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Biomedical subjects

Junichiro James Kazama

Publications and source records attributed to Junichiro James Kazama.

At least 19 recordsLinked to original sources

Rapidly progressive steroid-resistant focal segmental glomerulosclerosis associated with an INF2 exon 6 variant.

Variants in the inverted formin-2 (INF2) gene are a known cause of hereditary focal segmental glomerulosclerosis (FSGS) and Charcot-Marie-Tooth disease. We report a case of rapidly progressive FSGS associated with a rare INF2 variant. A 12-year-old boy developed proteinuria and was diagnosed with FSGS at age 14 following a renal biopsy. Steroid therapy and subsequent immunosuppressive treatments, including plasma exchange, were ineffective. At age 15, a heterozygous missense variant in exon 6 of the INF2 gene (c.763G>A, p.Asp255Asn) was identified. Despite conservative management, the patient progressed to end-stage kidney disease at age 17. Although exon 6 variants are rarely reported, the present case showed a relatively aggressive renal course.

Humans↗

FGF23: its role in renal bone disease.

Fibroblast growth factor 23 (FGF23) is a recently characterized peptide hormone produced mainly in the bone. It is secreted in response to dietary phosphorus load, and its main function is the promotion of urinary phosphate excretion and the suppression of active vitamin D (1,25D) production in the kidney. As such, FGF23 plays an important role in the maintenance of systemic phosphate homeostasis. In the advanced stages of chronic kidney disease (CKD), the kidney cannot excrete a phosphate load even in the presence of high levels of FGF23. This results in both hyperphosphatemia and a low level of 1,25D that stimulates the secretion of parathyroid hormone (PTH), leading to the development of secondary hyperparathyroidism. In chronic dialysis patients without residual renal function, FGF23 levels become extremely high due to stimulation by vitamin D therapy as well as by high levels of serum phosphate and PTH. Recent investigations have demonstrated that serum FGF23 level can be a useful marker for the prediction of the future development of refractory hyperparathyroidism and the response to vitamin D therapy in dialysis patients. In addition, putative protective roles of FGF23 against calcification have also been speculated on. Further elucidation of the mechanisms of FGF23 action will be needed to understand the various roles of FGF23 in CKD-Mineral and Bone Disorder (CKD-MBD).

Animals↗

High-fat diet in low-dose-streptozotocin-treated heminephrectomized rats induces all features of human type 2 diabetic nephropathy: a new rat model of diabetic nephropathy.

BACKGROUND AND AIM: We have developed a new rat model that mimics the natural course of diabetic nephropathy seen in type 2 diabetes. METHODS: Nine days after intravenous injection of streptozotocin (STZ) (40 mg/kg) or vehicle to 8-week-old male Sprague-Dawley rats, the animals' right kidneys were surgically removed. Two weeks after surgery, the STZ-injected rats were fed on either a high-fat (ST+HF) or a normal (ST) diet, while the vehicle-injected rats were fed on the high-fat diet (HF). RESULTS: Baseline biochemical markers did not differ between the three groups. Only the ST+HF group showed a significant increase in plasma glucose levels after 15 weeks, and simultaneously plasma insulin levels started to decrease, followed by an increase in plasma total cholesterol and triglyceride levels at 25 weeks and slightly later by an increase in blood pressure. In the ST+HF group, significant microalbuminuria was detected at 15 weeks followed by overt proteinuria, both of which were absent in the other two groups. Also in ST+HF, the creatinine clearance rate increased until week 15, and then gradually decreased. Histologically, ST+HF rats showed mesangial expansion at week 25, and diffuse glomerular sclerosis at the end of the experiments. CONCLUSION: The chronological changes in biochemical, physiological and histological markers in ST+HF rats are reminiscent of human type 2 diabetes and nephropathy. Our new model of type 2 diabetic nephropathy should help us to understand the pathophysiology of the disease and serve to explore measures to prevent and treat diabetic nephropathy.

Animals↗

Abeta-2M-amyloidosis and related bone diseases.

Abeta-2M-amyloidosis is a type of systemic amyloidosis that is specifically seen in patients with chronic kidney diseases. The precursor protein of Abeta-2M-amyloid fibril is beta2-microglobulin, and its elevated serum level is the main cause of Abeta-2M-amyloidosis in patients with kidney failure. However, the precise mechanism of Abeta-2M-amyloidogenesis remains unclear. In vitro analyses of Abeta-2M amyloidogenesis are still being actively conducted. Osteolytic lesions are often found around synovial membrane with Abeta-2M-amyloid deposition. Both evident osteoclastogenesis and active osteoclastic bone resorption are found, while osteoblastic bone formation is absent in the lesion most likely associated with the inflammation caused by infiltrating macrophages/monocytes into Abeta-2M-amyloid deposition. The precise cell biological mechanism of this inflammatory change is unknown. Further studies are needed to establish specific treatments against this as yet unsolved problem with long-term dialysis therapy.

Amyloid↗

Circulating osteoprotegerin affects bone metabolism in dialysis patients with mild secondary hyperparathyroidism.

Osteoprotegerin (OPG) is a soluble glycoprotein which inhibits osteoclastic formation and activity. Circulating OPG levels are elevated in uremia. The role of elevated circulating OPG levels in uremia remains unknown. Blood samples were obtained from 22 non-diabetic dialysis patients who underwent iliac bone biopsy examination. The serum OPG concentration was assayed by ELISA. The circulating OPG levels showed a negative correlation with the ratio of eroded surface/bone surface (ES/BS) in biopsied iliac bone samples among 15 of those with plasma intact PTH levels less than 300 pg/mL (P < 0.05, r(2) = 0.270). Patients with serum OPG levels less than 2.0 ng/mL showed significantly greater ES/BS values than those with levels > or =3.0 ng/mL, while the intact PTH levels were comparable among those groups. These tendencies disappeared when seven patients with plasma intact PTH levels more than 300 pg/mL were included into the analysis. In conclusion, circulating OPG levels showed a significant negative correlation with a bone resorption parameters in dialysis patients with mild secondary hyperparathyroidism. Circulating OPG might have a suppressive effect on osteoclastic bone resorption in dialysis patients.

Adult↗

Fibroblast growth factor-23 in patients with Graves' disease before and after antithyroid therapy: its important role in serum phosphate regulation.

OBJECTIVE: Hyperthyroidism is a well-described cause of hyperphosphatemia. We aimed to clarify the physiological role of fibroblast growth factor (FGF)-23 in serum phosphate homeostasis in patients with Graves' disease during the course of treatment for hyperthyroidism. CONTEXT: The study group comprised 56 patients (45 for a cross-sectional study and 11 for a longitudinal study) with Graves' disease. For the cross-sectional study, patients were assigned, on the basis of their serum phosphate level, to a hypophosphatemia group (n = 14), a normophosphatemia group (n = 16), or a hyperphosphatemia group (n = 15). Serum FGF-23, calcium, phosphate, PTH, and 1,25-dihydroxyvitamin D [1,25(OH)(2)D] levels were compared between the three groups. For the longitudinal study, we assessed changes in these biochemical indices before and after antithyroid treatment. RESULTS: In the cross-sectional study, the serum FGF-23 level was significantly higher (P < 0.05) in the hyperphosphatemia group than in the other groups (61 +/- 36 ng/liter vs. 31 +/- 22 ng/liter and 30 +/- 9 ng/liter). In the longitudinal study, serum levels of FGF-23 decreased significantly (P < 0.05) from a high of 54 +/- 12 ng/liter before treatment to 29 +/- 14 ng/liter after treatment. In contrast, the serum 1,25(OH)(2)D level increased significantly (P < 0.005) from 55 +/- 22 pmol/liter before treatment to 185 +/- 76 pmol/liter 3 months after treatment. Serum FGF-23 levels were positively correlated with serum phosphate levels (P < 0.0001) and negatively correlated with serum 1,25(OH)(2)D levels (P < 0.0001). CONCLUSIONS: The significant positive correlation between serum levels of phosphate and FGF-23 indicates that FGF-23 may play an important role in serum phosphate homeostasis by its up-regulation in the hyperphosphatemic condition.

Adult↗

Pretreatment plasma intact parathyroid hormone and serum calcium levels, but not serum phosphate levels, predict the response to maxacalcitol therapy in dialysis patients with secondary hyperparathyroidism.

BACKGROUND: The treatment strategy for secondary hyperparathyroidism is generally determined empirically with regards to present parathyroid function and serum calcium (Ca) and inorganic phosphate (Pi) levels. More evidence is needed to avoid the aimless continuation of active vitamin D therapy. METHODS: Nondiabetic dialysis patients whose plasma intact parathyroid hormone (iPTH) levels were greater than 300 pg/ml were included in the study. Maxacalcitol was intravenously injected three times a week. The treatment was continued for 48 weeks, unless the iPTH level was reduced to less than 300 pg/ml or unfavorable events occurred. The patients whose plasma iPTH levels were below 300 pg/ml within 48 weeks were defined as those who had been successfully treated. RESULTS: Findings for 146 patients were analyzed, and 96 patients were successfully treated. Serum Pi levels did not significantly increase during the therapy. The pretreatment plasma iPTH levels and serum Ca levels were lower in the patients who were successfully treated with maxacalcitol. A logistic regression study and classifying by stratum analyses revealed that the pretreatment serum Ca levels and plasma iPTH levels were significantly related to the result of maxacalcitol therapy, while the serum Pi levels were not. Analyses using a receiver-operating characteristic curve revealed that the areas under curves obtained for iPTH and Ca were significantly greater than those obtained for Pi (P < 0.0001). CONCLUSIONS: Serum Ca levels and parathyroid function were correlated with the results of maxacalcitol therapy. Pretreatment serum Pi levels could not predict the result.

Adult↗

Serum fibroblast growth factor-23 levels predict the future refractory hyperparathyroidism in dialysis patients.

BACKGROUND: Secondary hyperparathyroidism is a common complication among long-term dialysis patients. The method of predicting future parathyroid function has not yet been established. Fibroblast growth factor-23 (FGF-23) is a newly found humoral phosphaturic factor. METHODS: One hundred and three nondiabetic dialysis patients whose plasma intact parathyroid hormone (PTH) levels were below 300 pg/mL were included in the study. Blood samples were stored at -80 degrees C for 2 years. Meanwhile, each physician in charge decided upon the strategy of medical therapy for maintaining intact PTH levels between 150 and 300 pg/mL. Patients were judged 2 years after the sample collection with regard to whether the hyperparathyroidism responded to the medical therapy. The definition of refractory secondary hyperparathyroidism was either (1) retaining intact PTH levels greater than 300 pg/mL 2 years after sample collection, or (2) having received the parathyroid intervention therapy during the observation period. Serum FGF-23 levels were determined with a sandwich enzyme-linked immunosorbent assay system that detects biologically active human FGF-23. RESULTS: Seventeen patients with intact PTH levels greater than 300 pg/mL were judged as having secondary hyperparathyroidism refractory to medical therapy. A stepwise regression analysis revealed that only serum levels of FGF-23 were significantly related to the prognosis of parathyroid function. A receiver-operated characteristic analysis demonstrated that the area under the curves obtained from FGF-23 (7099.9) was significantly greater than that obtained from intact PTH (6306.4, P < .01) and Ca x Pi (5670.3, P <.0001). Although the plasma intact PTH levels at the beginning of the observation period were comparable to each other, the intact PTH levels at 2 years after the sample collection were significantly higher in the patients with FGF-23 >/=7500 ng/L than in those with FGF-23 <7500 ng/L (P < .0001). CONCLUSION: Serum FGF-23 level was found to be the most useful factor in predicting future development of refractory secondary hyperparathyroidism in long-term dialysis patients with mild secondary hyperparathyroidism. The measurement of serum FGF-23 levels is a promising laboratory examination that can be applied in the clinical practice of uremic secondary hyperparathyroidism.

Adult↗

Possible involvement of circulating fibroblast growth factor 23 in the development of secondary hyperparathyroidism associated with renal insufficiency.

BACKGROUND: Fibroblast growth factor 23 (FGF-23) is a recently identified polypeptide that promotes renal phosphate excretion and decreases serum 1,25-dihydroxyvitamin D3 (1,25D) levels. Serum FGF-23 levels are extraordinarily elevated in patients with end-stage renal failure. METHODS: Blood and urine samples were obtained from 62 predialysis patients (age, 51.3 +/- 14.0 years; range, approximately 18 to 76 years; 32 men, 30 women). Serum FGF-23 levels were determined by means of a sandwich enzyme-linked immunosorbent assay system using 2 kinds of monoclonal antibodies that does not detect biologically inactive N-terminal and C-terminal fragments derived from an identified internal cleavage site to date. RESULTS: Serum FGF-23 levels increased with the decrease in creatinine clearance (Ccr). Both intact parathyroid hormone (PTH) and 1-84 PTH levels correlated closely with FGF-23 levels (r2 = 0.857; r2 = 0.860). A negative correlation between serum concentrations of FGF-23 and 1,25D (r2 = 0.255) was found. The maximum tubular reabsorptive rate of phosphate correlated negatively with serum FGF-23 concentrations (r2 = 0.460). However, the amount of daily urinary phosphate excretion was significantly less in patients with a Ccr less than 30 mL/min (<0.50 mL/s; P < 0.01), whereas their circulating FGF-23 levels were significantly greater (P < 0.001). CONCLUSION: Circulating FGF-23 levels increase with the decrease in renal function. FGF-23 is a likely candidate to lead the reduction in serum 1,25D levels. FGF-23 becomes a potential uremic toxin to decrease 1,25D levels when it loses its hypophosphatemic action because of a decreased number of viable nephrons in patients with advanced renal failure. As such, FGF-23 may be an important determinant in the regulation of mineral metabolism with renal insufficiency.

Adolescent↗

Fibroblast growth factor (FGF)-23 in patients with primary hyperparathyroidism.

OBJECTIVE: We aimed to determine the serum level of fibroblast growth factor-23 (FGF-23) in patients with primary hyperparathyroidism (pHPT) to understand its physiological role in the disorder. PATIENTS AND METHODS: Ninety-eight patients with pHPT who underwent parathyroidectomy formed the study group. We also measured serum FGF-23 in 11 of these patients on postoperative day 6. RESULTS: Serum FGF-23 levels was significantly higher in pHPT patients than in healthy controls (35.6+/-17.8 ng/l vs 28.9+/-11.2 ng/l (mean+/-s.d.); P<0.001 (Pearson's correlation coefficient)), but there was no significant difference in the serum FGF-23 level between pHPT patients with normal renal function (creatinine clearance (Ccr) of >or=70 ml/min) and healthy controls. Serum FGF-23 correlated positively with serum calcium (P<0.0001) and intact parathyroid hormone (PTH) (P<0.01), and negatively with Ccr (P<0.001), serum phosphate (P<0.05), and serum 1,25-dihydroxyvitamin D (1,25(OH)(2)D) (P<0.05). Multiple linear regression analysis of factors potentially determining serum FGF-23 levels in pHPT patients showed serum calcium (P<0.01) and Ccr (P<0.001) to be significant predictors. The serum levels of FGF-23 did not change after parathyroidectomy despite the normalization of serum calcium values. Multiple linear regression analysis revealed that serum FGF-23 was not a significant predictor of serum phosphate or 1,25(OH)(2)D in pHPT patients. CONCLUSIONS: FGF-23 may not play a significant role in regulating phosphate or 1,25(OH)(2)D in pHPT patients, especially in those with normal renal function. Further studies are warranted to determine the role of FGF-23 in renal insufficiency or failure.

Adult↗

Total parathyroidectomy reduces elevated circulating fibroblast growth factor 23 in advanced secondary hyperparathyroidism.

BACKGROUND: Secondary hyperparathyroidism is a common complication in patients with stage 5 chronic kidney disease (CKD), accelerated by hyperphosphatemia. Fibroblast growth factor 23 (FGF-23), a phosphorus-regulating protein, has key roles in several phosphate-wasting disorders. The aim of this study is to examine the association of advanced secondary hyperparathyroidism with circulating FGF-23 levels. METHODS: Fifteen patients with marked secondary hyperparathyroidism (parathyroid hormone [PTH], 990 +/- 118 pg/mL [ng/L]) were enrolled. All underwent parathyroidectomy with forearm autotransplantation (PTX), and their FGF-23 levels were measured before and after PTX (days 1, 3, 7, and 10) by means of sandwich enzyme-linked immunosorbent assay. RESULTS: Preoperative FGF-23 levels correlated positively with phosphorus (P < 0.05), calcium-phosphorus product (Ca x P; P < 0.0005), and PTH values (P < 0.05). Serum FGF-23 levels decreased time dependently after PTX (P < 0.0005). Both serum phosphorus and Ca x P values decreased similarly after PTX ( P = 0.0001). Furthermore, FGF-23 levels days 1 and 3 correlated linearly with serum phosphorus (P < 0.05; P < 0.005, respectively) and Ca x P values (P < 0.01; P < 0.0001, respectively). CONCLUSION: FGF-23 levels correlate positively with serum phosphorus, Ca x P, and PTH values in patients with advanced secondary hyperparathyroidism. Complete ablation of progressive parathyroid glands reduces circulating FGF-23 levels, simultaneously decreasing serum phosphorus and Ca x P values. These findings suggest that hyperplastic parathyroid glands, together with hyperphosphatemia, affect abnormal FGF-23 metabolism in patients with stage 5 CKD with advanced secondary hyperparathyroidism.

Chronic Disease↗

[Direct effects of vitamin D on bone].

Many investigators used to believe that active vitamin D is a promotive factor for bone resorption. However, active vitamin D shows an osteoprotective action when administrated as an anti-osteoporotic agent. Recently, active vitamin D agents are considered as an inhibitor for bone resorption. However, it is difficult to evaluate if it is also the case in chronic renal failure, since high-turnovered osteopenia found in uremic patients are brought about by secondary hyperparathyroidism.

Animals↗

Circulating 1-84 PTH and large C-terminal PTH fragment levels in uremia.

BACKGROUND: The so-called "intact parathyroid hormone (iPTH)" assay detects large C-terminal PTH fragments that are lacking several N-terminal amino acid residues in addition to 1-84 PTH molecules. METHODS: Blood samples were obtained from 65 predialysis patients (male, 35; female, 30) and 109 dialysis patients (male, 73; female, 36). The plasma 1-84 PTH levels were determined by a specific immunoradiometric assay (IRMA). RESULTS: The ratio of 1-84 PTH/iPTH did not show a significant correlation with glomerular filtration rate (GFR) among patients with a GFR of more than 80 ml/min, while it showed a positive correlation with GFR among patients with a GFR of less than 80 ml/min. The ratio of 1-84 PTH/iPTH demonstrated a significant tendency to decrease in the order of patients with normal renal function (0.928 +/- 0.182), those with renal dysfunction (0.836 +/- 0.186; P < 0.05 vs patients with GFR > 80 ml/min [i.e., normal renal function]), and those with maintenance hemodialysis (0.618 +/- 0.123; P < 0.01 vs patients with GFR > 80 ml/min). The plasma levels of 1-84 PTH and conventional iPTH showed a close correlation in dialysis patients. Neither 1-84 PTH levels nor secondary parameters calculated from them showed a better correlation with bone metabolic markers than iPTH levels. CONCLUSIONS: Circulating large C-terminal PTH fragment levels are increased in uremic patients. However, this noninvasive study failed to demonstrate the superiority of the specific 1-84 assay compared with the conventional iPTH assay to evaluate bone metabolism.

Adult↗

Role of osteoclastic dysfunction in the development of renal bone disease.

A 47-year-old-man was referred for treatment for end-stage renal failure. He had been diagnosed with type II adult onset osteopetrosis before the deterioration of his renal function. He presented with anaemia, severe hypocalcaemia, secondary hyperparathyroidism and azotaemia. An iliac bone biopsy revealed increased bone volume, disturbed osteoid calcification, active osteoclastic bone resorption and fibrous transformation in the bone marrow space. Incomplete osteoclastic dysfunction strongly suggested hypocalcaemia and secondary hyperparathyroidism, and the osteoclastic bone resorption also indicated secondary hyperparathyroidism, even though bone resorption was potentially suppressed. The present case shows that evidence of the involvement of osteoclastic dysfunction in the development of renal bone disease can be found in bone histology.

Humans↗