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Biomedical subjects

N Gruener

Publications and source records attributed to N Gruener.

At least 19 recordsLinked to original sources

Increased expression of neutrophil and monocyte adhesion molecules LFA-1 and Mac-1 and their ligand ICAM-1 and VLA-4 throughout the acute phase of myocardial infarction: possible implications for leukocyte aggregation and microvascular plugging.

OBJECTIVES: This study sought to evaluate expression of adhesion molecules on neutrophils and monocytes throughout the acute phase of myocardial infarction. BACKGROUND: Neutrophil and monocyte counts increase within days from onset of acute myocardial infarction. Because leukocytes are recruited to the involved myocardial region, we postulated that these activated cells would display an increased expression of adhesion molecules necessary for effective endothelial transmigration. METHODS: We measured the expression of neutrophil and monocyte lymphocyte function associated antigen-1 (LFA-1), Mac-1, very late after activation antigen-4 (VLA-4) and intercellular adhesion molecule-1 (ICAM-1) by flow cytometry throughout the acute phase of acute myocardial infarction in 25 patients and 10 age-matched control subjects. RESULTS: Expression of Mac-1 on neutrophils increased significantly, whereas no expression of VLA-4 and ICAM-1 was detected. The expression of LFA-1, Mac-1, VLA-4 and ICAM-1 on the monocyte cell membrane in patients with an acute myocardial infarction was increased compared with that in control subjects by 22% (on day 7), 67%, 13% and 44% (all on day 4), respectively (all p < 0.001). Elevated density of monocyte-specific CD14 in the AMI versus the control group was also shown (30%, p < 0.001). CONCLUSIONS: Increased expression of neutrophil and monocyte adhesion molecules may contribute to their adhesion to endothelium in the ischemic territory. This adhesion could feasibly precipitate vasoconstriction or add a local thrombotic effect due to tissue factor expression secondary to Mac-1 engagement. In addition, the manifestation of increased density of LFA-1 and Mac-1 by activated leukocytes with monocytes also expressing ICAM-1 suggests that leukocytes may form microaggregates that could cause microvascular plugging. This mechanism may facilitate the occurrence of the "no-reflow" phenomenon or slow coronary filling after acute myocardial infarction.

Aged↗

CSF levels of carnitine in children with meningitis, neurologic disorders, acute gastroenteritis, and seizure.

Carnitine concentrations in CSF, serum, and urine in normal febrile children and children with meningitis, neurologic disorders, and dehydration were studied. Carnitine levels in CSF were 1/10 compared with serum in normal febrile children. These levels increased two- to three-fold in the pathologic conditions studied. Since damage to the blood-brain barrier occurs in these conditions, higher blood-brain barrier permeability might explain CNS carnitine accumulation.

Adolescent↗

3,3'-Diindolylmethane induces apoptosis in human cancer cells.

3,3'-Diindolylmethane is a dimer of indole-3-carbinol formed both in vivo and in vitro. In this study, human cancer cells MCF-7 (with wild-type p53), T47-D (mutant p53), and Saos-2 (deficient in p53 gene), were used to examine the anticancer activities of 3,3'-diindolylmethane. The dose-dependent growth inhibitory effect was found in all these cell lines. Exposure of the cells to 50 microM solution of 3,3'-diindolylmethane for 48 h, apoptosis (programmed cell death) was evidenced by the characteristic morphology of cell nuclei under fluorescence microscope and the DNA "ladder" in agarose gel electrophoresis. The percentage of apoptotic cells in each cell line was found to be 12% for MCF-7, 14% for T47D and 13% for Saos2 cells. Exposure of MCF-7 cells to 100 microM 3,3'-diindolylmethane for 24 h, 19% of apoptotic cells were detected by flow cytometry analysis. The lowest dose required for induction of apoptosis in MCF-7 cells was found to be 10 microM after 72 h incubation. Western blot showed that wild-type p53 protein was unchanged after MCF-7 cells had been exposed to 50 microM 3,3'-diindolylmethane for 8 h. This study provides evidences that 3,3'-diindolylmethane induces apoptosis in human cancer cells and that the induction of apoptosis is independent of p53 pathway.

Anticarcinogenic Agents↗

Growth hormone (GH) retardation of muscle damage due to immobilization in old rats. Possible intervention with a new long-acting recombinant GH.

Four weeks immobilization of the right leg of aged rats (26 months old) caused a marked 31% and 27% reduction of muscle mass of the plantaris and soleus muscles, respectively. In animals treated with 0.6 mg/kg body weight of growth hormone (GH), the reduction of weight of the above muscles was only 14.7 and 16.1%, respectively. Biochemical studies of the level of acid phosphatase as a marker of muscle catabolism showed a significant increase of this enzyme in the immobilized muscles. GH treatment had a positive effect in curtailing the increase due to immobilization. Studies on muscle protein oxidation used as another measure of damage in immobilized animals, showed a 400% increase in protein carbonyls in plantaris muscles. GH administration reduced this value significantly. One major issue hampering the clinical use of human GH (hGH) is its short half-life in vivo (14 min). In a previous work it was possible to enhance the in vivo longevity of other hormones such as follicle-stimulating hormone (FSH) and human chorionic gonadotropin (hCG) by fusing carboxyl-terminal peptide (CTP) of the hCG gene to the above hormones. The CTP has four serine-linked oligosaccharides, which have been shown to be important in maintaining the longer half-lives of these hormones. With the above rationale of using the CTP as a general target to increase the potency of bioactive hormones, we have now fused the CTP with hGH. This has provided us with a new successfully constructed recombinant hGH, which is currently being tested for its biological potency and for possible use in aging animals.

Aging↗

Protein kinase A downregulates the phosphorylation of p47 phox in human neutrophils: a possible pathway for inhibition of the respiratory burst.

Cyclic adenosine monophosphate (cAMP)-dependent protein kinase A(PKA) is considered to be a physiologic modulator of superoxide generation by stimulated neutrophils. Mechanisms of the inhibitory action of PKA are poorly understood. In this study, we investigated effects of cAMP-elevating agents on the phosphorylation of p47 phox in human neutrophils stimulated with the chemotactic peptide fMet-Leu-Phe (fMLP). We observed that the fMLP-induced phosphorylation of p47 phox, an essential component of neutrophil NADPH oxidase, was significantly attenuated in the presence of dibutyryl-cAMP or of receptor agonists of adenylate cyclase. This attenuation was reversed in the presence of 0.4 microM KT 5720, a selective inhibitor of PKA. The effects of cAMP agonists and of KT 5720 on the phosphorylation of p47 phox were paralleled by similar effects on superoxide generation. In neutrophils stimulated with phorbol myristate acetate (PMA), which directly activates protein kinase C (PKC), neither cAMP agonists nor dibutyryl cAMP exerted any effects on p47 phox phosphorylation or superoxide generation. These results indicated that the PKA-dependent downregulation of fMLP-induced p47 phox phosphorylation apparently involves step(s) in the fMLP-signaling pathway that are upstream of PKC. The inhibition demonstrated here of p47 phox phosphorylation by cAMP agonists may underlie a physiologically significant mechanism whereby cAMP modulates the receptor-mediated respiratory burst in neutrophils.

Bucladesine↗

Plasma lipid oxidation and susceptibility of low-density lipoproteins to oxidation in male patients with stable coronary artery disease.

OBJECTIVES: Oxidative modifications of low-density lipoproteins (LDL) are considered to be important in the pathogenesis of atherosclerosis. However, the data on the association between LDL oxidation and severity of clinical manifestations of coronary artery disease (CAD) are contradictory. Previous reports were concerned mostly with unstable angina patients. The present study was undertaken to evaluate plasma lipid oxidation status in patients with stable CAD. DESIGN AND METHODS: 37 male patients with angiographically confirmed CAD (asymptomatic or suffering from stable angina pectoris) and 32 control subjects were used in the study. Plasma levels of vitamin E and products of lipid peroxidation, as well as parameters of the test for oxidizability of LDL in vitro were measured. RESULTS: We did not find differences between 2 groups of individuals regarding the levels of products of lipid peroxidation, vitamin E levels, lag time, maximal rate of oxidation, and total amount of conjugated dienes in the test for oxidizability of LDL. CONCLUSION: The results of our study challenge, but do not disprove, the oxidative hypothesis of atherosclerosis. Real atherosclerotic modifications of plasma LDL occur apparently in the vascular wall after trapping of LDL by the interstitial matrix. The rise in oxidative parameters in unstable angina reported in the literature may not be the cause of the disease but, rather, the consequence of the multiple brief episodes of ischemia-reperfusion.

Adult↗

The role of the asparagine-linked oligosaccharides of the alpha-subunit in human thyrotropin bioactivity.

TSH and the gonadotropins (FSH, LH, and hCG) are a family of heterodimeric proteins that share a common alpha-subunit and differ in their hormone-specific beta-subunit. The asparagine-linked (N-linked) oligosaccharides on these hormones are important in signal transduction. The N-linked oligosaccharides on the alpha-subunit have no effect on hCG and hFSH receptor binding, but are critical for their biological activity. Here, we analyzed the role of alpha-subunit N-linked oligosaccharides in human TSH (hTSH) bioactivity by site-directed mutagenesis and gene transfer. This was achieved by mutating the asparagine (Asn) residue in the N-linked glycosylation consensus sequence (Asn-X-Thr/Ser) to aspartic acid. The wild-type hTSH and its variants were expressed in Chinese hamster ovary cells. Wild-type alpha-subunit and its mutants (alpha 1, alpha 2, and alpha(1 + 2)) were efficiently combined with TSH beta-subunit and secreted as dimers. The bioactivity of TSH glycosylation variants was determined by measuring their abilities to stimulate cAMP formation and T3 secretion using a serum-free culture system of human thyroid follicles. Using this system, wild-type hTSH was significantly effective in the stimulation of cAMP formation and T3 secretion. Deletion of the oligosaccharide units from either site 1(alpha 1) or site 2(alpha 2) of the alpha-subunit increased the biological activity of the dimer by about 30%. However, deletion of carbohydrate units from both sites of hTSH alpha-subunit (alpha(1 + 2) resulted in a significant reduction in cAMP formation (by approximately 70%) and T3 secretion (by approximately 40%) compared to that with wild-type hTSH. These findings emphasize the importance of the alpha-subunit N-linked oligosaccharide chains on hTSH bioactivity.

Animals↗

Cyfra 21-1. A new potential tumor marker for squamous cell carcinoma of head and neck.

OBJECTIVE: Evaluation of Cyfra 21-1 (cytokeratin fraction 21-1) in squamous cell carcinoma of the head and neck. DESIGN: Prospective study. PATIENTS: Serum Cyfra 21-1 concentration was measured in 250 samples from patients with squamous cell carcinoma of head and neck, patients with benign tumors of head and neck, healthy control subjects, and patients in remission from squamous cell carcinoma of head and neck. RESULTS: Cyfra 21-1 concentration was elevated in 60% of the new patients with squamous cell carcinoma but only in 8% of patients with benign tumors and 3.5% of the healthy controls. At a cutoff of 1.3 ng/mL, the sensitivity of the test was 60%, the specificity was 94%, positive predictive value was 75%, and negative predictive value was 89%. The marker levels tended to follow the clinical course of the disease and were useful for therapy monitoring. Cyfra 21-1 levels were in good correlation with the tumor stage expressed by the local (T) and the lymphatic spread (N) and were inversely correlated with histologic grade, eg, higher in poorly differentiated carcinoma than in well-differentiated squamous cell carcinoma. CONCLUSION: Cyfra 21-1 evaluation in head and neck squamous cell carcinoma is worthwhile for performance of an ample study that will prove and establish its routine use.

Adult↗

Involvement of protein kinase C and of protein phosphatases 1 and/or 2A in p47 phox phosphorylation in formylmet-Leu-Phe stimulated neutrophils: studies with selective inhibitors RO 31-8220 and calyculin A.

Previously employed non-selective protein kinase inhibitors yielded inconclusive results regarding involvement of protein kinase C (PKC) in phosphorylation of 47 kDa protein (p47 phox) in intact neutrophils stimulated with physiologic agonists of superoxide generation. In the present study, phosphorylation of p47 phox in formylMet-Leu-Phe (fMLP) stimulated neutrophils was potently inhibited in the presence of 0.3 microM RO 31-8220, a selective inhibitor of PKC. These results provide experimental evidence in support of the currently considered essential involvement of PKC in p47 phox phosphorylation in response to physiologic stimulation of neutrophil surface receptors. The fMLP-induced phosphorylation of p47 phox was enhanced and prolonged by calyculin A, a specific inhibitor of protein phosphatases of types 1 and 2A, and such enhanced phosphorylation was also effectively inhibited by RO 31-8220. Our results suggest that the extent and duration of p47 phox phosphorylation in intact fMLP-stimulated neutrophils is probably controlled by a balance between the activities of PKC, on the one hand, and of protein phosphatase(s) of type(s) 1 and/or 2A, on the other. Effects of RO 31-8220 and of calyculin A on the fMLP-induced p47 phox phosphorylation were paralleled by similar effects on superoxide release. Calyculin A and RO 31-8220 were also used to study signal transduction by a post-receptor agonist of superoxide generation, a calcium ionophore A23187. The results of the latter study indicated that PKC was activated in A23187-stimulated neutrophils and was essentially involved in superoxide generation and p47 phox phosphorylation. Further, these results suggested that protein phosphatase(s) of type(s) 1 and/or 2A were also activated in A23187-signalling pathway, and limited the extent of superoxide release and p47 phox phosphorylation.

Calcimycin↗

Reduced carnitine and antiepileptic drugs: cause relationship or co-existence?

Serum carnitine was measured longitudinally before and after therapy in 15 patients receiving valproic acid, 14 patients receiving carbamazepine and 8 patients receiving phenobarbital. The patients who received valproic acid showed a significant reduction in free (and total) serum carnitine (mean (SE) 37.6 (6.2) mumol/l without valproic acid, 29.1 (1.6) mumol/l with valproic acid (p < 0.001)). Such an effect was not found in patients receiving carbamazepine or phenobarbital.

Adolescent↗

Lipoprotein levels in newborns and adolescents.

Previous studies established that cardiovascular disease can be predicted early in life. Active modification of risk factors in the general population should include screening as the first step. For this reason, lipoproteins and apolipoproteins were measured in newborns and adolescents. Almost all lipids and apolipoproteins were much lower at birth than at adolescence. Based on these results, reference ranges were calculated.

Adolescent↗

Structure and possible biological roles of Lp(a).

Lipoprotein(a) [Lp(a)] is a plasma macromolecular complex that is assembled from low-density lipoproteins (LDL) and a large hydrophilic glycoprotein, named apolipoprotein(a) [apo(a)], linked by a disulfide bond to apolipoprotein B-100. Apo(a) is formed by different structural domains one of which is present in multiple copies, the number of which is determined by variation in the hypervariable apo(a) gene. Sequence homology of apo(a) with plasminogen may explain the competition of Lp(a) for some physiological functions of plasminogen in the coagulation and fibrinolytic cascade in vitro. There is evidence that high plasma levels of Lp(a) may have atherogenic and/or thrombogenic potential. More work will have to be done to understand the exact role of Lp(a) in atherogenesis, to evaluate the potential synergy between Lp(a) and LDL in promoting coronary artery disease, and to assess the therapeutic benefits of a reduction of Lp(a) levels.

Biological Evolution↗

Increase in superoxide dismutase after cerebrovascular accident.

Superoxide dismutase (SOD), neuron specific enolase (NSE) and lactic dehydrogenase (LDH) were measured in the serum and cerebrospinal fluid (CSF) of ischemic cerebrovascular patients, other neurological patients and in age-matched healthy controls (serum only). The levels of SOD in the CSF or serum of the ischemic patients in the first 24 hrs after stroke were similar to the control groups. However, SOD levels in the ischemic patients increased after two days, reaching their peak values after one week (2-3 fold of the initial values). NSE showed a similar kinetics while LDH showed no change. These results suggest that oxygen radicals are formed in the ischemic patients and the increased synthesis of SOD may protect the patients from the potential damage of such radicals.

Aged↗

Lysine-binding species of lipoprotein(a) in coronary artery disease.

Elevated levels of plasma lipoprotein(a) [Lp(a)] have frequently been associated with coronary artery disease (CAD). Recently Lp(a) was fractionated into two species with different affinities for Lysine-Sepharose. The influence of lysine-binding heterogeneity of Lp(a) on its cardiovascular pathogenicity has not previously been studied. The authors have determined plasma levels of total Lp(a), its lysine-binding [lys+] and unretained [lys-] species in 67 male CAD patients undergoing cardiac catheterization. Forty-three patients have severe CAD (two- or three-vessel disease) and 24 patients have less pronounced CAD (one-vessel disease or less than 50% narrowing of coronary vessels). All patients were ranked in order of their Lp(a) levels and then grouped into quartiles. The prevalence of severe CAD was significantly higher in the upper Lp(a) quartile as compared with the other three quartiles (odds ratio 10-5; chi-square 11.2; P = 0.0008). Similar results were obtained when the same analysis was carried out for [lys+] and [lys-] species of Lp(a) (odds ratio 11.52 and 3.3, respectively; chi-square 12.3 and 4.34, respectively; P = 0.0004 and 0.037, respectively). Thus, measurement of either species of Lp(a) does not provide any additional improvement in the prediction of CAD as compared to the estimation of total Lp(a) levels.

Adult↗

Calcium-binding myeloid protein (P8,14) is phosphorylated in fMet-Leu-Phe-stimulated neutrophils.

In this report, we show that the p14 subunit of calcium-binding myeloid protein complex (p8,14) is phosphorylated in human neutrophils stimulated with either fMet-Leu-Phe, phorbol myristate acetate, or a calcium ionophore. Trifluoperazine, a calmodulin antagonist, caused hyperphosphorylation of p14 in intact resting neutrophils. Preincubation of resting cells with 10-20 nM calyculin A, a potent protein phosphatase inhibitor, also caused enhanced labeling of p14, which was further progressively increased on stimulation with fMLP. Thus, the phosphorylation level of p14 in resting as well as in stimulated neutrophils appears to be controlled by an active protein phosphatase. The phosphorylation of p14 by a chemoattractant and by a phorbol ester is a novel finding supporting the current belief that p8,14 myeloid protein may play an important role in the metabolism of myeloid cells.

Calcimycin↗

Serum carnitine concentrations in coeliac disease.

Carnitine is essential for muscle energy production and is required for the transport of long chain fatty acids and acyl co-enzyme A derivatives across the inner mitochondrial membrane. Recently, an absorptive transport mechanism was discovered at the small bowel level suggesting the possibility of a carnitine deficient state in patients with mucosal damage. Therefore, this study investigated carnitine concentrations in serum of patients with coeliac disease. Serum samples were obtained from 12 patients with active coeliac disease and seven with non-active disease, and compared with serum samples of 17 children with gastrointestinal symptoms but with a small bowel normal on biopsy examination and 33 normal controls. Total serum carnitine concentration was significantly lower in the patients with coeliac disease compared with the other two groups and to reference values. When the degree of atrophy of coeliac intestinal mucosa was numerically graded, serum carnitine concentrations did not correlate to the degree of the intestinal lesion but were significantly lower in the damaged intestine compared with the group with normal mucosa. It is suggested that coeliac disease should be considered as a potential cause of secondary carnitine deficiency.

Adolescent↗