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Biomedical subjects

Meena Nathan

Publications and source records attributed to Meena Nathan.

7 recordsLinked to original sources

Aortic atresia or severe left ventricular outflow tract obstruction with ventricular septal defect: results of primary biventricular repair in neonates.

BACKGROUND: Aortic atresia or severe aortic stenosis and left ventricular outflow tract obstruction is a frequent component of complex congenital heart disease. Aortic atresia or severe aortic stenosis and left ventricular outflow tract obstruction with two adequate ventricles is sometimes treated by Norwood palliation followed by late biventricular repair. We reviewed our experience with primary biventricular repair in this group of neonates. METHODS: Retrospective review identified 17 neonates (10 males) with aortic atresia or severe left ventricular outflow tract obstruction with ventricular septal defect and an adequate left ventricle undergoing primary biventricular repair between 1986 and 2002. Mean age was 7.7 +/- 2.9 days, weight 3.3 +/- 0.7 kg, and body surface area 0.21 +/- 0.04 kg/m2. Associated anomalies included arch hypoplasia, 7 (41%); aortic atresia, 7 (41%); and coarctation, 5 (29%). Results are reported as mean +/- standard deviation. RESULTS: Median follow-up was 6 years (range, 1 to 17.7 years). Three of the 17 (18%) died within 30 days. There were no deaths in this series since 1992. Nine patients (38.9%) required one reoperation, 7 of which were for conduit stenosis, 1 for left ventricular outflow tract obstruction, and 1 for residual ventricular septal defect with left ventricle-to-right atrium shunt. Freedom from death at 10 years was 82% by Kaplan-Meier estimate. CONCLUSIONS: Excellent long-term survival can be achieved by primary biventricular repair as corroborated by our survival rate of 82%. Primary biventricular repair is an effective operation for aortic atresia and severe left ventricular outflow tract obstruction with adequate sized left ventricle that avoids interstage attrition associated with Norwood palliation and is our procedure of choice.

Aortic Valve↗

Impaired insulin-signaling in hypertrophied hearts contributes to ischemic injury.

Despite increased glucose utilization by hypertrophied myocardium, these hearts exhibit a slower rate of glucose uptake (GU). We hypothesized that, in hypertrophied myocardium, a defect of the insulin-responsive glucose transporter is responsible for impaired GU and metabolism during ischemia, contributing to post-ischemic myocardial dysfunction. In a rabbit model of pressure-overload hypertrophy, GU ((31)P NMR spectroscopy) and total/phosphorylated insulin-signaling intermediates were assayed: insulin-receptor, insulin-receptor-substrate-1 (IRS-1), phosphatidylinositol-3-kinase (PI3-k), GLUT-4 translocation and contractile function in an isolated heart ischemia/reperfusion model. Total protein was not different between hypertrophied and control hearts. Phosphorylation of IRS-1 and PI3-k activity was significantly lower in hypertrophy during ischemia. GU was impaired pre-ischemia in hypertrophy, remained lower during early reperfusion, and was associated with impaired recovery of contractile function. In conclusion, a defect in IRS-1 phosphorylation and PI3-k activation in hypertrophied hearts restricts insulin-mediated GLUT-4 translocation and ischemia, a known stimulus of GLUT-4 translocation, does not compensate for this defect.

Animals↗

Cyclosporin A but not FK-506 protects against dopamine-induced apoptosis in the stunned heart.

BACKGROUND: Dopamine given at moderate doses for inotropy to postischemic hearts has been shown to augment myocyte apoptosis in association with elevated cytosolic calcium. We hypothesize that dopamine-mediated apoptosis occurs through calcium-induced opening of the mitochondrial permeability transition (mPT) pore. We also hypothesize that cyclosporin A (CSA), a calcineurin inhibitor known to block mPT pore opening, would prevent dopamine-induced apoptosis primarily by inhibiting pore opening (cyclophilin D binding). METHODS: Isolated perfused rabbit hearts (n = 6/group) were subjected to 30 minutes of 37 degrees C cardioplegic arrest followed by 120 minutes reperfusion (ischemic injury that produces < 3% infarct by triphenyl-tetrazolium chloride [TTC] staining). Four groups were studied: (1) control; (2) dopamine (10 micromol/L) postischemia (dopa); (3) dopamine+CSA (0.2 micromol/L) (CSA+D) group; (4) dopamine+FK-506 (0.2 micromol/L) (FK+D) group. Left ventricular developed pressure and oxygen consumption were measured preischemia and postischemia. Bax, caspase-3 and caspase-9, and poly-ADP-ribose polymerase (PARP) activation were measured by Western blotting. Apoptotic nuclei were quantified by terminal deoxynucleotidyl transferase-mediated dUTP nick-end labeling (TUNEL) staining. RESULTS: Dopamine postischemia improved contractile function and heart rate and this was not affected by CSA or FK. However, TUNEL positive nuclei, Bax, caspase-3 and caspase-9 activation, and PARP cleavage were all increased in dopa and FK+D groups, but not in CSA+D. CONCLUSIONS: Cyclosporin is effective in preventing dopamine-induced apoptosis in the postischemic heart. The mechanism is likely due to inhibition of mPT pore opening since FK-506, a potent calcineurin inhibitor that does not bind to cyclophilin, did not prevent this. Low dose cyclosporin may prove useful to prevent dopamine-induced apoptosis resulting in long-term preservation of cardiac function.

Animals↗

Hypothermic circulatory arrest enables aortic valve replacement in patients with unclampable aorta.

BACKGROUND: Atheroembolic complications associated with clamping a severely diseased ascending aorta during aortic valve replacement may result in unacceptable mortality and morbidity. Different management options include hypothermic circulatory arrest to replace the aortic valve, an aortic endarterectomy, or tube graft replacement of the aorta to allow safe application of cross-clamp before aortic valve replacement. METHODS: From 1998 to 2004, 70 patients who underwent aortic valve replacement had an aorta that was unclampable. Median age was 76 years; 33 (47%) were women; 46 (66%) had concomitant coronary artery bypass grafting; 9 (13%) had concomitant mitral valve surgery; and 4 (6%) were reoperations. Hypothermic circulatory arrest was used to replace the aortic valve alone, to do an aortic endarterectomy, or replace the ascending aorta with a tube graft. RESULTS: Operative mortality was 4%. There were 8 (11%) strokes and 1 (1.4%) transient ischemic attack. Statistical analysis showed no association between circulatory arrest period and occurrence of adverse cerebral events. There was no significant difference among the three groups when operative mortality and cerebral events were compared. CONCLUSIONS: Hypothermic circulatory arrest is an important adjunct that allows aortic valve replacement to be performed with an acceptable mortality but with an increased risk of cerebral event in this high-risk and elderly group of patients.

Adult↗