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P Cullen

Publications and source records attributed to P Cullen.

At least 55 records · Page 3Linked to original sources

Hypochromic red cells and reticulocyte haemglobin content as markers of iron-deficient erythropoiesis in patients undergoing chronic haemodialysis.

BACKGROUND: In patients on chronic haemodialysis, because of a non-specific increase in serum ferritin, iron deficiency may be overlooked leading to failure of erythropoietin treatment. A reticulocyte haemglobin content < 26 pg and a percentage of hypochromic red cells > 2.5 have been proposed as markers of iron-deficient erythropoiesis in such subjects, but it is unclear which parameter is superior. METHODS: We measured haematocrit, reticulocyte haemglobin content, ferritin and the percentage of hypochromic red cells over 10-150 days in 36 chronic haemodialysis patients in a university hospital. Transferrin saturation was also measured in a subset of 25 patients; iron deficiency was defined as a transferrin saturation < 15%. RESULTS: The diagnostic sensitivity and specificity of a reticulocyte haemoglobin content < 26 pg in detecting iron deficiency were 100% and 73% respectively, compared with 91% and 54% for a percentage of hypochromic red cells > 2.5. Paradoxical reticulocyte haemglobin concentrations occurred on follow-up in five patients receiving 4000 U erythropoietin per haemodialysis (HD). In three patients, reticulocyte haemglobin content exceeded 26 pg despite a persistent lack of iron. In a fourth, iron gluconate (62.5 mg i.v./HD) increased transferrin saturation to 27% and reduced the percentage of hypochromic red cells from 12 to 4, while reticulocyte haemglobin remained > 30 pg. In the final patient, iron gluconate increased transferrin saturation from 8 to 30% and reduced the percentage of hypochromic red cells from 40 to below 5, but reticulocyte haemglobin content remained < or = 26 pg throughout. CONCLUSIONS: The reticulocyte haemglobin content is superior to the percentage of hypochromic red cells in detecting iron deficiency in haemodialysis patients.

Adult↗

Human macrophages synthesize type VIII collagen in vitro and in the atherosclerotic plaque.

Type VIII collagen is a short-chain collagen that is present in increased amounts in atherosclerotic lesions. Although the physiological function of this matrix protein is unclear, recent data suggest an important role in tissue remodeling. Type VIII collagen in the atherosclerotic lesion is mainly derived from smooth muscle cells. We now show that macrophages in the atherosclerotic vessel wall and monocytes in adjacent mural thrombi also express type VIII collagen. We demonstrated this using a novel combined fluorescence technique that simultaneously stains, within the same tissue section, specific RNAs by in situ hybridization and proteins by indirect immunofluorescence. In culture, human monocyte/macrophages expressed type VIII collagen at all time points from 1 h to 3 wk after isolation. Western blotting and immunoprecipitation also revealed secretion of type VIII collagen into the medium of 14-day-old macrophages. Because this is the first report of secretion of a collagen by macrophages, we tested the effect of lipopolysaccharide (LPS) and interferon gamma, substances that stimulate macrophages to secrete lytic enzymes, on macrophage expression of type VIII collagen. LPS and interferon gamma decreased expression of type VIII collagen. By contrast, secretion of matrix metalloproteinase 1 (MMP 1) was increased, indicating a switch from a collagen-producing to a degradative phenotype. Double in situ hybridization studies of expression of type VIII collagen and MMP 1 in human coronary arteries showed that in regions important for plaque stability, the ratio of MMP 1 RNA to macrophage type VIII collagen RNA varies widely, indicating that the transition from one phenotype to the other that we observed in vitro may also occur in vivo.

Cells, Cultured↗

Zinc protoporphyrin and percentage of hypochromic erythrocytes as markers of functional iron deficiency during therapy with erythropoietin in patients with advanced acquired immunodeficiency syndrome.

BACKGROUND: We assessed zinc protoporphyrin (ZPP) and the percentage of hypochromic erythrocytes in patients with advanced acquired immunodeficiency syndrome (AIDS) treated with recombinant erythropoietin (rhEPO). METHODS: Patients received 150 IU rhEPO subcutaneously every second day for 10 days, and 150 IU rhEPO plus 62.5 mg of intravenous iron every second day for an additional 10 days. RESULTS: Before rhEPO therapy, ZPP was at 64.3 +/- 27.3 micromol/mol heme and the percentage of hypochromic erythrocytes was elevated at 9.7%, indicating mild functional iron deficiency. Ferritin was 1,002 +/- 956 microg/L, with transferrin saturation of 19.1 +/- 9.7%. Under rhEPO alone, ZPP rose to 80.1 +/- 21.6 micromol/mol heme and the percentage of hypochromic red cells rose to 22.9 +/- 4.7%; ferritin fell to 705 +/- 601 microg/L and transferrin saturation fell to 12 +/- 6.3%. When rhEPO was supplemented with iron, ZPP fell to 70.4 +/- 20.5 micromol/mol heme, the percentage of hypochromic red cells fell to 14.7 +/- 3.4%; ferritin was unchanged at 771 +/- 62 microg/L and transferrin saturation rose to 20.5 +/- 5.5%. CONCLUSIONS: In contrast to ferritin and transferrin saturation, ZPP and the percentage of hypochromic erythrocytes effectively detect the functional iron deficiency under rhEPO therapy in advanced AIDS.

Acquired Immunodeficiency Syndrome↗

Systemic inflammatory parameters in patients with atherosclerosis of the coronary and peripheral arteries.

Plasma concentration of markers of inflammation are increased in patients with atherosclerosis. However, it is unclear whether the pattern and magnitude of this increase vary with the site and extent of disease. In 147 patients undergoing semiquantitative coronary angiography, we measured the acute-phase reactants C-reactive protein (CRP) or serum amyloid A (SAA); the proinflammatory cytokine interleukin 6 (IL-6); the active and total fractions of the anti-inflammatory cytokine transforming growth factor-beta (TGF-beta); the macrophage activation marker neopterin; and the infection marker procalcitonin. Compared with 62 patients without either coronary artery disease (CAD) or peripheral artery disease (PAD), 57 patients with CAD but no PAD showed greater median CRP (0. 4 versus 0.2 mg/dL, P=0.004) and IL-6 (3.8 versus 1.6 pg/mL, P=0. 007) levels and a lower level of active-TGF-beta (57 versus 100 ng/mL, P=0.038). Moreover, CRP, IL-6, and neopterin levels showed a positive and the active TGF-beta level a negative correlation with the extent of coronary atherosclerosis. Compared with these 57 patients with CAD alone, 15 patients with PAD and CAD had higher median levels of SAA (17 versus 7 mg/mL, P=0.008), IL-6 (12 versus 4 pg/mL, P=0.002), neopterin (14 versus 11 mg/dL, P=0.006), and total TGF-beta (11834 versus 6417 ng/L, P=0.001). However, these strong univariate associations of markers of inflammation and atherosclerosis were lost in multivariate analysis once age, sex, and high density lipoprotein cholesterol or fibrinogen were taken into account. Increased plasma levels of CRP, SAA, IL-6, TGF-beta, neopterin, and procalcitonin constitute an inflammatory signature of advanced atherosclerosis and are correlated with the extent of disease but do not provide discriminatory diagnostic power over and above established risk factors.

Acute-Phase Reaction↗

Multiple dysfunctions of two apolipoprotein A-I variants, apoA-I(R160L)Oslo and apoA-I(P165R), that are associated with hypoalphalipoproteinemia in heterozygous carriers.

ApoA-I(R160L)Oslo and apoA-I(P165R) are naturally occurring apolipoprotein (apo) A-I variants that are associated with low HDL-cholesterol in heterozygous carriers. We characterized the capacity of these variants to bind lipid, to activate lecithin:cholesterol acyltransferase (LCAT), and to promote efflux of biosynthetic cholesterol from porcine aortic smooth muscle cells (SMCs) or exogenous cholesterol from lipid-loaded mouse peritoneal macrophages. During cholate dialysis, normal apoA-I and both variants associated completely with dipalmitoylphosphatidylcholine (DPPC) and formed rLpA-I of identical size. However, both apoA-I(P165R) and apoA-I(R160L)Oslo showed a reduced capacity to clear a turbid emulsion of dimyristoylphosphatidylcholine (DMPC). Compared to normal apoA-I, the LCAT-cofactor activity of apoA-I(P165R) and apoA-I(R160L)Oslo as defined by the ratio of Vmax to appKm was reduced significantly by 62% and 29%, respectively (here and throughout the text, the apparent Km is given as Michaelis-Menten kinetics do not take particle binding into account and therefore would result in errors with an interfacial enzyme such as LCAT; Vmax estimates are not affected by this error). ApoA-I/DPPC complexes induced biphasic cholesterol efflux from SMCs with a fast and a slow efflux component. Compared to rLpA-I reconstituted with wild type apoA-I, rLpA-I with apoA-I(P165R) or apoA-I(R160L)Oslo were significantly less effective in promoting cholesterol efflux from SMCs in incubations of 10 min duration but equally effective in incubations of 6 h duration. Lipid-free apoA-I did not induce efflux of biosynthetic cholesterol from SMCs but induced hydrolysis of cholesteryl esters and cholesterol efflux from acetyl-LDL-loaded mouse peritoneal macrophages. In the lipid-free form, both apoA-I variants promoted normal cholesterol efflux from murine peritoneal macrophages. We conclude that amino acid residues arginine 160 and proline 165 of apoA-I contribute to the formation of a domain that is very important for initial lipid binding and contributes to LCAT-activation and promotion of initial cholesterol efflux but not to the stabilization of preformed rLpA-I.

Animals↗

Phenotype-dependent differences in apolipoprotein E metabolism and in cholesterol homeostasis in human monocyte-derived macrophages.

In this study, we investigated the impact of the common apoE polymorphism on apoE metabolism and cholesterol homeostasis in monocyte-derived macrophages isolated from E2/2, E3/3, and E4/4 subjects. Unloaded cells of all genotypes contained similar amounts of free cholesterol, cholesteryl ester, and apoE mRNA. E3/3 cells secreted 77 and 30% more apoE than E2/2 or E4/4 cells, respectively. Pulse-chase studies confirmed that the apoE secretion rate was greatest in E3/3 and least in E2/2 cells and showed that a portion of apoE2, but not apoE3 or apoE4, was degraded intracellularly. Surface binding of apoE was greatest in E4/4 cells, as revealed by heparinase treatment. On cholesterol loading with acetylated LDL, apoE mRNA levels and protein secretion rose most in E4/4 and least in E2/2 cells. Cholesterol and cholesteryl ester content, however, rose most in E2/2 and least in E3/3 cells. Incubations with 3H-cholesterol-labeled acetylated LDL revealed that E2/2 cells were most efficient at secreting cholesterol. The greatest reuptake of 3H-cholesterol-rich particles was from E4/4 macrophage- conditioned media. Thus, E2/2 macrophages, despite a low apoE secretion rate, are protected from cholesterol storage by apoE-mediated cholesterol efflux. In E3/3 macrophages, cholesterol accumulation is lessened by a high basal apoE secretion rate. E4/4 macrophages secrete the most apoE but lack effective net cholesterol efflux due to enhanced surface binding and reuptake of cholesterol-rich particles.

Adult↗

Assignment of Tangier disease to chromosome 9q31 by a graphical linkage exclusion strategy.

A low level of high density lipoprotein (HDL) cholesterol is a strong predictor of ischaemic heart disease (IHD) and myocardial infarction. One cause of low HDL-cholesterol is Tangier disease (TD), an autosomal codominant inherited condition first described in 1961 in two siblings on Tangier Island in the United States of America. Apart from low HDL-cholesterol levels and an increased incidence of atherosclerosis, TD is characterized by reduced total cholesterol, raised triglycerides, peripheral neuropathy and accumulation of cholesteryl esters in macrophages, which causes enlargement of the liver, spleen and tonsils. In contrast to two other monogenic HDL deficiencies in which defects in the plasma proteins apoA-I and LCAT interfere primarily with the formation of HDL (refs 7-10), TD shows a defect in cell signalling and the mobilization of cellular lipids. The genetic defect in TD is unknown, and identification of the Tangier gene will contribute to the understanding of this intracellular pathway and of HDL metabolism and its link with IHD. We report here the localization of the genetic defect in TD to chromosome 9q31, using a genome-wide graphical linkage exclusion strategy in one pedigree, complemented by classical lod score calculations at this region in a total of three pedigrees (combined lod 10.05 at D9S1784). We also provide evidence that TD may be due to a loss-of-function defect.

Chromosome Mapping↗

Smoking, lipoproteins and coronary heart disease risk. Data from the Münster Heart Study (PROCAM).

AIMS: The mechanism of the increase in coronary heart disease risk associated with smoking is unclear, but may partly be due to smoking-related changes in intermediate risk factors such as lipid levels, fibrinogen and blood pressure. We therefore examined the distribution of these variables among smokers and non-smokers in the Münster Heart Study. METHODS: 20696 men, aged 41.7+/-2.7 years (mean +/- SD) and 10212 women, aged 37.0+/-2.6 years, were enrolled between 1978 and 1995. Thirty-two percent of women and 36% of men smoked. Compared to non-smokers, mean levels of low density lipoprotein cholesterol, total cholesterol, triglycerides and fibrinogen were increased, respectively, by 1.4%, 0.9%, 15% and 12.1% in male and by 2.0%, 5.5%, 12% and 3.4% in female smokers. Mean high density lipoprotein cholesterol levels, body mass index and blood pressure were reduced, respectively, by 6.4%, 3.8%, and 2% in male, and by 6.7% 1.2% and 2% in female smokers. In the subgroup of 4639 men aged 40 to 65 with 8 years of follow-up, the coronary event rate (definite myocardial infarction, sudden cardiac death) in cigarette smokers was more than twice that of non-smokers with otherwise identical risk factors. CONCLUSION: In the Münster Heart Study, smoking was associated with adverse changes in lipids (of greater magnitude in women), and fibrinogen (of greater magnitude in men). However, these changes explained only a small part of the smoking-related increase in coronary heart disease risk.

Adult↗

Differential effects of lovastatin on the trafficking of endogenous and lipoprotein-derived cholesterol in human monocyte-derived macrophages.

Lovastatin has been shown to reduce cholesterol esterification in cholesterol-loaded human macrophages. Surprisingly, in nonloaded macrophages, lovastatin produces the opposite effect, lowering free cholesterol and increasing cholesteryl ester levels, as measured by high-performance liquid chromatography. In cholesterol-loaded cells, lovastatin reduced the cholesteryl esters of unsaturated but not those of saturated fatty acids. In nonloaded cells, by contrast, the cholesteryl esters of unsaturated fatty acids tended to increase after lovastatin treatment. Total (free plus esterified) cellular cholesterol content in nonloaded cells fell by 18% with 12-micromol/L lovastatin treatment but did not change in cholesterol-loaded cells. Lovastatin had no effect on the binding or uptake of acetylated low density lipoprotein, acyl coenzyme A:cholesterol acyltransferase (ACAT) activity, the secretion of [3H]cholesterol into the medium, or lysosomal hydrolysis of cholesteryl esters. Apolipoprotein (apo) E mRNA levels increased but apoE secretion into the medium decreased with lovastatin treatment in both cholesterol-loaded and nonloaded cells. Cholesterol of exogenous origin has been shown to pass via the cell membrane before its esterification by ACAT. We postulate that this is not the case for endogenous cholesterol, which may have direct access to ACAT. Our findings therefore suggest that lovastatin hinders the delivery of intracellular cholesterol to the plasma membrane, resulting in increased free cholesterol and lower levels of cholesteryl ester in cholesterol-loaded cells. In nonloaded cells, virtually all cholesterol is of endogenous origin and is normally translocated to the cell membrane. Lovastatin prevents this process, thus shunting newly synthesized cholesterol toward esterification and leading to an increase in the concentration of cholesteryl esters, even in the face of a drop in total and free cholesterol levels. Intracellular apoE may play a role in this process.

Analysis of Variance↗

The Münster Heart Study (PROCAM). Results of follow-up at 8 years.

The Münster Heart Study (PROCAM) was initiated in 1979 in order to examine cardiovascular risk factors, cardiovascular events including myocardial infarction and stroke, and mortality in people at work. Examination at entry comprised a standardized case history, measurement of blood pressure and anthropometric data, a resting electrocardiogram, and measurement of more than 20 laboratory parameters in a fasting blood sample. The prevalence data in this report are based upon a single examination of 17,437 men aged 40.4 +/- 11.3 years (mean +/- SD) and 8065 women aged 35.7 +/- 12.1 years, which took place between 1979 and 1991. Severe hypercholesterolaemia (> 300 mg.dl-1) was seen in 5% of men and 8% of women aged 45 to 64 years. In men, the prevalence of hypertriglyceridaemia (> 200 mg.dl-1) rose from 5% at age 20 to 20% at age 45 and remained constant thereafter; in women the prevalence of hypertriglyceridaemia increased linearly from 2% at age 20 to 7% at age 60. The LDL/HDL ratio was higher in men than in women at all age groups; in the age group 45 to 64 years, LDL/HDL ratios > 5 were approximately twice as common in men. Lipoprotein(a) levels were distributed in a highly skewed fashion. In men, a slight rise in the geometric mean lipoprotein(a) concentration occurred with age, whereas in women a dramatic increase was seen after age 40. Using multivariate analysis by the multiple logistic function method, total cholesterol, HDL cholesterol, LDL cholesterol and log-transformed triglycerides showed a significant (P < 0.001) age-adjusted correlation with the presence of major coronary events. A risk algorithm has been developed for men aged 40 to 65 years which takes into account the independent risk factors of HDL cholesterol, LDL cholesterol, triglycerides, fibrinogen, age, systolic blood pressure, cigarette smoking, presence of diabetes mellitus and family history of myocardial infarction and angina pectoris. This algorithm can be used in clinical practice to calculate the 8-year risk of an individual suffering a myocardial infarction.

Adult↗

Lipoproteins and cardiovascular risk--from genetics to CHD prevention.

Increased levels of low density lipoprotein (LDL) cholesterol and triglyceride, and low levels of high density lipoprotein (HDL) cholesterol, are associated with increased risk of coronary heart disease (CHD). Only a minor part of the variation in lipids can be explained by defects in single genes of large effect; the bulk of variation in most cases is due to the interaction of polygenes and environment. This paper describes a strategy for unravelling such complex genetic effects in the population at large. A person's risk of developing CHD is, however, not determined by levels of circulating lipids alone, but by a number of factors which contribute to his or her global risk. Based on the data of the Münster Heart Study (PROCAM), a multiple logistic function using nine independent variables for the prediction of risk has been developed. This function allows an almost 40-fold degree discrimination in risk between persons in the lowest and highest quintiles of the algorithm. Data from the Münster Heart Study and other prospective studies indicates a log-linear relationship between LDL cholesterol and CHD risk. The results of recent large scale intervention trials indicate that this relationship also holds true for LDL levels which are achieved by treatment. This indicates that the benefit achieved by cholesterol lowering is greatest at high baseline LDL cholesterol levels, and that at least for LDL cholesterol levels of > or = 80 mg. dl-1, there is no theoretical threshold below which lowering of LDL cholesterol cannot be expected to reduce CHD risk. However, at low LDL cholesterol levels the benefits of treatment may be outweighed by side-effects and by practical cost-benefit considerations. These issues are also discussed in detail in the present report.

Cholesterol↗

Diagnosis and management of new cardiovascular risk factors.

Independent risk factors for coronary heart disease (CHD) can best be identified by means of long-term prospective epidemiological studies. These factors should not be viewed in isolation, but as part of a complex governing a person's global risk of CHD. In the Münster Heart Study (PROCAM), 8-year follow up of a cohort of middle-aged men has led to the identification of nine variables which independently contribute to CHD risk: age, smoking history, personal history of angina pectoris, family history of myocardial infarction (MI), presence of diabetes mellitus, systolic blood pressure and the levels of low density lipoprotein (LDL) cholesterol, high density lipoprotein cholesterol and triglyceride. An algorithm based on these risk factors may be used to calculate an individual's risk of fatal or non-fatal MI and is available in interactive fashion on the website of the International Task Force for Prevention of Coronary Heart Disease at www.chd-taskforce.com. Treatment goals for LDL cholesterol depend on a person's level of risk: for persons with a small increase in risk 160 mg x dl(-1), for those with a moderate increase in risk 135 mg x dl(-1) and for those at high risk, including those with a history of CHD (secondary prevention) 100 mg x dl(-1). Intervention trials indicate that lowering of LDL cholesterol for 5 years produces much of the benefit predicted from the epidemiological data. The place of newer risk markers such as Lp(a), homocysteine, and parameters of clotting and inflammation in risk prediction and management remains to be determined.

Cohort Studies↗

Treatment goals for low-density lipoprotein cholesterol in the secondary prevention of coronary heart disease: absolute levels or extent of lowering?

The results of the Scandinavian Simvastatin Survival Study (4S) and the Cholesterol and Recurrent Events (CARE) study make abundantly clear the benefits of lowering low-density lipoprotein (LDL) cholesterol in patients with a history of coronary artery disease. Current guidelines in the United States and Germany recommend a treatment goal for LDL cholesterol of 100 mg/dl. However, the evidence for setting such a goal is not consistent among trials. It has even been argued that setting an absolute LDL goal may be unhelpful, per se, because the higher the patient's pretreatment LDL cholesterol, the more difficult achieving this goal becomes. It has also been recognized that measures to lower LDL cholesterol, and medications in particular, produce a relative rather than an absolute degree of reduction in circulating levels. For example, most statins produce a similar proportional decrease in LDL cholesterol irrespective of baseline LDL. Thus, if the baseline LDL is 180 mg/dl, the decrease in LDL with a particular statin dose may be 60 to 120 mg/dl, whereas if the baseline LDL is 120 mg/dl, the expected decrease in LDL with the same statin dose would be only 40 to 80 mg/dl (i.e., a 30% reduction in each case). These points have led some investigators to suggest that it may be more practicable to recommend the amount by which LDL should be lowered rather than by specifying an absolute level of LDL cholesterol which should be achieved. This report summarizes the proceedings of an international symposium held on this topic on October 4, 1996, in Berlin by the International Task Force for Prevention of Coronary Heart Disease and the Institute of Arteriosclerosis Research at the University of Münster.

Adult↗

The Münster Heart Study (PROCAM): total mortality in middle-aged men is increased at low total and LDL cholesterol concentrations in smokers but not in nonsmokers.

BACKGROUND: Some large epidemiological studies have shown an increase in mortality at low levels of total and LDL cholesterol. It has been speculated that low cholesterol levels may play a causative role in this association. To investigate this question, we analyzed all deaths occurring among middle-aged men in the Münster Heart Study (PROCAM), one of the largest prospective epidemiological studies of coronary heart disease risk markers in Europe. METHODS AND RESULTS: In the Münster Heart Study, 10,856 men aged 36 to 65 years at study entry (46.8+/-7.3 years [mean+/-SD]) were followed for 4 to 14 years (7.1+/-2.4 years). During this period, 313 deaths occurred--46 from myocardial infarction, 48 from suspected or definite sudden cardiac death, 14 from cerebrovascular disease, and 10 from other diseases of the circulatory system. There were 121 deaths from cancer and 33 deaths from violent causes (injuries in 16, suicide in 14, and homicide in 3 cases). Death in 29 cases occurred from other causes and was unexplained in 12 cases. Total cholesterol, LDL cholesterol, and the LDL/HDL ratio showed a J-shaped relationship with total mortality. At high total and LDL cholesterol concentrations, increased mortality was due to increased coronary deaths. At low total and LDL cholesterol concentrations, increased mortality was seen in smokers only and was explained by an increase in smoking-related cancer deaths. CONCLUSIONS: The increase in mortality at low levels of total and LDL cholesterol among middle-aged men in the Münster Heart Study is explained by an increase in smoking-related cancer deaths among smokers.

Adult↗