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Y Fujigaki

Publications and source records attributed to Y Fujigaki.

At least 19 recordsLinked to original sources

Ubiquitin-dependent degradation of SnoN and Ski is increased in renal fibrosis induced by obstructive injury.

Transforming growth factor-beta (TGF-beta) plays a critical role in the progression of renal fibrosis. The activity of TGF-beta is tightly controlled by various mechanisms, among which antagonizing Smad-mediated gene transcription by co-repressors represents one of the important components. We investigated the expression, degradation, and ubiquitination of Smad transcriptional co-repressors SnoN (ski-related novel gene N) and Ski (Sloan-Kettering Institute proto-oncogene) in renal fibrogenesis. We also studied the involvement of Smad-ubiquitination regulatory factor 2 (Smurf2) in ubiquitination of SnoN protein. The kidneys of mice with unilateral ureteral obstruction (UUO) and those of sham-operated mice were used. Renal lesions and the expression of TGF-beta1, type I collagen, SnoN, Ski, and Smurf2 were examined by immunohistochemistry, Western blot, and/or real-time reverse transcriptase-polymerase chain reaction. Degradation and ubiquitination of SnoN/Ski proteins were also investigated. The obstructed kidneys of UUO mice showed progressive tubulointerstitial fibrosis, high expression levels of TGF-beta1, type I collagen, SnoN and Ski mRNAs, and low levels of SnoN and Ski proteins. Both degradation and ubiquitination of SnoN/Ski proteins were markedly increased in the obstructed kidneys, in which Smurf2 expression was increased. Smurf2 immunodepletion in extracts of obstructed kidneys resulted in reduced ubiquitination of SnoN. Our results suggest that the reduction of SnoN/Ski proteins resulting from increased ubiquitin-dependent degradation is involved in the progression of tubulointerstitial fibrosis.

Animals↗

High ratio of 1,25-dihydroxyvitamin D3 to parathyroid hormone in serum of tuberculous patients with end-stage renal disease.

AIM: Diagnosis of tuberculosis is sometimes difficult because of the low specificity of diagnostic procedures especially in patients on end-stage renal disease (ESRD). As abnormal vitamin D metabolism has been reported in tuberculosis, the aim of the present study was to determine whether serum concentration of 1,25-dihydroxyvitamin D3 (1,25-(OH)2D3) may be a useful diagnostic indicator of tuberculosis in patients with ESRD. PATIENTS AND METHODS: Serum concentrations of 1,25-(OH)2D3, parathyroid hormone (PTH), and calcium were compared in 6 patients with ESRD and active tuberculosis (ESRD-TB group) and 110 patients with ESRD and no tuberculosis (ESRD group). These parameters were compared before and after treatment for tuberculosis in patients of ESRD-TB group. RESULTS: Hypercalcemia was observed in all 6 patients in the ESRD-TB group. Both higher serum concentration of 1,25-(OH)2D3 and lower serum concentration of PTH were observed in the ESRD-TB group relative to the ESRD group, suggesting enhanced extrarenal production of 1,25-(OH)2D3 and suppressed secretion of PTH by hypercalcemia in the ESRD-TB group. However, these parameters could not be used to distinguish the ESRD-TB group from the ESRD group. The ratio of 1,25-(OH)2D3 to PTH in serum was above 0.9 in the ESRD-TB group and below 0.9 in the ESRD group. Antituberculous treatment reduced this ratio to the range observed in the ESRD group. CONCLUSION: High ratio of 1,25-(OH)2D3 to PTH in serum is noted in active tuberculous patients with ESRD because of enhanced extrarenal production of 1,25-(OH)2D3.

Aged↗

A case of anaphylactoid shock induced by the BS polysulfone hemodialyzer but not by the F8-HPS polysulfone hemodialyzer.

A 57-year-old woman was admitted because of severe bradycardia and hypotension caused by an anti-arrhythmic agent and beta-blocker. For 19 months before admission, she had been undergoing hemodialysis with an F8-HPS polysulfone membrane hemodialyzer without any complications. In 2 dialysis sessions after admission, when a BS polysulfone membrane was used, she experienced anaphylactoid shock with severe hypotension leading to syncope, dyspnea and vomiting, just after the start of hemodialysis. After the anaphylactoid shock, her dialyzer membrane was changed to a cellulose triacetate membrane and she did not suffer from such attacks. This case indicates that severe anaphylactoid shock may be caused by a biocompatible dialyzer membrane and that the reactions of patients to each polysulfone membrane may differ among polysulfone membranes made by different manufacturers.

Anaphylaxis↗

Focal segmental glomerulosclerosis in a case of panhypopituitarism: a possible role of growth hormone treatment.

Panhypopituitarism manifests various symptoms including growth failure, hypothyroidism, adrenal insufficiency and hypogonadism. Dwarfism is an important problem in children with this condition, and long-term treatment with recombinant human growth hormone (GH) is usually required. We report a 24-year-old man with panhypopituitarism complicated by focal segmental glomerulosclerosis (FSGS). The patient had been treated with GH for hypopituitary dwarfism from 3 years of age. Proteinuria was initially noticed at 15 years of age and persisted despite cessation of GH supplementation at 18 years of age. A renal biopsy specimen showed glomerular hypertrophy and limited glomerulosclerosis, compatible with FSGS. To our knowledge, this is the first reported case of panhypopituitarism complicated by FSGS. Our case suggests that GH treatment for dwarfism may induce irreversible glomerular disease.

Adult↗

Pseudohyperkalemia occurring in a patient with chronic renal failure and polycythemia vera without severe leukocytosis or thrombocytosis.

Pseudohyperkalemia is defined as a serum potassium concentration 0.4 mEq/l greater than the plasma concentration. The basis of this phenomenon is the release of intracellular potassium from platelets, leukocytes, or erythrocytes, commonly in the setting of extreme leukocytosis (> 10 x 10(4)/microl) or thrombocytosis (> 60 x 10(4)/microl). We report a case of pseudohyperkalemia in a patient with chronic renal failure and polycythemia vera without the finding of severe leukocytosis or thrombocytosis (white blood cell count 1.88 x 10(4)/microl and platelet count 37.9 x 10(4)/microl, respectively). The serum potassium concentration was 8.2 mEq/l, while the plasma potassium level was 6.4 mEq/l in a sample obtained simultaneously. The concentrations of platelet factor IV and beta-thromboglobulin, known to be markers of platelet activation, were greater than 100 ng/ml and 200 ng/ml, respectively, indicating that platelet activation may have been related to the development of pseudohyperkalemia in this patient. These findings suggest that pseudohyperkalemia should be considered when hyperkalemia is seen in a patient with chronic renal failure and myeloproliferative disorders.

Aged↗

Sequence of events in the glomerular capillary wall at the onset of proteinuria in passive Heymann nephritis.

Proteinuria in passive Heymann nephritis (PHN) results from complement-mediated glomerular injury, since complement depletion with cobra venom factor (CVF) prevents proteinuria. However, there are no comprehensive morphological studies identifying the sites of injury leading to onset of proteinuria. To address this issue, we attempted to locate sites of injury involved in the onset of proteinuria in PHN. PHN was induced in intact Munich-Wistar rats (PHN-rats, examined at days 3, 5, and 7) and in complement-depleted rats (CVF treated, PHN-CVF-rats, examined at days 3 and 5). The distribution of endogenous albumin in the glomerular basement membrane (GBM) was studied in in situ drip-fixed glomeruli using immunogold immunocytochemistry, and glomerular anionic sites were visualized by polyethyleneimine staining. In addition, the ultrastructural localization of an epitope recognized by a proteinuria-inducing monoclonal antibody (called 5-1-6) directed against the slit diaphragm was examined. Significant proteinuria was seen in intact PHN-rats, starting at day 5. The intensity of gold labeling for endogenous albumin was significantly increased at the outermost site of the GBM (GBM interfacing foot process and the filtration slit, designated area O) at day 3 in both PHN-rats and PHN-CVF-rats in comparison to untreated controls. At day 5, labeling for albumin in area O was decreased in PHN-rats, but not in PHN-CVF-rats, where it was then higher; in PHN-rats, some areas between epithelial cells and subepithelial deposits were almost free of albumin labeling at day 7. There was no evidence of epithelial cell detachment in any group at day 5, but on day 7 limited focal detachment was seen exclusively in PHN-rats. In proteinuric rats, amorphous material that stained for albumin could be seen in the urinary space, without any exocytosis of labeling by glomerular epithelial cells. A significant reduction of intensity of staining for anionic sites was seen in parallel in both groups, but only in the regions of the lamina rara externa adjacent to subepithelial deposits. This local loss of charge might contribute to enhanced permeability to albumin in both PHN- and PHN-CVF-rats. Changes in the appearance of the filtration slits and in the density and distribution of antigen recognised by monoclonal antibody 5-1-6 were similar in PHN- and PHN-CVF-rats at day 5. Complement depletion prevented neither the reduction in anionic sites of the GBM nor the changes in the slit diaphragm observed. These data suggest that albumin leakage between the epithelial cell and the GBM (area O) could occur in PHN-rats, perhaps as a result of epithelial foot-process changes. This may be the final link in the chain of events responsible for the onset of proteinuria in PHN.

Albumins↗

Cytokines and cell cycle regulation in the fibrous progression of crescent formation in antiglomerular basement membrane nephritis of WKY rats.

Cytokines may regulate cell proliferation by cell-cycle-regulatory proteins, in which cyclin-dependent kinase inhibitors (CDKI) inhibit cell proliferation. We investigated whether CDKI p21 or p27, both of which are potentially regulated by transforming growth factor (TGF)-beta, a key cytokine in fibrogenesis, are involved together with TGF-beta and/or platelet-derived growth factor (PDGF) in the fibrous progression of glomerular crescent formation and examined the sequential change in the cell type and the cellular background of myofibroblasts in crescent formation. Crescentic glomerulonephritis (GN) was induced by i.v. injection of rabbit antirat glomerular basement membrane antiserum in WKY rats. Animals were killed 1, 2, 3 and 4 weeks after the induction of GN, and their kidneys were processed for immunohistochemical examination. After 1 week more than 85% of glomeruli showed cellular crescents, which became fibrocellular with decreased cellularity by 4 weeks. ED 1-positive macrophages were components of crescent cells in about 44% at 1-2 weeks, and this proportion declined markedly afterwards. Alpha smooth muscle actin (alpha SMA, a marker for myofibroblasts)-positive cells were found in Bowman's epithelial cells (BEP) and in some crescent cells at 1 week, becoming major components of crescent cells by 4 weeks (about 40%). It was 2 weeks before invasion of alpha SMA-positive interstitial cells into glomeruli was evident. PDGF-B and PDGF receptor beta-positive cells, indicating possible targets for PDGF, were found in BEP adjoining crescent formation almost exclusively from 1 to 2 weeks. By contrast, both TGF-beta receptor types I- and II-positive cells, indicating possible effectors for TGF-beta, were found in BEP and crescent formation, and the percentage of these in the crescent formation did not change until 4 weeks (about 32%). Cells with positive immunostaining for proliferating cell nuclear antigen and cyclin A, markers for cell proliferation, in the crescent formation peaked in number and proportion at 1-2 weeks, then decreased. In contrast, cells with positive immunostaining for p21 and p27, CDKI, were sparse at 1 week, and then increased markedly in number and in proportion, peaking at 3 (39.6%) or 2-3 weeks (about 25-30%), respectively. The present study demonstrates that restrained expression or a transient increase in p21 and p27 may be associated with proliferation or with inhibited proliferation of crescent cells, most of which are macrophages and myofibroblasts. The action, of PDGF and TGF-beta may contribute to the recruitment of myofibroblasts into the crescent. The action of TGF-beta on crescent cells might be linked to the expression of p21 and/or p27.

Actins↗

Role of atrophic tubules in development of interstitial fibrosis in microembolism-induced renal failure in rat.

We explored the origin and participation of atrophic tubules in the progression of interstitial fibrosis using a new microembolic rat model of chronic renal failure in which foci of atrophic tubules with cuff-like basement membrane thickening developed at 4 weeks. Atrophic tubules, immunoreactive for vimentin and platelet-derived growth factor, were surrounded by transformed interstitial cells expressing platelet-derived growth factor receptor beta and alpha-smooth muscle actin. Some tubules in the deep cortex and the outer stripe of the outer medulla had a mosaic appearance. Tall, intact proximal tubular cells with a brush border and positivity for Phaseolus vulgaris erythroagglutinin, adjoined typical atrophic tubule cells having no brush border and an immunostaining pattern characteristic for atrophic tubules. The transformed interstitial cells expressing alpha-smooth muscle actin were located near atrophic but not intact tubular epithelial cells. Type IV collagen accumulated between damaged tubular cells and transformed interstitial cells. Heat shock protein 47 showed immunoreactivity in damaged epithelial cells and in interstitial myofibroblasts. Staining with an anti-endothelial antibody suggested damage to peritubular capillaries near atrophic tubules. By disturbance of microcirculation following microsphere injection, proximal tubular cells expressed vimentin and platelet-derived growth factor; diffusion of the latter presumably stimulated transformation of interstitial cells to myofibroblasts. Injured tubular epithelial cells and interstitial myofibroblasts both were responsible for interstitial fibrosis.

Actins↗

Potential therapeutic effect of simvastatin on progressive renal failure and nephrotic-range proteinuria caused by renal cholesterol embolism.

We report our experience with a 62-year-old Japanese man with cholesterol crystal embolism after angiographic procedures performed because of intermittent claudication. In addition to progressive renal failure and nephrotic-range proteinuria, cutaneous ischemia, consisting of livedo reticularis in the lower limbs and digital necrosis at the tip of the right toe, and fundoscopic findings showing several white spots in the branches of retinal artery were also observed. Progressive renal failure and nephrotic-range proteinuria were halted just after treatment with simvastatin. Thus, simvastatin can exert a beneficial therapeutic effect on renal cholesterol embolism.

Anticholesteremic Agents↗

Hypercalcemia in a patient with B-cell acute lymphoblastic leukemia: a role of proinflammatory cytokine.

The complication of hypercalcemia is reported to occur only in 2.5-4.8% of patients with acute lymphoblastic leukemia (ALL). We herein report a 53-year-old female patient with early B-cell ALL, complicated with extreme hypercalcemia (15.2 mg/dL). Bone X-ray revealed osteolytic changes in many locations. Serum 1,25(OH)2vitaminD3 and parathyroid hormone (PTH) levels were suppressed below normal ranges on admission. The circulating parathyroid hormone-related protein (PTHrP) value was within a normal range (< 1.1 pmol/L). Serum concentrations of tumor necrosis factor (TNF)-alpha, interleukin (IL)-6, and soluble IL-2 receptor were increased to 72 pg/ml, 25.3 pg/ml, and 1469 U/ml, respectively. Following the induction chemotherapy, the serum calcium level was promptly normalized accompanied with decreases in serum TNF-alpha, IL-6 and soluble IL-2 receptor values to 34 pg/ml, 6.35 pg/ml, and 737 U/ml, respectively. Serum PTHrP values remained within detectable levels. To our knowledge, this is the first case of B-cell ALL in a patient who developed hypercalcemia with elevated concentrations of TNF-alpha, IL-6, and soluble IL-2 receptor, but not related to PTHrP. High circulating proinflammatory cytokines may have contributed to development of ALL-induced osteolysis and hypercalcemia in the present case.

Biomarkers, Tumor↗

Tuberculous arthritis mimicking neoplasm in a hemodialysis patient.

Hemodialysis patients are known to develop the complication of extrapulmonary tuberculosis more frequently than the general population. Tuberculous arthritis is a rare form of extrapulmonary tuberculosis and is reported to occur in approximately 1% of cases in nonuremic patients. Only 3 cases in dialysis patients, who were not proven by a bacterial culture or had died before treatment, have been reported. We report herein a culture-proven case of tuberculous arthritis developing at the sternoclavicular joint, which initially mimicked an apparent neoplasm in a hemodialysis patient. A favorable outcome was obtained after antituberculous therapy. Tuberculosis must be considered one of the most significant diagnoses in hemodialysis patients who present with a tumor-like lesion.

Aged↗

Progressive renal failure and blindness due to retinal hemorrhage after interferon therapy for hepatitis C virus-associated membranoproliferative glomerulonephritis.

We treated a 67-year-old Japanese woman with membranoproliferative glomerulonephritis (MPGN) and chronic active hepatitis associated with hepatitis C virus (HCV) infection. Treatment commenced with a daily dose of 6 MU IFN alpha-2b for 2 weeks, which was changed to three times weekly thereafter. After 2 weeks, HCV RNA in the serum was undetectable and there was a concomitant reduction in proteinuria. Treatment with IFN alpha-2b was discontinued because of severe headache and fever. Five weeks after the discontinuation of IFN alpha-2b, the patient experienced the sudden onset of visual loss due to retinal hemorrhage. Subsequently, proteinuria and renal function progressively deteriorated though HCV RNA was undetectable. This case exemplifies the need for careful monitoring of renal function and retinal lesions not only in patients receiving IFN but also in those following the discontinuation of IFN treatment.

Aged↗

Possible involvement of myofibroblasts in cellular recovery of uranyl acetate-induced acute renal failure in rats.

Cellular recovery in acute renal failure is a form of wound healing. Fibroblast-like cells or myofibroblasts are involved in wound healing. We examined the serial changes in tubular damage and origin and kinetics of regenerating cells in uranyl acetate-induced acute renal failure, with a special emphasis on interstitial myofibroblasts. Acute renal failure was induced in rats by intravenous injection of uranyl acetate (5 mg/kg). All rats received bromodeoxyuridine intraperitoneally 1 hour before sacrifice. Serial changes in the distribution of tubular necrosis and bromodeoxyuridine-incorporated or vimentin-positive regenerating cells, and their spatial and temporal relation to alpha-smooth muscle actin-positive myofibroblasts as well as ED 1-positive monocytes/macrophages were examined. Necrotic tubules initially appeared around the corticomedullary junction after uranyl acetate injection, then spread both downstream and upstream of proximal tubules. Peritubular alpha-smooth muscle actin-positive myofibroblasts appeared and extended along the denuded tubular basement membrane, establishing network formation throughout the cortex and the outer stripe of outer medulla at days 4 to 5. Tubular regeneration originated in nonlethally injured cells in the distal end of S3 segments, which was confirmed by lectin and immunohistochemical staining using markers for tubular segment. Subsequently, upstream proliferation was noted along the tubular basement membrane firmly attached by myofibroblasts. During cellular recovery, no entry of myofibroblasts into the tubular lumen across the tubular basement membrane was noted and only a few myofibroblasts showed bromodeoxyuridine positivity. The fractional area of alpha-smooth muscle actin-positive interstitium reached a peak level at day 7 in the cortex and outer stripe of outer medulla, then gradually disappeared by day 15 and remained only around dilated tubules and in the expanded interstitium at day 21. ED 1-positive monocytes/macrophages were transiently infiltrated mainly into the region of injury. They did not show specific association with initially necrotic tubules, but some of them located in close proximity to regenerating tubules. Nonlethally injured cells at the distal end of proximal tubules are likely to be the main source of tubular regeneration, and the transient appearance of interstitial myofibroblasts attached to the tubular basement membrane immediately after tubular necrosis might play a role in promoting cellular recovery in possible association with monocytes/macrophages in uranyl acetate-induced acute renal failure.

Acute Kidney Injury↗

Role of apoptosis in uranyl acetate-induced acute renal failure and acquired resistance to uranyl acetate.

BACKGROUND: We have previously reported that animals recovering from uranyl acetate (UA)-induced acute renal failure (ARF) were resistant to subsequent insult. Recent evidence suggests that apoptosis participates in tubular damage. We investigated the role of apoptosis in UA-induced ARF and attenuation of ARF in acquired resistance to UA in rats. METHODS: ARF was induced by an intravenous injection of UA (5 mg/kg) in rats. Rats of group 1 were injected with UA and followed for 28 days. Group 2 rats were injected with a second dose of UA (5 mg/kg) 14 days after the first injection and were followed for 14 days. All rats received an intraperitoneal injection of bromodeoxyuridine (BrdU) one hour before sacrifice. Using kidneys, histologic examination and immunohistochemical detection of proliferating cell nuclear antigen (PCNA), BrdU, Bcl-2, and Bax were performed. To detect apoptosis, electron microscopy, analysis of DNA fragmentation, and the TUNEL methods were adopted. RESULTS: UA increased the number of damaged renal tubules and serum creatinine, which peaked at 5 days in group 1, but both returned to baseline values by 14 days. Apoptosis was confirmed by electron microscopy and the "ladder" pattern of DNA fragments on gel electrophoresis. The number of apoptotic tubular cells evaluated by the TUNEL method showed two peaks at days 5 and 14 in group 1. The second peak of TUNEL-positive cells was preceded by an increased number of BrdU-positive nuclei, PCNA-positive nuclei, and total number of tubular epithelial cells. Renal damage after the second UA injection was markedly reduced. The peak number of apoptotic cells in group 2 was significantly less than that in group 1. CONCLUSIONS: Two peak levels of apoptotic cells occurred in UA-induced ARF. The first peak might play a role in UA-induced tubular damage, while the second one might represent the removal of excess regenerating cells during the recovery phase. Modulation of apoptotic cell death might be involved in the acquired resistance to rechallenge injury by UA.

Acute Kidney Injury↗

Vitamin D deficiency is implicated in reduced serum albumin concentrations in patients with end-stage renal disease.

The mortality rate in hemodialysis patients remains extremely high, and reduced serum albumin concentration resulting from malnutrition is the strongest predictor of mortality and morbidity. Several inflammatory cytokines involved in malnutrition, including interleukin-1, interleukin-6, and tumor necrosis factor-alpha, are modulated by 1,25-dihydroxyvitamin D(3) [1,25-(OH)(2)D(3)], of which synthesis is impaired in end-stage renal disease. We evaluated whether 1,25-(OH)(2)D(3) deficiency might be involved in reduced serum albumin concentrations. Fifty-one predialysis uremic patients about to begin hemodialysis therapy were divided into groups with serum 1,25-(OH)(2)D(3) concentrations less than 18 pg/mL (low-D(3) group; n = 39) and concentrations of 18 pg/mL or greater (normal-D(3) group; n = 12). Serum albumin concentrations before the initiation of hemodialysis treatment were compared between the two groups. Furthermore, the effect of supplementation with active forms of vitamin D during 4 months of hemodialysis treatment on serum albumin concentrations was retrospectively evaluated in the low-D(3) group. Serum albumin concentrations in the low-D(3) group were significantly less than those in the normal-D(3) group (3.58 +/- 0. 50 versus 3.82 +/- 0.10 g/dL; P = 0.034). Considering all patients, a significant positive correlation between serum concentrations of albumin and 1,25-(OH)(2)D(3) was noted (r = 0.417; P = 0.0023). Supplementation with active forms of vitamin D significantly increased serum albumin concentrations in the low-D(3) group from 3. 61 +/- 0.12 to 3.79 +/- 0.13 g/dL (P = 0.0067). These findings indicate that reductions in serum albumin concentrations may be attributed, at least in part, to vitamin D deficiency in patients with end-stage renal disease.

Calcitriol↗

A case with acute renal failure complicated by Waldenström's macroglobulinemia and cryoglobulinemia.

We encountered a 53-year-old man associated with acute renal failure caused by Waldenström's macroglobulinemia and type I cryoglobulinemia. Treatment with prednisolone and cyclophosphamide induced a rapid recovery from acute renal failure. Renal histology revealed endocapillary proliferation and lobular formation with scattered subendothelial, amorphous and periodic acid-Schiff (PAS)-positive materials in the glomerular capillaries which were positive for IgM on immunofluorescence study. Although the exact mechanism for pathophysiology of acute renal failure remains unknown, treatment with prednisolone and cyclophosphamide could induce a rapid recovery from acute renal failure accompanied by Waldenström's macroglobulinemia and type I cryoglobulinemia.

Acute Kidney Injury↗

Immunoelectron microscopic study on type I, II and III TGF-beta receptors on visceral glomerular epithelial cells in relation to glomerular basement membrane alterations in proteinuric rats.

BACKGROUND: Transforming growth factor (TGF)-beta is a regulator of extracellular matrix accumulation. Both TGF-beta receptors, type I (TbetaRI) and type II (TbetaRII), may be required for signal transduction in the TGF-beta pathway. The aim of this study was to investigate the relationship between the TGF-beta pathways and glomerular basement membrane (GBM) accumulation in vivo. METHODS: We examined TbetaRI, II, and III protein expression on visceral glomerular epithelial cells (GEP) in relation to GBM alterations in passive Heymann nephritis (PHN), anti-GBM nephritis and anti-thymocyte serum (ATS) nephritis. Renal tissues were examined by pre-embedding immunoelectron microscopy 3, 7 and 14 days after induction of nephritis in rats. RESULTS: In normal control rats TbetaRI was not detected on GEP, TbetaRII expression was very occasionally found on GEP and TbetaRIII was seen in the cytoplasm of the GEP. TbetaRI, TbetaRII, and TbetaRIII were constitutively expressed on glomerular endothelial cells. By day 3 of anti-GBM nephritis and PHN, expression of TbetaRI, TbetaRII, and TbetaRIII was still similar to that of normal control rats, and GBM alterations in both models were not prominent except for deposit formation in PHN. From day 7 onwards, in both models, expression of TbetaRI and TbetaRII on GEP increased in association with GBM thickening. Expression of TbetaRIII in the cytoplasm of the GEP was increased, with occasional positive staining being seen on the urinary surface of the GEP from day 7 onwards. On the other hand, at day 3 of ATS nephritis, increased expression of TbetaRI and TbetaRII on GEP was noted, but from day 7 onwards, expression of TbetaR II on GEP dramatically decreased. Expression of TbetaRIII in the cytoplasm of the GEP also transiently increased at day 3. GBM thickening was not noted in ATS nephritis. CONCLUSIONS: The results suggest that persistent upregulation of expression of TbetaRI, TbetaRII and possibly TbetaRIII on GEP may contribute to GBM matrix accumulation in vivo.

Animals↗

New insights on the pathogenesis of hypercalcemia in primary hyperparathyroidism.

The pathogenesis of hypercalcemia in primary hyperparathyroidism is attributed to increased calcium release from bone, increased calcium reabsorption in renal distal tubules, and increased intestinal calcium absorption. However, it remains unclear which factor is the main process. We encountered a 56-year-old woman with myasthenia gravis, in whom hypercalcemia and elevated serum parathyroid hormone (PTH) level were observed. Diagnosis of primary hyperparathyroidism was made. Treatment with methylprednisolone for myasthenia gravis was associated with a marked decrease in both biochemical markers of bone formation and resorption without any changes in endogenous cAMP and serum levels of calcium, PTH, and 1,25-dihydroxyvitamin D3 [1,25-(OH)2D3]. These findings suggest that the possible pathogenesis of hypercalcemia in primary hyperparathyroidism may be attributed to the increased calcium reabsorption in the kidney and the increased intestinal calcium absorption as a result of stimulated production of 1,25-(OH)2D3 in the kidney. It thus follows that the renal tubular effect rather than the skeletal effect of the PTH excess may play a pivotal role in the development of hypercalcemia in primary hyperparathyroidism.

Bone Resorption↗