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Biomedical subjects

A Hishida

Publications and source records attributed to A Hishida.

At least 73 records · Page 4Linked to original sources

Impairment of ventilatory response to metabolic acidosis in insulin-dependent diabetic patients with advanced nephropathy.

Sudden cardiopulmonary arrest due to a defective respiratory reflex is observed in diabetic patients. Impaired ventilatory response in diabetic patients to acute hypoxia or hypercapnia induced by the inhalation of an artificial gas has been reported. Little is known regarding the respiratory compensatory ability for mild to moderate metabolic acidosis due to renal failure in insulin-dependent diabetic subjects. Arterial blood pH, HCO3-, PaCO2 and PaO2 were measured in 13 insulin-dependent diabetic subjects with advanced nephropathy and in 33 non-diabetic subjects with end-stage renal failure. The diabetic group consisted of six predialysis patients and seven on regular hemodialysis (HD) and the non-diabetic group, ten predialysis patients and 23 on HD. Differences between measured partial arterial pressure of carbon dioxide (PaCO2) and predicted PaCO2 determined from HCO3- were examined. PaCO2 was significantly higher in the diabetic than in non-diabetic group (40.0 +/- 7.4 versus 31.1 +/- 5.1 mmHg, p < 0.05 in predialysis, 42.0 +/- 6.4 versus 36.0 +/- 2.6 mmHg, p < 0.05 in HD), though plasma pH was essentially the same for either. Differences in measured PaCO2 and predicted PaCO2 were significantly larger in the diabetic group than in non-diabetic group. Ventilatory response to uremic acidosis may thus be considered impaired in subjects with advanced diabetic nephropathy.

Acidosis↗

Glomerular injury induced by cationic 70-kD staphylococcal protein; specific immune response is not involved in early phase in rats.

A highly cationic staphylococal protein (designated p70, MW 70 kD, pI > 10) belongs to the groups of bacterial proteins that can bind immunoglobulin without specific antigen-antibody recognition; heparin inhibition tests indicated a charge interaction. This study evaluated the nephritogenicity of p70, which has affinity for the glomerular basement membrane (GBM), and the influence of various mediator systems on the induction of glomerulonephritis by p70. The left kidneys of intact rats, rats given cobra venom factor (complement-depleted), or rats given anti-adhesion molecules (ICAM-1 and LFA-1a) were perfused with p70. Proteinuria started within 24 h and persisted at day 5. Intraglomerular infiltration of cells was seen as early as 15 min, peaking at day 1. Deposits of rat IgG and C3 were seen in a subendothelial location 15 min after p70 perfusion in the left kidney and were found in a predominantly subepithelial location from 1 day onwards. Complement depletion and blockade of adhesion molecules suppressed proteinuria from day 2 onwards; these manipulations also prevented the recruitment of infiltrating cells and partially hindered the transfer of IgG across the GBM and the accumulation of IgG in the subepithelial region. In the non-perfused right kidneys, deposits of IgG and C3 were comparable to those in the left kidneys, suggesting that p70-IgG complexes formed in the circulation may also contribute to the deposits in the GBM. Heparin inhibition tests indicated an electrostatic interaction between p70 and immunoglobulin. Complement and inflammatory mediator systems (granulocytes, monocytes/macrophages, and/or lymphocytes) were required to provoke glomerular injury. p70 might play a role in acute glomerulonephritis following Staphylococcus aureus infection.

Animals↗

The contribution of nitric oxide to renal vascular wall thickening in rats with L-NAME-induced hypertension.

We investigated the mechanisms of renal vascular wall thickening in a rat model of N-nitro L-arginine methyl ester (L-NAME)-induced hypertension. To separate the effects of L-NAME-induced hypertension from other effects of nitric oxide (NO) inhibition, we created two models of L-NAME-induced hypertension: both had the same blood pressure level but NO inhibition was moderate in one group (group M) and severe in the other (group S). Urinary excretion of nitrates and nitrites was lower in group S than in group M. Wall thickening and lipid deposition in renal vessels were significantly greater in group S than in groups M. Simple and multiple regression analyses indicated that renal vascular wall thickening was more strongly correlated with lipid deposition than with blood pressure. The number of vessels positive for staining with Sudan black B was negatively correlated with urinary NO excretion. Expression of fibronectin and transforming growth factor-beta was greater in the Sudan black B-positive than in the Sudan black B-negative vessels, suggesting that extracellular matrix production was increased in vessels with lipid deposition. Lipid deposition and increased production of extracellular matrix may contribute to renal vascular wall thickening in L-NAME-induced hypertension. Some mechanisms independent of hypertension play important roles in vascular wall thickening induced by NO inhibition.

Actins↗

Cell-to-cell interaction is required to induce proteinuria in in situ immune complex glomerulonephritis.

This experiment was performed to study the roles of intercellular adhesion molecule-1 (ICAM-1), lymphocyte function-associated antigen-1 (LFA-1), and another adhesion molecule, selectin, in the development of cationized antigen-induced in situ immune complex glomerulonephritis (CAICGN). CAICGN was induced in preimmunized rats by perfusing cationized human immunoglobulin G (CaIgG) through the left kidney. Albuminuria developed within 2 days of CaIgG perfusion and peaked around day 7. Marked polymorphonuclear leukocyte (PMN) infiltration was observed in the glomeruli 1 hour after CaIgG perfusion, but the infiltrate resolved by day 7. Immunofluorescent studies disclosed linear deposition of rat IgG and C3 along glomerular capillary walls 1 hour after CaIgG perfusion. Treatment with monoclonal antibodies (mAbs) to both ICAM-1 and LFA-1, as well as with a sulfatide, a ligand of L- and P-selectin, started within 2 days after CaIgG perfusion completely suppressed the development of proteinuria without affecting the glomerular deposition of immunoreactants. Although sulfatide attenuated the PMN response 1 hour after CaIgG perfusion, ICAM-1 and LFA-1 mAb treatment did not alter PMN infiltration. Treatment with ICAM-1 and LFA-1 mAbs started on day 5, or treatment with sulfatide started on day 4, after CaIgG perfusion did not affect albuminuria. These findings suggest that adhesion molecules play an important role in the development of proteinuria in CAICGN. The contribution of these molecules was evident for only a short interval after the induction of nephritis, when a significant infiltration of PMNs was observed.

Albuminuria↗

The role of oxygen free radicals in cisplatin-induced acute renal failure in rats.

We examined the role of oxygen free radicals in cisplatin-induced acute renal failure (ARF). The intravenous injection of cisplatin (5 mg/kg body weight) induced an increase in serum creatinine and tubular damage in the outer stripe of the outer medulla in rats. The renal content of malondialdehyde (MDA) transiently increased. Treatment with the free radical scavengers dimethylthiourea (DMTU) or lecithinized superoxide dismutase (L-SOD) attenuated the increase in serum creatinine. The beneficial effect of DMTU, a hydroxyl radical scavenger, was associated with less accumulation of MDA, less tubular damage, and enhanced expression of proliferating cell nuclear antigen (PCNA) in the damaged tubular cells, but not with improvement of reduced renal blood flow (RBF). On the other hand, the beneficial effect of L-SOD, a superoxide anion scavenger, was associated with preservation of RBF and increased urinary guanosine 3',5'-cyclic monophosphate excretion but not with modification of tubular damage or PCNA expression. These results suggest that (1) cisplatin-induced nephrotoxicity was associated with lipid peroxidation, (2) the hydroxyl radical scavenger prevented ARF through both attenuation of tubular damage and enhanced regenerative response of the damaged tubular cells, and (3) the superoxide anion scavenger did the same through preservation of RBF. It follows that oxygen free radicals may play an important role in cisplatin-induced ARF by reducing RBF and inducing tubular damage.

Acetylglucosaminidase↗

Altered anionic GBM components in monoclonal antibody against slit diaphragm-injected proteinuric rats.

BACKGROUND: We previously reported that monoclonal antibody (mAb) 5-1-6 bound to renal filtration slits induces massive proteinuria without causing ultrastructural changes in the glomerulus. This study evaluated the underlying mechanisms of the increase in glomerular permeability. METHODS: The distribution of endogenous albumin and IgG in the glomerular basement membrane (GBM) was studied in in situ drip-fixed glomeruli of Munich-Wistar rats by use of immunogold immunocytochemistry in the presence and absence of mAb 5-1-6. The density of foot process glycocalyx components was estimated by labeling with Limax fluvus lectin- or Helix pomatia lectin-gold complexes. Anionic sites in the GBM were examined by labeling with cationic gold at pH 2.0 or 7.4. Carboxyl groups, which also furnish an anionic charge to the GBM, were examined by specific biotinylation and colloidal gold probe methods. In addition, the infusion-staining of anionic sites was performed by use of ruthenium red in both Munich-Wistar and Wistar rats. RESULTS: The urinary excretion of albumin and IgG was increased markedly in the treated rats, indicating a non-selective barrier defect. In the control rats, albumin and IgG molecules were mainly located along the inner half of the GBM, and to a lesser degree in the lamina rara externa. In the treated rats, the albumin and IgG moieties were more equally distributed throughout the width of the GBM. Newly appearing, small dense peaks at the outer side of the GBM were evident, indicating a barrier function of outer zone of the GBM and/or epithelial cell layer. No intergroup differences in the density of lectin binding sites on foot processes were seen. The reduction in the number of ruthenium red-positive anionic sites and cationic gold (pH 2. 0)-labeled anionic sites in the lamina rara externa was significant in the treated rats at day 3, indicating a possible alteration of charged proteoglycan in the lamina rara externa. No such changes were seen with cationic gold (pH 7.4)-labeled anionic sites in the GBM. The density of labeled carboxyl groups was significantly reduced in the treated rats relative to the controls. CONCLUSIONS: These results show that the injection of mAb 5-1-6 induced a perturbation of the charge- and probably the size-selective glomerular filtration barrier. The observed reduction in the levels of various negatively charged substances resulted in massive proteinuria, implying that alteration of target antigens can affect the integrity of the GBM constituents maintaining the normal barrier function.

Albuminuria↗

MPO-ANCA-positive crescentic necrotizing glomerulonephritis and tubulointerstitial nephritis with renal eosinophilic infiltration and peripheral blood eosinophilia.

We present the case of a 67-year-old woman with myeloperoxidase (MPO)-antineutrophil cytoplasmic antibody (ANCA)-positive pauci-immune crescentic necrotizing glomerulonephritis and tubulointerstitial nephritis with renal eosinophilic infiltration and peripheral blood eosinophilia. Staining for eosinophil cationic protein indicated that activated eosinophils were involved in the tubulitis, as well as in the glomerular injury. Marked peripheral blood eosinophilia is uncommon in ANCA-positive crescentic necrotizing glomerulonephritis associated with tubulointerstitial nephritis, except in Churg-Strauss syndrome. However, our patient had no clinical history or signs of asthma, no other signs suggestive of allergic diseases, and no histologic findings of granulomas in the kidney, thus failing to fulfill the criteria for Churg-Strauss syndrome.

Aged↗

Pharmacokinetic study of an oral cephalosporin, cefdinir, in hemodialysis patients.

The pharmacokinetics of cefdinir were investigated in six hemodialysis patients. For the present study, two tests were carried out, one with 4 h of hemodialysis and the other without hemodialysis. Cefdinir was given orally to each patient in a dose of 100 mg, and blood was collected serially for 48 h after dosing in the test without dialysis and for 72 h in the test with dialysis. In the test without dialysis, the maximum plasma concentration (Cmax) was 2.36 +/- 0.53 micrograms/ml (mean +/- standard deviation) and the time to Cmax was 9.00 +/- 2.45 h. The terminal elimination half-life (t1/2) and area under the concentration-time curve (AUC) were 16.95 +/- 1.20 h and 69.05 +/- 14.84 micrograms.h/ml, respectively. In the test with dialysis, t1/2 during hemodialysis decreased approximately to one-sixth of that obtained in the test without dialysis, although t1/2 in the latter elimination phase did not differ from that in the nondialysis test. AUC was reduced to 43% of that in the test without dialysis. The fractional removal of cefdinir by hemodialysis was 61%. These findings indicate that clearance of cefdinir is prolonged in patients with renal failure, and cefdinir is well removed by introduction of hemodialysis, although t1/2 (during hemodialysis) and AUC were two and eight times higher than the data previously reported for healthy volunteers, respectively. The pharmacokinetic data suggest that 100 mg of oral cefdinir once a day would result in a sufficient concentration in plasma in hemodialysis patients, but this remains to be confirmed by multiple-dose studies.

Administration, Oral↗

A patient with thrombotic microangiopathy accompanied by glomerular subendothelial electron dense deposits.

A 50-year-old woman presented with thrombocytopenia, microangiopathic hemolytic anemia, and nephrotic syndrome. Although a high level of circulating immune complexes, mild hypocomplementemia, and the antinuclear antibody also were present, the criteria for collagen disease were not fulfilled. Renal biopsy demonstrated a typical thrombotic microangiopathy (TMA) involving glomeruli. There also were electron-dense deposits located just beneath the original glomerular basement membrane in the dilated subendothelial space, thought to be immune complexes following positive IgG, C1q and C3 staining on an immunofluorescent study. Corticosteroid therapy rapidly ameliorated her hematologic abnormalities and proteinuria and normalized the immunologic data. These findings strongly suggest that the TMA in this patient was induced by immune complex-associated mechanisms.

Biopsy↗

Impaired water excretion in a hyponatremic patient following thyroidectomy: causal role of glucocorticoid deficiency.

We evaluated the causal role of glucocorticoid deficiency in the hyponatremia that developed in a 57-year-old Japanese man with hypothyroidism following the performance of a total thyroidectomy for laryngeal cancer. The plasma concentration of vasopressin (1.78 pg/ml) was not suppressed in the presence of hyponatremia (125 mEq/l). The urinary excretion of sodium was increased, and the plasma renin activity and plasma aldosterone concentration were suppressed. The infusion of hypertonic saline increased the plasma osmolality, but not the plasma concentration of vasopressin. An oral water load (20 ml/kg of body weight) did not suppress the plasma vasopressin level or induce diuresis. Pretreatment with hydrocortisone normalized the response of plasma vasopressin to the water load was well as the diuretic response during the hypothyroid state. The urinary excretion of 17-hydroxycorticosteroids was below normal in the hypothyroid state in the face of normal serum cortisol concentration. The correction of the hypothyroidism returned these abnormalities to normal. A disturbed metabolism of glucocorticoid may have been responsible for the hyponatremia and disturbance in plasma vasopressin regulation observed in this hypothyroid patient.

Diuresis↗

Expression of types I, II, and III TGF-beta receptors in human glomerulonephritis.

Protein and mRNA expression of transforming growth factor-beta (TGF-beta) receptor type I (TbetaRI), type II (TbetaRII), and type III (TbetaRIII) were studied in serial sections of kidney samples obtained from patients with glomerulonephritis. In minimal change disease, weak expression of TbetaRI and TbetaRII was observed mainly in glomerular endothelial cells, peritubular capillaries, and interstitial arteriolar endothelial cells, whereas TbetaRIII expression was found mainly in the interstitium. Expression of all three TGF-beta receptors (TbetaR) was increased remarkably in glomerular and Bowman's capsular cells comprising the tuft adhesions to Bowman's capsules in glomerulonephritis with increased matrix accumulation, including IgA nephropathy, lupus nephritis, focal and segmental glomerulosclerosis, myeloperoxidase-antineutrophil cytoplasmic antibody-associated crescentic glomerulonephritis, and membranoproliferative glomerulonephritis. Increased expression of the three TbetaR was also seen in glomerular epithelial cells in the vicinity of glomerulosclerotic lesions, in crescent cells, and in some tubules and infiltrative mononuclear cells found in the periglomerular and tubulointerstitial lesions with increased matrix deposition. In contrast, no remarkable TbetaRII expression was noted in mesangial proliferative lesions in IgA nephropathy, lupus nephritis, and membranoproliferative glomerulonephritis. These data suggest that distinctive modulation of TbetaR expression may be involved in the development of adhesive, sclerotic, and proliferative renal lesions in human glomerulonephritis.

Activin Receptors, Type I↗

Glomerular handling of immune complex in the acute phase of active in situ immune complex glomerulonephritis employing cationized ferritin in rats. Ultrastructural localization of immune complex, complements and inflammatory cells.

The ultrastructural localization of immune complex (IC) and inflammatory mediator systems in the glomerulus was investigated in active in situ IC glomerulonephritis employing cationized ferritin in rats. Glomerulonephritis was induced by unilateral renal perfusion of cationized ferritin as antigen (Ag) in preimmunized rats, and anti-ferritin antibody (Ab), C3 and the rat C5b-9 complex were localized by means of immunogold electron microscopy. Ag-Ab complexes were initially formed subendothelially, associated with C3, and attracted platelets, polymorphonuclear leucocytes (PMN) and monocytes. Then Ag-Ab complexes, without C3, passed across the glomerular basement membrane to re-aggregate subepithelially accompanied by C3 deposition after 1 day. Ag-Ab complexes without C3 accumulated in the inter-podocyte space within 1 day and were seen in the epithelial cells at 6 h. C5b-9 complexes were found in subepithelial immune deposits and in membrane vesicles of the epithelial cells, but only in very small amounts in subendothelial immune deposits. Accumulated platelets, PMN, and monocyte were in direct contact with endothelial cells or subendothelial IC. PMN and monocytes contained Ag, Ab and C3 in intracytoplasmic vacuoles. Ag-Ab complexes were also found in the mesangial matrix adjacent to the subendothelial region after 2 h and increased slightly in number, with expansion of the mesangial area thereafter. Most ICs formed in the subendothelial space rapidly formed lattices of a size that activated C3 and were then translocated to the subepithelial space. The potential ability of C3 to solubilize ICs in the subendothelial region may be important in this process. Endocytosis of subendothelial ICs by PMN and/or monocytes and the movement of ICs to the mesangial matrix may also contribute to the removal of IC from the subendothelial space.

Acute-Phase Reaction↗