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Biomedical subjects

K Kitani

Publications and source records attributed to K Kitani.

At least 73 records · Page 4Linked to original sources

Anomalous accumulation of tau and ubiquitin immunoreactivities in rat brain caused by protease inhibition and by normal aging: a clue to PHF pathogenesis?

Rats received intraventricular infusion of leupeptin or saline and brain sections were immunostained with antibodies to tau (anti-HFoPHF) or ubiquitin. Results were compared with immunostaining on normal aged rat brains and Alzheimer's disease (AD) brains. Both antibodies stained Purkinje cell perikarya and dendrites of leupeptin (but not saline)-treated and aged rat brains, as well as senile plaque neurites and neurofibrillary tangles in AD brains. The results are consistent with the hypothesis that paired helical filament (PHF) formation involves defective protein degradation.

Aging

Effects of MK-733 (simvastatin), an inhibitor of 3-hydroxy-3-methylglutaryl coenzyme A reductase, on intestinal acylcoenzyme A:cholesterol acyltransferase activity in rabbits.

MK-733 (simvastatin), a potent 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase inhibitor, was found to inhibit the absorption of cholesterol from the gastrointestinal tract in cholesterol-fed rabbits (Ishida et al. (1988) Biochim. Biophys. Acta 963, 35-41). To clarify the mechanism of action, the effects of MK-733 on acyl coenzyme A:cholesterol acyltransferase (ACAT) and cholesterol esterase activities, which are thought to participate in the absorption of cholesterol, were examined. Dietary administration (0.03% in a 1% cholesterol diet for 7 days, approx. 10 mg/kg) of MK-733 to cholesterol-fed rabbits was found to inhibit the increase in serum total cholesterol levels, and caused a 70% reduction in ACAT activity in microsomes of intestinal mucosa relative to those observed in concurrent control rabbits. MK-733 did not affect cholesterol esterase activity in the cytosol of the intestinal mucosa. The inhibitory effect of MK-733 on cholesterol absorption in cholesterol-fed rabbits is though to be related to a reduction in microsomal ACAT activity in the intestinal mucosa.

Animals

Identification of protein-bound riboflavin in rat hepatocyte plasma membrane as a source of autofluorescence.

The presence of flavin compound(s) giving a yellowish-green autofluorescence in rat hepatocyte plasma membrane has recently been reported (Nokubo, M. et al. (1988) Biochim. Biophys. Acta 939, 441-448). The fluorophore can quantitatively be extracted with water at 80 degrees C from isolated plasma membranes. Gel filtration of the extract eluted with water showed two peaks, the fluorescence of which closely resembled that of riboflavin. The major peak comigrated with proteins and the minor one displayed a position identical to authentic riboflavin. When the components of the major peak were rechromatographed after acetic acid treatment and eluted with 20 mM of acetic acid, the fluorescent compound separated from the proteins and eluted at the same position as riboflavin. In paper chromatography and HPLC, the behavior of the fluorescent compound (separated by acid treatment from the proteins) was identical to that of riboflavin. SDS gel filtration of subcellular fractions of rat liver revealed that riboflavin was the dominant flavin, whereas FAD and FMN were not detectable in the plasma membrane. Microsomes and mitochondria contain predominantly FAD and FMN, and only minor quantities of riboflavin. The presence of riboflavin in the plasma membrane is a novel finding, the functional significance of which is still unclear; however, a hypothesis can be forwarded on the basis of the ability of flavins to generate superoxide anion radicals during their autoxidation.

Animals

Bioactivity of synthetic C-terminal fragment of rat pancreastatin on endocrine pancreas.

A C-terminal fragment of rat pancreastatin, 26-residue peptide amide was synthesized by the Fmoc-based solid phase method and its biological activity was evaluated for the first time in the conscious rat. Rat pancreastatin inhibited glucose-stimulated insulin secretion and elevated blood glucose levels in a concentration of 10 nmol/kg/h. The relative molar potency of that of porcine is equivalent. This study suggests that the synthetic rat pancreastatin has a biological activity, and may play a physiological role in the endocrine pancreas.

Animals

Lipofuscin-like substances accumulate rapidly in brain, retina and internal organs with cysteine protease inhibition.

The protease inhibitor, leupeptin, has been previously shown to cause an accumulation of lysosomally associated intracytoplasmic dense bodies resembling lipofuscin when administered intraventricularly to the brains of young rats (Ivy et al., Science, 226:985, 1984). These findings support the idea that lipofuscin formation during normal aging involves perturbed proteolytic degradation. In the current study, we delineate more precisely the proteolytic mechanisms in question and examine the effects of protease inhibition on other tissues and species. Four sets of experiments were done. In the first, rats were administered leupeptin (L; an inhibitor of cysteine and some serine proteases), E-64C (a cysteine protease inhibitor), chloroquine (C; a lysosomal enzyme inhibitor), aprotinin (A; a serine protease inhibitor) or physiological saline (S) into the lateral ventricle of the brain at a constant rate for two weeks using an osmotic mini-pump. In the second set, beagle dogs were administered L or S intraventricularly in a similar fashion. In the third set, young rats received intraocular injections of L, E64C, C, A or S from 1 to 9 days at 24 hr intervals. In the fourth set, young rats and mice were administered L, E-64C or S intraperitoneally via an osmotic mini-pump for 2 or more weeks. The tissue of all animals was processed for light and electron microscopy as well as for fluorescence analysis. In rat brain cells (especially hippocampus and cerebellum), substances which by morphological, histochemical and fluorescence emission criteria resemble lipofuscin, accumulated following L, C or E64C, but not A or S treatment. A similar buildup of lipofuscin-like substance occurred in canine brain following L but not S infusion. In retinal pigment epithelial cells, undigested rod outer segment discs accumulated after L, C or E-64C and possibly A, but not after S injections. With increasing survival times, the accumulated substances became morphologically more similar to lipofuscin. Cells of liver (both hepatocytes and non-parenchymal cells) and kidney (mainly renal tubule cells) also accumulated substances resembling lipofuscin in response to L but not S infusion; other internal organs were differentially affected. These results demonstrate 1) that specific inhibition of cysteine proteases is sufficient to cause accumulation of lipofuscin-like substances in brain and retina and 2) that several species and organ systems are similarly affected by protease inhibition. Taken together, these findings are consistent with the idea that defective or decreased proteolysis by lysosomal cysteine proteases is responsible for lipofuscin accumulation during normal aging.

Aging

Morphological, physiological and biochemical alterations in livers of rodents induced by protease inhibitors: a comparison with old livers.

A "Protease inhibitor model of aging" has been proposed primarily based on observations on brain tissues exposed to a thiol protease inhibitor, leupeptin (Ivy et al., 1984a). In order to validate this model in terms of a mechanism of cellular aging, as well as of lipofuscin formation in particular, attempts have been made to induce lipofuscin in hepatocytes in young rodent (rat and mouse) livers by continuous i.p. infusion of two different thiol protease inhibitors, leupeptin and E-64C. With doses of leupeptin higher than 1.0 mg/100g/day for 2 wks, a fine granular lipofuscin-like deposition with distinct yellowish-green fluorescence was induced in young rat hepatocytes. The deposition became greater in degree with increasing leupeptin doses. In Kupffer cells and other endothelial cells, fluorescent granules were also induced. In contrast to rat livers, lipofuscin-like pigments induced in hepatocytes in mice were much less, even with a higher dose (20 mg/100 g/day). E-64C also induced the accumulation of lipofuscin-like pigments at a dose of 5 mg/100 g/day, their characteristics being very similar to those induced by leupeptin, but the accumulation being smaller in degree. The fluorescence of leupeptin induced lipopigments was yellowish-green having a peak around 520 nm in emission profile, closely resembling that observed in old rat livers. The hepatobiliary transport functions such as biliary transport maximum (Tm) for sulfobromophthalain and the biliary recovery of iv injected ouabain which are known to decline with age tended to decline in young (6-wk-old) rats administered with leupeptin at a dose of 5 mg/100 g/day for 2 wks. On the other hand, dolichol concentration in leupeptin treated livers was not increased in comparison to control livers, whereas in old rat livers, the dolichol concentration was more than 2 times greater than in young livers. A clear-dose-dependent deposition of ceroid-lipofuscin induced in young rodent livers by protease inhibitors strongly suggests that the "Protease inhibitor model" is generally valid not only for the brain but for other tissues such as the liver, and for two different thiol protease inhibitors.

Aging

Involvement of pancreatic polypeptide (PP) in luminal feedback regulation in the conscious rat.

The possibility of the involvement of pancreatic polypeptide (PP) release in luminal feedback regulation in the conscious rat was examined. Pancreatic secretion in the intestinal phase in the rat is regulated by negative feedback control so that a decrease in luminal protease activities produced by a diversion of bile-pancreatic juice (BPJ) from the intestine stimulates pancreatic secretion. Plasma concentration of rat PP and the effect of exogenous infusion of rat PP on pancreatic secretions during BPJ diversion were determined. Plasma PP concentration significantly increased with BPJ diversion and peaked at 90 min after BPJ diversion began, almost paralleling changes in protein output. Exogenous PP infusion (1, 2 and 10 micrograms/kg/hr) inhibited pancreatic protein and fluid outputs but not the bicarbonate output during BPJ diversion. PP was shown to be physiologically released in the intestinal phase of pancreatic secretion; however, the physiological role of endogenous PP remains unknown.

Animals

Aging and pancreatic exocrine function. Studies in female conscious rats.

Basal pancreatic exocrine functions as well as responses to endogenous (BPJ diversion) and exogenous (injection of CCK-8 or secretin) stimulations were examined in young (6- and 12-month-old) and old (24- to 26-month old) female Fischer 344 rats. Basal secretions were not significantly different between young and old rats. BPJ diversion significantly stimulated pancreatic secretions of fluid, bicarbonate, and protein in all animals. The pancreatic protein response (mg/kg/hr) to BPJ diversion was significantly attenuated with respect to age [57.59 +/- 16.16, 43.73 +/- 6.94, and 20.75 +/- 3.95, for 6-, 12-, 24- to 26-month-old rats, respectively, mean +/- SE, F(2,20) = 3.49, P less than 0.05]. The pancreatic responses to secretin (0.086, 0.432, and 1.728 nmol/kg) were not significantly different between young and old rats. Intravenous injection of CCK-8 (0.033, 0.167, and 0.667 nmol/kg) produced a significant increase in protein output in all age groups. In young animals, stepwise increases in protein output were observed, whereas, in old rats, increments in response to the larger two doses of CCK-8 (0.167 and 0.667 nmol) were smaller than that produced by 0.033 nmol/kg of CCK-8. In conclusion, the basal secretions in old rats were comparable with those in young ones, but the reserve capacity for protein secretion appears to decrease in old compared to young rats.

Aging

Hepatic biotransformation and choleretic effect of 7-ketolithocholic acid in the rat.

Hepatic biotransformation and the effect on bile flow of 7-ketolithocholic acid (7-oxo-3 alpha-hydroxy-5 beta-cholan-24-oic acid), in comparison to ursodeoxycholic acid, were examined in rats under conditions of continuous infusion of solutions of sodium salts of these bile acids (1.2 mumol/min/100 g body wt) for 2 hr. Both bile salts elevated the bile flow rate as well as the bile bicarbonate concentration to a similar degree. The minor difference observed was a transient (10-20 min) and subtle drop of bile flow during the first hour in rats given 7-ketolithocholate. In ursodeoxycholate infused rats, the major bile salt in the bile was its taurine conjugate, although excretion of tauroursodeoxycholate dropped considerably during the second hour. In 7-ketolithocholate infused rats, the major bile salt in the bile was again its taurine conjugate, but ursodeoxycholate and chenodeoxycholate and their conjugates were also excreted. In contrast to ursodeoxycholate infused rats, the drop in excretion of taurine conjugates and the increase of glycine conjugates in rats infused with 7-ketolithocholate were more rapid. In rats infused with 7-ketolithocholate, excretion of ursodeoxycholate and its conjugates was significantly higher than the corresponding values for chenodeoxycholate, suggesting that 7-ketolithocholate is reduced predominantly to the 7 beta-epimer in this species. However, the concentration of ursodeoxycholate and its conjugates excreted into the bile in rats infused with 7-ketolithocholate was only 10% of that of rats infused with ursodeoxycholate, yet the magnitude of choleresis and the rise in bile bicarbonate concentration were similar in both experiments.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Influence of bile flow obstruction vs bile diversion on pancreatic secretion in the conscious rat.

Changes in pancreatic exocrine functions were compared between conscious rats with bile duct ligation and bile diversion from the duodenum on the first, third, fifth, and seventh postoperative days. Body weight was significantly decreased with time in both groups. Basal secretions of fluid, bicarbonate, and protein remained unchanged throughout the experimental period in bile duct ligated rats, whereas in bile diverted rats, the basal bicarbonate secretion with returning of pancreatic juice to the duodenum increased on the third postoperative day, and the basal protein output significantly increased with time. Basal secretions with returning of pancreatic juice to the duodenum in both groups were higher than that in control (bile and pancreatic juice returned to the intestine) rats. Stepwise increases in fluid and bicarbonate outputs responding to the graded doses of secretin were observed in bile duct ligated rats on the first and third postoperative days, as has been observed in bile diverted rats. However, on the fifth and seventh postoperative days, stepwise responses to graded doses of secretin were no longer observed in bile duct ligated rats. The pancreatic response to cerulein was greater in bile diverted rats than in bile duct ligated rats. Plasma CCK concentration in 7-d bile duct ligated rats (4.7 pM) was significantly higher than that in 7-d bile diverted rats (1.6 pM), although the pancreatic wet weight, protein concentration, and total content were comparable for the two groups. It was suggested that the presence of bile in the duodenum is required to maintain normal pancreatic secretion, and that the removal of bile from the intestine has quite different effects, depending on whether the bile flow is obstructed or diverted.

Analysis of Variance

Effects of synthetic human gastrin-releasing peptide on pancreatic exocrine secretion and release of pancreatic polypeptide in conscious rats.

The effects of a newly synthesized peptide, human gastrin-releasing peptide (hGRP), on the pancreatic exocrine secretion and the release of pancreatic polypeptide (PP) were examined in the conscious rat. Plasma PP concentrations were determined by a recently established specific radioimmunoassay for rat PP. Amounts of 0.18, 0.35, and 3.5 nmol/kg/h hGRP significantly stimulated both pancreatic exocrine secretion and 0.35 nmol/kg/h of hGRP increased PP release. Simultaneously infused proglumide (300 mg/kg/h) did not affect either pancreatic exocrine secretion or PP release. However, simultaneous infusion of atropine (100 micrograms/kg/h) slightly inhibited PP release, but did not restrict the incremental response of pancreatic protein secretion to hGRP. These results suggest that hGRP directly stimulates pancreatic exocrine secretion and PP release.

Animals

Redistribution of haloperidol after electroshock: experimental evidence.

We have previously reported that plasma and red blood cell levels of haloperidol, a neuroleptic agent, significantly increased immediately after electroconvulsive shock therapy (ECT) in schizophrenic patients on long term haloperidol treatment. To elucidate the mechanism of this increase, we attempted to reproduce this phenomenon in female Wistar rats. After 4 successive days of ip administration of haloperidol (10 mg/kg body weight, once daily), rats were given ECT through corneal electrodes on the fifth day (a.c. 50 Herz, 55 mA, 2.0 sec). Haloperidol levels were determined in plasma and other major tissues using a radioreceptor assay for haloperidol distribution before and after ECT at appropriate time intervals. Plasma haloperidol level was significantly increased 1 min after ECT but tended to return to the control level (without ECT) after 5 min. A significant decrease in haloperidol concentration in tissues was not observed in any of the tissues examined including frontal cerebrum, striatum, and muscle tissues (gluteal muscles). However, the relatively high haloperidol level and the large volume of muscle tissues suggested that the muscle could be the source of the transient increase in haloperidol levels in plasma. This conclusion was also supported by the data showing no significant rise of plasma haloperidol level after ETC in rats previously given a muscle relaxant, succamethonium chloride.

Animals

Differences in the influence of diet on hepatic glutathione S-transferase activity and glutathione content between young and old C57 black female mice.

The effect of a protein-free diet (PFD) on hepatic activity of glutathione S-transferase (GST) and hepatic content of total glutathione (GSH) was examined in young (9-month-old), middle-aged (17-month-old) and old (27-month-old) C57BL/6CrS1c female mice. There were no significant differences in the control values of GSH or of enzyme activity for four of five substrates among young, middle-aged, and old animals fed normal diet (ND) only. Both GSH and GST activity were significantly decreased by the 7-day PFD in both young and old groups but the decrement was generally greater in old mice. After a 2-3-day refeeding of ND, young mouse enzyme activities were significantly higher than control (basal) values for all five substrates, whereas old mouse values were still significantly lower than corresponding control values. There was no overshooting of GSH levels after refeeding of ND in either young or old animals. This study indicates that an age difference in this detoxification system can be clearly demonstrated in the hepatic response to PFD feeding and especially to ND refeeding, despite the enzymes' stable basal activities with aging.

Aging

Effect of pancreastatin on pancreatic endocrine function in the conscious rat.

We have studied the effects of pancreastatin on insulin and glucagon secretions in vivo in the conscious rat. Rats were prepared with a gastric fistula and with both external jugular veins cannulated. We found that an i.v. infusion of pancreastatin (1 and 10 nmol/kg/h) inhibited the plasma insulin response and increased the plasma glucose response to the intragastric infusion of glucose in a dose-dependent manner. Furthermore, the infusion of pancreastatin increased the plasma glucagon response to the i.v. infusion of arginine in a dose-dependent manner, and it inhibited the plasma insulin response. However, such an infusion of pancreastatin had no effect on the basal plasma glucose level, nor did it have any effect on plasma insulin and glucagon concentrations. Thus, it is suggested that in the rat, the newly discovered pancreastatin is a regulator of islet cell function.

Animals

Inhibitory effect of pancreastatin on pancreatic exocrine secretion in the conscious rat.

The effect of newly discovered pancreastatin on pancreatic secretion stimulated by a diversion of bile-pancreatic juice (BPJ) from the intestine was examined in the conscious rat. Exogenous pancreastatin infusion (20, 100 and 200 pmol/kg.h) inhibited pancreatic protein and fluid outputs during BPJ diversion in a dose-dependent manner. Pancreastatin did not affect plasma cholecystokinin (CCK) concentrations. Pancreastatin (100 pmol/kg.h) inhibited CCK-stimulated pancreatic secretion, but did not inhibit secretin-stimulated pancreatic secretion. Pancreastatin alone, however, did not affect basal pancreatic secretion. In contrast, pancreastatin (10(-10)-10(-7)M) did not suppress CCK-stimulated amylase release from isolated rat pancreatic acini. These results indicate that pancreastatin has an inhibitory action on exocrine function of the pancreas. This action may not be mediated by direct mechanisms and nor via an inhibition of CCK release. It is suggested that pancreastatin may play a role in the regulation of the intestinal phase of exocrine pancreatic secretion.

Amylases

Age-related differences in the coordination disturbance and anticonvulsant effect of oxazepam in mice.

The effects of oxazepam on coordination and maximal seizure were compared between young (6-month-old) and old (24-month-old) BDF1 mice by using a rotorod test and a pentylenetetrazole (PTZ)-induced seizure test, respectively. The apparent sensitivity to oxazepam's anticonvulsant effect, as examined by its effect on PTZ-induced maximal seizure, was increased in old animals of both sexes in comparison to young ones. The effect of oxazepam on coordination was also significantly greater in old male mice as compared with the young. The results of the present study, together with our past observations on other anticonvulsants such as phenytoin and phenobarbital, strongly suggest that the anticonvulsant effect, as well as the effect on coordination, in mice generally increases with age.

Age Factors

Effect of centrophenoxine and BCE-001 treatment on lateral diffusion of proteins in the hepatocyte plasma membrane as revealed by fluorescence recovery after photobleaching in rat liver smears.

The average lateral diffusion coefficient of proteins (D) in the cell membrane of hepatocytes has been measured in liver smears by fluorescence recovery after photobleaching (FRAP), based on the so-called peroxide-induced autofluorescence (PIAF) deriving from the oxidation of riboflavin bound to membrane proteins. It has been previously shown that D displays a significant negative linear age correlation. The in vivo effects of two drugs were tested on this parameter. Young (2.7 months) and old (24-26 months) male rats received centrophenoxine (CPH) or a new drug (BCE-001) by either intraperitoneal (i.p.) injection or per os through a gastric tube for 26 to 42 days. D was measured on a double-blind basis in the hepatocyte plasma membrane of treated and control groups. The CPH and BCE-001 treatments did not affect the value of D in the young rats. However, the latter drug increased their growth rate. An increase of D in old animals was induced by treatment with either drug. When the drug effects in old rats were compared, BCE-001 proved to be more efficient than CPH, and at the same time was able to significantly retard the age-dependent loss of body weight characteristic of these animals at the age of approximately 2 years. Our results are in good accord with the predictions of the membrane hypothesis of aging as regards the role of properly placed OH. free radical scavengers in the improvement of membrane and overall cell function.

Aging

Age-dependence of the lateral mobility of proteins in the plasma membrane of hepatocytes of C57BL/6 mice: FRAP studies on liver smears.

Protein lateral diffusion in hepatocyte membranes was measured in 23 male and 16 female C57BL/6 mice in four groups of age 5 to 32 months by means of fluorescence recovery after photobleaching (FRAP). The peroxide-induced autofluorescence (PIAF) in H2O2 treated liver smears is due to the oxidation of flavins bound uniformly to all proteins of the cell membrane, i.e., an average lateral diffusion constant (D) of those proteins can be measured. D showed a negative linear age-correlation in both sexes: D male = (2.81 - 0.016X)10(-10), and D female = (2.67 - 0.020X)10(-10) cm2/sec, (r greater than 0.94), where X is the age in months. Sex differences are significant (p less than .001) in the intercept. Fractional recovery did not prove to be age-dependent; it was, on average, 91% in males and 100% in females. The findings agree well with the previously obtained data on Fischer 344 and Wistar rats, and strengthen the gerontological relevance of D.

Aging