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Biomedical subjects

Masafumi Fukagawa

Publications and source records attributed to Masafumi Fukagawa.

At least 19 recordsLinked to original sources

[Therapeutic agents for disorders of bone and calcium metabolism. The calcimimetic cinacalcet HCl].

Calcimimetics drug such as cinacalcet suppress the secretion of parathyroid hormone by sensitizing parathyroid calcium receptors to extracellular ionized calcium. Standard treatment for secondary hyperparathyroidism is associated with the risk of hypercalcemia, but cinacalcet don't induce elevation of serum calcium. And some studies were reported the use of cinacalcet not only to manage primary hyperparathyroidism, but also secondary hyperparathyroidism in nondialyzed stage, renal transplant patients and parathyroid carcinoma.

Cinacalcet↗

Heme-oxygenase upregulation ameliorates angiotensin II-induced tubulointerstitial injury and salt-sensitive hypertension.

BACKGROUND: Heme oxygenase-1 (HO-1) has been implicated in the modulation of several diseases including hypertension (HTN) and renal injury. The tubulointerstitial (TI) injuries are supposed to be the main determinants for the development of salt-sensitive HTN. Therefore, this study examined the role of HO-1 in angiotensin II (AngII)-induced TI injury and salt-sensitive HTN. METHODS: Sprague-Dawley rats on a high salt diet were treated by AngII infusion plus either hemin, an inducer of HO-1, or hemin + zinc protoporphyrin, a HO-1 inhibitor, for 2 weeks, and then followed for 6 weeks. RESULTS: The AngII infusion resulted in acute HTN and proteinuria. Light microscopy revealed focal areas of tubular atrophy with mononuclear cell infiltration and interstitial expansion. The overexpression of osteopontin and TGF-beta(1) accompanied by diminished expression of rat endothelial cell antigen-1, the hallmarks of TI injury, were observed. At 2 weeks, all interventions were withdrawn and systolic blood pressure returned towards normal. After a brief normal salt diet, rats were again placed on high salt diet, resulting in progressive increase in systolic blood pressure in the HO-1-inhibited group. CONCLUSION: The induction of HO-1 attenuated the development of HTN, suggesting that HO-1 plays a crucial role in significant attenuation of AngII-mediated TI injury and resultant salt-sensitive HTN.

Angiotensin II↗

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↗

Administration of oral charcoal adsorbent (AST-120) suppresses low-turnover bone progression in uraemic rats.

BACKGROUND: Using a rat model of renal failure with normal parathyroid hormone levels, we had demonstrated previously that bone formation decreased depending on the degree of renal dysfunction, and hypothesized that uraemic toxins (UTx) are associated with the development of low-turnover bone development, complicating renal failure. In this study, focusing on indoxyl sulphate (IS) as a representative UTx, we analysed the effect of an oral charcoal adsorbent AST-120, which removes uraemic toxins and their precursors from the gastrointestinal tract, on bone turnover. METHODS: AST-120 or vehicle was administered orally to model rats with uraemia and low turnover bone. Bone turnover was analysed by histomorphometry. Expression of osteoblast-related genes and oat-3 gene was analysed by reverse transcription polymerase chain reaction. RESULTS: In rats treated with vehicle, serum IS level increased with time after renal dysfunction, while bone formation decreased accompanied by down-regulation of the parathyroid/parathyroid-related peptide hormone receptor, alkaline phosphatase and osteocalcin genes. Administration of AST-120 inhibited the accumulation of IS in blood and ameliorated bone formation. Bone formation rate was 2.4 +/- 1.7 microm(3)/m(2)/year in controls given vehicle and was 11.7 +/- 2.4 microm(3)/m(2)/year in rats administered with AST-120 (P < 0.05). AST-120 treatment also reversed the down-regulation of osteoblast-related genes. Gene expression of oat-3 was detected in the tibia of rats. CONCLUSION: Administration of the oral charcoal adsorbent AST-120 decreases the osteoblast cytotoxicity of UTx including IS, and suppresses progression of low bone turnover in uraemic rats.

Administration, Oral↗

Uremic toxin and bone metabolism.

Patients with end-stage renal disease (ESRD) develop various kinds of abnormalities in bone and mineral metabolism, widely known as renal osteodystrophy (ROD). Although the pathogenesis of ESRD may be similar in many patients, the response of the bone varies widely, ranging from high to low turnover. ROD is classified into several types, depending on the status of bone turnover, by histomorphometric analysis using bone biopsy samples [1,2]. In the mild type, bone metabolism is closest to that of persons with normal renal function. In osteitis fibrosa, bone turnover is abnormally activated. This is a condition of high-turnover bone. A portion of the calcified bone loses its lamellar structure and appears as woven bone. In the cortical bone also, bone resorption by osteoclasts is active, and a general picture of bone marrow tissue infiltration and the formation of cancellous bone can be observed. In osteomalacia, the bone surface is covered with uncalcified osteoid. This condition is induced by aluminum accumulation or vitamin D deficiency. The mixed type possesses characteristics of both osteitis fibrosa and osteomalacia. The bone turnover is so markedly accelerated that calcification of the osteoid cannot keep pace. In the adynamic bone type, bone resorption and bone formation are both lowered. While bone turnover is decreased, there is little osteoid. The existence of these various types probably accounts for the diversity in degree of renal impairment, serum parathyroid hormone (PTH) level, and serum vitamin D level in patients with ROD. However, all patients share a common factor, i.e., the presence of a uremic condition.

Aluminum↗

The kidney and bone metabolism: Nephrologists' point of view.

The kidney plays an important role in the regulatory system for bone and mineral metabolism. In chronic kidney disease (CKD), various abnormalities, recently named CKD-mineral and bone disorder (CKD-MBD), may develop in this system. The optimal management of CKD-MBD should be achieved without increasing the risk of metastatic calcification, including that of blood vessels. Thus, it is quite important to identify severe cases of hyperparathyroidism refractory to medical therapy. The size of the parathyroid glands, serum levels of fibroblast growth factor (FGF)23, and, possibly, the overproduction of a novel form of parathyroid hormone (PTH), serve as useful markers for this purpose. Adynamic bone disease with low buffering capacity for calcium is another major cause of hypercalcemia in dialysis patients. Our recent studies suggest that indoxyl sulfate accumulated in uremic serum is responsible for the suppression of osteoblastic function. In order to maintain the bone quality in patients with CKD, bone changes due to aging, menopause, and malnutrition need to be considered by nephrolgists and non-nephrologists in collaboration.

Animals↗

Regulation of parathyroid function in chronic kidney disease (CKD).

In chronic kidney disease (CKD), several abnormalities in bone and mineral metabolism develop in the majority of patients. The parathyroid plays a very important role in regulating bone and mineral metabolism; thus, control of parathyroid function is one of the main targets of the management of CKD-mineral and bone disorder (CKD-MBD). In the development of secondary hyperparathyroidism, it has recently been suggested that fibroblast growth factor 23 (FGF23) plays a crucial role, both as a phosphaturic factor and as a suppressor of active vitamin D (1,25D) production in the kidney. FGF23 is originally secreted to prevent hyperphosphatemia in CKD, but this occurs at the expense of low 1,25D and hyperparathyroidism ("trade-off" hypothesis revisited). Furthermore, recent data suggest that FGF23 could be another useful marker for the prognosis of hyperparathyroidism, because a high serum level may reflect the cumulative dose of vitamin D analogues previously administered. We have also demonstrated that severe hyperparathyroidism was associated with the production and secretion of a new form of parathyroid hormone (PTH) molecule, which can be detected by third-generation assays for PTH, but not by the second-generation assays. For the regression of already established nodular hyperplasia, the more advanced type of parathyroid hyperplasia, it is certainly necessary, in the near future, to develop new agents that specifically induce apoptosis in parathyroid cells. Until such agents are developed, prevention and early recognition of nodular hyperplasia is mandatory for the effective and safe management of hyperparathyroidism in CKD.

Animals↗

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↗

[Bone and bone related biochemical examinations. Hormone and hormone related substances. Parathyroid hormone].

Parathyroid hormone (PTH) is the most important hormone to maintain serum calcium levels. PTH acts directly on bone by stimulating both bone resorption and bone formation with the reactive excess in the former when it acts continuously. PTH also acts on renal tubule to promote urinary excretion of phosphate as well as production active vitamin D (1,25 [OH] 2D) . 1,25 [OH] 2D has been also suggested to have some unique and direct action on the bone. Measurement of intact-PTH is essential for optimal management of bone abnormalities in patients with primary hyperparathyroidism, secondary hyperparathyroidism, and chronic kidney disease. The newer PTH assays ; whole-PTH and bio-intact PTH assay, use an antibody that binds the region including the first amino acid is present, making it specific for the complete molecule, (1-84)-PTH. Recently, a new molecular form of PTH has been reported, which cannot be detected by these newer PTH assays.

Bone and Bones↗

[Chronic kidney disease-mineral and bone disorder (CKD-MBD)].

Changes in mineral and bone metabolism are prevalent in chronic kidney disease. There are several types of renal bone disease, called 'renal osteodystrophy (ROD)'. ROD includes osteitis fibrosa, osteomalacia, adynamic bone disorder, and mixed osteodystrophy. Osteitis fibrosa is high turnover bone due to secondary hyperparathyroidism. Osteomalacia is low turnover bone concomitant of increased osteoid. Adynamic bone disorder is low turnover bone due to excessive suppression of the parathyroid glands and recently represents the major bone lesion in dialysis patients. More recently, the term 'Chronic Kidney Disease-Mineral and Bone Disorder(CKD-MBD)' was proposed to describe the clinical syndrome that develops as a systemic disorder of mineral and bone metabolism due to chronic kidney disease such as vascular calcification.

Calcium Metabolism Disorders↗

Severe hyperparathyroidism with bone abnormalities and metastatic calcification in rats with adenine-induced uraemia.

BACKGROUND: Marked parathyroid hyperplasia with bone diseases and vascular calcification are unsolved issues in dialysis patients. In this study, we made azotemic model rats by adenine feeding and analyzed the development and progression of the abnormalities. METHODS: Renal failure was induced in 8-week-old male Wistar rats by feeding 0.75% adenine-containing diet for 6 weeks. Serum parameters, parathyroid hyperplasia, bone changes and metastatic calcification were examined at 2, 4 and 6 weeks. RESULTS: Progressive increase of serum creatinine and inorganic phosphate, and decreased levels of serum calcium and 1,25(OH)2D3 were confirmed. Markedly enlarged parathyroid glands and extremely high PTH levels were observed in all adenine-fed rats compared with the control (PTH: 199.3+/-58.0 vs 10.5+/-3.0 pmol/l, P<0.01, respectively, at 6 weeks). In cortical bone of the femur, the morphometric parameters showed increased bone resorption with increased fibrosis, whereas in the trabecular bone, bone resorption decreased and bone volume increased with a larger amount of osteoid compared with the control. Metastatic calcification in aorta, coronary artery and other soft tissues were also found in adenine-fed rats. CONCLUSIONS: Uraemic rats made by adenine diet developed severe abnormalities of calcium metabolism in a relatively short period and therefore they may serve as a useful model for the analysis of parathyroid hyperplasia and vascular calcification in chronic renal failure.

Adenine↗

Combination therapy of intravenous maxacalcitol and percutaneous ethanol injection therapy lowers serum parathyroid hormone level and calcium x phosphorus product in secondary hyperparathyroidism.

BACKGROUND: Percutaneous ethanol injection therapy (PEIT) is an alternative treatment for secondary hyperparathyroidism (SHPT). Although maxacalcitol has been recently developed as a new vitamin D3 and its efficacy is anticipated in SHPT, there are only few reports on the usefulness of combination therapy of intravenous maxacalcitol and selective PEIT. METHODS: The study population comprised 10 hemodialysis patients (6 males and 4 females, mean age; 51.5 +/- 13.5 years, mean HD period 13.7 +/- 3.5 years), with high intact-PTH level (>400 pg/ml) and 1 or 2 enlarged parathyroid glands detected by power Doppler ultrasonography. Intravenous maxacalcitol therapy commenced one week after PEIT at 15 microg/week. The effect of combination therapy was monitored by measuring intact-PTH, serum Ca and P, bone metabolic markers, parathyroid gland volume and bone mineral density, prior to and at 6 and 12 months after PEIT. RESULTS: Successful control of intact-PTH, bone metabolic markers and parathyroid gland volume was achieved using the combination therapy. Serum P and CaxP product were significantly decreased 12 months after PEIT. The mean values of serum intact-PTH, P and CaxP product fulfilled all of the K/DOQI guidelines at 12 months after PEIT. None of the patients developed complications related to PEIT-maxacalcitol therapy during 12 months following PEIT. CONCLUSION: Combination therapy of intravenous maxacalcitol therapy and selective PEIT is safe and effective for the treatment of refractory SHPT. This combination therapy results in suppression of PTH secretion, regression of parathyroid hyperplasia and the control of CaxP product, which may prevent calcific uremic arteriolopathy in dialysis patients.

Adult↗

Downregulation of parathyroid hormone receptor gene expression and osteoblastic dysfunction associated with skeletal resistance to parathyroid hormone in a rat model of renal failure with low turnover bone.

BACKGROUND: Adynamic bone disease (ABD), which is characterized by reduced bone formation and resorption, has become an increasingly common manifestation of bone abnormalities in patients with end-stage renal failure. It has been recognized that skeletal resistance to parathyroid hormone (PTH) underlies the pathogenesis of ABD; however, the mechanisms of such resistance remain unclear. METHODS: We established a rat model simulating ABD under chronic renal failure conditions by thyroparathyroidectomy and partial nephrectomy (TPTx-Nx). TPTx-Nx rats were infused subcutaneously with a physiological dose of PTH. We analysed bone histomorphometric parameters and demonstrated gene expression using semi-quantitative reverse transcription-polymerase chain reaction. RESULTS: Reduced bone formation was observed in this model, simulating ABD. The reduction was dependent on the degree of renal dysfunction. Bone formation rate was 6.4+/-2.7 microm3/m2/year in TPTx-5/6Nx rats and 22.7+/-7.2 microm3/m2/year in TPTx rats (P<0.05). Osteoblast surface was also significantly depressed (P<0.05) in TPTx-5/6Nx (3.8+/-2.7%) compared with TPTx rats (15.9+/-8.6). The expression of PTH/parathyroid hormone-related peptide (PTHrP) receptor and alkaline phosphatase genes was reduced significantly in TPTx-Nx compared with TPTx rats (P<0.05). Reduced bone formation in TPTx-Nx rats was ameliorated by intermittent injection of pharmacological doses of PTH. CONCLUSIONS: Renal dysfunction without secondary hyperparathyroidism induces osteoblast dysfunction and reduces bone formation. Skeletal resistance to PTH develops in renal failure even at low or normal PTH levels, possibly through downregulation of PTH/PTHrP receptor and dysfunction of osteoblasts.

Actins↗

Intravenous calcitriol therapy increases serum concentrations of fibroblast growth factor-23 in dialysis patients with secondary hyperparathyroidism.

BACKGROUND/AIMS: Fibroblast growth factor-23 (FGF-23) is a recently discovered phosphaturic factor. Although increased levels of serum FGF-23 have been reported in dialysis patients, the role of high FGF-23 levels remains unclear. Since FGF-23 is associated also with vitamin D metabolism, we examined the changes of serum FGF-23 levels in chronic dialysis patients treated with intravenous calcitriol therapy. METHODS: Thirty patients with severe secondary hyperparathyroidism were treated with intravenous calcitriol (0.5-1.0 microg) two or three times per week for 6 months. The changes of serum levels of calcium, phosphate, intact PTH, and FGF-23 were evaluated. RESULTS: Baseline serum FGF-23 levels were markedly high. By intravenous calcitriol therapy, intact PTH levels decreased effectively in the first month (p < 0.001). In contrast, FGF-23 levels increased gradually during the study period (p = 0.027). The Delta serum FGF-23 level was significantly correlated with the total doses of calcitriol injected intravenously in 6 months in patients with refractory secondary hyperparathyroidism (R2 = 0.147; p = 0.036). CONCLUSIONS: Intravenous calcitriol decreased serum intact PTH level and increased serum FGF-23 levels significantly. Extremely high levels of serum FGF-23 in these patients may be attributed, at least in part, to the cumulative dose of vitamin D.

Calcitriol↗