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February 6, 2001Circulation83 citationsOpen Access

Midwall Mechanics Are Improved After Regression of Hypertensive Left Ventricular Hypertrophy and Normalization of Chamber Geometry

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SPStefano PerliniMMMaría Lorenza MuiesanCCCesare Cuspidi

Structured PICO

Does antihypertensive treatment with lisinopril improve midwall mechanics in patients with hypertensive LVH?

P
Population
152 patients with hypertensive left ventricular hypertrophy (LVH)
I
Intervention
1 year of treatment with 20 mg/d lisinopril (alone or associated with 12.5 to 25 mg/d hydrochlorothiazide), preceded by a 4-week placebo run-in and followed by a 1-month placebo withdrawal period
C
Comparator
Pre-treatment baseline and post-withdrawal state
O
Outcome
Midwall mechanics (midwall fractional shortening)surrogate

Regression of concentric LVH through antihypertensive therapy improves midwall systolic function, driven primarily by normalization of LV geometry rather than reduction in systolic stress.

Abstract

BACKGROUND: It is still unclear whether substantial regression of hypertensive left ventricular hypertrophy (LVH) and normalization of chamber geometry are associated with improved left ventricular (LV) myocardial function. METHODS AND RESULTS: Midwall mechanics were evaluated in 152 patients undergoing 1 year of effective antihypertensive treatment. Two-dimensionally directed M-mode echocardiography was performed as follows: (1) after a 4-week placebo "run-in" period, (2) after 1 year of treatment with 20 mg/d lisinopril (alone or associated with 12.5 to 25 mg/d hydrochlorothiazide), and (3) after a final 1-month placebo period to allow blood pressure (24-hour average ambulatory monitoring) to return to pretreatment levels. Treatment-induced reductions in blood pressure (from 149+/-16/95+/-11 to 131+/-12/83+/-10 mm Hg, P:<0.05) and circumferential end-systolic wall stress (from 84+/-22 to 72+/-19 g/cm(2), P:<0.05) were associated with a marked reduction in LV mass index (from 159+/-30 to 133+/-26 g/m(2), P:<0.05). LVH regression was accompanied by an increase in midwall fractional shortening (from 19.7+/-2.7% to 20.9+/-2.7%, P:<0.05) and by a decrease in relative wall thickness (from 48.2+/-7.7% to 44.1+/-6.7%, P:<0.05). The improvement in midwall function associated with afterload reduction and substantial LVH regression persisted after antihypertensive therapy withdrawal and restoration of the hypertensive state. Despite a significant increase in end-systolic wall stress, further LV chamber remodeling did not occur. The preservation of relative wall thickness was associated with a persistent improvement in midwall systolic function. CONCLUSIONS: Regression of concentric LVH is associated with an improvement of midwall systolic function, which is more dependent on the normalization of LV geometry than on the reduction in LV systolic stress.

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Cite This Study

Perlini et al. (2001) studied this question.

synapsesocial.com/papers/6a0b990cd7f95f637495c9c6https://doi.org/10.1161/01.cir.103.5.678
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Improvement in Midwall Myocardial Shortening With Regression of Left Ventricular Hypertrophy2000 · 39 citations
  2. 2Changes in midwall systolic performance and cardiac hypertrophy reduction in hypertensive patients2000 · 27 citations
  3. 3Change in Systolic Left Ventricular Performance After 3 Years of Antihypertensive Treatment2002 · 76 citations
  4. 4Left ventricular midwall mechanics in systemic arterial hypertension. Myocardial function is depressed in pressure-overload hypertrophy.1991 · 346 citations
  5. 5Interrelation between midwall mechanics and longitudinal strain in newly diagnosed and never-treated hypertensive patients without clinically defined hypertrophy2019 · 17 citations