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Biomedical subjects

I Shirato

Publications and source records attributed to I Shirato.

At least 37 records · Page 2Linked to original sources

Correlations among expression of glomerular intercellular adhesion molecule 1 (ICAM-1), levels of serum soluble ICAM-1, and renal histopathology in patients with IgA nephropathy.

The purpose of the present study was to evaluate the correlations among expression of intercellular adhesion molecule 1 (ICAM-1) in glomeruli, levels of soluble ICAM-1 (sICAM-1) in sera, and renal injuries in patients with IgA nephropathy. The levels of sICAM-1 in sera from 27 patients with IgA nephropathy and 7 healthy controls were measured by the human soluble ICAM-1 immunoassay. The expression of ICAM-1 in glomeruli was detected by indirect immunofluorescence. We observed marked expression of ICAM-1 in glomerular capillary walls and mesangial areas in patients with advanced-stage, but not in those with mild IgA nephropathy. Since the histopathological changes in the advanced stage of this disease were characterized by diffuse mesangial cell proliferation and tubulointerstitial injury, the expression of ICAM-1 in the glomeruli may be of value in evaluating the degree of renal lesions in patients with IgA nephropathy. However, there was no significant change in the levels of serum sICAM-1 among mild-stage and advanced-stage patients and healthy controls. It appears that the measurement of serum sICAM-1 is not useful in evaluating the degree of renal injuries in patients with IgA nephropathy.

Case-Control Studies↗

Hydrogen peroxide induces necrosis, apoptosis, oncosis and apoptotic oncosis of mouse terminal proximal straight tubule cells.

Hydrogen peroxide (H2O2) has been shown to be an important mediator of ischemic and toxic tubular damage. The purpose of this study was to identify the mode of cell death observed in H2O2-exposed cultures of mouse terminal proximal straight tubule (S3) cells. H2O2 induced a dose- and time-dependent decrease in viability of S3 cells. Morphologically, S3 cells exposed to H2O2 (0.05-0.1 mM) showed features of necrosis, apoptosis, oncosis and apoptotic oncosis, whereas necrosis occurred most frequently in every experimental condition tested. On the other hand, agarose gel electrophoresis of DNA extracted from S3 cells exposed to H2O2 revealed a typical DNA ladder pattern. These data suggest that H2O2-induced proximal tubule damages are associated with the induction of various modes of cell death including necrosis, apoptosis, oncosis and apoptotic oncosis, and with the activation of endonuclease.

Animals↗

Serum levels of soluble Fas and disease activity in patients with IgA nephropathy.

Using a sandwich ELISA, we studied 48 patients with IgA nephropathy and 10 patients with diffuse mesangial proliferative glomerulonephritis without IgA deposition (non-IgA PGN) to determine if levels of serum soluble Fas (s-Fas) might reflect the disease activity. The levels of serum s-Fas in patients with the advanced stage of IgA nephropathy were significantly higher than those in patients with the mild stage of the disease, in non-IgA PGN or in healthy controls. The results showed that advanced stage IgA nephropathy patients who showed heavy proteinuria and the presence of urinary casts revealed high levels of serum s-Fas. It was thus suggested that the measurement of serum s-Fas is useful in evaluating the degree of renal injury in patients with IgA nephropathy.

Adolescent↗

Detection of cell death of cultured mouse mesangial cells induced by oxidized low-density lipoprotein.

The objectives of the present study using cultured mouse mesangial cells (MMC) were (1) to evaluate the type of cytotoxicity induced by oxidized (ox) LDL, i.e. apoptosis, necrosis and types of other cell death and (2) to investigate the pathway of cell death under incubation with antioxidants or scavenger receptor (SR) antagonists. LDH release and a morphological examination were used in this study. Trypan blue staining of MMC was performed to detect dead cells in culture. Cytotoxicity of ox-LDL in MMC was found to be dose- and time-dependent. In the morphological study of electron microscopy, three different types of cell death in ox-LDL-treated MMC were identified. In the morphological study with semithin sections, these three types of dead cells were identified at different dosages of ox-LDL. Type 1 or type 2 dead cells were observed in low dose ox-LDL or in middle-dose ox-LDL-treated MMC, respectively. Type 3 dead cells were marked in high dose ox-LDL-treated MMC. It appears that the cells were apoptotic (type 1), necrotic (type 3) and other types (type 2). The cytotoxicity of ox-LDL was not mediated by cellular internalization of ox-LDL via SRs. On the other hand, the cytotoxicity of ox-LDL was inhibited by antioxidants such as alpha-tocopherol, probucol, N-acetyl-cysteine or glutathione ethyl ester. It is indicated that the pathways of ox-LDL induced cell death were distinct from the pathway via SRs.

Acetylcysteine↗

[Morphometric analysis of normal glomerular epithelial cells in rat and human].

It has been postulated that morphological changes of podocytes might be related to glomerular sclerotic lesions in experimental models and patients with glomerular diseases. To estimate the absolute number of podocytes in mammalian normal glomerulus, we analyzed normal glomeruli in four rats and six humans. In PAS stained light microscopic sections, at least 25 midsections of open glomeruli were photographed. Stereologic estimation was performed to obtain the following values: absolute values of glomerular volume (V), glomerular surface area (S), podocyte and intraglomerular cell number per glomerulus (P and IGC), glomerular surface area covered by one podocyte (S/P) and glomerular volume occupied by one intraglomerular cell (V/IGC). The glomerular volume, glomerular surface area and podocyte and intraglomerular cell numbers per glomerulus of human were significantly increased compared with those of the rat (V: 2.70 +/- 0.86 > 0.89 +/- 0.19, S: 4.84 +/- 1.26 > 1.88 +/- 0.26, P: 407.7 +/- 88.2 > 153.8 +/- 84.0, p < 0.01 vs rat). On the other hand, there were no significant differences in glomerular surface area covered by one podocyte and glomerular volume occupied by one intraglomerular cell between the humans and rats (S/P: 1.25 +/- 0.20, 1.29 +/- 0.05, V/IGC: 2,471 +/- 487, 2,227 +/- 201, p < 0.01 vs rat). These data were almost the same as previously reported values. It appears that these values can be considered as standards for rats and humans in morphometric analysis of the glomerulus.

Adolescent↗

Involvement of macromolecule synthesis, endonuclease activation and c-fos expression in cisplatin-induced apoptosis of mouse proximal tubule cells.

We have previously demonstrated that cisplatin-induced nephrotoxicity is associated with the induction of apoptosis using mouse renal cells derived from the terminal proximal tubule (S3) which is the major target site of cisplatin-induced injury. The purpose of this study was to elucidate the intracellular mechanisms leading to the cisplatin-induced apoptosis of S3 cells. Actinomycin D (an inhibitor of RNA synthesis), cycloheximide (an inhibitor of protein synthesis) and aurintricarboxylic acid (an endonuclease inhibitor) reduced the extent of DNA fragmentation, a biochemical parameter of apoptosis, in cisplatin-treated S3 cells. Furthermore, cisplatin-induced apoptosis of S3 cells was accompanied by an increase in the level of c-fos mRNA expression, which is inhibited by pretreatment of the cells with actinomycin D, but not with cycloheximide or aurintricarboxylic acid. In contrast, outer medullary collecting duct cells treated with cisplatin exhibited morphological changes characteristic of apoptosis and an increase in the level of c-fos mRNA expression, but no increase in the extent of DNA fragmentation. In conclusion, the synthesis of macromolecules such as RNA and protein, endonuclease activation and c-fos expression appear to be involved in the intracellular pathways leading to the induction of apoptosis in cisplatin-treated S3 cells. In addition, the response to cisplatin may be different in different cells.

Animals↗

Angiotensin II maintains the structure and function of glomerular mesangium via type 1a receptor. What we have learned from null mutant mice minus the angiotensin II type 1a receptor gene.

The angiotensin II type 1a (AT1a) receptor is the major receptor effecting the multiple actions of angiotensin II on the cardiovascular system. It is expressed abundantly in the glomerular mesangial cells of the kidney. We investigated glomerular changes in null mutant mice minus the AT1a receptor gene to gain an understanding of the in vivo action of angiotensin II via AT1a on the mesangium. Morphological observations and morphometric analysis revealed that the glomerular volume was greatly increased owing to the expansion of the mesangial area, which contained fluid-filled spaces with a small amount of fibrillar components. The mesangial cells lost contact with each other and with the perimesangial area of the glomerular basement membrane (GBM), so that the glomerular capillary neck was greatly widened. These findings suggest a defect of the anchoring function of mesangial cells resulting from some abnormality in mesangial matrix formation. We conclude that angiotensin II has an important role in the structural and functional maintenance of the mesangium via the AT1a receptor, especially by reinforcing the connection between mesangial cells and GBM via the mesangial matrix.

Angiotensin II↗

Distinct interleukin-1beta-converting enzyme family proteases mediate cisplatin- and staurosporine-induced apoptosis of mouse proximal tubule cells.

Interleukin-1beta converting enzyme (ICE) family proteases (caspases) are known to be implicated as important effectors of apoptotic pathways. The purpose of this study was to elucidate the role of ICE family proteases in apoptosis of mouse cells derived from the terminal proximal tubule (S3) treated with cisplatin, an anti-tumor drug, or staurosporine, a protein kinase C inhibitor. For this purpose, we measured the activities of ICE family proteases and examined the effects of tetrapeptide and viral ICE family protease inhibitors on the activities of ICE family proteases in and the degree of apoptosis of S3 cells treated with cisplatin and staurosporine. RT-PCR analysis revealed that S3 cells as well as mouse kidney express mRNA for ICE and CPP32, an ICE family protease. Results of enzymatic analysis, determination the degree of DNA fragmentation and cytotoxicity test suggest that CPP32 mediates cisplatin-induced apoptosis of S3 cells, whereas ICE family proteases other than CPP32 mediate staurosporine-induced apoptosis of S3 cells. In conclusion, distinct ICE family proteases mediate apoptosis of mouse proximal tubule cells depending on the stimuli to which the cells are exposed.

Animals↗

Epstein-Barr virus detection in kidney biopsy specimens correlates with glomerular mesangial injury.

To determine the relationship between the detection of Epstein-Barr virus (EBV)-specific DNA and glomerular injury, 33 renal needle-biopsy specimens that had been formalin-fixed and paraffin-embedded were analyzed using polymerase chain reaction (PCR) with subsequent nonradioactive Southern blot technique. Light microscopic examination and immunofluorescence were also performed. In 30 of 33 renal biopsy specimens, the beta globin gene could be successfully amplified as integrity controls. These 30 patients consisted of 12 patients with immunoglobulin A nephropathy (IgAN), 10 patients with minor glomerular abnormalities, 6 patients with membranous nephropathy, and 2 patients with focal/segmental lesions. EBV was detected in 7 of 12 patients with IgAN (58%), 3 of 6 patients with membranous nephropathy (50%), 0 of 10 patients with minor glomerular abnormalities (0%), and 2 of 2 patients with focal/segmental lesions. EBV detection was not disease specific. The EBV detection ratio of the group with glomerular mesangial lesions (64%; 9 of 14 patients) was significantly greater than those without (19%; 3 of 16 patients; P < 0.012, chi-square test). The EBV detection ratio of the group with glomerular lesions (60%; 12 of 20 patients) was significantly greater than those without (0%; 0 of 10 patients; P < 0.0016, Fisher's exact test), and the EBV detection ratio of the group with fibrinogen deposits observed in immunofluorescence (73%; 11 of 15 patients) was significantly greater than those without (7%; 1 of 15 patients; P < 0.0002, chi-square test). The EBV detection ratio of the group with immunoglobulin deposits (57%; 12 of 21 patients) was also significantly greater than those without (0%; 0 of 9 patients; P < 0.0040, Fisher's exact test). These data suggest that EBV can damage the glomerular mesangium beyond disease units and be mediated by immunoglobulin in patients with various chronic glomerulonephritides.

Biopsy, Needle↗

Distinct contribution of Fc receptors and angiotensin II-dependent pathways in anti-GBM glomerulonephritis.

BACKGROUND: The contribution of antibody and/or immune-complex to the pathogenesis of immunologically-mediated glomerulonephritis is not fully understood, although it has been recently clarified that Fc receptors (FcRs) play critical roles in the inflammatory cascade. We therefore re-evaluated the classical model of glomerulonephritis, anti-glomerular basement membrane antibody-induced glomerulonephritis (Anti-GBM GN), from the standpoint of FcRs and also investigated the residual FcR-independent mechanisms. METHODS: We adopted an Anti-GBM GN mouse model that has two strains deficient in the FcR gamma chain [gamma(-/-)] or Fc gammaRIIB [RII(-/-)], and analyzed functional (urinary protein, serum creatinine, BUN) and pathological changes of the glomeruli. For the analyses of FcR-independent mechanisms, several doses of nephrotoxic serum were applied, and then mice were treated either with cobra venom factor or an angiotensin II type 1 receptor antagonist in gamma(-/-) mice. RESULTS: In gamma(-/-) mice, renal injuries were dramatically attenuated with an absence of polymorphonuclear cell (PMN) influx, while RII(-/-) mice suffered accelerated glomerular injuries in spite of a normal PMN influx. In the absence of FcR-dependent effects in gamma(-/-) mice, the FcR-independent pathway lead to chronic renal damage characterized by mesangial proliferation and progressive expansion of mesangial area, with monocyte/macrophage accumulation and with the expression of alpha smooth muscle actin in the mesangial cells and interstitium. Those injuries in gamma(-/-) mice were not attenuated by the decomplementation, but completely abolished by using an angiotensin II type 1 receptor antagonist. CONCLUSIONS: Our results clearly demonstrate that FcRs play a pivotal role in Anti-GBM GN, especially in its acute phase. We further clarified the existence of FcR and complement-independent but antibody-dependent pathway. Furthermore, we found that those pathological changes were strongly related to the renin-angiotensin system.

Actins↗

Detection of apoptotic cells in glomeruli of patients with IgA nephropathy.

The purpose of the present study was to determine the relationship between the existence of apoptotic cells in glomeruli, clinical or histopathological findings and response to treatment in patients with IgA nephropathy. Renal biopsy specimens were obtained from 23 patients with IgA nephropathy. These patients were divided into two groups: mild glomerular damage (12 patients), and severe glomerular damage (11 patients). The nick end-labelling method (TUNEL) and fluorescent staining (Hoechst 33258) were used for the detection of apoptotic cells. Five of 6 patients with apoptotic cells in the glomeruli detected by TUNEL were in the severe glomerular damage group, and only 1 patient was in the mild glomerular damage group. Apoptotic cells in glomeruli were also detected by fluorescent staining in 3 of 5 patients in the severe glomerular damage group who showed apoptotic cells in TUNEL. However, no apoptotic cells were detected in patients in the mild glomerular damage group in fluorescent staining. Mean levels of urinary protein excretion at the time of renal biopsy in the patients with apoptotic cells were significantly higher than those in patients without apoptotic cells (p < 0.01). The mean levels of creatinine clearance (Ccr) in the patients with apoptotic cells were slightly lower than those in patients without such cells. There were no significant differences in the levels of serum creatinine (s-Cr) and BUN in patients with or without apoptotic cells. In the severe glomerular damage group, urinary protein excretion after treatment in the patients with apoptotic cells was significantly improved compared with that in the patients without such cells (p < 0.01). It appears that the levels of proteinuria and renal function tests might be influenced by apoptosis in patients with IgA nephropathy. It is postulated that apoptosis may induce reduction of excess proliferative mesangial cells and/or infiltrated cells, and tissue repair. Thereafter, these histological alterations may improve proteinuria and renal function.

Adult↗

Enhanced expression of membrane type-1 matrix metalloproteinase in mesangial proliferative glomerulonephritis.

Matrix metalloproteinase-2 (MMP-2, gelatinase A) is involved in the inflammatory and sclerotic events of glomerular diseases. Newly identified membrane-type matrix metalloproteinases (MT-MMP) have been shown to activate specifically proMMP-2. To date, several types of MT-MMP have been cloned; however, their expressions in glomerular diseases have not been evaluated. To investigate the role of MT-MMP in glomerular diseases, the glomerular gene expression and enzymatic activity of MT-MMP were examined during the time course of nephritis induced in rats by anti-Thy1.1 antibody injection. Both MT1-MMP and MMP-2 mRNA expression increased prominently 5 and 10 d after anti-Thy1.1 antibody injection and decreased thereafter, as assayed by semiquantitative reverse transcription-PCR. In contrast, there were no remarkable changes in the gene expression of MT2-MMP between normal and diseased tissue, and that of MT3-MMP was not detected in isolated glomeruli by reverse transcription-PCR analysis. The activation of proMMP-2 as analyzed by gelatin zymography correlated with the glomerular MT1-MMP gene expression, suggesting that proMMP-2 was activated by MT1-MMP. Protein and mRNA expression of fibronectin, one of the major mesangial matrix proteins and substrate of MMP-2, were also synchronized with MT1-MMP and MMP-2 expression. In situ hybridization revealed intense MT1-MMP mRNA expression in the proliferating mesangial cells. Interestingly, MT1-MMP gene expression exhibited a similar distribution as alpha-smooth muscle actin expression, which was closely associated with mesangial phenotypic change. These results suggest that among the newly identified MT-MMP, MT1-MMP may play the central role in activation of proMMP-2. Furthermore, the enhancement of MT1-MMP and MMP-2 expression associated with mesangial phenotypic change may contribute to the development of anti-Thy1.1 antibody-induced glomerulonephritis and remodeling of extracellular matrices.

Animals↗

Effects of treatment with angiotensin-converting enzyme inhibitor (ACEI) or angiotensin II receptor antagonist (AIIRA) on renal function and glomerular injury in subtotal nephrectomized rats.

The aim of this study was to determine if treatment with angiotensin-converting enzyme inhibitors (ACEI) or angiotensin II receptor antagonists (AIIRA) might decrease urinary albumin excretion and prevent glomerular enlargement and glomerulosclerosis in subtotal (5/6) nephrectomized rats. Morphometric image analysis of glomeruli was also performed in the subtotal nephrectomized rats. The nephrectomized rats were treated with ACEI (enalapril 100 mg/l), AIIRA (L-158,809 10 mg/l) or TRX (reserpine 5 mg/ l, hydralazine 80 mg/l, and hydrochlorothiazide 25 mg/l) and euthanized at 16 weeks after renal ablation. Treatments were started at 2 weeks (early treatment: Group I) or 8 weeks (later treatment: Group II) after the ablation. ACEI and AIIRA treatments were equally and significantly effective in limiting albuminuria and progression of glomerular sclerosis. TRX was also as effective in decreasing urinary albumin excretion and preserving the renal function as ACEI or AIIRA in Group I. The improvement of albuminuria, glomerular enlargement and sclerosis after these treatments in Group II was significantly less than that in Group I. It appears that the early treatment with angiotensin converting enzyme inhibitor, angiotensin II receptor antagonist or reserpine, hydralazine and hydrochlorothiazide (TRX) may prevent glomerular injury in human patients with renal hypertension.

Albuminuria↗

Cisplatin-induced apoptosis of immortalized mouse proximal tubule cells is mediated by interleukin-1 beta converting enzyme (ICE) family of proteases but inhibited by overexpression of Bcl-2.

Cisplatin is known to induce serious renal damage including acute renal failure, the major site of renal injury appears to be localized to the third segment of the proximal tubule (S3). Apoptosis occurs during a variety of acute injuries to tubule cell. The purpose of this study was to determine whether cisplatin induces apoptosis of immortalized mouse S3 cells, and to define the intracellular pathways leading to cell death. S3 cells exposed to cisplatin exhibited biochemical, morphological, and flow cytometric changes characteristic of apoptosis associated with slight necrosis. Cisplatin-induced apoptosis could be inhibited by overexpression of crmA, a cowpox virus gene, of which the product is known to suppress activities of the interleukin-1 beta converting enzyme (ICE) family proteases. On the other hand, overexpression of bcl-2, an antiapoptotic oncogene, rendered S3 cells partially resistant to cisplatin. These results indicate that cisplatin-induced proximal tubule damage is associated with apoptosis, which is positively modulated by the ICE family of proteases and negatively by the product of bcl-2.

Animals↗

A case of lupus nephritis showing good clinical course and apoptosis in glomerular cells detected by the nick end labeling method.

We report here an adult patient with lupus nephritis who had a good clinical course under long-term observation. Apoptotic bodies in the glomeruli were determined in serial renal biopsy specimens by the nick end labeling method. Apoptotic bodies in the proliferated glomerular cells were detected in the 3rd renal biopsy but not in the 2nd biopsy. The clinical activities of lupus nephritis fluctuated until the time of the 3rd renal biopsy. The 3rd renal biopsy was performed because of increased proteinuria and an increased amount of hyaline, granular and red blood cell casts, with impairment of renal function. The levels of proteinuria, creatinine clearance and serum complements were improved after the 3rd renal biopsy. It appears that apoptosis might control glomerular cell proliferation and also influence the clinical course of lupus nephritis.

Adult↗

Location and action of angiotensin II type 1 receptor in the renal microcirculation.

To localize angiotensin II type 1a (AT-1a) receptor and to reveal the physiological roles of angiotensin II in the renal microcirculation, we investigated the AT-1a gene deficient mice, generated by a targeted replacement of the AT-1a receptor loci by the lacZ gene (Sugaya et al, J Biol Chem 270: 18719, 1995). Immunohistochemical localization of beta-galactosidase was performed in the heterozygous mutant mice to reveal the expression sites of AT-1a. The AT-1a receptor (that is, beta-galactosidase) was expressed both in the afferent and efferent arteriolar smooth muscles and also in the mesangial cells. The effect of angiotensin II on glomerular arterioles was directly observed using the hydronephrotic mice. Angiotensin II similarly constricted both the afferent and efferent arterioles in the wild-type and heterozygous mutant mice in a dose-dependent manner. This constriction was completely abolished by an AT-1 antagonist, CV-11974. In the homozygous null mutant mice, however, angiotensin II did not affect the arterioles at all. Electron microscopic studies revealed that the mesangial cells made contact with the glomerular basement membrane (GBM) at the capillary neck and also with each other in the wild-type mice. However, in the homozygous null mutant mice, the mesangial cells lost the contact either with GBM or with each other and thus the capillary neck became remarkably wider. The mesangial matrix area appeared loose and enlarged, suggesting impaired mesangial matrix formation. In conclusion, via the AT-1a receptor, angiotensin II equally constricts both the afferent and efferent arterioles and plays an essential role in maintaining the normal glomerular function and structure.

Angiotensin II↗

Detection of antioxidant enzyme activities in renal tissues of early stage IgA nephropathy in ddY mice.

The purpose of this study was to determine the antioxidant enzyme activities in renal tissues of early stage ddY mice, an animal model for primary IgA nephropathy. Eight- and 40-week-old ddY female mice and normal healthy Balb/c female mice were used in this study. The levels of Cu/Zn-SOD, Mn-SOD, and GSH-PX activities in the renal cortex were significantly higher in 40-week-old ddY mice than in Balb/c control mice of the same age; no change of catalase activity was observed. There were no significant differences in the levels of Cu/Zn-SOD, Mn-SOD, GSH-PX, and catalase activities between the ddY mice and Balb/c mice at 8 weeks of age. Urinary protein was slightly higher in 40-week-old ddY mice. IgA or C3 was deposited at low levels in the glomerular mesangial areas of 8-week-old ddY mice. Marked depositions of IgA and C3 extended from the glomerular mesangial areas to the capillary walls of 40-week-old ddY mice. Expansion of glomerular mesangial matrices and mild mesangial cell proliferation was observed in 40-week-old ddY mice. Antioxidant enzyme activities in the renal cortex were already increased in the early stage IgA nephropathy in 40-week-old ddY mice. These findings suggest that measurements of antioxidant enzyme activities in the renal cortex of 40-week-old ddY mice was useful for evaluation of the pathogenesis of renal involvement in the early stage of IgA nephropathy.

Animals↗