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Reduction in Left Ventricular Wall Stress and Improvement in Function in Failing Hearts using Algisyl-LVR
Published on: April 8, 2013
Cardiocyte cytoskeleton in patients with left ventricular pressure overload hypertrophy
M R Zile1, G R Green, G T Schuyler
1Gazes Cardiac Research Institute, Medical University of South Carolina and the Department of Veterans Affairs Medical Center, Charleston 29403, USA.
Insights
In patients with aortic stenosis, increased microtubules are linked to decreased heart function, similar to animal models. This suggests a potential mechanism for developing congestive heart failure.
Area of Science:
- Cardiology
- Cell Biology
- Biochemistry
Background:
- Animal models of severe pressure overload cardiac hypertrophy show increased microtubule network density, leading to contractile dysfunction.
- This cytoskeletal abnormality, linked to tubulin synthesis and microtubule stability, worsens during the transition to heart failure.
Purpose of the Study:
- To investigate if the microtubule network densification observed in animal models of cardiac hypertrophy also occurs in human patients with severe pressure overload.
Main Methods:
- Studied 13 patients with symptomatic aortic stenosis (AS) and 2 controls, assessing left ventricular (LV) function via echocardiography and cardiac catheterization.
- Analyzed LV biopsies to quantify free and polymerized tubulin fractions.
- Compared midwall LV fractional shortening against mean LV wall stress in AS patients versus normal controls.
Main Results:
- Four AS patients had normal LV function and microtubule protein concentration.
- Six AS patients exhibited decreased LV function alongside increased microtubule protein concentration.
- An inverse relationship was observed between midwall LV fractional shortening and microtubule protein concentration in AS patients.
Conclusions:
- Myocardial dysfunction in human patients with severe LV pressure overload hypertrophy is associated with increased microtubules.
- This finding suggests that elevated microtubule levels may contribute to the development of congestive heart failure in patients with aortic stenosis.
Objectives:
We sought to determine whether the cardiocyte microtubule network densification characteristic of animal models of severe pressure overload cardiac hypertrophy occurs in human patients.
Background:
In animal models of clinical entities causative of severe right and left ventricular (LV) pressure overload hypertrophy, increased density of the cellular microtubule network, through viscous loading of active myofilaments, causes contractile dysfunction that is normalized by microtubule depolymerization. These linked contractile and cytoskeletal abnormalities, based on augmented tubulin synthesis and microtubule stability, progress during the transition to heart failure.
Methods:
Thirteen patients with symptomatic aortic stenosis (AS) (aortic valve area = 0.6 +/- 0.1 cm2) and two control patients without AS were studied. No patient had aortic insufficiency, significant coronary artery disease or abnormal segmental LV wall motion. Left ventricular function was assessed by echocardiography and cardiac catheterization before aortic valve replacement. Left ventricular biopsies obtained at surgery before cardioplegia were separated into free and polymerized tubulin fractions before analysis. Midwall LV fractional shortening versus mean LV wall stress in the AS patients was compared with that in 84 normal patients.
Results:
Four AS patients had normal LV function and microtubule protein concentration; six had decreased LV function and increased microtubule protein concentration, and three had borderline LV function and microtubule protein concentration, such that there was an inverse relationship of midwall LV fractional shortening to microtubule protein.
Conclusions:
In patients, as in animal models of severe LV pressure overload hypertrophy, myocardial dysfunction is associated with increased microtubules, suggesting that this may be one mechanism contributing to the development of congestive heart failure in patients with AS.
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