Background-Because initially compensatory myocardial hypertrophy in response to pressure overloading may eventually decompensate to myocardial failure, mechanisms responsible for this transition have long been sought. One such mechanism established in vitro is densification of the cellular microtubule network, which imposes a viscous load that inhibits cardiocyte contraction. Methods and Results-In the present study, we extended this in vitro finding to the in vivo level and tested the hypothesis that this cytoskeletal abnormality is important in the in vivo contractile dysfunction that occurs in experimental aortic stenosis in the adult dog. In 8 dogs in which gradual stenosis of the ascending aorta had caused severe left ventricular (LV) pressure overloading (gradient, 152+/-16 mm Hg) with contractile dysfunction, LV function was measured at baseline and 1 hour after the intravenous administration of colchicine. Cardiocytes obtained by biopsy before and after in vivo colchicine administration were examined in tandem. Microtubule depolymerization restored LV contractile function both in vivo and in vitro. Conclusions-These and additional corroborative data show that increased cardiocyte microtubule network density is an important mechanism for the ventricular contractile dysfunction that develops in large mammals with adult-onset pressure-overload-induced cardiac hypertrophy.
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MED UNIV S CAROLINA, DEPT MED, DIV CARDIOL, 171 ASHLEY AVE, CHARLESTON, SC 29425 USAMED UNIV S CAROLINA, DEPT MED, DIV CARDIOL, 171 ASHLEY AVE, CHARLESTON, SC 29425 USA
ISHIHARA, K
ZILE, MR
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MED UNIV S CAROLINA, DEPT MED, DIV CARDIOL, 171 ASHLEY AVE, CHARLESTON, SC 29425 USAMED UNIV S CAROLINA, DEPT MED, DIV CARDIOL, 171 ASHLEY AVE, CHARLESTON, SC 29425 USA
ZILE, MR
TOMITA, M
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MED UNIV S CAROLINA, DEPT MED, DIV CARDIOL, 171 ASHLEY AVE, CHARLESTON, SC 29425 USAMED UNIV S CAROLINA, DEPT MED, DIV CARDIOL, 171 ASHLEY AVE, CHARLESTON, SC 29425 USA
TOMITA, M
TANAKA, R
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MED UNIV S CAROLINA, DEPT MED, DIV CARDIOL, 171 ASHLEY AVE, CHARLESTON, SC 29425 USAMED UNIV S CAROLINA, DEPT MED, DIV CARDIOL, 171 ASHLEY AVE, CHARLESTON, SC 29425 USA
TANAKA, R
KANAZAWA, S
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MED UNIV S CAROLINA, DEPT MED, DIV CARDIOL, 171 ASHLEY AVE, CHARLESTON, SC 29425 USAMED UNIV S CAROLINA, DEPT MED, DIV CARDIOL, 171 ASHLEY AVE, CHARLESTON, SC 29425 USA
KANAZAWA, S
CARABELLO, BA
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MED UNIV S CAROLINA, DEPT MED, DIV CARDIOL, 171 ASHLEY AVE, CHARLESTON, SC 29425 USAMED UNIV S CAROLINA, DEPT MED, DIV CARDIOL, 171 ASHLEY AVE, CHARLESTON, SC 29425 USA
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UNIV BRITISH COLUMBIA, ST PAULS HOSP, CARDIOVASC RES LAB, VANCOUVER, BC V6Z 1Y6, CANADAUNIV BRITISH COLUMBIA, ST PAULS HOSP, CARDIOVASC RES LAB, VANCOUVER, BC V6Z 1Y6, CANADA
Wambolt, RB
Henning, SL
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UNIV BRITISH COLUMBIA, ST PAULS HOSP, CARDIOVASC RES LAB, VANCOUVER, BC V6Z 1Y6, CANADAUNIV BRITISH COLUMBIA, ST PAULS HOSP, CARDIOVASC RES LAB, VANCOUVER, BC V6Z 1Y6, CANADA
Henning, SL
English, DR
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UNIV BRITISH COLUMBIA, ST PAULS HOSP, CARDIOVASC RES LAB, VANCOUVER, BC V6Z 1Y6, CANADAUNIV BRITISH COLUMBIA, ST PAULS HOSP, CARDIOVASC RES LAB, VANCOUVER, BC V6Z 1Y6, CANADA
English, DR
Bondy, GP
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UNIV BRITISH COLUMBIA, ST PAULS HOSP, CARDIOVASC RES LAB, VANCOUVER, BC V6Z 1Y6, CANADAUNIV BRITISH COLUMBIA, ST PAULS HOSP, CARDIOVASC RES LAB, VANCOUVER, BC V6Z 1Y6, CANADA
Bondy, GP
Allard, MF
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UNIV BRITISH COLUMBIA, ST PAULS HOSP, CARDIOVASC RES LAB, VANCOUVER, BC V6Z 1Y6, CANADAUNIV BRITISH COLUMBIA, ST PAULS HOSP, CARDIOVASC RES LAB, VANCOUVER, BC V6Z 1Y6, CANADA