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Biomedical subjects

R A Kloner

Publications and source records attributed to R A Kloner.

At least 19 recordsLinked to original sources

Is calcium a mediator of infarct size reduction with preconditioning in canine myocardium?

BACKGROUND: The cellular mechanisms by which brief episodes of ischemia protect or "precondition" the heart and limit infarct size caused by a later period of sustained coronary artery occlusion remain unresolved. We propose that calcium may be an important mediator in eliciting this cardioprotection. METHODS AND RESULTS: To test this hypothesis, anesthetized dogs received a 15-minute intracoronary infusion of 20 mmol/L CaCl2 or saline before undergoing 1 hour of coronary occlusion and 4 hours of reperfusion (protocol 1). Collateral blood flow during occlusion was measured with radiolabeled microspheres, area at risk of infarction (AR) was delineated by injection of blue dye, and area of necrosis (AN) was determined by tetrazolium staining. AN/AR was reduced from 20+/-5% in the saline-treated controls to 9+/-3% in CaCl2-treated dogs (P<.05). Additional animals underwent 10 minutes of preconditioning ischemia or a comparable waiting period before the 1-hour test occlusion (protocol 2). Administration of 5-(N,N-dimethyl)-amiloride (an inhibitor of calcium influx via Na+-H+ and Na+-Ca2+ exchange) before the preconditioning stimulus attenuated the protective effect of ischemic preconditioning: AN/AR was 12+/-1%, larger than the value of 4+/-1% observed in preconditioned dogs that received saline (P<.05) and comparable to the values of 12+/-3% and 14+/-3% seen in saline- and dimethylamiloride-treated controls. CONCLUSIONS: Brief intracoronary infusion of CaCl2 mimicked, whereas treatment with dimethylamiloride blocked, infarct size reduction with preconditioning, thereby implicating calcium as a mediator of preconditioning in this canine model.

Amiloride

Atherosclerotic cardiovascular mortality during the 1992 riots in Los Angeles.

During the 3-day period of the Los Angeles riots in 1992, there was a significant increase in the total number of deaths investigated by the Coroner's office and deaths attributed to violence and trauma, but not to atherosclerotic cardiovascular mortality. However, there was a significant decrease in cardiovascular mortality in the period following the riots, compared with the period of the riots or the preceding period.

Arteriosclerosis

Differences in reperfusion length following 30 minutes of ischemia in the rabbit influence infarct size, as measured by triphenyltetrazolium chloride staining.

Assessment of myocardial infarct size in acute experimental models is usually done by triphenyltetrazolium-chloride (TTC) staining. A certain period of reperfusion is mandatory for discrimination of the infarct zone, especially after relatively short ischemic periods. However, it is unclear what the optimal reperfusion time is for full delineation of the infarct following 30 min of myocardial ischemia in the rabbit. This study compares infarct size, assessed by TTC, in anesthetized open-chest rabbits subjected to 30 min of coronary artery occlusion followed by either 2 (n = 14) v 4 (n = 14) (protocol 1), or 3 (n = 8) v 6 (n = 7) h of reperfusion (protocol 2). Area at risk was assessed by blue dye and necrotic zone by TTC staining. Protocol 1: heart rate and mean blood pressure were comparable in both groups throughout the protocol. Regional myocardial blood flows in both the ischemic and non-ischemic zones during ischemia and after 2 h of reperfusion were comparable between the groups. Regional myocardial blood flow in the post-ischemic zone deteriorated between 2 and 4 h (1.11 +/- 0.15 v 0.58 +/- 0.09 ml/min/g, respectively, P = 0.0004) of reperfusion. The size of the area at risk was comparable (0.31 +/- 0.03 v 0.33 +/- 0.03 of the LV weight in the 2 and 4 h reperfusion groups). However, the ratio of the necrotic zone to the ischemic zone at risk was 63% larger in the 4 compared to the 2 h of reperfusion group (0.31 +/- 0.04 v 0.19 +/- 0.05, respectively, P = 0.02). Analysis of covariance performed on the weight of tissue that developed necrosis and the weight of ischemic zone at risk revealed a significant effect of the reperfusion time (P = 0.014). Protocol 2: there was no difference in infarct size between rabbits subjected to three (0.38 +/- 0.05 of the area at risk) v 6 h (0.41 +/- 0.07) of reperfusion (P = 0.72). Analysis of covariance performed on the weight of tissue that developed necrosis and the weight of ischemic zone at risk did not reveal a significant effect of the reperfusion time. Infarct size as assessed by TTC following 30 min of myocardial ischemia, is smaller when measured 2 h after reperfusion than after 4 h of reperfusion. At least 3 h of reperfusion is needed to delineate infarct size by tetrazolium staining following 30 min of ischemia.

Animals

The effect of CY1503, a sialyl Lewisx analog blocker of the selectin adhesion molecules, on infarct size and "no-reflow" in the rabbit model of acute myocardial infarction/reperfusion.

CY1503, an analogue of sialyl-Lewisx, is an inhibitor of the selectin adhesion molecules. CY1503 has been found to limit myocardial infarct size in canine and feline models. However, the effect of CY1503 on the "no-reflow" phenomenon is still unknown. Anesthetised rabbits were subjected to 30 min of coronary artery occlusion and 4 h of reperfusion. Protocol 1: after 27 min of ischemia, rabbits were randomised to an iv bolus of either CY1503 (30 mg/kg) (n=9) or saline (n=9). Protocol 2: rabbits were randomly given two iv boluses of CY1503 (30 mg/kg) (n=6) or saline (n=6), administered after 10 and 25 min of ischemia. Protocol 3: after 27 min of ischemia rabbits were randomly given an iv bolus of CY1503 (30 mg/kg) (n=6) and infusion of 20 mg/kg over 4 h or saline bolus+infusion (n=6). Regional myocardial blood flow (RMBF) was assessed after 30 min and 4 h of reperfusion. The risk zone (RZ) was assessed by blue dye and the necrotic zone (NZ) by tetrazolium staining. RMBF: protocol 1: RMBF in the RZ was 2.19+/-0.33 v 2. 34+/-0.34 ml/g/min in CY1503 and controls at 30 min (P=0.75), and 0. 43+/-0.07 v 0.41+/-0.08 at 4 h of reperfusion (P=0.85). The corresponding results for protocol 2 were 1.77+/-0.29 v 1.53+/-0.34 at 30 min (P=0.61) and 0.53+/-0.16 v 0.91+/-0.55 at 4 h (P=0.53). RMBF in RZ in protocol 3 were 1.52+/-0.25 v 1.32+/-0.20 at 30 min (P=0.56) and 0.30+/-0.05 v 0.29+/-0.09 (P=0.90) after 4 h of reperfusion. The RZ was similar in both groups in all protocols. The NZ/RZ ratio was comparable in the CY1503 and control group in all three protocols (0.32+/-0.04 v 0.37+/-0.06, 0.37+/-0.08 v 0.33+/-0. 07, and 0.51+/-0.05 v 0.38+/-0.05 in protocols 1, 2, and 3, respectively). CY1503 did not limit infarct size or prevent the "no-reflow" phenomenon in the rabbit.

Animals

Characterization of collagen by high-frequency ultrasound: evidence for different acoustic properties based on collagen fiber morphologic characteristics.

Fibrous tissue on conventional ultrasound images appears as an echo-bright area. We have observed that on high-frequency ultrasonography images of thin sections of myocardium, fibrous tissue may appear as either a dark or light area. This study was designed to test the hypothesis that echo characteristics of fibrous tissue on high-frequency ultrasonography are determined by collagen fiber morphologic characteristics. We examined 16 tissue specimens from human beings and rats containing different forms of fibrosis. The specimens were sectioned at 5 microns, placed on a glass slide, and imaged with a 600 MHz transducer. On ultrasound images, collagen appeared either as a dark amorphous area or a light area that had a fibrillar pattern. The same specimens were then stained with picrosirius red and examined with polarized light. When viewed with polarized light microscopy, thick collagen fibers appear red or orange and thin fibers appear green or yellow. Polarized light microscopy revealed that dark areas on ultrasound images corresponded to thick collagen fibers that were predominantly longitudinally sectioned. In contrast, light areas corresponded to regions of thin, loosely packed fibers, or to thick collagen fibers that were obliquely sectioned. Collagen has different appearances on high-frequency ultrasound images depending on collagen fiber morphologic characteristics. If such variation in echo intensity also occurs with lower frequency transducers used in clinical echocardiography, the differentiation between normal myocardium and immature scar may be difficult.

Acoustics

Is warm retrograde blood cardioplegia better than cold for myocardial protection?

BACKGROUND: This study tests the hypothesis that continuous normothermic retrograde blood cardioplegia is superior to cold intermittent blood cardioplegia in protecting the left and right side of the heart transmurally during an extended cross-clamping period. METHODS: Twelve anesthetized, open chest dogs were placed on cardiopulmonary bypass and randomized to receive continuous warm (n = 6) or intermittent cold cardioprotection (n = 6) during a 3-hour aortic cross-clamp period. Transmural left ventricular muscle biopsy specimens were taken before the initiation of cardiopulmonary bypass and 90 and 180 minutes after cross-clamping. Right ventricular (RV) biopsy specimens were taken 180 minutes after aortic cross-clamping. Biopsy specimens were analyzed for adenosine triphosphate, creatine phosphate, and lactate levels and for morphologic changes via electron microscopy. RESULTS: At the end of 180 minutes of cardiopulmonary bypass, the adenosine triphosphate contents of endocardial and epicardial halves of the left ventricular myocardium were only slightly degraded in both cardioplegia groups; a significantly greater reduction in adenosine triphosphate levels occurred in the RV of the warm compared with the cold group (p < 0.02). The difference in creatine phosphate values in the left ventricle between the cold group (35.2 +/- 23.4 nmol/mg cardiac protein) and the warm animals (64.4 +/- 24.9 nmol/mg cardiac protein) was not statistically significant, but the RV creatine phosphate stores were significantly better preserved in the warm compared with the cold cardioplegia group (p < 0.02). Lactate levels increased to a similar extent in both groups, but both values rose significantly over baseline (p < 0.03). Importantly the electron microscopic score of the left ventricle and RV indicated that cells were reversibly and not irreversibly damaged with both cardioplegic protections. CONCLUSIONS: These results suggest the following: (1) Chemical arrest is a major contributor of myocardial preservation during diastolic arrest as used in clinical cardiac surgery. (2) Both methods preserve the ultrastructure of the myocytes transmurally during 3 hours of aortic cross-clamping. (3) Both techniques protect the RV and left ventricle; however, to provide optimal protection of the RV, alternated retrograde and antegrade perfusion might be beneficial over retrograde cardioplegia flow alone, in particular with warm cardioplegia.

Adenosine Triphosphate

Changes in R wave amplitude: ECG differentiation between episodes of reocclusion and reperfusion associated with ST-segment elevation.

This study assesses the electrocardiographic (ECG) differences between episodes of increased ST-segment amplitude induced by coronary artery occlusion and by reperfusion in the open-chest rabbit model. Nine anesthetized open-chest male New Zealand White rabbits were subjected to four episodes of 5 minutes of coronary artery occlusion followed by 5 minutes of reperfusion. The ST-segment and R wave amplitudes were measured from an ECG lead attached to the pericardium overlying the ischemic myocardium. In 10 out of 35 (29%) of the episodes, reperfusion resulted in a transient increase in ST-segment amplitude. While episodes of coronary artery occlusion were associated with increase in R wave amplitude (69% and 97% of the episodes after 1 and 5 minutes, respectively), all reperfusion episodes were associated with prompt decrease in R wave amplitude. There was no difference between the repeated episodes in the occurrence of ST-segment elevation during reperfusion. However, ST-segment elevation during reperfusion could be distinguished from the ischemic episodes by the prompt decline in the R wave amplitude in the former compared with no change or increase in the latter.

Animals

Myocardial temperature in acute myocardial infarction: protection with mild regional hypothermia.

This study tests the hypothesis that a 2-4 degrees C reduction in myocardial temperature, obtained by using topical regional hypothermia (TRH), reduces infarct size. Anesthetized rabbits received coronary artery occlusion and reperfusion. We cooled hearts in the TRH group by applying an ice bag directly over the risk zone; the control group received no intervention. Risk zone myocardial temperature (MT) in the TRH group was reduced at occlusion by 2 degrees C from baseline and after 5 min of occlusion by 3.6 degrees C. In the control group, MT in the risk region remained within 0.3 degree C of baseline. The ischemic area was similar in both groups, yet infarct size in the TRH group was reduced by an average of 65% compared with the control group. Infarct size closely correlated with MT in the risk region at the time of occlusion. In a second protocol in which all hearts were paced, infarct size was 21% of the risk region in TRH hearts compared with 44% in controls. These results strongly support the important role of MT in the progression of necrosis and demonstrate that the application of local cooling to the risk region profoundly reduces myocardial infarct size.

Animals

Disparate effects of preconditioning and MLA on 5'-NT and adenosine levels during coronary occlusion.

Ischemic preconditioning has been proposed to protect the heart against infarction by increasing 5'-nucleotidase (5'-NT) activities and augmenting adenosine levels during sustained coronary artery occlusion. To test this theory, anesthetized dogs received four 5-min episodes of preconditioning ischemia, pretreatment with the pharmacological "preconditioning mimetic" monophosphoryl lipid A (MLA, 35 micrograms/kg i.v.) or no intervention before coronary artery ligation. At 20 min into occlusion (the crucial time at which myocyte death begins in this model), myocardial samples were obtained for measurement (by high-performance liquid chromatography) of ectosolic and cytosolic 5'-NT activity and adenosine levels. Preconditioning and MLA pretreatment limit infarct size in the canine model by 75 and 50%, respectively. However, only MLA augmented 5'-NT activity [i.e., cytosolic 5'-NT in the ischemic subendocardium was 26 +/- 1, 39 +/- 7, and 26 +/- 6 nmol. mg protein-1. min-1 in preconditioned, MLA, and control groups (P < 0.05), respectively]. Moreover, adenosine levels (in nmol/mg protein) were increased with MLA treatment (2.30 +/- 0.44) but attenuated in preconditioned dogs (1.11 +/- 0.23; P < 0.05) versus controls (1.87 +/- 0.29). Thus 5'-NT and adenosine levels need not be increased beyond control values during sustained occlusion to elicit cardioprotection.

5'-Nucleotidase

Transplantation of fetal myocardial tissue into the infarcted myocardium of rat. A potential method for repair of infarcted myocardium?

BACKGROUND: Unlike skeletal myocytes, mammalian adult cardiomyocytes cannot regenerate after injury. A possible strategy to increase viability and augment ventricular function after myocardial injury is fetal myocardial tissue transplantation. The engrafted fetal cells are a potential source of growth factors and can be used for cardiomyocyte-based gene therapy. The purpose of our study was to test the feasibility and efficiency of fetal cardiomyocyte transplantation into a model of myocardial infarction. METHODS AND RESULTS: We subjected rats after myocardial infarction to three protocols of therapy. In the first protocol, tissue fragments of cultured human fetal ventricles were injected into the scar 7 to 24 days after infarction. The rats were treated with intraperitoneal injections of 12.5 mg.kg-1.d-1 cyclosporine. In the second protocol, fragments of cultured fetal rat ventricles were injected into the scar 9 to 17 days after infarction. A third group of animals with myocardial infarction was treated with injection of saline into the scar (control). After 7 to 65 days post-transplantation, hearts were harvested and processed for electron microscopy and alpha-actin immunohistochemistry. Toluidine blue staining and electron microscopy revealed the presence of engrafted human and rat cardiomyocytes in the infarcted myocardium up to 14 and 65 days after transplantation, respectively. The morphology was similar to that of cultured fetal cardiomyocytes. The engrafted fetal tissues were also stained positive for alpha-actin, which is unusual for the adult rat myocardium. Examination of control hearts detected infarcted tissue only, and alpha-actin staining was limited to vessel walls. CONCLUSIONS: Fetal cardiomyocyte tissue can be implanted and survive in the infarcted myocardium. This experimental approach may provide a therapeutic strategy for cardiomyocyte-based gene therapy for introduction of therapeutic proteins into myocardial infarction.

Actins

Avoidance of immune response prolongs expression of genes delivered to the adult rat myocardium by replication-defective adenovirus.

BACKGROUND: Gene delivery is a rapidly expanding field with potential applications to every human organ system. Recently, adenoviruses have been used as efficient vectors for in vivo gene transfer into the myocardium. These methods, however, have shown a sharp decline of gene expression after 1 week. To test the hypothesis that an immune-effector mechanism is involved in this decline, we compared the results after injection of adenovirus-5 carrying the beta-galactosidase gene (Ad beta-gal) into the left ventricular myocardium of athymic nude rats (NDRs) versus immunocompetent Sprague-Dawley rats (SDRs). METHODS AND RESULTS: Ad beta-gal (5.0 x 10(9) PFU/mL) was injected into the left ventricle of NDRs (n = 16) and SDRs (n = 22). Hearts were harvested, embedded in paraffin, and sectioned and stained for beta-gal activity, hematoxylin and eosin and picrosirius red at 4, 21, 35, 85, and 120 days. Representative samples were immunostained with antibodies directed at inflammatory markers. beta-gal activity was quantified by digital planimetry and expressed as area of staining (% +/- SEM). Peak beta-gal activity was highest at 4 days, with NDRs displaying significantly greater staining (83 +/- 3.0% versus 54 +/- 8.0%; P = .03). SDRs sustained a rapid drop in activity, such that at 35 (1 +/- 0.19%) and 85 (1 +/- 0.4%) days, only occasional cells stained positive and by 120 days (0.3 +/- 0.0%), activity had been extinguished. NDRs continued to show transgene expression at all time periods (35 and 85 days, 25 +/- 7.1% and 7.4 +/- 2.7%, respectively) and was still readily detected at 120 days. An inflammatory response was limited in NDRs compared with SDRs, in which there was intense mononuclear cell infiltration, with collagen deposition and scar formation. Immunostaining identified the majority of these inflammatory cells as not being of lymphocyte lineage, although small numbers of lymphocytes and phagocytic and activated plasma cells were identified. CONCLUSIONS: Our data suggest that immune-effector mechanisms can severely affect the expression of genes delivered by adenovirus. The present model provides efficient gene expression for at least 120 days without significant inflammatory reaction.

Adenoviridae

Distortion of the terminal portion of the QRS on the admission electrocardiogram in acute myocardial infarction and correlation with infarct size and long-term prognosis (Thrombolysis in Myocardial Infarction 4 Trial).

Previous studies have shown an association between distortion of the terminal portion of the QRS (QRS[+] pattern: emergence of the J point > or = 50%. of the R wave in leads with qR configuration or disappearance of the S wave in leads with an Rs configuration) on admission and in-hospital mortality in acute myocardial infarction (AMI). However, the mechanism for this association is not known. We assessed the relation between QRS(+) pattern and coronary angiographic findings, infarct size, and long-term prognosis in the Thrombolysis In Myocardial Infarction 4 trial. Patients were allocated into 2 groups based on the presence (QRS[+], n = 85) or absence (QRS[-], n = 293) of QRS distortion. The QRS(+) patients were older (mean +/- SD: 61.1 +/- 10.6 vs 57.5 +/- 10.6 years, p = 0.004), had more anterior AMI (49% vs 37%, p = 0.04), and less previous angina (42% vs 54%, p = 0.05). QRS(+) patients had larger infarct size as assessed by creatine kinase release over 24 hours (209 +/- 147 vs 155 +/- 129, p = 0.003), and predischarge sestamibi (MIBI) defect (17.9 +/- 15.9% vs 11.2 +/- 13.4%, p <0.001). When adjusting for difference in baseline characteristics, p values for the differences in 24-hour creatine kinase release were 0.03 and 0.64 for anterior and nonanterior AMI, respectively, and for MIBI defect size 0.03 and 0.02, respectively. One-year mortality (18% vs 6%, p = 0.03) was higher and the weighted end point of death, reinfarction, heart failure, or left ventricular ejection fraction <40% (0.33 +/- 0.37 vs 0.24 +/- 0.32, p = 0. 13), tended to be higher in the anterior AMI patients with QRS(+). No difference in clinical outcome was found in patients with non-anterior AMI. These findings suggest that this simple electrocardiographic definition of presence of QRS(+) pattern on admission may provide an early estimation of infarct size and long-term prognosis, especially in anterior AMI.

Adult

Intramyocardial injections and protection against myocardial ischemia. An attempt to examine the cardioprotective actions of adenosine.

BACKGROUND: Although adenosine has been proposed to be a cardioprotective agent, direct examination of such protection is confounded by its short half-life and hemodynamic effects. We attempted to avoid these problems by injecting adenosine directly into cardiac muscle. METHODS AND RESULTS: We gave four adenosine injections (each 0.15 mL, 5 mg.mL-1 saline) into the left ventricular wall of rat hearts before a 60-minute occlusion. Although infarcts were smaller in adenosine-treated hearts (29 +/- 6%) than in controls (52 +/- 5%; P < .05), injection of saline also reduced infarct size (29 +/- 7%). Infarcts in hearts subjected to needle insertion but no fluid injection differed neither from control nor from fluid-treated hearts (38 +/- 4%). Adenosine reduced ectopic beats and the incidence of ventricular tachycardia during occlusion. In contrast, saline injection prolonged the duration of arrhythmias. To examine the spatial relationship between protection and the injection site, we gave 18 saline injections (each 0.15 mL) into canine myocardium before a 60-minute occlusion. Infarcts were smaller in saline-treated hearts than in controls (P < .01). Because infarcts in four hearts occupied < 3% of the risk region, we concluded that fluid injection did not itself cause appreciable necrosis and speculated that muscle was protected in the vicinity of the injection site. Previous work indicated that muscle can be protected by stretch. We examined this hypothesis by adding gadolinium chloride (a stretch-activated channel blocker) to the saline (0.008 g.mL-1) injection in rat hearts. We again found small infarcts after saline injection (26 +/- 5%); however, gadolinium blocked protection (50 +/- 7%; P < .03). CONCLUSIONS: Although we were only partially successful in documenting adenosine-mediated cardioprotection, we found evidence for myocyte protection via a stretch-activated mechanism.

Adenosine