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X M Pan

Publications and source records attributed to X M Pan.

At least 37 records · Page 2Linked to original sources

Exposure to cigarette smoke delays the plasma clearance of chylomicrons and chylomicron remnants in rats.

We investigated the effects of cigarette smoke exposure on the clearance of chylomicrons (CM) and CM remnants in rats after administration of a fat-containing meal. There was a decrease in clearance of both postprandial CM and exogenous radiolabeled CM in smoke-exposed animals. For exogenous CM, clearance (t1/2) increased significantly for both triglyceride and cholesterol labels and correlated with the delay in liver uptake. This decrease in lipid clearance could not be explained by decreased lipoprotein lipase (LPL) activity because smoke exposure resulted in a significant increase in LPL activity. When the hydrolysis of CM by endothelial LPL was tested in a heart perfusion system, there was no difference in CM hydrolysis between the two groups. Hepatic lipase activity was also unchanged in smoke-exposed animals. However, there was a significant delay in the CM remnant uptake into livers isolated from smoke-exposed rats. Thus the delay in CM clearance in smoke-exposed animals cannot be attributed to reduced lipase activities but results from impaired hepatic uptake of CM remnants.

Animals↗

Kinetic differentiation between ligand-induced and pre-existent asymmetric models.

Negative cooperativity can be accounted for either by the pre-existent asymmetry model or by the ligand-induced sequential model. It is virtually impossible to deduce the mechanism of negatively cooperative interaction solely from the binding curves. Distinguishing between these two possible mechanisms for negative cooperativity usually requires experiments other than equilibrium binding. In the present communication, a kinetic method is proposed to distinguish between these two possible mechanisms for negative cooperativity. As an example of use of the new method, experimental data for the modification of creatine kinase by 5,5'-dithiobis-2-nitrobenzoic acid were taken from literature and reanalyzed by using the present method. The result indicates that under conditions in which creatine kinase forms the postulated 'transition state analogue' complex, the two subunits in the enzyme molecule have different tertiary structures and behave as different types of subunit.

Creatine Kinase↗

LIF and CNTF, which share the gp130 transduction system, stimulate hepatic lipid metabolism in rats.

We determined the effects of leukemia inhibitory factor (LIF) and ciliary neurotrophic factor (CNTF) on lipid metabolism in intact rats. Administration of LIF and CNTF increased serum triglycerides in a dose-dependent manner with peak values at 2 h. The effects of LIF and CNTF on serum cholesterol were very small, and serum glucose was unaffected. Both LIF and CNTF stimulated hepatic triglyceride secretion, hepatic de novo fatty acid synthesis, and lipolysis. Pretreatment with phenylisopropyl adenosine, which inhibits lipolysis, partially inhibited LIF- and CNTF-induced hypertriglyceridemia. Interleukin-4, which inhibits cytokine-induced hepatic fatty acid synthesis, also partially inhibited LIF- and CNTF-induced hypertriglyceridemia. These results indicate that both lipolysis and de novo fatty acid synthesis play a role in providing fatty acids for the increase in hepatic triglyceride secretion. Neither indomethacin nor adrenergic receptor antagonists affected the hypertriglyceridemia. The combination of LIF plus CNTF showed no additive effects consistent with the action of both cytokines through the gp130 transduction system. Thus LIF and CNTF have similar effects on lipid metabolism; they join a growing list of cytokines that stimulate hepatic triglyceride secretion and may mediate the changes in lipid metabolism that accompany the acute phase response.

Animals↗

Oxidized lipids in the diet accelerate the development of fatty streaks in cholesterol-fed rabbits.

Studies have indicated that oxidized lipoproteins may play a role in atherosclerosis. We have recently demonstrated that the levels of oxidized lipoproteins in the circulation can be directly correlated to the quantity of oxidized lipids in the diet. The present study tested the hypothesis that dietary oxidized lipids accelerate the development of atherosclerosis. For 12 to 14 weeks, 36 male New Zealand White rabbits were fed a low-cholesterol (0.25%) diet containing either 5% unoxidized corn oil (control diet) or 5% oxidized corn oil (oxidized-lipid diet). Serum cholesterol levels increased to a similar extent in both groups, with the majority of the cholesterol in the beta-migrating very low density lipoprotein (beta-VLDL) fraction. Beta-VLDL from control animals contained 3.86+/- 0.57 versus 9.07 +/- 2.14 nmol conjugated dienes per micromol cholesterol (P<.05) in rabbits fed the oxidized-lipid diet. No difference in oxidized lipid levels was detected in LDL. Most important, feeding a diet rich in oxidized-lipid resulted in a 100% increase in fatty streak lesions in the aorta. Additionally, rabbits that were fed the oxidized-lipid++ diet had a >100% increase in total cholesterol in the pulmonary artery that was primarily due to an increase in cholesteryl ester. Oxidized lipids are frequently present in the typical US diet, and our results suggest that consumption of these foods may be an important risk factor for atherosclerosis.

Animals↗

Oxidized lipids in the diet are incorporated by the liver into very low density lipoprotein in rats.

Previous studies have shown that the quantity of oxidized lipids in the diet directly correlates with the level of oxidized chylomicrons in mesenteric lymph and the level of oxidized lipids in endogenous lipoproteins such as very low density lipoprotein (VLDL) and low density lipoprotein (LDL). The aim of the present study was to determine whether oxidized fatty acids in the diet are delivered via chylomicrons to the liver and whether these lipids are repackaged and secreted in VLDL. In these experiments, oxidized [14C]linoleic acid was utilized as a marker for oxidized dietary fats. When we determined the metabolism of nonoxidized and oxidized [14C]linoleic acid-labeled chylomicrons, we found that hepatic uptake was similar with 13.57 +/- 0.84% of nonoxidized and 13.40 +/- 0.96% of oxidized linoleic acid delivered to the liver 30 min after chylomicron administration. Additionally, uptake by the extrahepatic tissues was also similar. When the hepatic secretion of VLDL was determined in an in vitro perfusion system after the administration of nonoxidized and oxidized linoleic acid-labeled chylomicrons to intact animals, we found that oxidized linoleic acid was utilized for the formation and secretion of VLDL. After the administration of labeled nonoxidized and oxidized linoleic acid, 0.86 +/- 0.07% and 0.70 +/- 0.09% of the administered label was found in the liver perfusate at 2 h, respectively. The presence of oxidized linoleic acid in oxidized VLDL was confirmed by demonstrating the presence of hydroperoxide-derived hydroxy octadecanoic acid. Thus, our findings demonstrate that oxidized dietary lipids are delivered to the liver via chylomicrons where they are utilized for synthesis of endogenous lipoproteins such as VLDL.

Animals↗

Assessment of carotid artery stenosis by ultrasonography, conventional angiography, and magnetic resonance angiography: correlation with ex vivo measurement of plaque stenosis.

PURPOSE: Several studies have investigated the correlation between Doppler ultrasonography (DUS), angiography (CA), and magnetic resonance angiography (MRA) in the evaluation of stenosis of the carotid bifurcation. However, these studies suffer from the lack of a true control-the lesion itself-and therefore conclusions about the diagnostic accuracy of each method remain relative. To determine the absolute accuracy of these modalities, we have prospectively studied lesion size with DUS, MRA, and CA in 28 patients undergoing 31 elective carotid endarterectomies and compared the percent of carotid stenosis determined by each technique to the carotid atheroma resected en bloc. METHODS: All patients were evaluated by each modality within 1 month before the thromboendarterectomy. With DUS, stenosis size was determined by standard flow criteria. For angiography and MRA, stenosis was defined as residual lumenal diameter/estimated normal arterial diameter (European Carotid Surgery Trial criteria). At surgery the carotid atheroma was removed en bloc in all patients. Patients in whom the lesion could not be removed successfully without damage were excluded from the study. Stenosis of the atheroma was determined ex vivo with high-resolution (0.03 mm3) magnetic resonance and confirmed by acrylic injection of the specimen under pressure and measurement of the atheroma wall and lumen. RESULTS: The measurements of the ex vivo stenosis by high-resolution magnetic resonance imaging correlated closely with the size of stenosis determined by the acrylic specimen casts (r = 0.92). By ex vivo measurement, the lesions were placed in the following size categories: 40% to 59% stenosis (n = 2), 60% to 79% stenosis (n = 6), 80% to 89% stenosis (n = 7), and 90% to 99% stenosis (n = 16). CONCLUSIONS: In general, the correlation of measurements of ex vivo stenosis with all modalities was good in these severely diseased arteries, although it was better for DUS (r = 0.80; p < 0.001) and MRA (r = 0.76; p < 0.001) than for CA (r = 0.56; p < 0.05).

Aged↗

Keratinocyte growth factor increases fatty acid mobilization and hepatic triglyceride secretion in rats.

Keratinocyte growth factor (KGF) is a member of the fibroblast growth factor family that was originally identified as a keratinocyte mitogen after isolation from a lung fibroblast cell line. In this study, we demonstrate that administration of KGF to mice and rats elevates serum lipid levels. In rats, 1 h after KGF administration, serum triglyceride and FFA levels were increased, with peak values at 2 h (1.9-fold increase). The increase in serum triglyceride levels was sustained for at least 16 h. Serum cholesterol levels were also increased, but the effect was delayed beginning at 4 h, with peak values at 16 h (1.27-fold increase). KGF did not decrease the clearance of triglyceride-rich lipoproteins, but increased hepatic triglyceride secretion. KGF stimulated lipolysis, but not hepatic de novo fatty acid synthesis, and the increased delivery of FFA to the liver plays a crucial role in the KGF-induced hypertriglyceridemia. Neither alpha- nor beta-adrenergic receptor antagonists affected the hypertriglyceridemia induced by KGF, indicating that endogenous catecholamines are not involved in mediating KGF-induced hypertriglyceridemia. These results demonstrate that KGF induces hypertriglyceridemia by increasing hepatic triglyceride secretion, with the fatty acids provided by lipolysis making a major contribution. Thus, KGF could modulate lipid metabolism in vivo.

Animals↗

Lipoteichoic acid stimulates lipolysis and hepatic triglyceride secretion in rats in vivo.

The host response to infection is frequently accompanied by changes in lipid metabolism. Previous studies have shown that endotoxin (LPS), a component of the cell wall of gram-negative bacteria, increases serum lipid levels. In this study, we demonstrate that lipoteichoic acid (LTA), a component of the cell membrane of gram-positive bacteria, also increases serum lipid levels in rats in a dose-dependent manner (0.1-300 micrograms/200 g body weight). Serum triglyceride levels increased within 2 h after LTA administration with peak values at 4 h (2-fold increase). Serum cholesterol levels also increased but the effect was delayed occurring at 16 h and was relatively small (1.2-fold increase). LTA (10 micrograms/200 g BW) did not decrease adipose tissue lipoprotein lipase activity or the clearance of triglyceride-rich lipoproteins. Rather, the LTA-induced hypertriglyceridemia is due to an increase in hepatic triglyceride secretion. LTA stimulates both hepatic de novo fatty acid synthesis and lipolysis. The increased delivery of free fatty acids to the liver plays a major role in the LTA-induced hypertriglyceridemia. Pretreatment with phentolamine, an alpha-adrenergic receptor antagonist, and alprenolol, a beta-adrenergic receptor antagonist, or phentolamine alone significantly suppressed the hypertriglyceridemia induced by LTA. These adrenergic inhibitors had no significant effect on the increase in lipolysis. These results indicate that catecholamines are involved in mediating the LTA-induced increase in hepatic triglyceride secretion via alpha-adrenergic receptors. These changes in lipid metabolism may play an important role in the organism's response to gram-positive infection.

Adipose Tissue↗

Oxidized lipids in the diet are a source of oxidized lipid in chylomicrons of human serum.

We examined whether oxidized lipids in the diet determine the levels of oxidized lipid in human postprandial serum chylomicrons. After we fed subjects control corn oil containing low quantities of oxidized lipid, the levels of conjugated dienes in the chylomicron fraction were low (9.67 +/- 0.92 nmol/mumol triglyceride), and no thiobarbituric acid-reactive substances (TBARS) could be detected. However, when subjects were fed a highly oxidized oil, the conjugated diene content in chylomicrons was increased 4.7-fold to 46 +/- 5.63 nmol/mumol triglyceride, with 0.140 +/- 0.03 nmol TBARS/mumol triglyceride. When subjects were fed medium-oxidized oil, the degree of oxidation of the chylomicron lipids was moderately increased (21.86 +/- 2.03 nmol conjugated dienes/mumol triglyceride). Additionally, we found that chylomicrons isolated after ingestion of oxidized oil were more susceptible to CuSO4 oxidation than chylomicrons isolated after ingestion of the control oil. The lag time for oxidation decreased from 4.30 +/- 0.40 to 3.24 +/- 0.51 hours (P < .05). These data demonstrate that in humans dietary oxidized lipids are absorbed by the small intestine, incorporated into chylomicrons, and appear in the bloodstream, where they contribute to the total body pool of oxidized lipid.

Adult↗

Defective lipolysis persists in hearts of rats with heymann nephritis in the absence of nephrotic plasma.

Catabolism of triglyceride-rich lipoproteins, including chylomicrons (CM), is reduced in the nephrotic syndrome. It has been suggested that hyperlipidemia per se might lead to reduced CM catabolism by saturating catabolic sites. Evidence also implicates disordered high-density lipoprotein function as reducing the activity of lipoprotein lipase (LPL), the final effector of CM lipolysis. To establish whether CM lipolysis would be abnormal in the absence of either abnormal rat lipoproteins or hyperlipidemia, we measured CM lipolysis by isolated perfused hearts of rats with passive Heymann nephritis. We found that lipolysis was significantly reduced by 30% at 30 minutes (246 +/- 40 mumol v 164 +/- 10 mumol fatty acid released/hr, P < 0.05). Uptake of fatty acids was also significantly less in nephrotic hearts than in control hearts (7.25% +/- 0.93% of dose v 3.32% +/- 0.011% of dose, P < 0.01). Total heart LPL activity was reduced by 40% in hearts of nephrotic animals (368.5 +/- 39.4 mumol v 210.6 +/- 25.9 mumol free fatty acid released/hr/g heart, P < 0.01). The heparin-releasable LPL pool is that pool bound to the vascular endothelium and represents the biologically active fraction. We perfused hearts with heparin and found that heparin-releasable LPL was reduced by an order of magnitude in hearts from nephrotic rats (173 +/- 33 mumol v 19.4 +/- 11.7 mumol free fatty acid released/hr/heart, P < 0.001). The decrease in this pool represented nearly entirely the difference in total heart LPL in the two groups.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effect of dietary lipid peroxides on metabolism of serum chylomicrons in rats.

We have found that in rats the peroxide content of chylomicrons (CM) is determined by the lipid peroxide concentration in the diet, indicating that dietary lipid peroxides are incorporated into the lymph CM. Moreover, these incorporated lipid peroxides influence the normal CM metabolism. When radiolabeled CM were injected into rats, there was no difference in the initial plasma removal between CM prepared from oil with low peroxide content (control CM) and CM prepared from oil with high peroxide content (oxidized CM). However, the tissue distribution of the labels indicated that the hepatic uptake of CM decreased with increasing lipid peroxide content of CM. At 10 min after injection of CM, liver uptake of cholesterol label was 48.39 +/- 3.08% for control CM and 31.41 +/- 10.73% for oxidized CM. Vitamin E enrichment of control CM increased their hepatic uptake to 61.07 +/- 0.83%. Additionally, binding of oxidized CM to the heart endothelium increased from 2.55 to 3.60% compared with binding of control CM. When the hydrolysis of control and oxidized CM by endothelial lipoprotein lipase (LPL) was tested in a heart perfusion system, we found that after 30 min, 56.51 +/- 5.81% of control and 76.82 +/- 1.75% of oxidized CM were not hydrolyzed and remained in the perfusate. Thus our results indicate that the altered metabolism of oxidized CM may be related to a reduced hydrolysis rate by endothelial LPL.

Animals↗

The effect of oxidized lipids in the diet on serum lipoprotein peroxides in control and diabetic rats.

The levels of oxidized serum lipoproteins are increased in humans and animals with diabetes. We have examined the contribution of dietary oxidized lipids on the levels of oxidized lipoproteins. In both control and streptozocin induced diabetic rats, the oxidized lipid content of mesenteric lymph chylomicrons (CM) increased when increasing quantities of oxidized lipids were administered intragastrically. However, at all levels of administered oxidized lipids, the quantity of oxidized lipids in CM was greater in the diabetic animals. These results indicate that oxidized lipids are absorbed and packaged into CM and suggest that there is increased absorption of oxidized lipids in diabetic animals. In nondiabetic rats fed a fat-free diet, the levels of oxidized lipids in their serum lipoproteins were very low. When oxidized lipids were added to the diet, the quantity of peroxides in serum lipoproteins increased about fivefold. In diabetic animals fed a fat-free diet, there were also very low levels of oxidized lipids in their serum lipoproteins, and there was no difference between control and diabetic rats. However, when diabetic animals were fed a diet containing oxidized lipids, the quantity of oxidized lipids in their serum lipoproteins increased 16-fold and were significantly greater than in controls. Thus, in both control and diabetic rats the quantity of oxidized lipids in the diet largely determines the levels of oxidized lipids in circulating lipoproteins. However, in diabetic animals the effect of diet is more pronounced. Together with the CM studies, these results demonstrate that dietary oxidized lipids make a major contribution to the levels of oxidized lipids in circulating lipoproteins and indicate that increased absorption of oxidized lipids in diabetic animals may play a role in the elevation of oxidized lipoproteins observed in this disorder.

Animals↗

Cigarette smoke alters chylomicron metabolism in rats.

PURPOSE: Cigarette smoking may exert its atherogenic effect by delaying the plasma clearance of dietary fat and cholesterol, allowing more time for their interaction with the artery wall. To study the effects of smoke on chylomicron metabolism in rats, we examined the metabolic effects of smoke on both whole animals and chylomicron particles in vitro. METHODS: Carbon 14- and hydrogen 3-labeled chylomicrons were injected intravenously into smoke-treated rats and control rats that were not exposed to smoke (sham smoked). Plasma clearance, hepatic uptake, and heart binding were measured. In a second set of experiments, chylomicron particles were exposed to cigarette smoke in vitro by either: (1) passing smoke through chylomicrons suspended in saline solution (SCM) or (2) passing smoke through saline solution alone, then mixing the saline solution with chylomicrons (CM + SS). Normal (non-smoke exposed) rats were infused with either SCM, CM + SS, or control chylomicrons (CCM). Plasma clearance, hepatic uptake, and heart binding were again measured. RESULTS: The initial plasma clearance time of labeled chylomicrons did not differ between smoke-treated and control animals. However, hepatic uptake of chylomicron cholesterol was slower in smoke-treated animals (46.1% +/- 0.9% of injected dose) than in controls (61.5% +/- 2.1%, p < 0.001). In contrast, more labeled chylomicrons remained in the heart of smoke-treated rats than controls (0.89% +/- 0.18% vs 0.45% +/- 0.05%, p < 0.05). Disappearance of 14C-labeled cholesterol from blood was delayed in rats injected with SCM (half-life = 9.0 +/- 0.4 minutes) and CM + SS (half-life = 8.0 +/- 0.4 minutes), compared with the time in rats injected with CCM (6.6 +/- 0.3 minutes, p < 0.05). Hepatic uptake of SCM (40.6% +/- 1.9% of injected dose) and CM + SS (45.0% +/- 1.9%) was less than that of CCM (60.7% +/- 4.4%, p < 0.05). In addition, the binding to the heart increased from 0.97% +/- 0.29% (CCM) to 2.45% +/- 0.30% with the infusion of SCM (p < 0.05). The binding in the heart of CM + SS (0.95% +/- 0.04%) was not different from that of CCM. CONCLUSIONS: These data demonstrate for the first time that cigarette smoke exposure prolongs chylomicron residence time in tissues (heart) and delays hepatic uptake of chylomicron cholesterol in rats. The effect is present when either the animal or the chylomicron particle is exposed to smoke. We hypothesize that prolonged binding of relatively cholesterol-rich chylomicron remnants to endothelial surfaces could create a more atherogenic postprandial milieu.

Animals↗

Both peripheral chylomicron catabolism and hepatic uptake of remnants are defective in nephrosis.

We showed previously that proteinuria caused delayed chylomicron (CM) clearance in the rat and postulated the existence of a primary defect in CM hydrolysis. It was possible that reduced CM clearance resulted from increased lipogenesis causing saturation of catabolic sites and not from a primary defect in CM catabolism. To clarify this point we measured kinetically the absolute rate of triglyceride (TG) uptake from CM in rats with Heymann nephritis (HN) and normal Sprague-Dawley rats (SD) and determined TG uptake in individual tissues using [3H]TG- and [14C]cholesterol-labeled CM. Hepatic [14C]cholesterol uptake was reduced in HN (69.3 +/- 6 vs. 7.2 +/- 2% of dose, P less than 0.001). TG uptake was reduced in HN measured kinetically (1.01 +/- 0.09 vs. 0.213 +/- 0.028 mg TG.min-1.100 g body wt-1, P less than 0.001) and reduced in all tissues (heart, skeletal muscle, fat, and liver). CM are catabolized on the vascular endothelium to atherogenic, cholesterol-rich remnant (CM remnant) particles, which are then rapidly taken up by the liver. We measured hepatic CM remnant uptake in SD and in HN using [14C]cholesterol-labeled CM remnant. CM remnant uptake was significantly reduced in HN (58 +/- 1.2 vs. 20 +/- 0.86% uptake, P less than 0.01). CM remnants were increased significantly in plasma of HN. Thus the nephrotic syndrome causes a primary defect in the uptake of TG from CM that is expressed in all tissues and a separate defect in hepatic CM remnant uptake. Although CM remnant generation is impaired because of defective CM hydrolysis, the defect in hepatic CM remnant uptake is so severe that these particles accumulate in blood, posing a potential risk for atherogenesis.

Animals↗

Chylomicron and chylomicron remnant metabolism in STZ-induced diabetic rats.

The small intestine is an important source of plasma lipoproteins in various diabetic animal models. This increase in intestinally derived lipids originate from diet and/or primary lipid synthesis, and these lipids are transported to the plasma as chylomicrons (CM). The understanding of the metabolism of these triglyceride-rich particles has assumed considerable importance. When [14C]cholesterol and [3H]triglyceride-labeled normal CM were injected into rats, we found no difference in either initial plasma clearance or in the hepatic uptake between control and diabetic rats. However, the clearance rate and hepatic uptake were dependent on the triglyceride concentration administered. Both the initial clearance and hepatic uptake in control and diabetic rats slowed to a similar extent with increasing triglyceride dose demonstrating the influence of the size of the endogenous triglyceride pool on the metabolic rate of CM. No difference was found in the clearance of CM remnants between control and diabetic rats when examined both in vivo and in liver perfusion experiments. Furthermore, with affinity chromatography, we found that the increase in serum triglycerides levels in diabetic rats was due to triglyceride-rich very-low-density lipoproteins and/or CM and not to the accumulation of remnants, which supports the observation that remnant clearance is not impaired. Despite the absence of alterations in bulk CM metabolism, we observed an increase in CM-CM remnant binding to the endothelium in hearts of diabetic rats.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Magnetic resonance angiography of the carotid artery combining two- and three-dimensional acquisitions.

To assess the agreement between magnetic resonance angiography and conventional angiography in the evaluation of carotid stenosis, 61 carotid arteries of 40 patients were studied by combined two- and three-dimensional magnetic resonance angiography and conventional angiography. Stenosis of the internal carotid artery was categorized as mild, moderate, severe, critical, or complete occlusion. In 42 arteries, the degree of stenosis according to magnetic resonance angiography correlated exactly to that found by conventional angiography. In the remaining 19 carotid arteries, the magnetic resonance angiographic measurement of stenosis differed from the conventional angiographic measurement by only one size category. The Spearman rank correlation coefficient was 0.95 (p < 0.001). This study showed that by combining information from two- and three-dimensional magnetic resonance angiographic studies and making use of the advantages of each method, magnetic resonance angiography was comparable to conventional angiography in determining carotid stenosis. Magnetic resonance angiography tended to demonstrate a higher level of stenosis when there was a discrepancy. These data demonstrate that magnetic resonance angiography is a steadily improving technology. Although additional studies need to be done, it seems clear that magnetic resonance angiography will be an imaging modality comparable in accuracy to conventional angiography.

Aged↗

Inhibition of injury induced intimal hyperplasia by saralasin in rats.

Increasing evidence points toward local production of renin and angiotensinogen in the artery wall. Because angiotensin converting enzyme (ACE) inhibitors have been shown to block intimal hyperplasia after arterial injury in the rat, it has been suggested that angiotensin II is an important mediator of the proliferative response to vascular injury. To prove that previous observations with use of ACE inhibitors are a result of effects on local angiotensin levels versus nonspecific drug effects, we tested the ability of an unrelated drug, the angiotensin II receptor antagonist saralasin, to similarly block intimal hyperplasia after aortic injury in the rat. Balloon catheter aortic denudation was performed in 28 rats pharmacologically treated for 14 days after surgery and split into four groups: group 1, saralasin 360 micrograms/kg/hr intravenously; group two, normal saline 0.5 mm3/hr intravenously; group 3, captopril 100 mg/kg/day orally; and group 4, heparin 50 U/kg/hr intravenously. Animals were killed and aortas were perfusion fixed at physiologic pressure 14 days after denudation. Cross-sectional intima-to-media ratios were calculated by computerized planimetry. Compared with saline controls, saralasin inhibited intimal hyperplasia 45% (p less than 0.001), captopril 59% (p less than 0.001), and heparin 68% (p less than 0.001). A reduction in total intimal area was also evident in animals treated with saralasin (p less than 0.01). Blood pressure in the group treated with captopril decreased from 107.4 +/- 3.9 to 96.3 +/- 4.3 mm Hg (p less than 0.01) after 6 days, whereas saralasin and heparin had no effect on blood pressure. Weight gain during the study was reduced in groups treated with captopril and heparin but not in the group treated with saralasin.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin II↗

"Angiography" by magnetic resonance imaging: detailed vascular anatomy without ionizing radiation or contrast media.

Using software to transform magnetic resonance imaging (MRI) tomographic data into three-dimensional projections, we have produced "angiograms" of the abdominal aorta in 18 patients with occlusive (15) and aneurysmal (3) disease. This information may be displayed to demonstrate flow, cross-sectional diameter, or aortic surface anatomy. To test the accuracy of the MRI studies, we compared them at selected points with the transected aorta and with routine aortograms. Relative cross-sectional diameter estimated by MRI was within 15% of measured aortic diameter in 14 of the 18 vessels and enabled correct detection of thrombus in 16. We conclude that MRI may accurately image the diseased abdominal aortic wall. In addition, an angiographic display format may aid in the interpretation of these studies. Although MRI is not likely to replace aortography, it could be used adjunctively to define aortic wall thickness and the presence of thrombus.

Aged↗