16 patients with acute post-infectious glomerulonephritis (AGN), 27 patients with systemic lupus erythematosus (SLE), 15 patients with persistent hypocomplementemic membranoproliferative glomerulonephritis (MPGN), and 13 healthy controls. A statistical study demonstrated an increased level of free sialic acid in patients with AGN and SLE in which the hypocomplementemia improved throughout the course and a decreased level of free sialic acid in patients with MPGN and SLE in which hypocomplementemia continued throughout the course. The levels of total sialic acid were significantly increased in patients with AGN and SLE and were significantly decreased in patients with MPGN. There was no correlation between the levels of free sialic acid and total sialic acid in patients with AGN, in whom the levels of both total and free sialic acids were increased. To examine the effect of free sialic acid on the complement cascade, lipopolysaccharide (LPS) was incubated with normal human serum (NHS) in the various concentrations of N-acetyl neuraminic acid (NANA), a member of the sialic acid group. The incubation mixtures were examined by enzyme immunoassay using monoclonal anti-iC3b antibody or anti-Bb antibody. Native C3 or Factor B in NHS broke down less following the addition of NANA. To elucidate the role of NANA on the hemolytic function of C3, a rabbit erythrocyte (Ra E) hemolytic assay was carried out. Ra E lysed completely in the presence of R3 with native C3. However, hemolysis occurred to a lesser degree in C3-depleted serum (R3) or R3 with NANA-treated C3. To investigate the influence of NANA on complement components, the levels of complement components were measured in the incubation mixture with various doses of NANA and NHS. The levels of C3 and C5 were significantly decreased after the addition of NANA, even though the levels of Factor H and Factor I were not markedly changed. These data indicate that NANA exerts an influence on the complement components even though it has no effect on the regulatory proteins of complement. Our in vitro findings, together with the in vivo data, suggest that free sialic acid might have an inhibitory effect on the activation of C3 and the following complement cascade, and might also have been responsible for the improvement of hypocomplementemia.

Animals↗

[Three cases of pregnancy in primary glomerulonephritis with successful outcomes in spite of severe histological findings].

When women with kidney disease wish to have children, concerns are raised about the adverse effect on their renal function. Although the situation is less clear in regard to the effects, there is general agreement that a moderately severe decrease in renal function, especially in the presence of significant hypertension, reduces the chance of conception, and a successful outcome of gestation. On the other hand, several reports maintain that in most patients, pregnancy does not change the natural history of glomerular disease. Accordingly, we reported successful cases in whom renal function remained preserved. The three cases suffered from different types of glomerulonephritis (GN) and percutaneous renal biopsies were conducted before pregnancy. All biopsy specimens were examined by light and immunofluorescence microscopy, and were diagnosed as IgA nephropathy, sclerosing GN and membranoproliferative GN, respectively. Since severe histological findings were found and their data worsened (serum creatinine > 1.3 mg/dl, 24-hr creatinine clearance < 70 ml/min), their chance of having children appeared low. However, as we did not observe deterioration of clinical findings and hypertension over the ten-year follow-up, we allowed conception resulting in the birth of normal children. Thus we should mention the relatively favourable courses of nephropathy in some patients with GN, particularly in patients with stable renal disease and normal blood pressure, it should not be considered an indication for termination. It is important to observe the status of glomerular disease for as long as possible.

Adult↗

Novel domain-specific actions of amyloid precursor protein on developing synapses.

The effect of the secretory form of amyloid precursor protein (sAPP) on synaptic transmission was examined by using developing neuromuscular synapses in Xenopus cell cultures. The frequency of spontaneous postsynaptic currents (SSCs) was reduced by the addition of sAPP, whereas the amplitude of impulse-evoked postsynaptic currents (ESCs) was increased by sAPP. These opposing effects on spontaneous versus evoked release were separated by using the specific domain of APP. The C-terminal fragment of sAPP (CAPP) only reduced SSC frequency and did not affect ESCs. By contrast, the N-terminal fragment of sAPP (NAPP) did not affect SSC frequency but did increase ESC amplitude. The reduction of SSC frequency by sAPP appears to be mediated by activation of potassium channels through a cGMP-dependent pathway, whereas the increase of ESC amplitude is mediated by a different pathway involving activation of protein kinase(s). These results suggest the potential role of sAPP as a modulator of synaptic activity by two specific domains.

8-Bromo Cyclic Adenosine Monophosphate↗

Involvement of amyloid precursor protein in functional synapse formation in cultured hippocampal neurons.

Amyloid precursor protein (APP) is known to be widely expressed in neuronal cells, and enriched in the central and peripheral synaptic sites. Although it has been proposed that APP functions in synaptogenesis, no direct evidence has yet been reported. In this study we investigated the involvement of APP in functional synapse formation by monitoring spontaneous oscillations of intracellular Ca2+ concentration ([Ca2+]i) in cultured hippocampal neurons. As more and more neurons form synapses with each other during the culture period, increasing numbers of neuronal cells show synchronized spontaneous oscillations of [Ca2+]i. The number of neurons that showed synchronized spontaneous oscillations of [Ca2+]i was significantly lower when cultured in the presence of monoclonal antibody 22C11 against the N-terminal portion of APP. Moreover, incubation with excess amounts of the secretory form of APP or the N-terminal fragment of APP also inhibited the increase in number of neurons with synchronized spontaneous oscillations of [Ca2+]i. The addition of monoclonal antibody 22C11 or secretory form of APP did not, however, affect MAP-2-positive neurite outgrowth. These findings suggest that APP play a role in functional synapse formation during CNS development.

Amyloid beta-Protein Precursor↗

Secreted form of beta-amyloid precursor protein activates protein kinase C and phospholipase Cgamma1 in cultured embryonic rat neocortical cells.

The secreted form of beta-amyloid precursor protein (sAPP) has been reported to exert various biological activities in cultured neurons. The signal transduction mechanisms underlying these physiological functions of sAPP remain unclear. We now report that treatment of neural cells with the secreted form of APP695 (sAPP695) leads to dose- and time-dependent increase in phosphorylation of the endogenous substrates with a molecular mass of 80, 57 and 43 kDa. Pretreatment of cells with protein kinase C (PKC) inhibitor H-7 reduced phosphorylation of the 80- and 43-kDa proteins in a dose-dependent manner. The effect of sAPP695 on the phosphorylation is mimicked by phorbol 12-myristate-13-acetate (PMA). Downregulation of PKC by prolonged treatment of cells with PMA abolished sAPP695-enhanced phosphorylation of the 80- and 43-kDa proteins, indicating PKC is involved in the sAPP695-enhanced phosphorylation of these proteins in the cells. We also suggest that the 80- and 43-kDa proteins phosphorylated by sAPP695-stimulation are the major PKC substrates myristoylated alanine-rich C-kinase substrate and growth-associated protein-43. Furthermore, we demonstrate that tyrosine phosphorylation of phospholipase Cgamma1 and formation of inositol 1,4,5-trisphosphate were increased by sAPP695-stimulation. These observations suggest that sAPP695 induces the activation of the signaling pathways through a stimulation of phosphoinositide-PKC cascade.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗