Chronic Rapamycin Therapy Ameliorates Hypertrophy and Systolic Dysfunction in Severe Chronic Heart Failure Due to Pressure Overload

2010 ◽  
Vol 16 (8) ◽  
pp. S9
Author(s):  
Kalkidan Bishu ◽  
Selma Mohammed ◽  
Tomohito Ohtani ◽  
Sudhir Kushwaha ◽  
Xiaolei Xu ◽  
...  
Circulation ◽  
2007 ◽  
Vol 116 (suppl_16) ◽  
Author(s):  
Deddo Moertl ◽  
Martin Huelsmann ◽  
Joachim Struck ◽  
Andreas Gleiss ◽  
Alexandra Hammer ◽  
...  

Background: Although natriuretic peptides are increasingly used for the management of chronic heart failure (CHF), there are sparse comparative data. Therefore, we compared the importance of influencing factors, the ability to detect left ventricular systolic dysfunction, and the prognostic power of midregional pro-atrial natriuretic peptide (MR-proANP), B-type natriuretic peptide (BNP), and aminoterminal pro-B-type natriuretic peptide (NT-proBNP) in patients with chronic heart failure. Methods and Results: MR-proANP, using a new assay directed at the midregion of aminoterminal-proANP, was compared with BNP and NT-proBNP, using conventional assays, in 797 patients with CHF. All three natriuretic peptides were independently influenced by left ventricular ejection fraction (LVEF), glomerular filtration rate (GFR), and the presence of ankle edema. Area under receiver-operator characteristic curves for detection of an LVEF <40% were similar between MR-proANP (0.799 [0.753– 0.844]) and BNP (0.803 [0.757– 0.849]), and NT-proBNP (0.730 [0.681– 0.778]. During a median observation time of 68 months, 492 patients died. In multiple Cox regression analysis each natriuretic peptide was the strongest prognostic parameter among various clinical variables, but proportion of explained variation showed that NT-proANP was a significantly stronger predictor of death than NT-proBNP and BNP (Figure ). Conclusions: Despite similarities in influencing factors and detection of reduced LVEF, MR-proANP outperformed BNP and NT-proBNP in the prediction of death. A new assay technology and the high biological stability of MR-proANP are potential explanations for these findings.


1979 ◽  
Vol 44 (6) ◽  
pp. 1183-1189 ◽  
Author(s):  
Stanley A. Rubin ◽  
Kanu Chatterjee ◽  
Thomas A. Ports ◽  
Harris J. Gelberg ◽  
Bruce H. Brundage ◽  
...  

Circulation ◽  
2007 ◽  
Vol 116 (suppl_16) ◽  
Author(s):  
Jorge E Massare ◽  
R. Haris Naseem ◽  
Jeff M Berry ◽  
Farhana Rob ◽  
Joseph A Hill

Background: Sudden cardiac death due to ventricular tachyarrhythmia (VT) accounts for a large number of deaths in patients with heart failure. Several cellular events which occur during pathological remodeling of the failing ventricle are implicated in the genesis of VT, including action potential prolongation, dysregulation of intercellular coupling, and fibrosis. Interestingly, transgenic mice over-expressing constitutively active PKD (caPKD) develop severe heart failure without interstitial fibrosis, an otherwise prominent feature of the disease. The goal here was to define the role of interstitial fibrosis in the proarrhythmic phenotype of failing myocardium. Methods and Results: We performed echocardiographic, electrocardiographic, and in vivo electrophysiologic studies in 8 –10 week old caPKD mice (n=12). Similar studies were performed in mice with load-induced heart failure induced by surgical pressure overload (sTAB, n=10), a model of heart failure with prominent interstitial fibrosis. caPKD and sTAB mice showed similar degrees of ventricular dilation (LV systolic dimension caPKD 2.4±0.8 mm vs 3.0±0.9 sTAB, p=0.18) and severe systolic dysfunction (% fractional shortening caPKD 25±11 vs 28±11 sTAB, p=0.62). Yet, caPKD mice showed minimal interstitial fibrosis, comparable to unoperated controls. With the exception of ventricular refractory period, which was higher in caPKD (48±11 msec vs 36±7 TAB and 40±8 WT, p<0.05), other electrocardiographic and electrophysiologic variables were similar among the 3 groups (p=NS), including heart rate, QT duration, and mean VT threshold. As expected, VT (≥3beats) was readily inducible by programmed stimulation in sTAB mice (7/10). By contrast, VT was less inducible in caPKD mice (4/12; p=0.1 vs TAB and <0.05 vs WT), and uninducible in unoperated controls (0/12). VT was polymorphic in both models, but episodes of VT were both slower (VT cycle length caPKD 58±4.0 msec vs 48±1 sTAB, p=0.016) and longer in caPKD mice (caPKD 1.8±0.7 sec vs 0.47±0.3 sTAB, p=0.038). Conclusion: Interstitial fibrosis contributes to the inducibility, maintenance, and rate of VT in heart failure. These findings highlight the importance of anti-remodeling therapies known to target fibrosis in heart disease.


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