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Tatsuo Hosoya

Publications and source records attributed to Tatsuo Hosoya.

At least 19 recordsLinked to original sources

[Hypouricemia].

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Acute Kidney Injury↗

Xenobiotic kidney organogenesis from human mesenchymal stem cells using a growing rodent embryo.

Given the limits of allogenic organ transplantation, an ultimate therapeutic solution is to establish a self-organ from autologous stem cells and transplant them as syngrafts back into donor patients. It was reported previously that human mesenchymal stem cells (hMSC) that are cultivated in growing rodent embryos can differentiate within a spatially and temporally appropriate developmental milieu, facilitating the first step of nephrogenesis. As another step toward clinical application, the system was modified for progression to complete functional organogenesis. Rat embryos (E11.5) were isolated from uteri, and bone marrow-derived hMSC, which were transfected adenovirally with glial cell line-derived neurotrophic factor and retrovirally with LacZ, were implanted into the nephrogenic site. Forty-eight hours later, ureteric buds were elongated and initial branching was completed. The metanephroi were dissected out, developed further using in vitro organ culture for 24 h, transplanted into the omentum of a uninephrectomized rat, and grown for 2 wk. They enlarged and exhibited normal kidney structure and ultrastructure. hMSC-derived LacZ-positive cells were identified throughout the regenerated kidney and were morphologically identical to resident renal cells. Transplantation of developing metanephroi into the LacZ transgenic rat revealed that neo-kidney vasculature originated from the host circulation. Finally, fluid was collected from expanded ureters, and urea nitrogen and creatinine were measured. Levels were much higher in these fluids compared with transplanted rat sera (840.3 +/- 184.6 versus 30.4 +/- 10.8 and 10.1 +/- 3.1 versus 0.3 +/- 0.2 mg, respectively), suggesting that the neo-kidney may produce urine. Taken together, these findings suggest that hMSC can differentiate into a mature renal structure with the potential to replace lost kidney function.

Animals↗

uPAR (CD87) as a biocompatibility marker of dialysis membrane.

BACKGROUND/AIMS: Hemodialysis (HD) therapy may lead to functional changes in patient leukocytes. For example, the upregulation of inflammatory cytokines, such as IL-1beta and TNFalpha, has been well characterized. However, these findings do not explain the entire response of leukocytes in HD. In this study, we carried out a comprehensive gene expression analysis in leukocytes treated with various dialysis membranes using DNA microarrays. The identified gene has the potential to be a new marker for testing dialysis membrane biocompatibility. METHODS: Gene expression profiles were compared between a group of leukocytes treated with various dialysis membranes and an untreated group by using DNA microarray analysis. Expression was confirmed by quantitative RT-PCR. The expression of the gene product (leukocyte surface protein) was examined in 20 chronic HD patients by flow cytometry. RESULTS: In addition to the inflammatory cytokines, the urokinase plasminogen activator receptor (uPAR or CD87) gene was induced in leukocytes treated with each dialysis membrane. The extent of induction depended on the membrane's material composition. The expression of the uPAR (CD87) protein on leukocytes was markedly increased in patients undergoing dialysis therapy. The magnitude of uPAR (CD87) protein expression was correlated with clinical findings, i.e., the degree of leukopenia and the expression of adhesion molecules. CONCLUSIONS: The gene and protein expression of uPAR (CD87) depended on the dialysis membrane material and correlated closely with clinical findings. These results suggest that uPAR has the potential to serve as a marker not only for clinical use but also for the development of new dialysis membranes.

Adult↗

Pseudoaldosteronism due to the concurrent use of two herbal medicines containing glycyrrhizin: interaction of glycyrrhizin with angiotensin-converting enzyme inhibitor.

A 77-year-old man with a history of hypertension and hyperuricemia was admitted to our hospital complaining of limb weakness, persistent constipation, and worsening hypertension. He had been taking a Chinese herbal remedy for allergic rhinitis for the past 10 years, together with an angiotensin-converting enzyme inhibitor (ACE-I; enalapril, 20 mg daily). After the dosage of enalapril had been reduced to 10 mg daily about 1(1/2) years before the current admission, he had developed persistent constipation. Therefore, he had started taking another traditional Chinese herbal remedy, a laxative, for the constipation, about 4 months prior to this hospitalization. Laboratory data on admission demonstrated marked metabolic alkalosis with severe hypokalemia associated with urinary wasting of potassium and chloride. A diagnosis of pseudoaldosteronism was made based upon his past history of exposure to various traditional Chinese medicines containing glycyrrhizin. Discontinuation of the Chinese remedies and supplementation of potassium successfully normalized the electrolyte imbalance and relieved all symptoms within a short time. The present case describes the occurrence of pseudoaldosteronism induced by a patient taking two traditional Chinese herbs, both containing glycyrrhizin, resulting in an overdose of this causative chemical agent. The development of pseudoaldosteronism appeared to be of particular interest with regard to the interaction of the renin-angiotensin-aldosterone (RAA) system with glycyrrhizin, in which an ACE-I retarded the development of pseudoaldosteronism.

Angiotensin-Converting Enzyme Inhibitors↗

Families' and physicians' predictions of dialysis patients' preferences regarding life-sustaining treatments in Japan.

BACKGROUND: Substituted judgment traditionally has been used often for patient care in Japan regardless of the patient's competency. It has been believed that patient preferences are understood intuitively by family and caregivers. However, there are no data to support this assumption. METHODS: A questionnaire survey was administered to 450 dialysis patients in 15 hospitals to determine their preferences for cardiopulmonary resuscitation (CPR) and dialysis therapy under various circumstances. Simultaneously, we asked family members and physicians of these patients about patient preferences to evaluate their ability to predict what their patients would want. The accuracy of families' and physicians' judgments was assessed by means of kappa coefficient. RESULTS: Three hundred ninety-eight pairs, consisting of a patient, 1 of his or her family members, and the physician in charge, participated from 15 hospitals in Japan, with a response rate of 88%. Sixty-eight percent of family members correctly predicted patients' current preferences for CPR, 67% predicted patients' preferences for dialysis when they were severely demented, and 69% predicted patients' preferences for dialysis when they had terminal cancer. Corresponding figures for physicians were 60%, 68%, and 66%. When using kappa coefficient analysis, those results indicated that neither family members nor physicians more accurately predicted their patients' wishes about life-sustaining treatments than expected by chance alone. (All kappa coefficients <0.4.) CONCLUSION: Our study suggests that patients who want to spend their end-of-life period as they want should leave better advance directives.

Adult↗

Secondary focal segmental glomerulosclerosis following kidney transplantation in a patient with type I diabetes mellitus.

Although recurrent diabetic nephropathy is common in patients with type I diabetes after kidney transplantation, the development of focal segmental glomerulosclerosis (FGS) is rare, and its development generally takes several years. We report here a case of type I diabetes mellitus with secondary FGS accompanied by proteinuria 10 months following kidney transplantation. Episode biopsy showed secondary FGS, evidenced by glomerular capillary collapse and large epithelial cells with ballooning degeneration. Exudative dense deposition of IgM in a diffuse global mesangial pattern and enlarged glomerular diameters were observed, suggestive of glomerular hyperfiltration which can lead to secondary FGS. An imbalance in body size between donor and recipient and/or uncontrolled diabetes are potential causes of glomerular hyperfiltration. We administered angiotensin-converting enzyme inhibitor and angiotensin II receptor blocker to reduce hyperfiltration-induced renal damage; the combination therapy reduced proteinuria from 2346 to 258 mg/d. Secondary FGS should be a consideration after kidney transplantation in patients with type I diabetes mellitus.

Adult↗

[Regression of cardiac hypertrophy using angiotensin II receptor blocker in patients with chronic kidney diseases].

OBJECTIVE: Cardiovascular complications proportionally increase as chronic kidney diseases (CKD) progress into chronic renal insufficiency or failure. The present study addressed whether the long-term use of angiotensin II receptor blocker (ARB) exerts a cardio-protective effect in CKD patients with mild to moderate renal damage. MATERIAL AND METHODS: Fifteen patients with CKD above stage 3 were enrolled in the study. While their previous antihypertensive therapy remained unchanged, the ARB candesartan, was newly added to the concurrent therapy and the patients were followed for 12-24 months thereafter. RESULTS: The main results were as follows: 1) The use of ARB improved the status of BP control classifications, shifting them to the better control categories where there was less morning hypertension. 2) ARB significantly reduced the left ventricular (LV) mass index(LVMI), the relative wall thickness (RWT), the LV intra-dimension in diastole(LVIDd), and as a result, the LV ejection fraction(LVEF) improved. In parallel, the LV mass category shifted to lower categories, indicating a significant improvement. 3) The levels of BNP decreased significantly from 135.2 +/- 136.0 to 85.0 +/- 80.3 pg/mL. 4) ARB reduced urinary protein excretion in all cases. Regardless of an inevitable increase in the serum creatinine(Cr) concentration, the slope of reciprocal serum Cr concentration (l/Cr) in the treatment period with ARB was significantly less steep compared to that in the run-in period. 5) Throughout the observation period, no serious side effects were found in any of the patients. CONCLUSION: The present study indicated that the long-term use of ARB exerts both cardio-, and renoprotective effects in patients with advanced CKD. This agent could be especially indicative and useful not only for patients with CKD, but also for patients of CKD with cardiac hypertrophy.

Aged↗

Inhibition of endogenous BMP in the glomerulus leads to mesangial matrix expansion.

Bone morphogenetic protein7 (BMP7) attenuates renal tubular and interstitial damage in a variety of experimental models. The function of BMP in the glomerulus is, however, not well understood. In the present study, we generated transgenic mice carrying cDNA for noggin, an endogenous inhibitor of BMPs, driven by the podocyte-specific promoter nephrin. Transgenic founder mice could be divided into two groups based on gross histological analyses at 2 months of age. One group was characterized by the presence of cystic glomeruli with collapsed capillary tufts and a decrease in mesangial cell number, representing a developmental defect during glomerular morphogenesis ("cystic" Tg mice). In contrast, the kidneys appeared to be normal in the other group ("non-cystic" Tg mice). In both groups, however, massive mesangial expansion developed at 10 months of age. The lesion was characterized by the accumulation of fibronectin, but not type I collagen, type IV collagen or laminin. This phenotype is similar to the fibronectin nephropathy. These results suggest that endogenous BMP can have an important role in regulating glomerular structural homeostasis.

Animals↗

Delayed in vivo catabolism of intermediate-density lipoprotein and low-density lipoprotein in hemodialysis patients as potential cause of premature atherosclerosis.

OBJECTIVE: Premature cardiovascular disease is the leading cause of death in patients with end-stage renal disease treated by hemodialysis (HD). Low-density lipoprotein (LDL) levels are not generally increased in HD patients, but their LDL metabolism is still poorly understood. We therefore investigated the in vivo metabolism of apoB-containing lipoproteins in two different ethnic populations of HD patients and controls. METHODS AND RESULTS: We performed stable isotope kinetic studies using a primed constant infusion of deuterated leucine in 12 HD patients and 13 healthy controls. Tracer/tracee ratio of apoB was determined by means of gas chromatography/mass spectrometry, and the modeling program SAAMII was used to estimate the fractional catabolic rate (FCR) of apoB. Mean LDL-apoB plasma concentrations were almost identical in both groups (HD: 95+/-30 mg/dL, controls: 91+/-40 mg/dL), whereas LDL-apoB FCR was 50% lower in HD patients as compared with controls (0.22+/-0.12 days(-1) versus 0.46+/-0.20 days(-1), P=0.001) with concomitantly decreased production rates of LDL. Compared with controls, intermediate-density lipoprotein (IDL)-apoB FCR was 65% lower (2.87+/-1.02 days(-1) versus 8.89+/-4.94 days(-1), P=0.014), accompanied by 1.5-fold higher IDL-apoB levels in HD. Very low-density lipoprotein metabolism was similar in both study groups. CONCLUSIONS: In vivo catabolism of LDL and IDL is severely impaired in HD patients but misleadingly masked by normal plasma cholesterol levels. The resulting markedly prolonged residence times of both IDL and LDL particles might thus significantly contribute to the well-documented high risk for premature cardiovascular disease in HD patients.

Adult↗

Effects of urocortin II on neonatal rat cardiac myocytes and non-myocytes.

Urocortin (Ucn) II and III, homologous peptides of Ucn that are specific ligands for corticotropin-releasing hormone (CRH) type 2 receptor (CRH-R2), have recently been identified. The present study was designed to elucidate the effects of Ucn II, which is predominantly expressed in rodent heart, on neonatal rat cardiac myocytes (MCs) and cardiac non-myocytes (NMCs). Ucn II increased the incorporation of [3H]-leucine into MCs, as well as the accumulation of cAMP and the secretion of atrial natriuretic peptide. However, no significant changes were demonstrated in NMCs or an MC/NMC co-culture system. The effects of Ucn II were attenuated by astressin2-B, a specific antagonist of CRH-R2, and/or H89, an inhibitor of protein kinase A (PKA). These results indicate that Ucn II may be another endogenous cardiovascular substance that acts via CRH-R2 and the cAMP-dependent PKA pathway.

Animals↗

Angiotensin II suppresses growth arrest specific homeobox (Gax) expression via redox-sensitive mitogen-activated protein kinase (MAPK).

Oxidative stress is known to be involved in growth control of vascular smooth muscle cells (VSMCs). We and others have demonstrated that angiotensin II (Ang II) has an important role in vascular remodeling. Several reports suggested that VSMC growth induced by Ang II was elicited by oxidative stress. Gax, growth arrest-specific homeobox is a homeobox gene expressed in the cardiovascular system. Over expression of Gax is demonstrated to inhibit VSMC growth. We previously reported that Ang II down-regulated Gax expression. To address the regulatory mechanism of Gax, we investigated the significance of oxidative stress in Ang II-induced suppression of Gax expression. We further examined the involvement of mitogen-activated protein kinases (MAPKs), which is crucial for cell growth and has shown to be activated by oxidative stress, on the regulation of Gax expression by Ang II. Ang II markedly augmented intracellular H2O2 production which was decreased by pretreatment with N-acetylcystein (NAC), an anti-oxidant. Ang II and H2O2 decreased Gax expression dose-dependently and these effects were blocked by administration of both NAC and pyrrolidine dithiocarbamate (PDTC), another anti-oxidant. Ang II and H2O2 induced marked activation of extracellular signal-responsive kinase1/2 (ERK1/2), which was blocked by NAC. Ang II and H2O2 also activated p38MAPK, and they were blocked by pre-treatment with NAC. However, the level of activated p38MAPK was quite low in comparison with ERK1/2. Ang II- or H2O2 -induced Gax down-regulation was significantly inhibited by PD98059, an ERK1/2 inhibitor but not SB203580, a p38MAPK inhibitor. The present results demonstrated the significance of regulation of Gax expression by redox-sensitive ERK1/2 activation.

Angiotensin II↗