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K Aragane

Publications and source records attributed to K Aragane.

At least 19 recordsLinked to original sources

Acyl-CoA:cholesterol acyltransferase inhibition reduces atherosclerosis in apolipoprotein E-deficient mice.

BACKGROUND: Acyl-COA:cholesterol acyltransferase (ACAT) converts cholesterol to cholesteryl esters. The form of ACAT in macrophages, ACAT1, contributes to foam cell formation in the arterial wall and the development of atherosclerosis. Recent studies in a mouse model of atherosclerosis (the apolipoprotein E [apoE]-deficient mouse), however, have suggested that complete deficiency of ACAT1 activity is not antiatherogenic, in part because of toxicity resulting from adverse effects on tissue cholesterol homeostasis. We have tested whether partial inhibition of ACAT1 and ACAT2 (expressed in liver and intestine) activities reduces atherosclerosis development in apoE-deficient mice and avoids toxicity. METHODS AND RESULTS: ApoE-deficient mice were maintained for 17 weeks on a Western-type diet without (control) or with the ACAT inhibitor F-1394 (effective against ACAT1 and ACAT2) at doses of either 300 (low) or 900 (high) mg/kg. Intimal lesion area at the aortic sinus in controls was 0.69+/-0.06 mm(2). F-1394 treatment significantly decreased lesional area by 39% (low) or 45% (high). F-1394 treatment also reduced lesional immunostaining for macrophages by 61% (low) or 83% (high). En face analysis showed that surface lipid staining in control aortas was 20.0+/-2.8%; F-1394 treatment reduced this by 46% (low) or 62% (high). There were no obvious signs of systemic or vessel wall toxicity associated with F-1394 treatment. CONCLUSIONS: Partial ACAT inhibition by F-1394 had antiatherogenic effects in apoE-deficient mice that were achieved without obvious toxicity. Partial ACAT inhibition may have therapeutic potential in the clinical treatment of atherosclerosis.

Animals↗

Effect of F-1394, an acyl-CoA:cholesterol acyltransferase inhibitor, on atherosclerosis induced by high cholesterol diet in rabbits.

Cholesterol-fed rabbits were used to study the anti-atherosclerotic effect of (1S,2S)-2-[3-(2,2-dimethylpropyl)-3-nonylureido]cyclohexane-1-yl 3-[(4R)-N-(2,2,5,5-tetramethyl-1,3-dioxane-4-carbonyl)amino]propionate (F-1394), an acyl-CoA:cholesterol acyltransferase (ACAT) inhibitor. To test its effect on the development of atherosclerosis, rabbits were fed a high-cholesterol diet (HCD) for 6 weeks, followed by regular chow (RC) for 12 weeks plus 0 or 100 mg/kg per day F-1394. Serum total cholesterol (TC) rose to approximately 2000 mg/dl on HCD and then declined gradually after the change in diet in both groups. F-1394 significantly reduced the extent of the atherosclerotic lesions and the total and esterified cholesterol contents of the aorta (by 57,38, and 59%, respectively), without affecting the serum TC level. To clarify whether F-1394 accelerates the regression of preexisting atherosclerosis, rabbits were fed HCD for the first 6 weeks and then RC for the next 6 weeks. Then, the rabbits were given 0 or 100 x 2 mg/kg per day F-1394 for another 12 weeks while on RC. F-1394 significantly reduced the extent of the atherosclerotic lesions and the total and esterified cholesterol content in the aorta (by 31, 31, and 43%, respectively), without affecting the serum TC level. These results demonstrate that F-1394 both prevents the formation of atherosclerosis and accelerates its regression without affecting the serum TC level, indicating that F-1394 acts directly on the arterial wall.

Animals↗

Direct effect of an acyl-CoA:cholesterol acyltransferase inhibitor, F-1394, on atherosclerosis in apolipoprotein E and low density lipoprotein receptor double knockout mice.

The acyl-CoA:cholesterol acyltransferase (ACAT) enzyme is thought to be responsible for foam cell formation and the subsequent progression of atherosclerosis. The apolipoprotein E and low density lipoprotein receptor double knockout (apoE/LDLr-DKO) mouse is an animal model that develops severe hyperlipidaemia and atherosclerosis. Here we have examined the effect of oral administration of an ACAT inhibitor, F-1394, on atherosclerosis in apoE/LDLr-DKO mice fed a regular chow diet. In en face analysis, a dose of 10, 30, or 100 mg kg(-1) day(-1) F-1394 for 10 weeks reduced the extent of lesions visible in the aorta by 24, 28 and 38%, respectively, as detected by staining with oil red O, without affecting serum cholesterol level in these mice. At the highest dose 100 mg kg(-1) day(-1) of F-1394, the reduction was statistically significant. For quantitative analysis of the cellular and non-cellular components comprising the lesions at the aortic sinus, the effects of an oral dose of 100 mg kg(-1) day(-1) F-1394 for 15 weeks were studied. There was a significant reduction (31.9%) in the oil-red O-stained area in cross-sections of the aortic sinus. In addition, the neointimal area, as well as levels of ACAT-1 protein tended to be decreased (15.2 and 25.8%, respectively, not significant). However, the areas containing macrophages, smooth muscle cells, and collagen were not affected by F-1394. In vitro, F-1394 attenuated foam cell formation in mouse peritoneal macrophages. These results indicate that ACAT may be primarily responsible for lipid accumulation in atherosclerotic lesions, and that its inhibition diminishes the lipid deposition via a direct effect on macrophages in the arterial wall.

Animals↗

Postprandial hyperlipidemia in Zucker diabetic fatty fa/fa rats, an animal model of type II diabetes, and its amelioration by acyl-CoA:cholesterol acyltransferase inhibition.

Postprandial hyperlipidemia (PH) is frequently observed in diabetic patients. We performed an oral fat-loading test in Zucker diabetic fatty (ZDF) fa/fa rats, a model for type II diabetes, to determine whether PH was induced in the rats. Post fat-loading changes in serum cholesterol and triglyceride levels were significantly greater in the fa/fa rats than those seen in their lean littermates and an acyl-CoA:cholesterol acyltransferase (ACAT) inhibitor significantly reduced these levels by 24% and 31%, respectively. Therefore, we confirmed that PH appeared in ZDF fa/fa rats by fat loading and ACAT inhibition may be a potential treatment for PH.

Animals↗

ACAT inhibitor F-1394 prevents intimal hyperplasia induced by balloon injury in rabbits.

Acyl-CoA:cholesterol acyltransferase (ACAT) is thought to contribute significantly to lipid deposition in macrophages, which subsequently leads to the initiation and progression of atherosclerosis. The aim of the present study was to examine the influence of hypercholesterolemia on arterial hyperplasia induced by endothelial denudation and the direct effect of ACAT inhibition on lesion formation. Rabbits were fed either a cholesterol diet or a regular diet for 4 weeks, and then the left common carotid arteries were denuded of endothelium. After the operation, all rabbits were kept on the regular diet for 2;-6 weeks. Two weeks after the denudation, the degree of intimal thickening and the number of proliferating cells (which were immunohistologically identified to be smooth muscle cells) were similar in hypercholesterolemic and normolipidemic rabbits. After that, both parameters progressively increased in hypercholesterolemic rabbits but declined in normolipidemic rabbits. Macrophages were apparent in the lesions only in hypercholesterolemic rabbits. Next, the effect of the ACAT inhibitor, (1S,2S)-2-[3-(2,2-dimethylpropyl)-3-nonylureido] cyclohexane-1-yl 3-[(4R)-N-(2,2,5,5-tetramethyl-1,3-dioxane-4-carbonyl)amino]propionate (F-1394), on neointimal formation in hypercholesterolemic rabbits was examined. Oral administration of F-1394 significantly reduced neointimal thickening and the extent of macrophages in lesions without affecting serum cholesterol levels. These results suggest that hypercholesterolemia causes macrophage-derived foam cell accumulation in lesions, and that the progression of lesions is accelerated by the presence of macrophages. Moreover, the study shows that F-1394 prevents neointimal formation even in the presence of hypercholesterolemia, indicating that F-1394 may be useful for treating restenosis after percutaneous translumenal coronary angioplasty in hyperlipidemic patients.

Animals↗

[Toxocariasis].

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Animals↗

[A case of Mycobacterium intracellulare infection complicated by immotile cilia syndrome].

A 25-year-old woman with a history of immotile cilia syndrome (ICS) was admitted to our hospital with dyspnea. Chest roentgenography revealed dense infiltrates in both lower lung fields in addition to bronchiectasis and small nodular opacities, which had been observed previously. Transbronchial lung biopsy demonstrated evidence of non-caseating epithelioid cell granuloma. Sputum specimens were examined, and isolates were identified as Mycobacterium intracellulare. The patient was given antituberculous therapy and clarithromycin, which induced clinical improvement. It is well known that bronchial mucociliary transport is severely impaired in patients with ICS. However, to our knowledge, cases of M. intracellulare infection complicated by ICS have not been reported in Japan. We must pay close attention to the concurrence of these diseases.

Adult↗

Postprandial hyperlipidemia in streptozotocin-induced diabetic rats is due to abnormal increase in intestinal acyl coenzyme A:cholesterol acyltransferase activity.

Postprandial hyperlipidemia (PH) is recognized as a significant risk factor for cardiovascular disease. The present study, involving rats with streptozotocin (STZ)-induced diabetes, was performed to establish a PH model and to examine the relation between small intestinal acyl-coenzyme A:cholesterol acyltransferase (ACAT) activity and serum lipid levels in the postprandial state. The small intestinal ACAT activities in normal rats during the experimental period were 4 to 5 pmol/mg protein per minute. In contrast, in the diabetic rats, the ACAT activities were 2 to 3 times higher than activities seen in normal rats from 7 to 21 days after the STZ injection in the absence of a high fat diet and hyperplasia in the gut. In an oral fat-loading test that used diabetic rats that had been injected with STZ (60 mg/kg) intravenously 14 days previously, the postloading changes in the serum concentrations of total cholesterol (TC) and triglyceride (TG) were significantly greater in the diabetic rats than in normal rats. Single oral administration of (1s,2s)-2-[3-(2,2-dimethylpropyl)-3-nonylureido]cyclohexane- 1-yl 3-[(4R)-N-(2,2,5,5-tetramethyl-1, 3-dioxane-4-carbonyl)amino]propionate (F-1394, 3 to 30 mg/kg), a potent ACAT inhibitor, suppressed the post-fat-loading elevation of serum TC levels in the diabetic rats in a dose-dependent manner without affecting serum glucose levels. Furthermore, the small intestinal ACAT activity, serum TG levels, and lymphatic absorption of TC and TG in the rats that were administered F-1394 (30 mg/kg) were reduced by approximately 90%, 70%, 30%, and 15%, respectively. This is the first evidence that elevated ACAT activity in the gut, unlike hyperplasia and hyperphagia, induces PH in rats. Our results strongly suggest that F-1394 may be a potential treatment for PH in humans.

Animals↗

[Nedaplatin and etoposide combination chemotherapy in a patient with small cell carcinoma undergoing hemodialysis].

A 61-year-old man with chronic renal failure caused by polycystic kidney disease requiring hemodialysis three times weekly developed small cell carcinoma of the lung. The patient received combination chemotherapy with nedaplatin (50 mg) and etoposide (50 mg). Blood levels were monitored, showing that nedaplatin was more dialyzable than cisplatin. The patient achieved a complete response. These results suggest that nedaplatin-etoposide combination chemotherapy may be safer than cisplatin-containing regimen for patients with chronic renal failure hemodialysis and that a satisfactory response can be expected.

Antineoplastic Combined Chemotherapy Protocols↗

Enhanced expression of hepatic acyl-coenzyme A synthetase and microsomal triglyceride transfer protein messenger RNAs in the obese and hypertriglyceridemic rat with visceral fat accumulation.

The liver plays a central role in lipoprotein metabolism. In particular, very-low density lipoprotein (VLDL) is assembled in the hepatocytes and secreted into the blood circulation. The VLDL is then catabolized to low-density lipoprotein by lipoprotein lipase and hepatic triglyceride lipase. Obese subjects, especially those with visceral fat accumulation, are frequently associated with hyperlipidemia, non-insulin-dependent diabetes mellitus (NIDDM), and hypertension. The mechanism of hyperlipidemia in visceral fat obesity has not yet been elucidated. Otsuka Long-Evans Tokushima Fatty (OLETF) rat is an animal model of NIDDM, characterized by obesity with visceral fat accumulation, hyperlipidemia, and late-onset insulin resistance. To elucidate the mechanism of hyperlipidemia observed in OLETF rats, we focused on the production of VLDL by the liver and investigated hepatic messenger RNA (mRNA) levels of microsomal triglyceride transfer protein (MTP), acyl-coenzyme A synthetase (ACS), and apolipoprotein B (apo B), which play important roles in VLDL synthesis and secretion. In 6-week-old OLETF rats, in which insulin resistance had not been manifested, visceral fat weight was already higher and portal free fatty acid (FFA) and VLDL-triglyceride levels were elevated compared with the control rats. Hepatic ACS activity and mRNA levels, and MTP mRNA levels were also increased in OLETF rats, whereas apo B mRNA levels were similar; these results suggest that the enhanced expression of both ACS and MTP genes associated with visceral fat accumulation before developing insulin resistance may be involved in the pathogenesis of hyperlipidemia in obese animal models with NIDDM.

Adipose Tissue↗

Effects of F-1394, an acyl-CoA:cholesterol acyltransferase (ACAT) inhibitor, on ACAT activity in HepG2 cells and on hepatic secretion of lipids in Triton WR-1339-induced hyperlipidemic rats: possible role of hepatic ACAT in very low density lipoprotein secretion.

We examined the inhibitory potency of F-1394 ((1S,2S)-2-[3-(2,2-dimethylpropyl)-3-nonylureido]cyclohexane -1-yl 3-[(4R)-N-(2,2,5,5-tetramethyl-1,3-dioxane-4-carbonyl)amino]propionate), an acyl-CoA:cholesterol acyltransferase (ACAT) inhibitor, on ACAT activity and its hypolipidemic effect. F-1394 inhibited whole-cell ACAT activity in HepG2 cells with an IC50 value of 42 nM. The potency of F-1394 was greater than that of the five other ACAT inhibitors tested (YM-17E, CI-976, 57-118, CL-277,082 and DL-melinamide). In rats made hyperlipidemic by Triton WR-1339, F-1394 caused a reduction in the hepatic secretion rate of cholesterol. These data suggest that inhibition of hepatic ACAT activity helps to reduce very low density lipoprotein secretion from the liver into the circulation.

Animals↗

P3 latency change in aging and Parkinson disease.

OBJECTIVE: To evaluate whether age-related slowing of mental processing assessed by event-related potentials is more prominent in patients with Parkinson disease (PD) than in age-matched control subjects. DESIGN: Consecutive case series of patients with PD and an age-matched control group. SETTING: A university hospital in Nishinomiya, Japan. STUDY PARTICIPANTS: Twenty-eight nondemented patients with PD and 28 age-matched control subjects. MAIN OUTCOME MEASURES: The P3 component of the event-related potentials was elicited during a visual semantic discrimination task. The relation of the P3 latency and the reaction time (RT) to age within each group was evaluated using correlation and regression analysis. The relationship among the P3 latency, the RT, and age was also assessed by dividing both groups into younger (age < 60 years) and older (age > or = 60 years) subgroups. RESULTS: The P3 latency and the RT of patients with PD were significantly longer than those of the control subjects (P < .01 and P < .02, respectively). There was a significant correlation between the P3 latency and age in both the parkinsonian and control groups (P < .01 and P < .05, respectively). The slope (b = 3.54 ms/y) of the P3 latency vs age was steeper among the patients with PD than among the control subjects (b = 1.66 ms/y) at the Pz site. The P3 latency in the older parkinsonian group (n = 16) was significantly prolonged compared with that in the older control group (n = 16) (P < .01), while no difference was found between the younger patients (n = 12) and the younger control group (n = 12). Similar trends were found for the RTs (P < .05). Neither the P3 latency nor the RT was correlated with any variable (eg, medication, mental status, illness duration, or motor disability). CONCLUSION: The results provide evidence that patients with PD experience excessive cognitive slowing with advancing age.

Adult↗

Electrophysiological analysis of cognitive slowing in Parkinson's disease.

To analyze chronometrically the evidence for possible cognitive slowing in Parkinson's disease, we measured visual event-related potentials (ERPs) and reaction times (RTs) in 29 patients with nondemented Parkinson's disease and 19 age-equivalent normal controls during the performance of semantic discrimination tasks. The components of the N1, P2, NA, N2 and P3 and simple and GO/NOGO RTs were observed. The N2 was measured from difference waveforms, subtracting the ERPs to frequent stimuli from those to infrequent stimuli in the discrimination task. Difference waveforms were also derived to delineate NA by subtracting the ERPs in the simple RT task from those of the frequent stimuli of the discrimination task. The N2 and P3 latencies and GO/NOGO RT in patients with Parkinson's disease were significantly longer than those in the controls, although there were no differences in N1, P2 and NA latencies or simple RT between the two groups. The results are interpreted as electrophysiological signs of cognitive slowing, particularly with respect to stimulus classification and attention processes in Parkinson's disease, independent of sensory problems. As for the automatic/controlled processes, the present results suggest that the automatic processing stage associated with NA may be less impaired than the attention-controlled processing reflected by N2 in patients with Parkinson's disease.

Adult↗

[Hypolipidemic action of F-1394, an acyl-CoA: cholesterol acyltransferase (ACAT) inhibitor, in high-fat diet fed beagle dogs].

In the present study, we investigated the hypolipidemic effect of F-1394, a potent and selective inhibitor of acyl-CoA: cholesterol acyltransferase (ACAT), in dogs fed with a high-fat diet consisting of regular foods, 5% cholesterol and 16% fat. The serum cholesterol levels in dogs reached the steady-state 1 week after the start of feeding of a high-fat diet and were about 2-fold greater than those in normolipidemic dogs. Graded administration of the doses of F-1394 (1-30 mg/kg/d) to the dogs fed with a high-fat diet prevented the elevation of serum cholesterol levels. In the hyperlipidemic dogs fed with a high-fat diet for 14 d before the start of the administration of F-1394, the oral administration of F-1394 at a dose of 1, 3 or 10 mg/kg/d for 21 d reduced the serum cholesterol levels in a dose-dependent manner. The estimated ID50 value was 7.2 +/- 0.3 mg/kg/d p. o. (12.1 +/- 0.5 mol/kg/d p. o.). F-1394 did not affect the body weight and no diarrhea was observed by the administration of F-1394. F-1394 at a dose of 10 mg/kg/d or more also significantly inhibited the increase of serum triglyceride levels 3 h after the feeding of high-fat diet. These results suggest that F-1394 inhibits the ACAT activity in the canine small intestine and, subsequently, the inhibition of ACAT activity contributes much to the prevention of cholesterol absorption via the gut, resulting in a decrease in serum cholesterol levels in the dogs fed with high-fat diet. Furthermore, F-1394 may also have an inhibitory effect on the triglyceride absorption via the gut, and the therapeutical use for postprandial hypertriglyceridemia is expected.

Animals↗

[Effect of F-1394, a potent and selective inhibitor of acyl-CoA:cholesterol acyltransferase (ACAT), on esterification of cholesterol and basolateral secretion of cholesteryl ester in Caco-2 cells].

The present study was conducted to investigate the inhibitory effect of F-1394, a potent and selective inhibitor of acyl-CoA:cholesterol acyltransferase (ACAT), on incorporation of 14C-oleic acid into cholesteryl ester in cultured Caco-2 cells, a human intestinal cell line, and compare its effect to those of other ACAT inhibitors and hypolipidemic agents. The cholesterol esterification in Caco-2 cells was strongly inhibited by F-1394 in a concentration-dependent manner with the estimated IC50 value of 71 nM. In contrast, the estimated IC50 values of the other ACAT inhibitors such as YM-17E, CI-976, CL-277,082 and DL-melinamide are 121 nM, 702 nM, 21.5 microM and 20.9 microM, respectively. Simvastatin, a 3-hydroxy-3-methylglutaryl-CoA reductase inhibitor, also inhibited the ACAT activity in Caco-2 cells with an IC50 value of 22.5 microM, whereas pravastatin Na, probucol and clofibrate did not affect the activity. Furthermore, F-1394 at a concentration of 100 nM inhibited the basolateral secretion of cholesteryl ester by 90% from differentiated Caco-2 cells that were cultured on a membrane filter. These results demonstrate that F-1394 strongly inhibits human intestinal ACAT activity and basolateral secretion of cholesterol from Caco-2 cells. Therefore, F-1394 may have a therapeutic potential for dietary hyperlipidemic subjects.

Anilides↗

Event-related potentials in patients with cerebellar degeneration: electrophysiological evidence for cognitive impairment.

We measured event-related potentials and reaction times during semantic discrimination tasks in 8 patients with cerebellar degeneration and in 10 normal subjects. The NA, N2 and P3 latencies of patients were significantly longer in patients, whereas N1 and P2 latencies did not differ between both groups. There was also no difference in the simple and GO/NOGO reaction times. These results suggest that these patients' impairment in cognitive information processing arose from a difficulty in pattern recognition of the stimuli represented by the NA component. These data also support the notion that the cerebellum plays a role in cognitive information processing.

Adult↗

Studies on acyl-CoA: cholesterol acyltransferase (ACAT) inhibitory effects and enzyme selectivity of F-1394, a pantotheic acid derivative.

(1s,2s)-2-[3-(2,2-Dimethylpropyl)-3-nonylureido]aminocyclohe xane-1-yl 3-[N-(2,2,5,5-tetramethyl-1,3-dioxane-4-carbonyl)amino]propionate (F-1394), a pantotheic acid derivative, is a newly synthesized inhibitor of acyl-CoA:cholesterol acyltransferase (ACAT). In the present study, we investigated the inhibitory effects of F-1394 on the activities of ACAT. F-1394 reduced the ACAT activities in rat liver microsomes, homogenate of rabbit small intestinal mucosa and lysate of J774 macrophages with IC50 values of 6.4 nM, 10.7 nM and 32 nM, respectively. The kinetic studies showed that F-1394 exerted competitive-type inhibition, and the Ki values in liver and small intestinal ACAT were 4.0 nM and 9.9 nM, respectively. The inhibitory effects of F-1394 on the activity of ACAT were more potent than that of other ACAT inhibitors or hypolipidemic agents. The study on enzyme selectivity indicated that F-1394 did not affect 3-hydroxy-3-methylglutaryl CoA reductase, acyl-CoA synthetase and cholesterol esterase. F-1394 weakly inhibited the activity of lecithine:cholesterol acyltransferase (LCAT) originating from rat plasma. The inhibitory potency of F-1394 for the activity of liver microsomal ACAT was 4,690-fold stronger than that for the activity of LCAT. These findings indicate that F-1394 is a potent and selective inhibitor of ACAT, and its inhibition manner is the competitive type.

Animals↗