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T Gomi

Publications and source records attributed to T Gomi.

At least 37 records · Page 2Linked to original sources

Possible availability of N-acetylcysteine as an adjunct to cytokine therapy for hepatocellular carcinoma.

To examine the possibility of immunotherapy for activating liver-associated mononuclear cells (liver MNC) in hepatocellular carcinoma (HCC), we evaluated the cytotoxicity of liver MNC and peripheral blood mononuclear cells (PBMNC) in HCC patients and examined how they can be activated by cytokines and how this activation is modulated by reduction/oxidation. Cytotoxicity of liver MNC but not PBMNC in HCC patients was significantly decreased compared with that of controls, despite no alteration in the subpopulation of liver MNC between the two groups. We next measured intracellular glutathione (GSH), which is required for the enhancement of the cytotoxicity by interleukin-2 (IL-2). Intracellular GSH levels of liver MNC in HCC were significantly lower than that of controls. In vitro administration of N-acetylcysteine (NAC) not only restored intracellular GSH levels but also enhanced the IL-2-stimulated cytotoxicity of liver MNC in HCC patients. This suggests that intracellular GSH of liver MNC in HCC may participate in the modulation of cytotoxicity of liver MNC in vitro and that NAC may be effective as an adjunct to immunotherapy for HCC.

Acetylcysteine↗

Exposure of hepatic sinusoidal mononuclear cells to UW solution in situ but not ex vivo induces apoptosis.

BACKGROUND/AIMS: We have previously reported that human hepatic sinusoidal mononuclear cells may have a higher sensitivity to induction of apoptosis than peripheral blood mononuclear cells. In this study, the effects of two different preservation solutions on the functions of those hepatic mononuclear cells were evaluated in living-related liver transplantation. METHODS: Ten and 11 liver grafts were perfused via the portal vein with University of Wisconsin solutions (UW group) and Bretschneider's Histidine-Tryptophan-Ketoglutarate solutions (HTK group), respectively. Hepatic mononuclear cells were isolated from the effluent preservation solution passing through the graft livers. Cytofluorometry, cytotoxic assay, and DNA analysis were performed. RESULTS: There were no significant differences in surface antigens and natural killer activity of hepatic sinusoidal mononuclear cells between the UW and HTK groups. At the time of isolation, the viability of hepatic sinusoidal mononuclear cells in both groups was more than 99%. In the UW group, the viability of hepatic sinusoidal mononuclear cells decreased to 30% through apoptosis in in vitro culture at 48 h after isolation. In the HTK group, however, their viability was maintained at more than 90% at 48 h in the same culture conditions, and additional exposure to UW solution ex vivo for 30 min did not induce apoptosis. CONCLUSION: Hepatic sinusoidal mononuclear cells isolated from the UW solution, not from the HTK solution, passing through the liver died through apoptosis, which was not induced by each component of the UW solution, but by exposure in situ.

Adenosine↗

Strict dietary sodium reduction worsens insulin sensitivity by increasing sympathetic nervous activity in patients with primary hypertension.

To assess the effects of sodium reduction on insulin sensitivity in hypertension, we examined the change of insulin sensitivity after two degrees of dietary sodium restriction by the euglycemic hyperinsulinemic glucose clamp method in 12 subjects with primary hypertension. A controlled period of 1 week, when the subjects were taking a normal sodium diet, was followed by a randomized crossover study in which the subjects were placed on either moderate or strict reduced sodium diets for 1 week. The result of the 1-week moderate dietary sodium reduction from 200 to 100 mmol/day showed significant decreases in systolic and diastolic blood pressure by 6.5 and 5.0 mm Hg, respectively. Strict dietary sodium reduction to 30 mmol/day for 1 week resulted in no further decrease in blood pressure, but it increased plasma insulin by 40.6% without changing plasma glucose. There were no changes in glucose infusion rate (GIR) or insulin sensitivity index (ISI), which is a measure of GIR divided by plasma insulin, after moderate dietary sodium reduction. However, strict dietary sodium reduction induced decreases in GIR by 19.8% (from 1318+/-189 to 1057+/-173 micromol/m2/ min; P < .01), and ISI by 20.5% (from 16.6+/-2.1 to 13.2+/-1.9 micromol/m2/min/microU/mL; P < .01) with a paralleled increase of plasma norepinephrine by 90.0% (from 150.5+/-61.6 to 287.3+/-114.9 pg/mL; P < .01). These results indicate that dietary sodium restriction leads to a deterioration of insulin sensitivity when plasma norepinephrine levels increase, and suggest that moderate dietary sodium reduction may lower blood pressure without a distinct adverse effect on glucose metabolism in subjects with primary hypertension.

Adult↗

Glomerular thromboxane contributes to pressor response in deoxycorticosterone acetate-salt hypertension.

To assess the role of renal thromboxane in a salt sensitive pressor response in hypertension, urinary excretion of thromboxane and its release from isolated glomeruli and renal papillae were examined in deoxycorticosterone acetate treated rats with normal (0.6%, n = 12) and high (4%, n = 12) salt diets for 8 weeks. Mean blood pressure, measured directly by an implanted aortic catheter, was higher in the high salt diet group than in the normal salt diet group (146 +/- 2 vs 119 +/- 2 mmHg, P<0.01). Urinary excretion of thromboxane B2 and 6-keto-prostaglandin F1alpha in the high salt group were significantly higher than those in the normal salt diet group, but there was no difference in urinary excretion of prostaglandin E2 between the two groups. Release of thromboxane B2, 6-keto-prostaglandin F1alpha, and prostaglandin E2 from isolated glomeruli in the high salt diet group increased significantly by 104%, 55%, and 74%, respectively, compared with the normal salt diet group. Stepwise multiple linear regression analysis showed that significant contributory factors for mean blood pressure in deoxycorticosterone acetate treated rats were urinary excretion of sodium (F=14.187, P<0.01) and release of thromboxane B2 from isolated glomeruli (F=4.135, P<0.05). The unstandardized coefficient (R) calculated from the regression function using these two factors was 0.875 and R2 was 0.765. The manifest synthesis of thromboxane in renal glomeruli has an important role on salt sensitive pressor response in deoxycorticosterone acetate-salt hypertension of rats.

6-Ketoprostaglandin F1 alpha↗

Structure, function and physiological role of glycine N-methyltransferase.

Glycine N-methyltransferase (EC 2.1.1.20) catalyzes the transfer of the methyl group of S-adenosylmethionine (AdoMet) to glycine to form S-adenosylhomocysteine and sarcosine. Unlike most AdoMet-dependent methyltransferases, glycine N-methyltransferase is a tetramer of identical subunits. Crystallography of recombinant rat glycine N-methyltransferase indicates that four nearly spherical subunits are arranged to form a flat, square tetramer with a large hole in the centre. The enzyme occurs abundantly in the livers of rat, rabbit and mouse. Glycine N-methyltransferases from rat, rabbit, human and pig livers are shown to have similar amino acid sequences and, with the enzymes from rat and rabbit livers, it is demonstrated that the N-terminal valine is acetylated. Glycine N-methyltransferases from livers exhibit sigmoidal rate behaviour with respect to AdoMet and hyperbolic behaviour with respect to glycine at all pH tested. However, recombinant rat glycine N-methyltransferase which lacks the N-terminal acetyl group shows no cooperativity toward AdoMet at neutral pH, suggesting that elimination of the positive charge at the N-terminus is required for cooperative behaviour. Glycine N-methyltransferase binds 5-methyltetrahydropteroylpentaglutamate tightly, resulting in inhibition of the catalytic activity. The nature of these unique functional features is discussed in the light of the three-dimensional structure of the enzyme. The tissue and subcellular localization of the enzyme and its possible role in methionine metabolism are reviewed.

Amino Acid Sequence↗

N-acetylcysteine improves cytotoxic activity of cirrhotic rat liver-associated mononuclear cells.

Liver cirrhosis, which is associated with decreased plasma and hepatic glutathione (GSH), has been reported to cause the suppression of NK activity in peripheral blood mononuclear cells. Since low GSH levels in lymphocytes are known to alter lymphocyte function, we examined the correlation between intracellular GSH levels and the cytotoxic activity of liver-associated mononuclear cells (liver MNC). We show here that rat liver contains a highly active population of NK cells (CD3- NKR-P1 + cells) that kill Yac-1 in vitro and that the cytotoxic activity of this NK population is directly proportional to liver MNC GSH. This proportionality is independent of the methods used to alter GSH level. Thus, in vitro treatment of liver MNC with buthionine sulfoximine to lower GSH levels lowers the cytotoxic activity. MNC from cirrhotic liver, in which implanted tumor cells grow faster, have both low GSH levels and low cytotoxicity, and supplementation of cirrhotic liver MNC with N-acetylcysteine raises GSH levels and increases cytotoxicity. These findings suggest a physiologic mechanism, i.e. decreased GSH, may be causally associated with the increased incidence of hepatoma in cirrhotic individuals and the increased growth of hepatoma cells in cirrhotic animals. Thus, we suggest that the GSH is important to the optimal functioning of the hepatic immunity that protects against hepatoma development.

Acetylcysteine↗

Angiotensin-Converting Enzyme Inhibition Delays Onset of Glucosuria With Regression of Renal Injuries in Genetic Rat Model of Non-Insulin-Dependent Diabetes Mellitus.

BACKGROUND: The Otsuka Long-Evans Tokushima Fatty (OLETF) rat is a new genetic model of non-insulin-dependent diabetes mellitus (NIDDM). We investigated whether angiotensin inhibition influences the onset of NIDDM and brings about a regression of renal injury in diabetes mellitus. METHODS AND RESULTS: Six-week-old OLETF rats were treated with the angiotensin-converting enzyme (ACE) inhibitors imidapril or enalapril for 16 weeks. Systolic blood pressure is increased in an age-dependent manner in OLETF rats. In this study, the elevation in systolic blood pressure was dose-dependently reduced by ACE inhibitor treatment. In OLETF rats, plasma concentrations of insulin and glucose increased and the glucosuria occurred at the age of 22 weeks. Simultaneously, OLETF rats exhibited proteinuria and nodular lesions in glomeruli. The ACE inhibitor treatment almost completely reduced glucosuria, and also decreased plasma concentrations of insulin and glucose in OLETF rats. ACE inhibitor treatment lessened the proteinuria and attenuated morphologically the severity of nodular lesions in OLETF rats. Moreover, increases in plasminogen activator inhibitor 1 (PAI-1) in OLETF rats were reduced by the ACE inhibitor treatment, and the improvement of glomerular lesions was related to decreases of PAI-1 and angiotensin II levels in plasma but not to improvement of glucose metabolism. CONCLUSIONS: ACE inhibitors delay onset of NIDDM with attenuation of kidney injury. The regression of kidney lesions is probably due to angiotensin reductions but not to glucose metabolism per se. ACE inhibitor drug therapy may be useful in preventing NIDDM and the subsequent renal injury in patients with NIDDM.

Journal Article↗

Humoral injury in porcine livers perfused with human whole blood.

BACKGROUND: We investigated the influence of humoral injury during xenoperfusion of porcine livers by human blood. METHODS: The porcine livers were perfused under physiological conditions for 9 hr. The perfusates consisted of porcine whole blood in group 1, human whole blood in group 2, and human whole blood with soluble complement receptor type 1 (300 microg/ml) in group 3. RESULTS: Liver enzyme release and serum hemoglobin in group 2 increased significantly after 3 hr of xenoperfusion, compared with those in group 1 and group 3 (P<0.05). Severe histological damage with minimal cellular infiltration was observed in group 2 after 6 hr of xenoperfusion, but was present only at trace levels in group 1 and group 3. In group 2, von Willebrand factor, a possible target of natural antibodies, was induced on sinusoidal endothelial cells after 3 hr of xenoperfusion, correlating with diffuse deposition of human IgM and membrane attack complex. In group 3, von Willebrand factor, human IgM, and membrane attack complex staining in the intralobular region were present at trace levels. In group 3, the indocyanine green removal capacity, representing hepatocyte function, was significantly higher than in group 2 (P<0.05). CONCLUSIONS: Based on these results, we suggest that humoral injury is a major cause of liver damage during liver xenoperfusion. The pattern of humoral injury in xenoperfused livers may be attributed to anatomical features of the liver and unique responses of sinusoidal endothelial cells to xenoperfusion.

Animals↗

Recombinant expression of rat glycine N-methyltransferase and evidence for contribution of N-terminal acetylation to co-operative binding of S-adenosylmethionine.

An expression vector was constructed that produced rat glycine N-methyltransferase in Escherichia coli. Recombinant glycine N-methyltransferase was purified to homogeneity by DEAE-cellulose and gel-filtration chromatography, with a yield of more than 80 mg of pure enzyme from a 1 litre culture. HPLC of tryptic peptides and analysis of isolated peptides showed that the recombinant enzyme was structurally identical with the liver enzyme except for the absence of N-terminal blocking. The alpha-amino group of rat glycine N-methyltransferase is blocked by acetylation [Ogawa, Konishi, Takata, Nakashima and Fujioka (1987) Eur. J. Biochem. 168, 141-151]. In contrast with the liver enzyme, which shows sigmoidal kinetics toward S-adenosylmethionine at all pH values tested [Ogawa and Fujioka (1982) J. Biol. Chem. 257, 3447-3452], the recombinant enzyme exhibited hyperbolic kinetics at low pH and sigmoidal rate behaviour at high pH. The Hill coefficient increased with increasing pH and a pKa of 8.11 was obtained in this transition. The values of Vmax and Km for glycine were not different between the two enzymes. These results suggest that elimination of the positive charge at the N-terminal end either by acetylation or deprotonation is required for co-operative behaviour.

Amino Acid Sequence↗

Rat liver 4S-benzo[a]pyrene-binding protein is distinct from glycine N-methyltransferase.

Rat liver 4S-benzo[a]pyrene-binding protein (BAP) was reported to be identical to the subunit (Mr 32,500) of the tetrameric glycine N-methyltransferase (GNMT). We have reevaluated this study. When a liver cytosol was subjected to Sephacryl S-200 gel permeation chromatography, enzyme activity as well as cross-reactivity with anti-GNMT antibody were found only at the elution position of the purified GNMT. Chromatograph of the cytosol pretreated with [3H]benzo[a]pyrene showed two peaks in the void volume and at the position of an approximate Mr of 40,000. The latter, corresponding to the 4 S BAP, did not cross-react with the anti-GNMT antibody. An extract of nuclei in which GNMT was proposed to act as a mediator of cytochrome P4501A1 gene expression contained the tetrameric GNMT but no binding activity. The lung, in which no GNMT mRNA occurred, had the 4 S BAP. Extracts of Escherichia coli and COS-7 cells expressing large amounts of GNMT showed no 4 S BAP. These findings suggest that the 4 S BAP is distinct from the subunit of GNMT.

Aldehyde Dehydrogenase↗

Successful long-term xenoperfusion of the pig liver: continuous administration of prostaglandin E1 and insulin.

For clinical utilization of extracorporeal liver perfusion as an artificial liver assist device, we examined the possibility of long-term xenoperfusion of the pig liver by the continuous administration of prostaglandin E1 (PGE1) and insulin. After a 3-hr perfusion period, pig livers that were xenoperfused with human blood exhibited a drastic decrease in the perfusate volume, a progressive elevation of the hepatic artery pressure, a gradual deterioration of bile production, and a marked increase in the release of creatine kinase-BB component. The continuous administration of PGE1 (25 microg/hr) and insulin (1 U/hr) significantly improved these derangements (P<0.05) and allowed stable perfusion for up to 9 hr. This manipulation also inhibited leukocyte aggregation in the graft, the characteristic perfusate hemolysis, and acceleration of ketogenesis. Histological examination revealed that the interlobular edema and hemorrhage, characteristics of tissue injuries in xenogeneic hyperacute rejection, were markedly alleviated in the PGE1 and insulin-treated group. This study clarifies the finding that the combined administration of PGE1 and insulin is effective for long-term xenogeneic extracorporeal liver perfusion, with the graft viability well maintained.

Alprostadil↗

The protective effects of prostaglandin E1 on sinusoidal endothelial cells in xenogeneic pig liver perfusion.

The effects of prostaglandin E1 (PGE1) on hepatic sinusoidal endothelial cells (SEC) in the xenogeneic immunoreaction were investigated. Porcine livers were perfused with fresh human blood via the portal vein (PV) and the hepatic artery (HA) either with the administration of PGE1 (Group PG) or without PGE1 (Group C). The creatine kinase-BB component (CK-BB) in the perfusate was measured to assess SEC damage. SEC activation and complement activation were evaluated immunohistochemically by the expression of von Willebrand factor (vWF) and by the deposition of membrane attack complex (MAC), respectively. Xenoperfusion in Group C was discontinued between 4 and 6 hr due to the rapid elevation of HA pressures and the massive loss of perfusate. In Group PG, both PV and HA pressures were kept stable for up to 9 hr. In Group C, severe interlobular bleeding and diffuse extrasinusoidal hemorrhage were observed at 4 hr histologically, while in Group PG, the hepatic architecture was maintained without hemorrhage at 6 hr. MAC was markedly deposited on SEC and parenchymal cells at 3 hr in both groups. The amount of vWF, however, was expressed on SEC in large amounts at 1 hr in Group C, while small amounts were expressed at 1 hr in Group PG. In Group PG, CK-BB release was significantly lower than in Group C (P < 0.01). These results suggest that PGE1 suppressed SEC activation and protected the impairment of hepatic SEC during xenoperfusion without suppressing complement activation, resulting in the prolongation of xenogeneic liver perfusion.

Alprostadil↗

Reducing environment protects sinusoidal lymphocytes isolated from normal human liver from apoptosis.

BACKGROUND/AIMS: We previously reported that the populations of lymphocytes and the expression of activated antigens in human sinusoidal mononuclear cells were different from those in peripheral blood mononuclear cells. Attempts to culture these cells for further study failed because they died rapidly under standard culture conditions in vitro after isolation from the liver. In this study, we evaluated the characteristics of cell death and the effects of various culture conditions on the viability of these cells. METHODS: Sinusoidal mononuclear cells were isolated from University of Wisconsin solution that had been perfused through the portal veins of normal healthy human livers harvested for transplantation into living related recipients. RESULTS: 70% of sinusoidal mononuclear cells cultured in vitro were nonviable within 48 h after isolation, while only 10% of peripheral blood mononuclear cells died under the same conditions. Sinusoidal mononuclear cells showed DNA ladder formation of DNA on electrophoresis and characteristic morphological pattern on electron microscopic examination that suggested they had died in an apoptotic manner. The addition of human liver extracts or 2-mercaptoethanol and reduced glutathione to the cultures rescued the sinusoidal mononuclear cells from apoptosis. Furthermore, diamide, a sulfhydryl group specific oxidant, negated the effect of the liver extract. CONCLUSION: In comparison with peripheral blood mononuclear cells, human sinusoidal mononuclear cells were more subject to death by apoptosis ex vivo, which was reversed by exogenous agents producing reducing conditions. These results suggested that hepatic sinusoidal mononuclear cells might express a different sensitivity to redox environment than peripheral blood mononuclear cells.

Apoptosis↗

Oxygen dependency of epidermal growth factor receptor binding and DNA synthesis of rat hepatocytes.

BACKGROUND/AIMS: Changes in oxygen availability modulate replicative responses in several cell types, but the effects on hepatocyte replication remain unclear. We have studied the effects of transient nonlethal hypoxia on epidermal growth factor receptor binding and epidermal growth factor-induced DNA synthesis of rat hepatocytes. METHODS: Lactate dehydrogenase activity in culture supernatant, intracellular adenosine triphosphate content, 125I-epidermal growth factor specific binding, epidermal growth factor receptor protein expression, and 3H-thymidine incorporation were compared between hepatocytes cultured in hypoxia and normoxia. RESULTS: Hypoxia up to 3 h caused no significant increase in lactate dehydrogenase activity in the culture supernatant, while intracellular adenosine triphosphate content decreased time-dependently and was restored to normoxic levels by reoxygenation (nonlethal hypoxia). Concomitantly, 125I-epidermal growth factor specific binding to hepatocytes decreased time-dependently (to 54.1% of normoxia) and was restored to control levels by reoxygenation, although 125I-insulin specific binding was not affected. The decrease in 125I-epidermal growth factor specific binding was explained by the decrease in the number of available epidermal growth factor receptors (21.37+/-3.08 to 12.16+/-1.42 fmol/10(5) cells), while the dissociation constant of the receptor was not affected. The change in the number of available receptors was not considered to be due to receptor degradation-resynthesis, since immunodetection of the epidermal growth factor receptor revealed that the receptor protein expression did not change during hypoxia and reoxygenation, and since neither actinomycin D nor cycloheximide affected the recovery of 125I-epidermal growth factor binding by reoxygenation. Inhibition of epidermal growth factor-induced DNA synthesis after hypoxia (to 75.4% of normoxia by 3 h hypoxia) paralleled the decrease in 125I-epidermal growth factor binding. CONCLUSIONS: Transient hypoxia, which caused no increase in lactate dehydrogenase leakage but affected intracellular adenosine triphosphate levels, did, however, modulate the number of available epidermal growth factor receptors without affecting the receptor protein expression, and inhibit the epidermal growth factor-induced DNA synthesis of hepatocytes. This suggests that even transient nonlethal hypoxia affects the epidermal growth factor-induced DNA synthesis of rat hepatocytes through reversible changes in the epidermal growth factor receptor molecule, which depends on oxygen availability.

Adenosine Triphosphate↗

Beneficial effect of alpha-blocker on hemorheology in patients with essential hypertension.

To assess the effect of antihypertensive therapy on hemorheology in essential hypertension, blood viscosity and red blood cell deformability were examined in 45 patients with essential hypertension and 20 age-matched normotensive control subjects. Hypertensive patients were randomly assigned to monotherapy with five different antihypertensive drugs for 6 months and change of blood viscosity and red blood cell deformability were reexamined after the end of the monotherapy with each antihypertensive drug. Blood viscosity increased and red blood cell deformability decreased in hypertensive patients compared to normotensive control subjects. Monotherapy with each drug resulted in sufficient blood pressure control in all hypertensive patients. After the monotherapy with the alpha-blocker, terazosin, blood viscosity decreased significantly at shear rates from 22.5/sec to 450/sec, and red blood cell deformability, estimated by red blood cell filtration rate, increased by 15% (from 65 +/- 10 to 75 +/- 12 microL/sec, P < .05). The decrease in blood viscosity induced by alpha-blocker monotherapy may relate to an improvement of red blood cell deformability. It is possible that the treatment with alpha-blocker has a beneficial effect on the peripheral microcirculation due to an improvement of hemorheology in patients with essential hypertension.

Adrenergic alpha-Antagonists↗

Serum N-acetyl-beta-D-glucosaminidase activity in a genetic rat model of non-insulin-dependent diabetes mellitus.

Serum N-acetyl-beta-D-glucosaminidase activity (NAG) is a possible predictor of vascular injury in hypertension. We assessed whether the activity of this enzyme reflects vascular damage in a genetic rat model of non-insulin-dependent diabetes mellitus (NIDDM) in humans. Otsuka Long-Evans Tokushima Fatty (OLETF) rats fed a regular chow were treated with the angiotensin converting enzyme (ACE) inhibitor imidapril for 16 wk. Systolic blood pressure increased in a time-dependent manner in the untreated OLETF rats as compared with that in the control Long-Evans Tokushima (LET) rats. The blood pressure elevation was associated with increases in cardiac and aortic weight. Imidapril treatment significantly attenuated the blood pressure elevation and reduced the increases in cardiac and aortic weight. The untreated OLETF rats had higher plasma glucose and insulin concentrations than did the LET rats and presented with glucosuria at the age of 22 wk. Imidapril treatment strikingly decreased plasma glucose levels and the glucosuria. Plasma insulin concentrations decreased, approaching those of the non-diabetic control LET rats. ACE inhibitor treatment attenuated the nodular lesions in the glomeruli of OLETF rats and improved the kidney function. Serum NAG activity increased significantly by 35% in the untreated rats; this increase was attenuated significantly by imidapril treatment. The reduction in serum NAG activity correlated with improvement in cardiovascular injury. In contrast, there were no changes in urinary NAG excretion in the three OLETF rat groups. In addition, NAG excretion did not correlate with indices of cardiovascular injury. These data suggest that serum NAG activity is useful in predicting injury in the cardiovascular system in rats with diabetes mellitus.

Acetylglucosaminidase↗

Long-term infusion of kallikrein attenuates renal injury in Dahl salt-sensitive rats.

We investigated whether long-term infusion of kallikrein would attenuate renal injury in salt-induced hypertension in Dahl salt-sensitive (Dahl S) rats. A subdepressor dose of purified rat urinary kallikrein (RUK) (700 ng/day) was infused intravenously by an osmotic minipump for 4 weeks in male Dahl S rats fed a high-salt (2% NaCl) diet. This dose did not affect the time-dependent elevation of blood pressure. However, urinary protein excretion was significantly decreased, and the glomerular filtration rate was increased. These beneficial effects were reflected morphologically by an attenuation of the glomerulosclerotic lesions and tubular injury seen in the hypertensive Dahl S rats. The kallikrein infusion increased the urinary excretion of bradykinin and stimulated the excretion of cyclic GMP, suggesting that the kallikrein-kinin-prostaglandin and nitric oxide axes were enhanced by the RUK infusion. The alterations induced by such infusion were potentiated by the concomitant administration of the angiotensin converting enzyme inhibitor alacepril. These studies indicated that long-term replacement with rat tissue kallikrein attenuates renal injury in hypertensive Dahl S rats, and this is probably mediated by an enhanced function of the kallikrein-kinin-prostaglandin and nitric oxide systems.

Angiotensin-Converting Enzyme Inhibitors↗

The implication of renin-angiotensin system on renal injury seen in Dahl salt-sensitive rats.

Angiotensin II (Ang II) progresses to remodeling of the cardiovascular system through nonhemodynamic as well as hemodynamic effects. There have been few data in vivo on whether subpressor concentration of Ang II is exerted to injure directly the cardiovascular system in hypertension. To test this hypothesis, we investigated, using Dahl salt-sensitive (Dahl S) rats, whether subpressor dose of Ang II progresses to cardiovascular injury observed in salt-induced hypertension. Recent studies have provided evidence that renin-angiotensin inhibition protects against renovascular injury in human hypertension as well as in experimental animals. Particularly in the case of Dahl salt-sensitive rats, a genetic model of volume-dependent hypertension in humans, they are likely to develop more severe arterial and renal injuries than those seen in spontaneously hypertensive rats with similar blood pressure levels. The mechanism of the susceptibility to hypertensive injuries is uncertain; however, renin-angiotensin inhibition significantly improved morphologic and functional injuries in the kidney of Dahl S rats. Conversely, subpressor dose of Ang II infusion exacerbated renal function and progressed to glomerulosclerotic lesions. Alterations of Ang II concentration in physiologic range influenced morphologic and functional injuries in Dahl S rats. Multivariate analysis revealed that activity of the renin-angiotensin system is an independent risk factor to glomerular injury in salt-induced hypertension. These data are in favor of the therapeutic strategy in human hypertension that inhibition of renin-angiotensin system is of value to produce beneficial effects of blood pressure reduction on organ injuries.

Animals↗