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71.
Cardiogenic shock is the leading cause of death among patients hospitalized with acute myocardial infarction (MI).Understanding the mechanisms for acute pump failure is therefore important.The aim of this study is to examine in anacute MI dog model whether mitochondrial bio-energetic function within non-ischemic wall regions are associated withpump failure.Anterior MI was produced in dogs via ligation of left anterior descending (LAD) coronary artery,thatresulted in an infract size of about 30% of the left ventricular wall.Measurements of hemodynamic status,mitochondrialfunction,free radical production and mitochondrial uncoupling protein 3 (UCP3) expression were determined over 24h period.Hemodynamic measurements revealed a>50% reduction in cardiac output at 24 h post infarction when com-pared to baseline.Biopsy samples were obtained from the posterior non-ischemic wall during acute infarction.ADP/Oratios for isolated mitochondria from non-ischemic myocardium at 6 h and 24 h were decreased when compared to theADP/O ratios within the same samples with and without palmitic acid (PA).GTP inhibition of (PA)-stimulated state 4respiration in isolated mitochondria from the non-ischemic wall increased by 7% and 33% at 6 h and 24 h post-infarctionrespectively when compared to sham and pre-infarction samples.This would suggest that the mitochondria are uncoupledand this is supported by an associated increase in UCP3 expression observed on western blots from these same biopsysamples.Blood samples from the coronary sinus measured by electron paramagnetic resonance (EPR) methods showedan increase in reactive oxygen species (ROS) over baseline at 6 h and 24 h post-infarction.In conclusion,mitochondrialbio-energetic ADP/O ratios as a result of acute infarction are abnormal within the non-ischemic wall.Mitochondria ap-pear to be energetically uncoupled and this is associated with declining pump function.Free radical production may beassociated with the induction of uncoupling proteins in the mitochondria.  相似文献   
72.
In biomedical applications, an experimenter encounters different potential sources of variation in data such as individual samples, multiple experimental conditions, and multivariate responses of a panel of markers such as from a signaling network. In multiparametric cytometry, which is often used for analyzing patient samples, such issues are critical. While computational methods can identify cell populations in individual samples, without the ability to automatically match them across samples, it is difficult to compare and characterize the populations in typical experiments, such as those responding to various stimulations or distinctive of particular patients or time-points, especially when there are many samples. Joint Clustering and Matching (JCM) is a multi-level framework for simultaneous modeling and registration of populations across a cohort. JCM models every population with a robust multivariate probability distribution. Simultaneously, JCM fits a random-effects model to construct an overall batch template – used for registering populations across samples, and classifying new samples. By tackling systems-level variation, JCM supports practical biomedical applications involving large cohorts. Software for fitting the JCM models have been implemented in an R package EMMIX-JCM, available from http://www.maths.uq.edu.au/~gjm/mix_soft/EMMIX-JCM/.  相似文献   
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Pulvirenti  T. J.  Yin  J. L.  Chaufour  X.  McLachlan  C.  Hambly  B. D.  Bennett  M. R.  Barden  J. A. 《Brain Cell Biology》2000,29(9):623-631
The redistribution of purinergic P2X receptor subunits (P2X1 to P2X7) within the rabbit aorta wall three weeks after endothelial balloon injury/cholesterol feeding was examined. P2X1 receptor cluster density was elevated in the media following balloon injury/cholesterol feeding by about 30% and these clusters appeared on smooth muscle cells throughout the greatly expanded neointima but they did not change significantly on the endothelial cells following balloon injury. P2X4 clusters were found in high density throughout the media and in very high density in the enlarged neointima following balloon injury, particularly on the endothelial cells where the density increased about 10-fold after balloon injury. P2X5 clusters were found in high density in the media of normal aorta but with little change following balloon injury. P2X3, P2X6 and P2X7 cluster density was low in normal aorta and remained unchanged following balloon injury. All receptor subunits were found on endothelial cells. It is suggested that the release of ATP from damaged endothelial cells and from smooth muscle cells sufficient to activate P2X4 receptors may contribute to neointimal proliferation.  相似文献   
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Vase solutions of 2.5 or 5% (w/v) sucrose markedly reduced the abscission of all open florets and buds on cut Agapanthus praecox stems. Pulsing cut stems with these solutions was not as effective as continuous treatments. Pulse treatments with 10% sucrose for 4–24 h were relatively ineffective at reducing floret and bud abscission but longer pulses of 48 h reduced abscission. The relative ineffectiveness of sucrose pulse treatments appeared to be due to the low water uptake of the stems (1–3 ml/day). Reducing the number of florets and buds on an inflorescence reduced abscission of florets and buds, and increasing stem length from 25 cm to 50 cm decreased bud abscission. This reduction in abscission is possibly due to the increased availability of assimilates for the remaining buds and florets or reduced competition for assimilates. Exogenous ethylene treatments (9 µl/L for up to 24 h) had no effect on abscission, although STS treatment (4 mM, 4 h) significantly reduced floret abscission when stems were held in vase solutions of sucrose. We conclude that postharvest floret abscission in A. praecox is influenced primarily by the availability of assimilates to the developing florets.  相似文献   
78.
The comparative peroxidative metabolism of diethylstilbestrol (DES) and structurally related compounds of different biological activity was investigated in vitro with horseradish peroxidase (HRP) and hydrogen peroxide (H2O2) as a model peroxidase system: UV spectroscopy revealed the formation of p-quinone intermediates in HRP-H2O2 catalyzed incubations of DES, 3',3",5',5"-tetrafluoro-DES (TF-DES) and dimethylstilbestrol (DMS) and the tautomerization of the quinones to their dien compounds, Z,Z-dienestrol (Z,Z-DIES), tetrafluoro-dienestrol (TF-DIES) and dienmestrol (DIMS) respectively, which were characterized by HPLC and GC/MS. Z,Z-DIES, E,E-DIES, TF-DIES and DIMS were subject to further peroxidative metabolism; however, quinone intermediates were not formed in the HRP-H2O2 containing incubations according to UV spectroscopy. Similarly, hexestrol (HES), 4'-O-methyl-DES (M-DES) and 4',4"-O-dimethyl-DES (DM-DES) did not form quinone intermediates; moreover, they showed little or no apparent metabolic conversion under conditions where DES, TF-DES and DMS were readily peroxidized. However, at a 20-fold higher peroxidase concentration HES and M-DES showed metabolic conversion whereas DM-DES did not.  相似文献   
79.
Macroalgae (seaweeds): industrial resources and their utilization   总被引:4,自引:0,他引:4  
J. McLachlan 《Plant and Soil》1985,89(1-3):137-157
Summary Seaweeds are distributed widely in all oceans of the world, but exploited in limited areas. These plants have been used for food and as soil conditioners for centuries, with industrial application of extractives a relatively recent innovation generally limited to the more developed areas of the world. There are relatively few species of industrial importance, and these occur in both the red (Rhodophyta) and brown (Phaeophyta) algal divisions.The principal value of phycocolloids is in their gelling and stabilizing properties. Species of red algae may elaborate agar or carrageenan. Both are complex polysaccharides with innumerable structural possibilities, hence physical properties, and phycocolloids from various species can have specific applications. Carrageenans are employed mostly in the food industry, and agars in both the food and pharmaceutical sectors of the economy. Alginates, another family of complex polysaccharides, are obtained from various species of brown algae and are the third major algal gum of commerce. Alginates are used in the food and pharmaceutical industries and have other industrial applications.Issued as NRCC No. 23603.  相似文献   
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