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Biomedical subjects

M Imai

Publications and source records attributed to M Imai.

At least 397 records · Page 22Linked to original sources

Dual effect of N-ethylmaleimide on Cl- transport across the thin ascending limb of Henle's loop.

Effects of SH reagents on Cl- transport were studied in the isolated hamster thin ascending limb of Henle's loop (TAL) perfused in vitro. Parachloromercuribenzene sulfonate (PCMBS) at 10(-4) M in the bath decreased the relative permeability for Cl-/Na+ (PCl/PNa), as determined by the transmural diffusion voltage (VT) generated under a NaCl concentration gradient, from 2.71 +/- 0.16 to 1.11 +/- 0.09 (P less than 0.001). The effect of PCMBS was prevented by the pretreatment with 10(-3) M dithiothreitol (DTT). N-Ethylmaleimide (NEM) at 10(-3) M in the bath exhibited a dual action on Cl- permeability of the TAL: It inhibited the Cl- permeability in fresh preparations, whereas it stimulated the Cl- permeability in the preparations pretreated with SH reagents including NEM, maleimide and PCMBS. The inhibitory effect was irreversible but the stimulatory effect was reversible. Both responses were prevented by DTT. Since dextran-maleimide did not show any inhibitory effect on PCl/PNa, the SH site responsible for the inhibition may be located inside of the cell. The stimulatory effect of NEM on PCl/PNa was markedly reduced when bath pH was reduced to 5.8. On the other hand, when the bathing fluid was made nominally Ca2+ free, the stimulatory effect of NEM was unaffected, although the basal level of PCl/PNa was reduced These observations suggest that the conductive Cl- pathway in the TAL is either stimulated or inhibited by modifying two distinct SH sites. The site of modulation by proton binding may exist distally to these SH sites. The regulatory mechanism involving Ca2+ may be independent of the SH regulatory sites.

4-Chloromercuribenzenesulfonate↗

Osmotic work across inner medullary collecting duct accomplished by difference in reflection coefficients for urea and NaCl.

To demonstrate that osmotic work can be accomplished across the inner medullary collecting duct (IMCD) by the difference in reflection coefficients for urea and NaCl, phenomenological coefficients for urea and NaCl transport were determined in isolated segments of the hamster IMCD perfused in vitro. Arginine vasopressin at 100 microU/ml increased urea permeability from 11.5 +/- 2.9 to 31.7 +/- 4.2 x 10(-7) cm2 s-1 in the middle IMCD but not in the upper IMCD. Urea transport in the middle IMCD consisted of two components, transport with saturable kinetics and simple passive diffusion. Permeability to Na+ was very low (2 x 10(-7) cm2 s-1). Reflection coefficients as measured by the equiosmolality method, with raffinose being a reference solute, were 0.87 +/- 0.05 and 0.71 +/- 0.04 for urea and 1.03 +/- 0.07 and 0.91 +/- 0.04 for NaCl in the upper and the middle IMCD, respectively. Reflection coefficient for urea in the middle IMCD was 0.68 when determined by the zero volume flux method. When the middle IMCD was perfused with bicarbonate Krebs-Ringer (BKR) solution containing 200 mmol/l urea, the replacement of urea in the bathing fluid with equisomolal NaCl caused large volume flux (3.81 +/- 0.45 nl mm-1 min-1) associated with dilatation of intercellular space. The existence of vasopressin in the bath was essential for this phenomenon. This effect was inhibited by 5 x 10(-4) M phloretin in the bath, suggesting that the vasoressin-stimulated urea transport is responsible for this phenomenon. From these observations, we conclude that transport parameters of the middle IMCD are appropriate for accomplishment of osmotic work across this segment in the absence of physicochemical osmotic gradients.

Animals↗

Intrarenal localization of degradation of atrial natriuretic peptide in isolated glomeruli and cortical nephron segments.

Using isolated glomeruli and nephron segments obtained from collagenase treated rabbit kidneys, we examined the in vitro degradation of alpha-human atrial natriuretic polypeptide (alpha-hANP). The ANP-degrading activity was measured by the amount of immunoreactive ANP remaining after incubation of about 50 fmoles alpha-hANP with each tissue preparation for 7.5 min. The sequence of degrading activity among isolated nephron segments was as follows: proximal straight tubule greater than proximal convoluted tubule greater than cortical collecting tubule greater than distal convoluted tubule greater than cortical thick ascending limb. A single glomerulus exhibited the degrading activity which was comparable to approximately 50% of the activity of 1 mm proximal convoluted tubule. Phosphoramidon, an inhibitor of endopeptidase, prevented the degradation of ANP in proximal convoluted tubule and glomerulus by 68% and 89%, respectively, but not in cortical thick ascending limb and cortical collecting tubule. From these results, we conclude that the degradation of ANP by endopeptidase occurs mainly in the proximal tubule and glomerulus.

Animals↗

Typing hepatitis B virus by homology in nucleotide sequence: comparison of surface antigen subtypes.

The complete nucleotide sequences of the DNA of three hepatitis B virus (HBV) genomes of subtype adw, cloned from plasma samples of asymptomatic carriers living in the mainland and Okinawa Prefecture of Japan and Indonesia were determined. All three comprised 3215 bp and differed in sequence by only 3.9 to 5.6%. When these isolates were compared with the reported sequences of two HBV genomes of the same subtype derived from American carriers, however, the differences were greater (8.3 to 9.3% to an extent comparable with the nucleotide divergence between an HBV genome of subtype adw and that of a heterotypic subtype, such as adr, ayw or ayr. A total of 18 HBV genomes of various subtypes, including the three described here, 10 reported previously and five unpublished ones, were classified into four groups based on an inter-group divergence in nucleotide sequence of 8% or greater: group A (two adw genomes), group B (four adw), group C (three adw, four adr and one ayr) and group D (four ayw). Thus, the nine genomes of HBV subtype adw were distributed into three groups with considerably different sequences. These results indicate that the four major antigenically defined subtypes of envelope polypeptide do not reflect true genotypic variation of HBV. The fact that d to y, as well as w to r, subtypic change can be induced by an A----G point mutation at nucleotides 365 and 479 in the S gene, respectively, supports this view.

Amino Acid Sequence↗

Effect of Ca2+ on Cl- transport in thin ascending limb of Henle's loop.

Effects of ambient Ca2+ concentration on Cl- transport across the thin ascending limb of Henle's loop (TAL) were examined by the in vitro microperfusion technique. When Ca2+ concentration in the bathing fluid was decreased from 1.5 mM to nominally 0 mM at 37 degrees C, the relative permeability of Cl- to Na+ (PCl/PNa) estimated from the NaCl diffusion voltage changed from 2.44 +/- 0.20 to 1.27 +/- 0.16 (n = 7, P less than 0.01). When Ca2+ concentration of the luminal fluid was reduced, PCl/PNa was unchanged. When Ca2+ concentration in the bathing fluid was changed from 4.5 to nominally 0 mM, the lumen-to-bath flux coefficient for 36Cl (K36Cl(l----b)) was decreased, whereas the value for 22Na was unchanged, indicating that the reduction of Ca2+ concentration in the bathing fluid selectively inhibits Cl- transport without affecting Na+ transport. By contrast, at 23 degrees C, the elimination of Ca2+ from the bathing fluid caused only a small reduction of PCl/PNa. Although at 23 degrees C acidification of the bathing fluid caused only little or no decrease in Cl- permeability, the elimination of Ca2+ from the bathing fluid under acid pH markedly suppressed the (K36Cl(l----b)) (10(-7) cm2/s). The pH titration curves of relative Cl- permeability examined at three different Ca2+ concentrations at 37 degrees C revealed that the interaction between proton and Ca2+ was noncompetitive. Addition of quin 2-AM, which reduced intracellular Ca2+ concentration, to the bath caused an irreversible suppression of Cl- permeability, suggesting that the decrease in intracellular Ca2+ concentration also inhibits the Cl- transport across the TAL.(ABSTRACT TRUNCATED AT 250 WORDS)

Algorithms↗

Transition of permeability properties along the descending limb of long-loop nephron.

The isolated segments of the hamster descending limb of the long-loop nephron (LDL) were perfused in vitro to demonstrate the axial heterogeneity with respect to permeability properties. When a NaCl gradient from the lumen to bath was present, the lumen-negative diffusion voltage (VD) was generated in the upper portion (LDLU). When the VD was measured stepwise along the axis of tubules, the magnitude of the VD decreased in the portion within 0.5 mm before the border between the outer and inner medulla in most cases, indicating that a gradual functional transition to the lower portion (LDLL) occurs along the descending limb. The lumen-to-bath flux coefficients (K1----b) for Na+ were 14.3 +/- 3.7 X 10(-7) and 2.4 +/- 0.8 X 10(-7) cm2/s in the LDLU and LDLL, respectively. The K1----b for urea were 1.7 +/- 0.6 X 10(-7) and 7.9 +/- 4.1 X 10(-7) cm2/s, respectively. The LDLL was highly permeable to water, with osmotic permeability coefficient being 1,693 +/- 517 X 10(-9) cm2.s-1.atm-1. The reflection coefficients for NaCl and urea were not different from unity. From these observations, we conclude that the functional transition occurs along the LDL from the segment with a high Na+ permeability to that with a low Na+ permeability.

Animals↗

Blood pressure control during eye surgery under local anesthesia. Actual status of blood pressure and experience with a new control method using intravenous nitroglycerin.

Blood pressure during eye surgery under local anesthesia was measured in 186 cases treated in our department. 58 cases showed an increase in blood pressure before the operation in spite of premedication; in 32 of these cases there was a 40% rise in blood pressure. Moreover, 38 cases showed at least one ECG abnormality just before the operation in spite of no past history of heart disorders. To control the blood pressure in these cases, intravenous injection of nitroglycerin (Millisrol) was performed continuously and immediately stabilized the blood pressure.

Anesthesia, Local↗

Site and mechanism of action of trichlormethiazide in rabbit distal nephron segments perfused in vitro.

To determine the exact site and mechanism of action of thiazide diuretics, effects of 10(-4) M trichlormethiazide (TCM) on NaCl transport were examined in the distal convoluted tubule (DCT), the connecting tubule (CNT) and the cortical collecting duct (CCD) of rabbit kidney by the in vitro microperfusion technique. TCM added to the lumen decreased lumen-to-bath 36Cl flux (JCl(LB)) only in the CNT without changing the transmural voltage (VT). In the DCT, 10(-4) M furosemide did not change JCl(LB) even if it was added to the lumen with 10(-4) M TCM, whereas 10(-5) M amiloride in the lumen decreased the lumen-to-bath 22Na flux (JNa(LB)) and VT. In the CNT, TCM added to the lumen did not affect the bath-to-lumen 36Cl flux. Addition of TCM to the bath slightly decreased JCl(LB). Luminal addition of 10(-4) M TCM also decreased JNa(LB). Amiloride at 10(-5) M in the lumen decreased both JNa(LB) and VT. Addition of TCM with 10(-5) M amiloride further decreased JNa(LB) without affecting VT, indicating that TCM affects the electroneutral Na+ transport, which is distinct from the amiloride-sensitive conductive Na+ pathway. When Na+ was removed from the lumen, JCl(LB) was markedly decreased, but addition of TCM did not cause further decrease in JCl(LB). Furosemide did not affect JCl(LB), but addition of both 10(-4) M TCM and furosemide decreased JCl(LB), indicating that Na+-K+-2Cl- cotransport is not involved in the action of TCM. Removal of HCO3- slightly decreased JCl(LB), and TCM caused further decrease in JCl(LB). Amiloride at 10(-3) M, a concentration supposed to inhibit the Na+/H+ antiport, slightly decreased JCl(LB), and addition of TCM caused a further marked decrease in JJl(LB). The similar results were also obtained when the combined effects of 10(-3) M 4,4'-diisothiocyano-stilben-2,2'-disulfonate(DIDS) and 10(-4) M TCM were examined. These findings suggest that the parallel antiport of Na+/H+ and Cl-/HCO3- is not involved in the action of TCM. By excluding other possible mechanisms involving neutral Na+-dependent Cl- transport, we conclude that TCM inhibits Na+-Cl- cotransport in the luminal membrane of the rabbit CNT.

Animals↗

Evidence for conductive Cl- pathways across the cell membranes of the thin ascending limb of Henle's loop.

To examine whether Cl- is transported via transcellular pathways in the thin ascending limb of Henle's loop (TAL), conventional microelectrode technique was applied in isolated TAL segments of hamsters perfused in vitro. The average basolateral membrane voltage (VB) was -24.5 +/- 1.5 mV (n = 18). Ouabain (10(-4) M) had no effect on VB. Sudden reduction of basolateral Cl- concentration from 165 to 5 mmol/liter caused a large depolarizing spike (+49.1 +/- 2.7 mV, n = 18), while the transepithelial potential (VT) showed lumen positive deflection by 33.4 +/- 1.2 mV, which indicates that a large Cl- conductance exists in the basolateral membrane. Reduction of luminal Cl- concentration caused sustained depolarization of luminal cell membrane from +24.5 +/- 2.1 to -9.7 +/- 3.4 mV (n = 6), which indicates that there is also a Cl- conductance in the luminal membrane. Since we have previously shown that acidification of ambient solution suppresses the transmural Cl- permeability, we tested whether acid pH also inhibits the Cl- conductance of the basolateral membrane. When pH of the bathing fluid was lowered to 5.8, the depolarizing spike of VB and the change of VT upon sudden reduction of basolateral Cl- were almost completely abolished. From these results we conclude: (a) both the luminal and the basolateral membrane of hamster TAL segments have Cl- conductances, and (b) Cl- transport in the TAL takes place, at least in part, via a transcellular route when a transepithelial Cl- gradient is present.

Animals↗

Renal action of a novel uricosuric diuretic, S-8666. I. Clearance and tubular microinjection studies in rats.

Clearance and tubular microinjection techniques were used to evaluate the effects of a novel uricosuric diuretic, S-8666, on renal function and tubular absorption of urate by the rat kidney. Tubular sites of diuretic action of S-8666 were determined indirectly using osmolar clearance techniques. The i.v. injection of S-8666 at a dose ranging from 0.3 to 3.0 mg caused a dose-dependent increase in urine flow and sodium excretion. Potassium excretion was increased significantly but the increase was not marked as compared with sodium excretion. Glomerular filtration rate was not changed by S-8666. The diuretic response reached a maximum within 5 min and was retained for 45 min with 1 mg of S-8666. The comparison with the effect of furosemide revealed that furosemide was 13 times more potent than S-8666. Both the free water reabsorption on hydropenia and free water clearance in hydrated animals decreased with administration of S-8666. The urinary excretion of urate increased significantly after the administration of S-8666. By contrast, furosemide did not increase urinary excretion of urate. Total urinary urate recovery after S-8666 administration was higher after the microinjection of [14C]urate into early proximal tubule sites. We conclude that S-8666 acts as a uricosuric diuretic agent with the major site of altered urate absorption being in the proximal convoluted tubule and the major site of diuretic action being in the cortical and medullary diluting segments.

Animals↗

Renal action of a novel uricosuric diuretic, S-8666. II. Effects on Cl- and urate transport in isolated perfused rabbit renal tubules.

We have studied the effect of the two enantiomeric forms of the diuretic agent, S-8666 [6,7-dichloro-5-(N,N-dimethylsulfamoyl)-2,3-dihydro-2-benzofuran carboxylic acid], on the Cl- transport across the cortical thick ascending limb of Henle's loop (CAL) and on urate transport across the proximal tubule, using the in vitro microperfusion technique of individual tubular segments isolated from the rabbit kidney. S-8666 in the lumen reduced significantly the lumen-positive voltage in CAL. The suppression of lumen-positive voltage was instantaneous, and the effects were reversible when the drug was eliminated from the perfusate. These effects were observed with the (S-)-enantiomer of S-8666 but not with the (R+)-enantiomer. S-8666 did not affect the lumen-positive voltage when it was added to the bathing fluid. The lumen to bath 36Cl flux in CAL also was reduced by addition of S-8666 to the perfusate. S-8666 in the lumen inhibited the lumen-to-bath [14C]urate flux in both proximal convoluted tubule and proximal straight tubule. It also reduced the bath-to-lumen urate flux when it was added to the bath. Enantioselectivity was not found for these inhibitory effects on urate transport of S-8666. We conclude: 1) the (S-)-enantiomer of S-8666, but not the (R+)-enantiomer, has a direct effect on the Cl- transport in the CAL, acting from the luminal side and 2) both enantiomers of S-8666 inhibit urate to transport in proximal tubules.

Animals↗