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Biomedical subjects

Yoshiaki Kondo

Publications and source records attributed to Yoshiaki Kondo.

14 recordsLinked to original sources

A case surviving for over a year of renal tubular dysgenesis with compound heterozygous angiotensinogen gene mutations.

Renal tubular dysgenesis (RTD) is a developmental abnormality of the renal proximal tubules found in patients with Potter syndrome. We report a female newborn with RTD who has survived for more than 18 months. Infusions of fresh frozen plasma (FFP) in the early neonatal period were effective in raising and maintaining her blood pressure. Peritoneal dialysis was required until the appearance of spontaneous urination at 29 days after birth. Histopathological examinations of the kidney revealed dilated renal tubular lumina and foamy columnar epithelial cells in the renal tubules. Endocrinological studies showed a discrepancy between low plasma renin activity (<0.1 ng/ml/hr) and high active renin concentration (135,000 pg/ml), suggesting an aberration in the renin substrate, angiotensinogen. Direct sequencing analysis revealed two novel mutations in the coding region of the angiotensinogen gene (AGT): a nonsense mutation in exon 2 (c.604C > T) and a frameshift deletion at nucleotide 1290 in exon 5 (c.1290delT). The mutations were in the compound heterozygous state, because each parent had each mutation. These findings suggest that angiotensinogen deficiency is one of the causes of RTD. A treatment of the condition with FFP may help to promote long survival.

Angiotensinogen↗

Predicting stroke using 4 ambulatory blood pressure monitoring-derived blood pressure indices: the Ohasama Study.

We investigated the association between stroke and blood pressure (BP) indices (systolic BP [SBP], diastolic BP [DBP], mean BP [MBP], and pulse pressure [PP]) determined by ambulatory BP monitoring. The predictive power for stroke of these indices was compared in the general Japanese population. We obtained ambulatory BP data in 1271 subjects (40% men) aged > or = 40 (mean: 61) years. During a mean follow-up of 11 years, 113 strokes were observed. The multivariate adjusted relative hazard and likelihood ratio for a 1-SD increase for each BP index was determined by Cox proportional hazard regression. Comparison of the likelihood ratio between Cox models including 2 indices and those including 1 index indicated that PP was significantly less informative than other indices (P<0.01 when adding MBP, SBP, or DBP to the PP model; P>0.09 when adding PP to the model including another index). However, after removing age from covariates, PP became more informative than DBP and MBP (P<0.0001 when adding PP to the MBP or DBP model, whereas SBP was more informative than PP even after removing age; P<0.05 when adding SBP to the PP model). In conclusion, PP was the weakest predictor of stroke. Exclusion of age from covariates increased the predictive power of PP, suggesting that the stroke risk associated with PP reflected the risk of aging per se.

Adult↗

Phylogenetic, ontogenetic, and pathological aspects of the urine-concentrating mechanism.

The urine-concentrating mechanism is one of the most fundamental functions of avian and mammalian kidneys. This particular function of the kidneys developed as a system to accumulate NaCl in birds and as a system to accumulate NaCl and urea in mammals. Based on phylogenetic evidence, the mammalian urine-concentrating mechanism may have evolved as a modification of the renal medulla's NaCl accumulating system that is observed in birds. This qualitative conversion of the urine-concentrating mechanism in the mammalian inner medulla of the kidneys may occur during the neonatal period. Human kidneys have several suboptimal features caused by the neonatal conversion of the urine-concentrating mechanism. The urine-concentrating mechanism is composed of various functional molecules, including water channels, solute transporters, and vasopressin receptors. Abnormalities in water channels aquaporin (AQP)1 and AQP2, as well as in the vasopressin receptor V2R, are known to cause nephrogenic diabetes insipidus. An analysis of the pathological mechanism involved in nephrogenic diabetes insipidus suggests that molecular chaperones may improve the intracellular trafficking of AQP2 and V2R, and, in the near future, such chaperones may become a new clinical tool for treating nephrogenic diabetes insipidus.

Animals↗

Giant hemangioma of the fetal neck, mimicking a teratoma.

We present a case involving a giant hemangioma of the fetal neck, prenatal diagnosis of which was a teratoma. A 32-year-old pregnant woman was referred to our hospital at 31 weeks' gestation owing to a giant solid mass of the fetal neck and excessive amniotic fluid. The mass seemed to be occupying the neck almost entirely, extending to the nasopharyngeal cavity, the mandible, the surface of the left orbit and the left shoulder. Based on sonographic and magnetic resonance imaging (MRI) findings, diagnosis of a giant teratoma was made. Cesarean section was performed at 35.5 weeks' gestation, and a female infant weighing 2826 g was delivered. Purpurae were observed on the neck of the infant, and the tumor turned out to be a hemangioma. Postnatal MRI findings, in which the tumor's signal intensity differed from that of the prenatal findings, were quite compatible with the diagnosis of a typical hemangioma. Laser and corticosteroid treatment successfully decreased the volume of the mass. Although it may not always be possible to make a prenatal differential diagnosis between a hemangioma and a teratoma in the neck of the fetus, serial ultrasound and MRI examination are mandatory to evaluate the prognosis and to plan suitable treatment. Moreover, possible postnatal changes to the tumor characteristics have to be taken into consideration when evaluating the findings of prenatal diagnostic imaging.

Adult↗

Charge selective function in childhood glomerular diseases.

The charge selectivity (CS) function in human renal disease has not been unequivocally demonstrated to date. However, the clearance ratio of IgA to IgG may be theoretically useful in estimating CS in humans, since IgA and IgG have similar sizes and tertiary structures, but distinct isoelectric points (3.5-5.5 [IgA] and 4.5-9.0 [IgG]), and Stokes-Einstein radius: 61 A (IgA) and 49-60 A (IgG). Two-dimensional electrophoresis with the following immunoblotting revealed that the considerably anionic portion (isoelectric points [pI] <4.0) of IgA, visible in serum, was absent in the urine in steroid-sensitive nephrotic syndrome (SSNS) but present in the same during IgA nephropathy (IgAN) and membranoproliferative glomerulonephritis (MPGN). A latex assay revealed the CS index (CSI) was significantly low in patients with podocyte disease (group A), including SSNS, focal and segmental glomerulosclerosis (FSGS) and Finnish-type congenital nephrotic syndrome (FCNS), but high in those with Alport syndrome (AS), IgAN, Henoch-Schönlein purpura nephritis (HSPN), and MPGN (group B). The linear regression analysis of the IgA size selectivity index (IgA SSI; clearance ratio of IgA to transferrin) and SSI (clearance ratio of IgG to transferrin), which represents the clearance ratio of IgA to IgG referring to the transferrin clearance, revealed the influence of the charge more accurately. Indeed, the slope of the regression lines of IgA SSI (y) to SSI (x) were concluded to be y = 0.39x (group A) and y = 1.05x (group B), respectively. These results suggested that the charge selective barrier among podocyte diseases (group A) is preserved to some degree, but lost in cases of nephritis and AS (group B).

Adolescent↗

Chloride-dependent intracellular pH regulation via extracellular calcium-sensing receptor in the medullary thick ascending limb of the mouse kidney.

The extracellular calcium-sensing receptor (CaSR) located in either luminal or basolateral cell membranes of various types of renal tubules including proximal tubules, Henle's loop and collecting ducts has been thought to play a fundamental role in electrolyte metabolism. To further identify the physiological roles of the CaSR, we examined the effects of Ca(2+) and calcimimetics neomycin (Neo), gentamicin and gadolinium chloride (Gd(3+)) on the intracellular pH (pHi) of in vitro microperfused mouse medullary thick ascending limb (mTAL) cells of Henle's loop, by loading the cells with fluorescent pH indicator 2',7'-bis-(2-carboxyethyl)-5-(and-6)-carboxyfluorescein and measuring the ratio of fluorescence emission at 530 nm after exciting the dye at 490 and 440 nm. In a steady-state condition in Hepes-buffered solution, the pHi in the mTALs was 7.29 +/- 0.04 (n = 9). A concentration of 200 micromol/l Neo in the basolateral side decreased the pHi after 1 min by -0.13 +/- 0.02 (n = 34, p < 0.0001). The other calcimimetics showed similar effects on pHi, whereas none of these calcimimetics in the lumen affected pHi. Na(+) removal or the inhibition of Na(+) and proton transport with amiloride, bumetanide, or bafilomycin did not eliminate the effect of Neo on pHi. On the other hand, Cl(-) removal clearly eliminated the Neo-induced pHi decrease (-0.06 +/- 0.01 vs -0.00 +/- 0.05 in Cl(-) removal, n = 4, p < 0.003). Thus, we have demonstrated for the first time that the CaSR is involved in the regulation of the pHi in the mTAL and requires Cl(-) to exert its effect.

Acid-Base Equilibrium↗

Expression study of mutant cystathionine beta-synthase found in Japanese patients with homocystinuria.

Cystathionine beta-synthase (CBS) deficiency is the most common cause of homocystinuria. More than 130 pathogenic mutations, mostly in the Caucasian populations, have been described. Recently, our group reported a mutation analysis of Japanese homocystinuric patients. In the present paper, we report an expression study of several mutant CBS enzymes in Escherichia coli, i.e., R121H, G148R, G151R, S217F, H232D, R266G, 1591delTTCG, and K441X. All of the mutants except K441X exhibited severely decreased activity, and the capability to form tetramers of most mutants was severely impaired. The K441X mutant, on the other hand, exhibited relatively high activity (63% of the wild type activity). This was probably due to two factors. First, the high abundance of the full-length CBS protein, a likely K441Q mutant, which was produced through suppression of the amber termination codon by glutamine tRNA in E. coli. And second, the presence of a C-terminally truncated protein, which was previously shown to be constitutively activated. Patient-derived lymphocytes, however, showed no detectable CBS subunits. As previously hypothesized, the increased aggregation of mutant CBS subunits might be a common pathogenic mechanism in CBS deficiency.

Adult↗

Suppressive effects of red wine polyphenols on voltage-gated ion channels in dorsal root ganglionic neuronal cells.

Polyphenols are ubiquitous plant metabolites with multiple pharmacological properties. Using whole-cell patch-clamp current recording techniques, we studied the effects of polypnenols extracted from red wine (purity > 90% from Cabernet Sauvignon grape wine) on the activities of voltage-operated Na+-, K+-, and Ca2+-channel currents in mouse dorsal root ganglionic neuronal cells. The polyphenols suppressed all of the channel activities with half-effective concentrations of about 2.5, 4.0, and 0.8-1.5 micro g/ml, respectively. In contrast, they showed no noticeable effects on the ion channels in other types of cells, including large conductance K+-channels in mouse lacrimal acinar cells. Thus, the polyphenols suppress firings of the action potential in the neuronal cells and could show a sedative effect on the excitation. We expect that red wine can be used as a remedy for excessive sensory stimuli.

Animals↗

Hypophosphatemia in juvenile patients with systemic lupus erythematosus.

BACKGROUND: Hypophosphatemia is observed in both genetic diseases and acquired disorders, although it has never been described in systemic lupus erythematosus (SLE). The present study reports hypophosphatemia observed in patients with SLE, and investigates whether serum phosphorus (P) concentration is associated with disease activity and some cytokines. METHODS: Six girls with SLE (age 10 to 16 years) and seven age-matched controls were studied. Relationships between serum P and parameters that represented disease activity were evaluated. Interleukin (IL) 6 and tumor necrosis factor alpha (TNF-alpha) levels were measured by enzyme-linked immunosorbent assay (ELISA). RESULTS: Two of the patients with SLE developed marked hypophosphatemia during active disease. Their serum P significantly correlated positively with serum complements, red blood cell (RBC) and platelet counts, and negatively with anti-double-stranded DNA antibody (dsDNAab). Three of the remaining four patients showed the same trend, in which their serum P significantly correlated with RBC, platelets, dsDNAab and/or serum complement concentrations. Serum and urinary IL-6 and serum TNF-alpha were higher in active SLE patients than those with inactive disease or in the control group. In addition, the concentrations of these cytokines significantly correlated inversely with serum P. Renal tubular reabsorption of P was significantly lower in patients with active disease both with and without lupus nephritis. CONCLUSIONS: Hypophosphatemia may be another sign of juvenile SLE, and serum P may represent disease activity. Both TNF-alpha and IL-6 may be related to hypophosphatemia in patients with SLE. Waste of P from renal tubules may be a possible mechanism of hypophosphatemia in SLE.

Adolescent↗

Analysis of NaCl transport in thin ascending limb of Henle's loop in CLC-K1 null mice.

To characterize the nature of NaCl transport in the thin ascending limb (tAL), we examined the transport properties of Na(+) and Cl(-) using in vitro microperfusion of the tAL in CLC-K1 null mice. In the presence of a transmural NaCl concentration gradient (100 mM higher in the lumen), the transepithelial diffusion voltage (V(d)) was 15.5 +/- 1.0 and -7.6 +/- 1.4 mV in CLC-K1(+/+) and CLC-K1(-/-) mice, respectively. Neither Cl(-) transport inhibitor 5-nitro-2-(3-phenylpropylamino)-benzoate (NPPB) nor acidification of the bathing fluid changed the V(d) values in CLC-K1(-/-) mice. The addition of 300 microg/ml protamine, a selective blocker of paracellular conductance, to the bath increased the V(d) values by 5.6 +/- 0.7 and 12.6 +/- 1.5 mV (P < 0.001) in CLC-K1(+/+) and CLC-K1(-/-) mice, respectively. Although efflux coefficients of (36)Cl were significantly decreased in CLC-K1(-/-) mice (188.3 +/- 25.6 in 4 tubules vs. 17.2 +/- 7.0 x 10(-5) cm/s in 6 tubules), those of (22)Na were not different between CLC-K1(+/+) and CLC-K1(-/-) mice. These results clearly indicate that the major component of Cl(-) transport sensitive to NPPB or pH is mediated by CLC-K1 in the tAL.

Angiogenesis Inhibitors↗

Posttranscriptional compensation for heterozygous disruption of the kidney-specific NaK2Cl cotransporter gene.

Mice homozygous for a loss of function mutation of the kidney-specific NaK2Cl cotransporter, BSC1/NKCC2, do not survive. Here the effects of loss of one copy of the gene are studied. NKCC2 mRNA of NKCC2 +/- kidney was 55 +/- 6% of +/+, yet no differences were found between NKCC2 +/+ and +/- mice in BP, blood gas, electrolytes, creatinine, plasma renin concentration, urine volume and osmolality, ability to concentrate and dilute urine, and response to furosemide. When mice were challenged with 180 mM NH(4)Cl, plasma ammonia and urinary ammonia excretion were increased twofold and fivefold, respectively, but there was still no difference between the two genotypes. NKCC2 +/- mice had a near-normal level of NKCC2 protein and no clear change in the distribution of NKCC2 in the thick ascending limb (TAL) cells. In vitro microperfusion of isolated TAL showed no significant difference between the two genotypes in the basal and vasopressin-stimulated capacity to reabsorb NaCl. There was no difference in the mRNA expressions of thiazide-sensitive NaCl cotransporter, epithelial Na channel (ENaC), aquaporin-2, ROMK, and NaKATPase. Halving the mRNA expression of NKCC2 does not affect BP or fluid balance because of compensatory factors that restore the protein level to near normal. One possible factor is a regulated increase in the movement of cytoplasmic protein to the luminal membrane leading to a restoration of functional transporter to an essentially wild type level.

Adaptation, Physiological↗

Reconstruction of tubular structures in three-dimensional collagen gel culture using proximal tubular epithelial cells voided in human urine.

Human proximal tubular (PT) epithelial cells were isolated from urine and monoclonally cultured as monolayers for 1 wk, after which they were subcultured between two layers of collagen gel, designated a "collagen gel sandwich." Under these culture conditions, PT cells formed three-dimensional tubular structures exhibiting distinct polarized cell morphology. Scanning and transmission electron microscopic studies showed that they bore numerous microvilli at the apical surface and that they closely contacted the collagen gel at the basal surface. These studies indicate that PT cells exfoliated in urine still exhibit the potential to proliferate and form organized structures mimicking in vivo tubules. Because of the current lack of useful culture systems for human tubular epithelial cells originating from kidney tissue, we suggest that this unique culture system using voided PT cells in urine could open up new avenues to study not only the mechanisms of morphogenesis but also the physiology of human PT cells.

Cell Culture Techniques↗