Search PubMed⌕ Search

Biomedical subjects

N Kashihara

Publications and source records attributed to N Kashihara.

At least 37 records · Page 2Linked to original sources

Isolation of rat fibrillin-1 cDNA and its relevance in metanephric development.

The role of fibrillin-1 in metanephrogenesis was investigated. Fibrillin-1 cDNA was isolated from the rat kidney cDNA library and sequenced, and its spatiotemporal expression was studied. It had approximately 88% homology with human fibrillin-1 and had Ca2+ binding epidermal growth factor-like domains, transforming growth factor-beta binding protein motifs, and an RGD binding site. Northern blot analysis revealed an approximately 10-kb transcript, and fibrillin-1 expression was developmentally regulated. In situ hybridization and immunofluorescence studies indicated that at day 15 of gestation, fibrillin-1 is expressed in the metanephric mesenchyme. At day 18, its expression was confined to nascent blood vessels and glomeruli, and it increased in the newborn and neonatal kidneys. Immunoprecipitation revealed an approximately 300-kDa band by SDS-PAGE. Treatment with fibrillin-1 antisense oligodeoxynucleotide induced marked dysmorphogenesis of the embryonic metanephroi. Concomitantly, the fibrillin-1 mRNA, antibody reactivity in the metanephroi, and fibrillin-1-specific radioincorporation were reduced. These data indicate that, like alphavbeta3 integrin, a known morphogen and a putative receptor of fibrillin-1, the fibrillin-1 modulates events related to early organogenesis and possibly also the vascularization of the rat kidney.

Amino Acid Sequence↗

Expression of interleukin-8 in human glomerulonephritis.

Interleukin-8 (IL-8) is a cytokine, which possesses both chemotactic and activating properties for neutrophils, lymphocytes and basophils. Various evidence has indicated IL-8 to be implicated in the pathophysiology of immune-mediated renal diseases. We thus examined the expression of IL-8 in renal diseases. We detected the expression of IL-8 both in mRNA and the protein levels in renal biopsy specimens obtained from patients with IgA nephropathy and lupus nephritis. A significant correlation was found between the expression of IL-8 mRNA and the number of neutrophils in the glomerulus. We also found a negative correlation between the expression of IL-8 mRNA and creatinine clearance. Our study thus suggested IL-8 to be involved in the pathophysiology of proliferative glomerulonephritis.

Adolescent↗

Inhibition of rheumatoid synovial fibroblast proliferation by antisense oligonucleotides targeting proliferating cell nuclear antigen messenger RNA.

OBJECTIVE: To evaluate the feasibility of antisense oligonucleotides as therapeutic agents to inhibit synovial cell growth in rheumatoid arthritis (RA). METHODS: Fibroblast-like cells established from RA synovium were stimulated with interleukin-1beta (IL-1beta) and treated with antisense or sense oligonucleotides targeting proliferating cell nuclear antigen (PCNA) messenger RNA (mRNA). Proliferation of these cells was determined by 3H-thymidine incorporation. Effects of antisense oligonucleotides on the expression of mRNA and protein were evaluated by reverse transcriptase-polymerase chain reaction and immunohistochemical staining, respectively. RESULTS: Antisense oligonucleotides targeting PCNA inhibited IL-1-stimulated fibroblast proliferation, whereas sense oligonucleotides had no effect. Both mRNA and protein levels of PCNA were suppressed in the cells treated with antisense oligonucleotides, indicating that the antiproliferative effect was occurring through an antisense mechanism. CONCLUSION: These results suggest that antisense strategies designed to suppress PCNA expression have potential use as therapeutic agents for RA.

Arthritis, Rheumatoid↗

A case of primary hyperparathyroidism accompanying multiple myeloma.

We report a case of 77-year-old woman who presented with lumbago and hypercalcemia. Multiple myeloma (MM) was first diagnosed by serum protein electrophoresis and bone marrow aspiration, but intact parathyroid hormone (intactPTH) was also found to be high in the presence of persistent hypercalcemia with anorexia and nausea. After lowering serum calcium with bisphosphonate administration, parathyroidectomy was performed. Upon histologic examination, the tumor was determined to be parathyroidal chief-cell hyperplasia and the patient was treated with melphalan and prednisolone. The relationship between MM and primary hyperparathyroidism (I degree HPT) remains unknown. Although the co-existence of MM and I degree HPT was reported in 12 reports from various parts of the world, there was only 1 report in Japan. The present case is an example of successful treatment for a complicated disorder, and suggests that patients suffering from bone pain or hypercalcemia need to be examined both endocrinologically and hematologically.

Aged↗

Increased production of interleukin-10 and inflammatory cytokines in blood monocytes of hemodialysis patients.

Chronic hemodialysis (HD) patients have defects in cell-mediated immunity. To investigate the mechanisms underlying this immunodeficiency, we studied the production of cytokines in peripheral blood mononuclear cells (PBMC) from HD patients. PBMC from 22 HD patients and 20 healthy controls were cultured for 48 h in the presence or absence of phytohemagglutinin (PHA), lipopolysaccharide (LPS), or tuberculin purified protein derivative (PPD). Cytokine levels were measured by enzyme-linked immunosorbent assays. Only 64% of HD patients had a positive tuberculin skin test compared to 90% of normal Japanese controls. HD patients showed a diminished proliferative response to PHA. Compared to healthy controls, stimulated PBMC from HD patients produced similar amounts of T cell-derived cytokines (interleukin-2 (IL-2) and interferon-gamma (IFN-gamma)), but greater amounts of monocyte-derived inflammatory cytokines (IL-1 beta, tumor necrosis factor-alpha (TNF-alpha), and IL-8) and a regulatory cytokine (IL-10). IL-10 production was positively correlated with IL-1 beta and TNF-alpha in healthy controls, whereas no correlation was observed in HD patients. Abnormal cytokine production by monocytes may contribute to the immunodeficiency seen in HD patients.

Cells, Cultured↗

Apoptosis in glomerular sclerosis.

Glomerulosclerosis is characterized by progressive extracellular matrix accumulation and glomerular cell loss. The role of glomerular cell apoptosis in glomerulosclerosis was investigated in the rat remnant kidney model and in human glomerular diseases. We identified apoptotic cells in the glomeruli, tubules and interstitium in the remnant kidney by electron microscopy. DNA fragmentation, which is a biochemical characteristic of apoptosis, was detected by in situ nick end-labeling of fragmented DNA with terminal deoxynucleotidyl transferase and biotinylated deoxyuridine triphosphate. Fragmented DNA in the glomeruli and tubules increased with the progression of glomerulosclerosis in the remnant kidney model. This finding was also demonstrated in other glomerular sclerotic lesions such as IgA and lupus nephritis. The number of cells positive for nick end-labeling in the glomerulus significantly correlated with the degree of glomerulosclerosis and the deterioration of renal function. These results indicate that apoptosis is, at least in part, involved in the cell deletion of various glomerular diseases leading to sclerosis.

Animals↗

Antisense oligonucleotides to proliferating cell nuclear antigen and Ki-67 inhibit human mesangial cell proliferation.

Proliferating cell nuclear antigen (PCNA) and Ki-67 are cell cycle-associated nuclear proteins and are used as markers for proliferating cells. This study attempted to inhibit glomerular mesangial cell (MC) proliferation, which is the hallmark of many forms of glomerular disease, by inhibiting these nuclear proteins with antisense oligodeoxynucleotides. The antisense and sense phosphorothioate oligodeoxynucleotides complementary to PCNA and Ki-67 mRNA, including the initiation codon, were synthesized. Human MC were cultured in growth medium in the presence of sense or antisense oligodeoxynucleotides, and the effects of these oligodeoxynucleotides on mesangial cell proliferation were evaluated by direct cell count. Both PCNA and Ki-67 antisense oligodeoxynucleotides significantly inhibited mesangial cell proliferation as compared with sense oligodeoxynucleotides. Antisense oligodeoxynucleotides (10 microM) for PCNA and Ki-67 inhibited mesangial cell growth by greater than 50%. The effect of antisense oligodeoxynucleotides on target protein expression was examined by immunocytochemistry using specific monoclonal antibodies. Reverse transcription-polymerase chain reaction also was performed to evaluate the effect of antisense oligodeoxynucleotides on PCNA and Ki-67 mRNA expression. Studies of target protein and mRNA expression revealed that the inhibitory effects of the antisense oligonucleotides were mediated through decreases in the expression of both mRNA and protein. Sense oligodeoxynucleotides produced little effect. These results indicate that antisense oligodeoxynucleotides targeting PCNA and Ki-67 mRNA reduce the expression of these gene products and inhibit mesangial cell proliferation. Moreover, these results suggest the feasibility of antisense strategies designed to inhibit PCNA and Ki-67 expression for the inhibition of mesangial cell proliferation in vivo.

Cell Division↗

Reactive oxygen species induce apoptosis in cultured human mesangial cells.

Apoptosis is a distinct form of cell death that is observed under various physiologic and pathologic conditions, and it is thought to be important in regulating the number of glomerular cells. This study investigated the possible role of reactive oxygen species in the induction of apoptosis in cultured human mesangial cells. Fragmented nuclei with condensed chromatin, a morphologic characteristic of apoptosis, were observed by electron microscopy in mesangial cells exposed to 0.02 mM hydrogen peroxide for 4 h. Nuclear DNA extracted from mesangial cells that had been incubated with hydrogen peroxide (2 to 20 mM) or with xanthine (0.05 mM) and xanthine oxidase (5 to 100 mU/mL) showed the ladder pattern on electrophoresis that is a biochemical marker for apoptosis. Hydrogen peroxide (0.02 to 20 mM) decreased the number of viable cells, as determined by trypan blue exclusion, in a dose-dependent manner. Hydrogen peroxide or xanthine and xanthine oxidase increased the lactate dehydrogenase release from mesangial cells in a dose- and time-dependent manners. The release of lactate dehydrogenase was prevented by treatment with a free radical scavenger, catalase. Hydrogen peroxide (2 mM) also significantly increased the number of mesangial cells with fragmented DNA as detected by in situ nick end-labeling Results indicate that reactive oxygen species induce apoptosis in cultured human mesangial cells. Furthermore, apoptosis of mesangial cells induced by reactive oxygen species may contribute to the loss of such cells observed in glomerular disease.

Apoptosis↗

Takayasu's arteritis associated with ulcerative colitis; genetic factors in this association.

Both ulcerative colitis and Takayasu's arteritis are though to be organ-specific immune-mediated inflammatory diseases. We present the rare case of a 23-year-old woman with a 4-year history of ulcerative colitis who developed Takayasu's arteritis one month after giving birth. She was found to carry the human leukocyte antigens (HLA)-B52 and DR2, which were previously noted to be associated with these inflammatory conditions in the Japanese population. The pathogenic relevance of this haplotype to the concomitant development of these two conditions is discussed.

Adult↗

Phenotypic modulation of the mesangium reflected by contractile proteins in diabetes.

The phenotypic change of the mesangial cell is considered to play a pivotal role in the accumulation of extracellular matrix in diabetic nephropathy. This investigation was undertaken to evaluate the expression of the various isoforms of contractile proteins in the streptozocin (STZ)-induced diabetic rat kidney and in renal biopsy specimens from patients with diabetic nephropathy. Specific antibodies to myosin heavy chain isoforms (SM1, SM2, SMemb), caldesmon, and alpha-smooth muscle actin and cDNAs for SMemb were used. Increased expression of SMemb at the mRNA and protein levels was demonstrated at 1 week after STZ administration in the rat. Both levels were increased at 4 weeks. Mesangial staining of caldesmon was observed at 4 weeks and that of alpha-smooth muscle actin at 24 weeks. Immunohistochemical mesangial staining of the contractile proteins was pronounced in patients with diabetic nephropathy in contrast to the trace mesangial staining in normal control subjects. These results indicate that the phenotypic change in mesangial cells occurs in the early stages of diabetes and that several stages in phenotypic changes may exist. Expression of the contractile protein isoforms, especially SMemb, should serve as a new marker for the subsequent glomerular hypertrophy and sclerosis.

Actins↗

A patient with sarcoidosis associated with recurrent urolithiasis and tubular injury caused by calcium deposition.

A 38-year-old woman was hospitalized in January 1994 with renal dysfunction and hypercalcemia. Before admission, she was diagnosed as having urolithiasis, and had been treated twice with extracorporeal shock wave lithotripsy (ESWL). Ophthalmologically, she exhibited iritis and secondary glaucoma. Hypercalcemia, an extremely low titer of parathyroid hormone (PTH), and elevation of angiotensin-converting enzyme (ACE) and lysozyme activity were noted. These findings suggested sarcoidosis, although the chest X-ray showed only fibrotic changes. Hypercalcemia was suspected of having been caused secondarily by sarcoidosis. Since her laboratory data also showed renal dysfunction and abnormal urinalysis, a renal biopsy was performed. The histological findings indicated a tubular and interstitial disorder without glomerular abnormality; calcium deposition, which was detected by X-ray energy dispersive analysis, was observed in the tubular cytoplasm. Administration of prednisolone alleviated the renal dysfunction and decreased the elevation of ACE activity and lysozyme level of the blood. Sarcoidosis is sometimes associated with hypercalcemia, but rarely with renal dysfunction. These findings suggested that sarcoidosis may be associated with renal dysfunction due to tubular injury caused by calcium deposition in the tubules, and that glucocorticoid therapy was effective for these disorders.

Adult↗

[Role of apoptosis in renal injury].

Nephrologists are now investigating the involvement of apoptosis, or programmed cell death, in various renal diseases. Evidence suggests that abnormalities of apoptosis may contribute to the development of glomerular and tubular diseases. In tissue remodeling after glomerular injuries, excess apoptosis may be associated with cell deletion of glomerular sclerosis. Increased apoptosis may mediate the resolution of glomerular hypercellularity in experimental mesangial proliferation. Reactive oxygen species, deprivation of growth factors, anti-Thy 1 monoclonal antibodies and anti-Fas antibodies are capable of inducing apoptosis in cultured mesangial cells. In renal tubular diseases, apoptosis may be associated with tubular atrophy after ureteral obstruction, tubular damage after ischemia-reperfusion or toxic drugs, and the development of polycystic kidney disease. Infiltrative leukocytes in the glomerulus and renal interstitium undergo apoptosis during inflammation. Thus, apoptosis appears to play a significant role in many renal diseases, and we should consider the regulation of apoptosis in the treatment of these disorders.

Animals↗

Transition of morphologic features in lupus nephritis: does steroid therapy accelerate glomerulosclerosis?

We retrospectively evaluated the morphologic change of 28 follow up biopsies from 24 cases of lupus nephritis according to the classification of the World Health Organization and determined the activity index (AI) and the chronicity index (CI). In the cases with biopsies repeated within 6 months, the AI decreased significantly from 6.7 +/- 1.3 to 3.5 +/- 0.8, while the CI showed no significant change. In cases which were rebiopsied after longer intervals, AI increased significantly from 3.2 +/- 0.7 to 7.5 +/- 1.2; the CI did not change significantly. When AI and CI changes in the cases biopsied again beyond 6 months were compared with respect to therapy, AI showed no significant difference in the methylprednisolone pulse therapy group but was significantly increased in the oral steroid therapy group. The CI tended to be increased in both groups, but not significantly. Steroid pulse therapy was effective in improving active lesions with a high AI. Steroid therapy for lupus nephritis prevented short-term progression of glomerulosclerosis and did not accelerate glomerulosclerosis.

Biopsy↗

Localization of fibril/microfibril and basement membrane collagens in diabetic glomerulosclerosis in type 2 diabetes.

Collagen is one of the major components of the extracellular matrices of the kidney. Basement membrane collagen, type IV collagen, is the major component in normal glomeruli. Fibril and interstitial collagen such as type III collagen, type V collagen, and type VI collagen are minor components of glomerular extracellular matrices and are localized mainly in the interstitium. Diabetic glomerulosclerosis is characterized by the expansion of the glomerular mesangial matrix as well as by thickening of the glomerular basement membrane. In order to clarify the roles of these various types of collagen in the development of diabetic glomerulosclerosis, immunohistochemical studies were performed in kidney specimens from patients with Type 2 diabetes. Early glomerulosclerosis is characterized by expansion of mesangial matrix with basement membrane collagen. However, in later stages glomerulosclerosis is characterized by an increase in the minor collagen components, such as type V and type VI collagen or collagens not normally present, such as type III collagen. Mesangial cells are known to synthesize all these types of collagen. In diabetes, phenotypic change in mesangial cells might produce excess amounts of fibril and interstitial collagen such as type III, type V, and type VI collagen, thus, leading to glomerulosclerosis.

Aged↗

Mesangial matrices act as mesangial channels to the juxtaglomerular zone. Tracer and high-resolution scanning electron-microscopic study.

The mesangium is centrally located in the glomerulus and plays an important role in the microcirculation within the glomerulus. In order to reveal the role of the mesangial matrix in the microcirculation, the movement of native anionic ferritin into the juxtaglomerular region was tracked following the intravenous injection of ferritin into rats. The three-dimensional ultrastructures of the mesangial matrix and juxtaglomerular apparatus were studied by conventional scanning and high-resolution scanning electron microscopy after removal of the cellular components. Many ferritin particles were observed from the glomerular capillary to the mesangial matrix, in the mesangial matrix of the juxtaglomerular apparatus and in the tubular lumen of the macula densa after the injection of ferritin. Secretion of macromolecules from the distal tubules seems to be one of the exits from the juxtaglomerular zone. The mesangial matrix was continuous from the vascular pole to the periphery like a branching tree. The intraglomerular mesangial matrix was continuous to the extraglomerular mesangial matrix in the juxtaglomerular region. The mesangial matrix appeared to consist of a polygonal meshwork structure of thin fibrils and pores with high-resolution scanning electron microscopy. The thinnest fiber was approximately 6-nm wide, and the pore size was averaged 20 nm in diameter. We were able to demonstrate the meshwork structure of the mesangial matrix, thus giving the morphological basis of the mesangial matrix to serve as mesangial pathway from the intraglomerular to the extraglomerular mesangial matrix.

Animals↗