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Biomedical subjects

W Schaper

Publications and source records attributed to W Schaper.

At least 109 records · Page 6Linked to original sources

In vitro effects of fentanyl, methohexital, and thiopental on brain endothelial permeability.

BACKGROUND: The use of anesthetics can lead to changes of the permeability of the blood-brain barrier (BBB). To eliminate those factors, such as varying hemodynamic effects that are associated with anesthesia, an in vitro model of the BBB consisting of brain microvascular endothelial cells (BMEC) was used to study the direct effects of the opiate, fentanyl, and the barbiturates methohexital and thiopental, which are widely used in the clinical setting, on the permeability of confluent monolayers. METHODS: BMEC isolated from porcine brains were grown to confluence on collagen-coated polycarbonate membranes, which were placed into 24 well dishes, thus forming a two-compartment chamber. The permeability of the BMEC monolayer to ions--determined by measurements of the transendothelial resistance (TER)--the passage of sucrose, Evans Blue albumin (EBA), and alpha-aminoisobutyric acid (AIB) across the BMEC monolayer were assessed in the presence and absence of fentanyl (25-100 ng/ml), methohexital (10-50 micrograms/ml), and thiopental (25-100 micrograms/ml). RESULTS: The permeability of cultured BMEC to the tracers used increased significantly after exposure of the monolayer to arabinose and after removal of calcium ions. Fentanyl, methohexital, and thiopental did not change the permeability of the cell monolayer to ions, sucrose, albumin, and AIB. Only thiopental at the concentration of 100 micrograms/ml increased the flux of AIB. CONCLUSIONS: At the concentrations tested, there is little evidence of changes in the permeability of the in vitro BBB caused by fentanyl, methohexital, and thiopental regarding the para- and transcellular route of ions, sucrose, and albumin. Only thiopental at a concentration of 100 micrograms/ml increased the passage of AIB across the BMEC monolayer.

Albumins↗

Insulin-like growth factor I is involved in inflammation linked angiogenic processes after microembolisation in porcine heart.

OBJECTIVE: Angiogenesis in the porcine heart can be induced by myocardial ischaemia following vascular occlusions. This process is characterised by increased numbers of monocytes/macrophages, known to be potent producers of various mitogens such as insulin-like growth factors (IGF) and interleukins (IL). The aim of the study was to examine gene expression of these factors by means of northern blot hybridisation, slot blot analysis, and in situ hybridisation in a porcine model of coronary angiogenesis. METHODS: Experimental ischaemia and subsequent focal necroses were induced by selective injection of 25 microns microspheres into the left circumflex artery. The hearts were excised after 3-168 h of microembolisation, and tissue was collected from a non-ischaemic control area and the circumflex region of the same heart for further analysis. RESULTS: IGF-I was constitutively transcribed in normal porcine myocardium mainly by myocytes. Following microembolisation, IGF-I mRNA expression was significantly increased in the experimental region (1.8-fold) after 72 h and to a lesser extent after 168 h. In the ischaemic region, characterised by capillary sprouting, numerous mononuclear cells contained IGF-I mRNA. In contrast, IGF-II mRNA levels, constitutively produced by porcine myocytes, were not altered by microembolisation. IL-1 alpha, IL-1 beta, and IL-4 mRNA expression was undetectable in our animal model, whereas IL-6 was constitutively transcribed in normal and ischaemic heart and remained insensitive to microembolisation and focal necrosis. CONCLUSION: After microembolisation, increased IGF-I mRNA expression occurred by infiltrating monocytes in areas of microsphere induced focal necrosis, where capillary sprouting can be detected, suggesting that IGF-I is involved in inflammation linked angiogenic processes.

Animals↗

Insulin-like growth factor II is an experimental stress inducible gene in a porcine model of brief coronary occlusions.

OBJECTIVE: Previous observations have shown that myocardium activates many adaptive processes after brief ischaemia. The aim of this study was to determine whether insulin-like growth factors (IGF) as well as their receptors and binding proteins (IGFBP), which control the activity of the IGF, may play an important role during these processes. METHODS: Ischaemia was induced in anaesthetised open chest pigs by two 10 min occlusions of the left anterior descending coronary artery, separated by 30 min of reperfusion, and followed by reperfusion up to 210 min. Tissue from the ischaemic area and from a non-ischaemic control region of the same heart was examined by means of northern blot, slot blot, and in situ hybridisation. RESULTS: IGF-I, IGF-II, the type I receptor, the insulin receptor, and IGFBP-2-6 are constitutively expressed in porcine myocardium. In situ hybridisation showed that IGF-I and IGF-II are mainly transcribed by myocytes. Ischaemia/reperfusion led to an early and significant increase in IGF-II mRNA compared to non-sham controls but not in comparison with sham operated animals, which already showed a (not significantly) enhanced IGF-II expression. In each case the IGF-II mRNA levels are equal in the control and the experimental region of the same heart. Whereas IGF-II expression was already increased by experimental stress, IGFBP-5 mRNA was enhanced only by ischaemia/reperfusion. The expression of IGF-I, the receptors, and IGFBP-2, 3, 4, and 6 remained unchanged during the experimental protocol. IGFBP-1 was neither expressed nor induced in our model. CONCLUSIONS: IGF-II acts like a stress-response gene activated by the experimental conditions (surgery, anaesthesia) and remains induced during following episodes of ischaemia/reperfusion. A possible interaction of IGFBP-5 with other components of the IGF system may contribute to the preconditioning response.

Animals↗

[Cardiac gene expression after brief coronary occlusion].

In the pig short coronary occlusions induce molecular damage on the protein level in the myocardium, which elicit repair mechanisms by increased transcription and translation, including the activation of potential transcription factors (protooncogenes), genes involved in repair processes (heat shock genes) or calcium-binding genes. Additionally, some growth factors like insulin-like growth factor II show increased transcription in accordance with their function as trophic factors for reversibly injured myocardium. Changes in mRNA levels mostly are due to increased transcription rates and rarely due to prolonged half-life of the mRNA. However, at present our data do not allow us to conclude which genes are causative for myocardial stunning and/or ischemic preconditioning.

Animals↗

Decreased expression of calmodulin mRNA in human end-stage heart failure.

Calmodulin (CaM) is the primary Ca2+ regulatory protein in cardiac cells, thus alterations in calmodulin would greatly influence the contractile response and may play a role in the abnormal calcium handling observed in human heart failure. We used Northern blot analysis to determine changes in calmodulin mRNA expression in left ventricular tissues isolated from 20 failing and four control human hearts. Only hearts with failure due to idiopathic dilated cardiomyopathy (DCM) or ischaemic heart disease (IHD) were studied. A human calmodulin cDNA probe 95% homologous to Type 3 CaM was used, which hybridized to a single 2.3 kb mRNA. CaM mRNA levels were expressed as a function of total RNA, as determined by hybridization to an 18S cDNA probe, and as a function of myocyte specific mRNA, as determined by hybridization to a myosin heavy chain (MHC) cDNA probe. In both DCM and IHD, CaM mRNA expression relative to total RNA (CaM/18S), was significantly decreased (45% and 61%, respectively) compared to control hearts. CaM mRNA expression in DCM tissues was also significantly decreased (45%) relative to myocyte specific mRNA (CaM/MHC), when compared to control hearts. In IHD, CaM mRNA was not significantly decreased in relation to myocyte specific mRNA, which suggests a greater loss of myocytes or contractile proteins in IHD as compared with DCM. The decreased expressed of CaM mRNA observed in failing hearts could affect many Ca(2+)-dependent processes, and contribute to the inability of these hearts to handle Ca2+ in a viable manner.

Adult↗

Changes in gene expression following short coronary occlusions studied in porcine hearts with run-on assays.

OBJECTIVE: Brief coronary occlusions cause upregulation of expression in a wide variety of genes. These changes in tissue mRNA concentration could have been produced by transcriptional or post-transcriptional events. The aim of this study was to discriminate between increased transcription and changes in mRNA stability using run-on assays with isolated myocyte nuclei. METHODS: Myocyte nuclei isolated from ischaemic/reperfused and normal myocardium were incubated with labelled ribonucleotides. The radioactive RNA was then hybridised with specific cDNA probes and slot blots were autoradiographed. RESULTS: There was increased transcriptional activity for the proto-oncogenes c-myc, c-jun, jun-B, and jun-D. There were marked increases in transcriptional activity for sarcoplasmic Ca(2+)-ATPase, calmodulin, phospholamban, and calsequestrin. Strong transcriptional activity was found for the ubiquitin and heat shock protein (hsp27, hsp70) genes, and for PAI-1 and GAPDH. The transcription for the beta myosin heavy chain gene was not altered. CONCLUSIONS: Changes in the tissue concentration of mRNA species following brief coronary occlusion and reperfusion are most often the result of altered transcriptional activity. Increased c-fos mRNA concentrations observed in earlier studies cannot be explained by transcriptional activity of myocytes during reperfusion. Calmodulin is strongly transcribed but tissue concentration stays constant. The overall pattern of gene expression is indicative of damage at the molecular level, and calcium binding proteins (among perhaps many others) are in need of repair.

Adenosine Triphosphate↗

Effects of a new Na+/H+ antiporter inhibitor on postischemic reperfusion in pig heart.

We investigated the effects of a new compound (3-methylsulfonyl-4-piperidinobenzoyl) guanidine hydrochloride (HOE 694) known to inhibit the Na+/H+ exchanger in a porcine model of ischemia/reperfusion. Ischemia was induced by coronary occlusion (twice for 10 min, with a 30-min reperfusion interval) followed by a 4-h reperfusion period. Treated animals (n = 8) received HOE 694 as a bolus (7 mg/kg) 20 min before ischemia and subsequently as a continuous infusion (0.07 mg/kg) throughout the experiment. Control pigs (n = 11) received vehicle. Regional wall function (percentage of segment shortening, % SS) of the treated animals was significantly improved as compared with that of controls after the 4-h reperfusion period (74.1 +/- 2.5 vs. 50.9 +/- 5.4, p < 0.005). Ventricular fibrillation (VF) could be prevented completely in treated pigs but occurred in 9 of 11 control animals (p < 0.001). Ultrastructural changes after ischemia and reperfusion were moderate and slightly abnormal in controls but much milder and completely recovered in the treated group, respectively. The tissue content of high-energy phosphates did not show a significant difference between groups. Inhibition of the sarcolemmal Na+/H+ antiporter with HOC 694 is antiarrhythmic and diminishes myocardial ischemic cell injury by preventing Na+ overload.

Adenine Nucleotides↗

Platelet-activating factor plays an important role in reperfusion injury in myocardium. Efficacy of platelet-activating factor receptor antagonist (CV-3988) as compared with leukocyte-depleted reperfusion.

Although platelet-activating factor has been implicated in the pathogenesis of neutrophil-induced reperfusion injury, it has other mechanisms of direct deleterious hemodynamic effect. In this study we evaluated the definitive role of platelet-activating factor in myocardial reperfusion injury. Porcine hearts that underwent 60 minutes of normothermic ischemia with cardioplegia and 60 minutes of reperfusion under cardiopulmonary bypass were divided into three groups according to the methods of 15 minutes of controlled reperfusion: whole blood reperfusion group (n = 6), leukocyte-depleted reperfusion group (n = 6), and platelet-activating factor receptor antagonist (CV-3988) group (n = 6). At 60 minutes of reperfusion, the percentage of recovery of maximum slope of the pressure-volume relationship measured with intraventricular balloon, malondialdehyde value in coronary sinus blood, tissue adenosine triphosphate, and percentage of spontaneous defibrillation were evaluated. The receptor antagonist group showed significantly better recovery of maximum slope of the pressure-volume relationship than did the whole blood reperfusion group. Moreover, the receptor antagonist group showed significantly less release of malondialdehyde in the coronary sinus, higher values of adenosine triphosphate in the myocardium, and a higher percentage of spontaneous defibrillation than did the whole blood reperfusion group. On the other hand, the leukocyte-depleted reperfusion group showed no significant differences of maximum slope of the pressure-volume relationship, malondialdehyde, adenosine triphosphate, or spontaneous defibrillation as compared with the whole blood group. These results suggest that platelet-activating factor receptor antagonist attenuated severe damage in whole blood reperfusion of the myocardium as compared with leukocyte-depleted reperfusion, which also suggests that platelet-activating factor may play a more important role in myocardial reperfusion injury than do neutrophils.

Animals↗

Expression of nuclear proto-oncogenes in isoproterenol-induced cardiac hypertrophy.

Rat hearts infused with the beta-adrenergic agonist isoproterenol were examined for the expression of several nuclear proto-oncogenes (c-fos, fosB, c-jun, junB, and junD) and the immediate early gene Egr-1. During the first 24 h after the start of infusion, a strong but transient expression of c-fos was observed. Expression of c-jun and junD were not elevated whereas junB was. By using specific antagonists to the alpha- (prazosin) and beta-adrenergic receptor (propranolol), a beta-adrenoceptor-specific blockade of the isoproterenol-mediated nuclear response was demonstrated. In situ hybridization localized c-fos expression to cardiac myocytes. Labelling was distributed focally in the left and right ventricles, and was strong and homogeneous in the atria. In contrast to beta-adrenergic stimulation, alpha-adrenoceptor stimulation with phenylephrine and norepinephrine caused the induction of c-jun and Egr-1 in addition to the proto-oncogenes induced by isoproterenol. Thus distinct programs of early response gene expression were expressed in response to alpha- versus beta-adrenergic stimulation.

Adrenergic alpha-Agonists↗

Enhanced gene expression of calcium regulatory proteins in stunned porcine myocardium.

OBJECTIVE: Increasing evidence points to a molecular disturbance of Ca2+ homeostasis in stunned myocardium. The aim of this study was therefore to investigate the expression of mRNAs for Ca2+ binding proteins related to the sarcoplasmic reticulum in a porcine model of myocardial stunning. METHODS: In 22 anaesthetised pigs, stunning was achieved by one or two cycles of 10 min left anterior descending coronary artery occlusion and reperfusion. Hearts were excised at various timepoints of the protocol. Total RNA was extracted from stunned (experimental) as well as normally perfused (control) myocardium. RESULTS: Northern blot analysis using radioactive cDNA probes revealed that the Ca(2+)-ATPase mRNA levels increased 1.6-fold compared to the control value at 90 min of the second reperfusion. The steady state level of phospholamban mRNA rose 2.5-fold at 180 min of reperfusion. A 2.3-fold increase in calsequestrin mRNAs was observed after 90 min of the second reperfusion. The calmodulin and alpha, beta myosin heavy chain mRNA levels were unchanged. A glyceraldehyde-3-phosphate dehydrogenase cDNA probe served as a reference system. Nuclear run-on assays showed increased transcription for Ca(2+)-ATPase and calsequestrin at 90 min of reperfusion, supporting the view that increased mRNA levels seen with northern hybridisation were due to increased transcription of the respective gene. CONCLUSIONS: The results suggest specific repair mechanisms of stunned myocardium and point to the involvement of calcium regulatory proteins related to the sarcoplasmic reticulum in the pathogenesis of myocardial stunning.

Animals↗

Ischaemic preconditioning--time course of renewal in the pig.

OBJECTIVE: The aim was to examine whether ischaemic preconditioning can be renewed by a second cycle of brief coronary occlusions in pigs subjected to two different reperfusion intervals (1 h or 4 d). METHODS: Ischaemic preconditioning was induced by a cycle of two 10 min occlusions of the left anterior descending coronary artery separated by 30 min of reperfusion. Infarction was induced with a subsequent 1 h occlusion and a 2 h reperfusion period. There were four experimental groups: in group I (n = 5), a 30 min reperfusion was interposed after the preconditioning cycle prior to the sustained occlusion; in group II (n = 5), this time frame was extended to 1 h; in group III (n = 5), the preconditioning cycle was renewed 1 h after the first cycle; in group IV (n = 5), the second cycle was performed 4 d later. Control pigs (n = 5) were subjected to 1 h coronary occlusion and 2 h reperfusion without previous short occlusions. Infarct size was measured with p-nitro blue tetrazolium and was expressed as a percent of area at risk. RESULTS: The percent of the risk region infarcted was 69.9 (SEM 3.8)% for controls, 22.9 (3.5)% in group I (p < 0.001 v controls), 67.3 (5.2)% in group II, 66.3 (4.2)% in group III, and 17.9 (3.9)% in group IV (p < 0.001 v controls). Regional wall function measured with ultrasonic crystals deteriorated through the reperfusion intervals, indicating different underlying mechanisms for ischaemic preconditioning and myocardial stunning. CONCLUSIONS: Ischaemic preconditioning with two 10 min occlusions reduced infarct size resulting from a 60 min coronary occlusion when that was performed 30 min after the last short occlusion. This effect was lost after 1 h. Preconditioning could be renewed by a second cycle of brief coronary occlusion and reperfusion 4 d but not 1 h after the first cycle. These results suggest the release of a mediator from an exhaustible pool.

Animals↗

Generation and localisation of monoclonal antibodies against fibroblast growth factors in ischaemic collateralised porcine myocardium.

OBJECTIVE: The collateral circulation plays a critical role in the prognosis of ischaemic heart disease, with a clear correlation between neovascularisation, infarction, and tissue recovery. The aim of the study was to address the question of whether endogenous acidic and basic fibroblast growth factors (FGF) participate in ischaemia induced collateral enlargement and development in the myocardium, and also which cells may represent the source of these growth factors. METHODS: Eight pigs received an ameroid constrictor around the left circumflex coronary artery which, by slow coronary occlusion, induces ischaemia and collateral growth in the left ventricle. The degree of stenosis and development of collaterals were determined angiographically. About 14 d after constrictor implantation pigs were killed and hearts were excised and prepared for western blot analysis and immunohistochemistry. Monoclonal antibodies were raised against acidic and basic FGF, characterised for their specificity, and used for the localisation of growth factors in sections of ischaemic and normal pig heart. RESULTS: The eight pigs included in this study showed a gradual 70-100% left circumflex coronary stenosis about 14 d after implantation of the constrictor. Out of four pigs with a complete occlusion, three developed visible collaterals. Antibody staining to acidic FGF was detected only in hearts from pigs with complete occlusion of the coronary artery. The growth factor was localised in cardiomyocytes close to small necrotic tissue patches. In control tissue no acidic FGF staining was evident. Basic FGF could not be detected in ischaemic or in normal perfused pig hearts. CONCLUSIONS: These data show that (1) complete occlusion of the left circumflex coronary artery in pig hearts induces collateral growth; (2) cardiomyocytes are able to produce acidic FGF in response to ischaemia, thus providing a mitogen for endothelial cells; (3) endogenous basic FGF, which was not detected in normal or ischaemic pig hearts, appears not to play an important role in ischaemia induced collateral growth at the chosen time point of investigation.

Animals↗

Expression of heat shock proteins in the normal and stunned porcine myocardium.

OBJECTIVE: The aim was to examine the expression of ubiquitin (Ub), 27 kDa heat shock protein (hsp27), and hsp60 mRNA in normal and briefly ischaemic and reperfused porcine myocardium: METHODS: The left anterior descending coronary artery was occluded for two periods of 10 min separated by 30 min of reperfusion. After the second occlusion the myocardium was reperfused up to 210 min. Tissue from ischaemic, ischaemic-reperfused, and non-ischaemic regions of the heart was analysed by northern and slot blot hybridisation and nuclear run-on transcription assays employing radiolabelled cDNA probes for Ub, hsp27, and hsp60, as well as by western blot using monoclonal antibodies recognising Ub protein conjugates and antiserum recognising hsp27. RESULTS: Systolic wall thickening was significantly decreased at 30 min reperfusion after both occlusions and remained depressed at longer periods of reperfusion. Using northern blot hybridizations, several mRNAs encoding Ub, 0.9 kb mRNA encoding hsp27, and 2.2 kb mRNA encoding hsp60 were detected in sham operated, non-ischaemic, and ischaemic myocardial tissues. Densitometric analysis of northern and slot blot hybridisation signals showed significant increase of basal tissue levels of Ub mRNA in stunned regions only during the 30 min of the second reperfusion period. Increased levels of hsp27 mRNA in stunned tissue were already noted at the first ischaemic period and were sustained compared to control during the subsequent periods of reperfusion. Changes in hsp60 mRNA tissue levels were not observed during ischaemia and subsequent reperfusions. Transcription of the Ub and hsp27 genes was increased during 30 and 120 min of the second reperfusion period. The transient enhancement of tissue levels of Ub mRNA was associated with temporary formation of new Ub-protein conjugates. However, the increased synthesis of mRNA encoding hsp27 was not followed by changes of hsp27 protein content in myocardial tissue. CONCLUSIONS: The findings support the hypothesis that molecular damage occurs in stunned myocardium; however, the target molecules remain to be recognised.

Animals↗