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Biomedical subjects

V Rao

Publications and source records attributed to V Rao.

At least 73 records · Page 4Linked to original sources

Decreasing incidence of stroke during valvular surgery.

BACKGROUND: The predictors and causes of stroke after valvular surgery are incompletely defined. We examined the incidence, predictors, and mechanisms of stroke during valvular procedures over a 15-year time period. METHODS AND RESULTS: We retrospectively reviewed prospectively gathered data on 5954 consecutive patients undergoing valvular procedures at our institution from 1982 to 1996. Stroke was defined as persistent central nervous system deficit, usually with confirmatory CT imaging. Patients were divided into 3 groups according to date of operation: group 1, 1982 to 1986 (n = 1819); group 2, 1987 to 1991 (n = 2022); and group 3, 1992 to 1996 (n = 2113). Chart review was undertaken of all patients who developed stroke (n = 189). Stroke occurred in 3.8% of group 1 patients, 3.3% of group 2, and 2.6% of group 3 (P = 0.120). The decreasing incidence of stroke over time was confirmed by multivariable logistic regression analysis, in which earlier date of operation was an independent risk factor for stroke (P < 0.001). Predictors of stroke identified by multivariable logistic regression were (listed in decreasing order): (1) endocarditis (OR, 3.0; 95% CI, 1.8 to 5.0); (2) age > 74 years (OR, 2.3; 95% CI, 1.5 to 3.7); (3) earlier time period of operation (1982 to 1986: OR, 2.2; 95% CI, 1.5 to 3.2; 1987 to 1991: OR, 1.5; 95% CI, 1.0 to 2.2); (4) urgent timing (OR, 2.0; 95% CI, 1.4 to 2.8); (5) concomitant coronary bypass (OR, 2.0; 95% CI, 1.4 to 2.8); and (6) reoperation (OR, 1.7; 95% CI, 1.2 to 2.4). In more recent years of operation, we found an increasing prevalence of age > 74 years (7.4% in group 1, 9.5% in group 2, and 15.3% in group 3; P < 0.001), urgent timing (11%, 26%, and 34%, P < 0.001), and concomitant coronary bypass surgery (25%, 27%, and 33%; P < 0.001). CONCLUSIONS: The incidence of stroke during valvular surgery has decreased with time, despite an increased prevalence of risk factors. Predictors of stroke suggest 3 major causes (multivariable predictors in parentheses): atherosclerotic emboli (elderly age, concomitant coronary bypass), shock (urgent timing, reoperation), and septic emboli (endocarditis).

Aged↗

Optimal myocardial preconditioning in a human model of ischemia and reperfusion.

BACKGROUND: Adenosine (ADE) may mediate the protective effects of preconditioning (PC). However, human data are lacking, and the optimal method of ADE administration and the mechanism of protection remain unresolved. METHODS AND RESULTS: We have developed a model of simulated "ischemia" (I) and "reperfusion" (R) in quiescent human ventricular cardiomyocytes. Cellular injury and metabolic parameters were assessed after various interventions: Cells were preconditioned with anoxia (PC0), hypoxia (PC16), anoxic supernatant (SUP0), or hypoxic supernatant (SUP16) with or without the ADE receptor antagonist (SPT) or ADE deaminase (ADA). ADE was applied before, during, or after I or continuously with and without SPT. Cells were treated with the PKC agonist PMA. PC cells were incubated with the protein kinase-C (PKC) antagonist Calphostin-C (Cal-C). PKC translocation and PKC activity were assessed. PC0 was most protective. Protection was transferable via SUP0, which produced the highest concentrations of ADE. Protection was lost with SPT or ADA. Intracellular ATP fell after PC and prolonged I and R. Exogenous ADE was most protective when administered before I at 50 mumol. ADE during I was partially protective. No additional protection was provided with continuous ADE treatment. ADE prevented ATP degradation but increased lactate immediately after its administration. SPT abolished the protective effects of ADE. PMA conferred protection, which was abolished with Cal-C. ADE stimulated PKC translocation and PKC activity in the absence of SPT. CONCLUSIONS: Maximal I confers maximal PC. The degree of I is reflected in supernatant ADE concentrations. The initial ATP fall with PC may account for a lack of ATP preservation after I and R. ADE reproduces the protective effects of PC, preserves ATP, and increases lactate production, perhaps by stimulating glycolysis. Clinical trials of ADE administered during cardiac surgery are necessary to further define its beneficial effects in humans.

Adenosine↗

Quenching the effects of L-arginine on free radical injury in cultured cardiomyocytes.

Neutrophil activation and oxygen-derived free radical formation have been implicated in cardiac ischemia-reperfusion injury. To elucidate the mechanism of ischemia-reperfusion injury, we thus determined the effect of the nitric oxide (NO) precursor L-arginine on the free radical injury of cultured cardiomyocytes which were obtained from patients undergoing corrective surgery for tetralogy of Fallot. Free radicals were generated from hypoxanthine via xanthine oxidase, and the cellular changes were determined microscopically. All concentrations of L-arginine (0.5 to 3 mM) prolonged the myocyte survival time compared to the control group, with 0.5 mM L-arginine increasing the survival time to the greatest extent. Cellular susceptibility to free radical injury was the lowest with 0.5 mM L-arginine. Further experiments were performed with 0.5 mM L-arginine plus 100 mM or 1000 mM of the NO synthase (NOS) inhibitor NG-nitro-L-arginine methylester (L-NAME) to determine whether or not the effects of L-arginine are mediated through the NO pathway. The survival time for the cells treated with a concentration of L-NAME was shorter than for the cells treated with 0.5 mM L-arginine alone. These results suggest that L-arginine acts through the NO-dependent pathway. In conclusion, our findings thus confirmed the quenching effects of NO on free radical injury in cultured cardiomyocytes.

Arginine↗

Aprotinin and dipyridamole for the safe reduction of postoperative blood loss.

BACKGROUND: Aprotinin (APR) reduces postoperative blood loss but may induce thrombosis. Dipyridamole (DIP) limits platelet aggregation and may reduce the thrombotic complications associated with APR. METHODS: To evaluate the safety and effectiveness of combined APR and DIP, we undertook a prospective randomized trial in patients undergoing cardiac operations. Patients were stratified according to risk for bleeding (low or high), and received either DIP with placebo (DIP group; n = 59) or DIP with APR (DIP + APR group; n = 56). Blood samples were obtained for the measurement of hematologic and biochemical parameters. Blood loss and transfusion requirements were documented postoperatively. RESULTS: Postoperative blood loss and transfusion requirements were significantly lower in the DIP + APR group at 6, 12, and 24 hours after bypass (p < 0.01). No significant differences were found between groups in the incidence of perioperative mortality (DIP, 0%; DIP + APR, 3%), myocardial infarction (DIP, 0%; DIP + APR, 3%), stroke (DIP, 1%; DIP + APR, 1%), or potential thrombotic events (death, myocardial infarction, and stroke: DIP, 2%; DIP + APR, 5%). In addition, these rates did not differ from those of nonparticipating matched control patients. CONCLUSIONS: Administration of both drugs simultaneously was more effective than DIP alone in reducing postoperative blood loss. A platelet inhibitor may be required to reduce the thrombotic complications associated with APR. Further studies evaluating graft patency and perioperative ischemia are necessary to confirm the potential benefits of the combination of a platelet inhibitor and APR.

Aprotinin↗

Deep sternal wound infection: risk factors and outcomes.

BACKGROUND: Deep sternal wound infection (DSWI) is a serious complication of cardiac operations performed by median sternotomy. We attempted to define the predictors of DSWI and to describe the outcomes of two treatment strategies used at our institution. METHODS: Retrospective review was performed using prospectively gathered data on 12,267 consecutive cardiac surgical patients from 1990 to 1995. Chart review was performed on all patients in whom DSWI developed, and follow-up was obtained on 100% of these patients. RESULTS: Deep sternal wound infections developed in 92 patients (incidence 0.75%). Multivariable predictors for development of DSWI in all patients were (odds ratios and 95% confidence intervals in parentheses) (1) diabetes mellitus (2.6; 1.7 to 4.0) and (2) male sex (2.2; 1.3 to 3.9). In patients receiving coronary artery bypass grafting alone, independent predictors were (1) bilateral internal thoracic artery grafts (3.2; 1.1 to 8.9), (2) diabetes (2.7; 1.6 to 4.3), and (3) male sex (1.8; 0.9 to 3.7). For all other patients, predictors were (1) age more than 74 years (3.3; 1.1 to 10.1), (2) male sex (3.0; 1.1 to 8.1), and (3) diabetes (2.3; 0.9 to 5.8). Bilateral internal thoracic artery grafts increased the risk of DSWI in all subgroups of coronary artery bypass graft patients, particularly in diabetics who had a 14.3% incidence of DSWI after bilateral internal thoracic artery grafting. Patients with DSWIs received either sternal debridement with primary closure (n=45) or sternectomy with flap reconstruction (n=46). The 6-month freedom from adverse event rate (ie, readmission, reoperation, or death) was 76% for both groups of patients. CONCLUSIONS: Male sex and diabetes are predictors of DSWI in all cardiac surgical patients. Bilateral internal thoracic artery grafting may be contraindicated in diabetic patients.

Age Factors↗

Inaccurate and misleading valve sizing: a proposed standard for valve size nomenclature.

BACKGROUND: The sizes with which manufacturers label valves are nonuniform and haphazard. This has led to confusion and inappropriate comparisons of hemodynamics between valves with the same labeled size. Hemodynamic performance of valves is primarily determined by the internal diameter (ID) of their orifice. METHODS: The purpose of this study was to determine the ID and external diameter of aortic valves used at our institution and compare the measurements to manufacturers' labeled sizes. We also evaluated valve size (ID, manufacturers' labeled size) in 527 patients undergoing isolated aortic valve replacement between 1990 and 1996. RESULTS: We demonstrated that no two manufacturers' tissue or mechanical valves have the same ID or external diameter for a given labeled size. The labeled size of tissue valves was 1 to 4 mm larger than the measured ID. The labeled size of mechanical valves was 3 to 5 mm larger than the measured ID. The St. Jude HP mechanical valve has a greater ID than all other mechanical valves for each labeled size. Among 403 patients operated on for predominant aortic stenosis, those patients receiving the Toronto Stented Porcine Valve (n = 98) had a larger mean ID (22.3+/-1.9 mm) than 204 patients receiving stented tissue valves (ID = 20.9+/-1.9 mm) and the 101 patients receiving mechanical valves (ID = 19.3+/-1.9 mm, p < 0.0001). However, when the manufacturers' labeled size was used as a measure of the size, the results were greatly exaggerated in favor of the Toronto Stented Porcine Valve (ID = 26.3+/-1.9 mm) compared with stented tissue valves (ID = 23.1+/-2.1) or mechanical valves (ID = 23.6+/-1.9) (p < 0.0001). CONCLUSIONS: Manufacturers' labeling of valves is nonuniform and may lead to erroneous comparisons and conclusions of hemodynamic differences between valves. We therefore recommend a standardized nomenclature for the size of all valves based on the ID measurement.

Aortic Valve↗

Insulin stimulates pyruvate dehydrogenase and protects human ventricular cardiomyocytes from simulated ischemia.

UNLABELLED: Impaired myocardial metabolism after cardioplegic arrest results in persistent anaerobic lactate production. Insulin may protect the heart from ischemia and reperfusion by enhancing myocardial metabolic recovery. However, the stimulation of glycolysis during ischemia may be detrimental because of an accumulation of metabolic end-products. We examined the effect of insulin on quiescent human ventricular cardiomyocytes subjected to simulated cardioplegic ischemia and reperfusion. METHODS: Primary cardiomyocyte cultures were established from patients undergoing corrective repair of tetralogy of Fallot. Cells were exposed to varying concentrations of glucose and insulin during 30 minutes of stabilization in 10 mL of phosphate-buffered saline solution. Ischemia was simulated by exposing the cells to a low volume (1.5 mL) of deoxygenated phosphate-buffered saline solution for 90 minutes followed by 30 minutes of simulated reperfusion in 10 mL of normoxic phosphate-buffered saline solution. Cell viability was assessed by trypan blue exclusion. The activity of mitochondrial pyruvate dehydrogenase was measured in 3 states: stabilization, ischemia, and reperfusion. In addition intracellular lactate, adenine nucleotides, extracellular lactate, pyruvate, and acid release were measured. RESULTS: Higher ambient glucose concentrations resulted in greater cellular injury although insulin-treated cells displayed less injury after ischemia and reperfusion. Insulin increased the pyruvate dehydrogenase activity by 31% in cardiomyocytes and reduced extracellular lactate production by 40%. Intracellular adenosine triphosphate was improved by 75% in cells exposed to high glucose concentrations in the presence of insulin. CONCLUSIONS: Insulin protected human ventricular cardiomyocytes from ischemia and reperfusion. This protection may be due to a stimulation of pyruvate dehydrogenase activity which resulted in improved aerobic metabolism.

Adenine Nucleotides↗

Preconditioning human cardiomyocytes and endothelial cells.

BACKGROUND: The effects of simulated "ischemia" and "reperfusion" were evaluated in cell cultures of human ventricular cardiomyocytes and human saphenous vein endothelial cells. METHODS: Myocyte and endothelial cell cultures were exposed to a low volume (1.5 ml) of either hypoxic (oxygen tension = 16 mm Hg) or anoxic (oxygen tension = 0 mm Hg) phosphate-buffered saline solution for 90 minutes ("ischemia") followed by 30 minutes of simulated "reperfusion." Cell injury was evaluated by trypan blue exclusion. Next, the effects of a preconditioning stimulus were evaluated by a brief (10 minute) exposure to hypoxic or anoxic ischemia and 10 minutes of reperfusion before prolonged (90 minutes) anoxic ischemia. Finally, the effects of anoxic preconditioning on intracellular lactate accumulation and extracellular lactate and acid release were assessed. RESULTS: "Ischemia" and "reperfusion" resulted in greater injury to endothelial cells than to cardiomyocytes. In both cell types, anoxic ischemia resulted in greater injury than hypoxic ischemia. Preconditioning reduced cell injury in myocytes but not in endothelial cells. Endothelial cells produced more lactate than cardiomyocytes under normoxic conditions. Ischemia increased lactate accumulation and release in cardiomyocytes but not endothelial cells. Preconditioning reduced lactate accumulation and release in cardiomyocytes but not endothelial cells. CONCLUSIONS: Endothelial cells were more susceptible to the same period of simulated ischemia than cardiomyocytes. Preconditioning protected cardiomyocytes but not endothelial cells from a subsequent prolonged period of ischemia and reperfusion.

Cell Hypoxia↗

Optimal flow rates for integrated cardioplegia.

BACKGROUND: Antegrade cardioplegic delivery may be impaired by coronary occlusions, whereas retrograde delivery of cardioplegic solution may be inhomogeneous, leading to an accumulation of lactate and hydrogen ions, the products of anaerobic metabolism. Integrated cardioplegia using continuous retrograde cardioplegia and antegrade infusions into completed vein grafts washes out metabolites accumulated in regions inadequately perfused by retrograde cardioplegia alone. To determine the flow rates required to achieve the greatest washout, we compared a high flow rate (200 ml/min) to a low flow rate (100 ml/min). METHODS: Twenty patients scheduled for isolated coronary bypass surgery were prospectively randomized to compare two flow rates for integrated cardioplegic protection using tepid (29 degrees C) blood cardioplegia. Arterial and coronary sinus blood samples were collected to evaluate myocardial metabolism. After antegrade arrest, cardioplegic solution was delivered by coronary sinus perfusion and simultaneous infusions into each completed vein graft at either high or low flow. RESULTS: Increasing from low to high flow increased the washout of lactate and hydrogen ions during the aortic crossclamp period. Two hours after crossclamp removal, ventricular function was better in the high flow groups. CONCLUSIONS: Tepid retrograde cardioplegia resulted in an accumulation of toxic metabolites. The addition of antegrade vein graft infusions at a flow rate of 100 ml/min resulted in a washout of these metabolites. A flow rate of 200 ml/min further improved this washout and resulted in improved ventricular function. An integrated approach to myocardial protection using a flow rate of 200 ml/min may improve the results of coronary bypass surgery.

Blood↗

Myocardial aerobic metabolism is impaired in a cell culture model of cyanotic heart disease.

A human pediatric cardiomyocyte cell culture model of chronic cyanosis was used to assess the effects of low oxygen tension on mitochondrial enzyme activity to address the postoperative increase in lactate and decreased ATP in the myocardium and the high incidence of low-output failure with restoration of normal oxygen tension, after technically successful corrective cardiac surgery. Chronically hypoxic cells (PO2 = 40 mmHg for 7 days) exhibited significantly reduced activities for pyruvate dehydrogenase, cytochrome-c oxidase, succinate cytochrome c reductase, succinate dehydrogenase, and citrate synthase. The activity of NADH-cytochrome c reductase was unaffected. Lactate production and the lactate-to-pyruvate ratio were significantly greater in hypoxic cardiomyocytes. Western and Northern analysis demonstrated a decrease in the levels of various mRNA and corresponding polypeptides in hypoxic cells. Thus hypoxia influences mitochondrial metabolism through acute and chronic adaptive mechanisms, reflecting allosteric (posttranscriptional) and transcriptional modulation. Transcriptional downregulation of key mitochondrial enzyme systems can explain the insufficient myocardial aerobic metabolism and low-output failure in children with cyanotic heart disease after cardiac surgery.

Adenosine Triphosphate↗

Delusions in Alzheimer's disease: a review.

Alzheimer's disease is the leading cause of mental impairment in elderly people, accounting for a large proportion of admissions to nursing homes and assisted living homes. Psychiatric symptoms associated with Alzheimer's disease, although common, have not received much attention until recently. In this review the authors discuss in detail the association between Alzheimer's disease and delusions. Definitions of terms are followed by an overview of the classification, clinical epidemiology, etiology, treatment, and prognosis of delusions in Alzheimer's disease. The article concludes by highlighting some of the open questions regarding delusions in Alzheimer's disease.

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Novel technetium (III)-Q complexes for functional imaging of multidrug resistance (MDR1) P-glycoprotein.

UNLABELLED: Overexpression of the multidrug resistance (MDR1) P-glycoprotein (Pgp) correlates with cancer chemotherapeutic failure. Lipophilic cationic radiopharmaceuticals such as 99mTc-sestamibi, 99mTc-tetrofosmin and 99Tc-furifosmin (Tc-Q12) have been validated as transport substrates for the MDR1 Pgp and may enable functional imaging of the MDR phenotype in cancer by observing enhanced washout rates of the tracers in those tumor areas expressing Pgp. To further explore and optimize the Pgp recognition properties of Schiff base phosphine mixed-ligand complexes of the Tc-Q series of nonreducible (Tc(III) cations, a variety of Tc-Q complexes were synthesized and tested in vitro for recognition as transport substrates by the human MDR1 Pgp. METHODS: Tracer assays with human drug-sensitive KB-3-1 epidermal carcinoma and MDR KB-8-5 cells expressing nonimmunodetectable and modest levels of MDR1 Pgp, respectively, were used to screen and pharmacologically characterize 37 novel 99mTc-Q analogs. RESULTS: The ideal agent should have low nonspecific binding, high distinction in net uptake between drug-sensitive cells and MDR tumor cells, and high enhancement of uptake in resistant cells after treatment with an MDR modulator, indicating selective blockade of Pgp-mediated efflux of the radiotracer. Three analogs, trans-[5,5'-(1,2-ethanediyldiimino)bis(2-OEt-2-Me-4-penten-3 -one)]bis[dimethyl(3-OMe-1-propyl)phosphine]99mTc(III) (99mTc-Q63) and two trans-[bis(methyl-bis(3-OMe-1-propyl)phosphine)] analogs (99mTc-Q57 and 99mTc-Q58) displayed transport distinctions between drug-sensitive and MDR cell lines that were equal to or greater than all previously available agents. Cyclosporin A, an MDR modulator, had no significant effect in KB-3-1 cells for these 99mTc-complexes but enhanced tracer accumulations in KB-8-5 cells with IC50 values of approximately 1 microM. In contrast, the non-MDR agents methotrexate and cisplatin had no effect on accumulation of 99mTc-Q complexes and 99mTc-sestamibi in KB-8-5 cells. CONCLUSION: Technetium-99m-Q57, 99mTc-Q58 and 99mTc-Q63 are avid transport substrates recognized by the human MDR1 Pgp, and have enhanced in vitro properties that may enable functional imaging of Pgp in vivo with improved signal-to-noise ratios and tissue contrast compared to currently available agents.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Coronary artery bypass grafting in patients with non-dialysis-dependent renal insufficiency.

BACKGROUND: Preoperative renal failure increases the morbidity and mortality of coronary artery bypass graft (CABG) surgery. The results of CABG in patients with non-dialysis-dependent, mild renal insufficiency are unknown. METHODS: From a population of 2978 consecutive patients undergoing isolated CABG from 1990 to 1996, 38 patients with preoperative renal insufficiency (Renal group; serum creatinine >150 micromol/L) were identified and matched on six prognostic variables to a cohort of 152 control patients (Control group). Two patients with preoperative dialysis-dependent renal failure were excluded from analysis. RESULTS: Compared to the overall population, the Renal group were more likely to be over age 70, diabetic, hypertensive, and suffer from peripheral vascular disease and left ventricular dysfunction. Compared to the Control group, the Renal group were more likely to require perioperative blood transfusions (P<.001) and had a greater requirement for postoperative dialysis (P<.01). The Renal group had longer ventilation times, intensive care unit stay, and postoperative hospital stay. Mild renal insufficiency was found to be an independent predictor of postoperative low output syndrome (odds ratio=3.6). CONCLUSIONS: Mild renal insufficiency, even in the absence of dialysis, increases the risk of blood transfusion, low output syndrome and prolonged the length of intensive care unit and postoperative stay for patients undergoing CABG.

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Early experience with stentless versus stented valves.

BACKGROUND: The Toronto stentless porcine valve (SPV) was designed to improve hemodynamics after aortic valve replacement by maximizing available flow area in comparison to stented valves (STD). METHODS: To assess possible hemodynamic differences between STD and SPV, 59 patients undergoing isolated aortic valve replacement (+/-coronary artery bypass graft) were prospectively evaluated by preoperative and 3- to 6-month postoperative echocardiography. Among these, 23 patients received a STD, whereas 36 received the Toronto SPV. RESULTS: The mean size (mm) of SPV implanted was larger (SPV, 26.6+/-2.1; STD, 24.0+/-2.9; P=0.0002). Patients receiving STD valves were older and had a higher prevalence of coronary artery disease and congestive heart failure. There were no preoperative differences in left ventricular mass index (g/mo2), peak or mean pressure gradients (mmHg), effective orifice area (cm2), extent of fractional shortening (%), or velocity of circumferential shortening (cf/sec). ANOVA demonstrated a significant reduction in left ventricular mass index at 3 to 6 months (P=.0001) but no differences in left ventricular mass index regression between groups (STD, -28.8+/-37.5; SPV, -31.2+/-32.4; P=.36). Effective orafice area was increased postoperatively (P=.0001), particularly among SPV cases (STD, 1.5+/-0.4; SPV, 1.9+/-0.7; P=.01). Postoperative left ventricular mass index and mean pressure gradient were reduced (P=.0001) but did not differ between groups. Fractional shortening and velocity of circumferential shortening were greater in the SPV patients at 3 to 6 months after aortic valve replacement (P=.0004 and .0001, respectively), and an interactive effect was seen between time and prosthetic group (P=.0028 and .032, respectively). CONCLUSIONS: In a consecutive series of patients, we identified no hemodynamic differences between STD and SPV, although ventricular function improved after SPV. Because of the nonrandomized nature of the study, selection bias may have accounted for some of the observed results. A prospective, randomized trial is necessary to determine the hemodynamic advantages, if any, of the SPV valve.

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Natural history of fetal rat cardiomyocytes transplanted into adult rat myocardial scar tissue.

BACKGROUND: Fetal rat cardiomyocytes transplanted into left ventricular scar tissue of the adult rat heart limit scar expansion and improve heart function. This study determined morphologic changes of transplanted fetal rat cardiomyocytes in myocardial scar tissue. METHODS AND RESULTS: The left ventricles of 500-g Sprague-Dawley rats were cryodamaged. At 4 weeks after myocardial injury, a transmural scar (54+/-11 mm2) (mean+/-1 SDak) formed at the apex (n=6). Cardiomyocytes freshly isolated from 18-day-gestation Sprague-Dawley rat hearts were transfected with plasmid containing the beta-galactosidase and then injected into the 4-week-old scar tissue. Cell culture medium was injected into the scar tissue of control animals. At 4 weeks posttransplantation, the cardiomyocytes had formed cardiac tissue (20.7+/-6.9 mm2, n=14), which stained positively for beta-galactosidase activity in the scar (90.4+/-25 mm2, n=14). The transplanted cardiomyocytes formed sarcomeres and were linked by junctions composed of desmosomes and fascia adherens. Lymphocyte infiltration occurred despite use of cyclosporin A. No myocardial tissue was found in the scar tissue of the control animals (n=14). More arterioles and venules were found (P<.01) in the cardiomyocyte grafts (1.2+/-0.6 vessel/0.8 mm2; n=14) than in the control scar tissue (0.1+/-0.1 vessels/0.8 mm2; n=14). At 20 weeks post-transplantation, the transplant tissue size (6+/-6 mm2; n=7) was smaller (P=.007) than 4-week old transplant, and the scar (162+/-46 mm2; n=7) was larger (P=.005) than 4-week-old scar. Lymphocyte infiltration was still present among the remaining transplanted cells. CONCLUSIONS: This study demonstrated that cardiac tissue formed by transplanted fetal cardiomyocytes in the myocardial scar tissue decreased in size with time probably secondary to rejection.

Animals↗

Overexpression of transforming growth factor-beta1 and insulin-like growth factor-I in patients with idiopathic hypertrophic cardiomyopathy.

BACKGROUND: Idiopathic hypertrophic cardiomyopathy (HCM) is characterized by regional myocardial hypertrophy. To investigate involvement of growth factors on myocardial hypertrophy in HCM patients, we evaluated gene expression and cellular localization of transforming growth factor-beta1 (TGF-beta1), insulin-like growth factors (IGF-I and IGF-II), and platelet-derived growth factor-B (PDGF-B) in ventricular biopsies obtained from patients with HCM (n=8), aortic stenosis (AS) (n=8), or stable angina (SA) (n=8) and from explanted hearts with ischemic cardiomyopathy (TM) (n=7). METHODS AND RESULTS: Levels of TGF-beta1, IGF-I, IGF-II, and PDGF-B transcripts were quantified with the use of multiplex RT-PCR. Glyceraldehyde 3-phosphate dehydrogenase was used as an internal standard. Antibodies against TGF-beta and IGF-I were used to localize their peptides within the myocardium. Antisense and sense (control) cRNA probes of TGF-beta1 and IGF-I, labeled with digoxigenin, were used to localize the growth factor transcripts by in situ hybridization. mRNA levels (densitometric ratio of growth factor/glyceraldehyde-3-phosphate dehydrogenase) of TGF-beta1 and IGF-I in HCM (0.75+/-0.05 and 0.85+/-0.15, respectively; mean+/-1 SEM) were significantly (P<.01 for all groups) elevated in comparison with non-HCM myocardium (AS: 0.38+/-0.07, 0.29+/-0.06; SA: 0.32+/-0.04, 0.18+/-0.05; TM: 0.25+/-0.03, 0.15+/-0.03). mRNA levels of TGF-beta1 and IGF-I in the hypertrophic AS myocardium were greater (P=.02, P=.05) than those in the explanted myocardium (TM). Immunohistochemical and in situ hybridization studies showed increased expression of TGF-beta1 and IGF-I in the HCM cardiomyocytes. CONCLUSIONS: Gene expression of TGF-beta1 and IGF-I was enhanced in idiopathic hypertrophic cardiomyopathy and may be associated with its development.

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