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Independent determinants for presence and degree of left ventricular systolic dyssynchrony in treatment-naive patients with hypertension

  • Beom June Kwon
  • , Sung Won Jang
  • , Kyu Young Choi
  • , Jae Beom Lee
  • , Dong Bin Kim
  • , Eun Joo Cho
  • , Sang Hyun Ihm
  • , Ho Joong Youn
  • , Tai Ho Rho
  • , Jae Hyung Kim
  • Catholic Univ. of Korea Coll. Med.
  • The Catholic University of Korea

Research output: Contribution to journalArticlepeer-review

6 Scopus citations

Abstract

Objective: Prevalence of left ventricular systolic dyssynchrony (LVSD) is over 40% in treatment-naive patients with hypertension and it improves after chronic antihypertensive treatment. These findings might support the hypothesis that blood pressure (BP), BP-derived parameters, central BP, or arterial stiffness would contribute to LVSD. Therefore, we aimed to investigate possible factors associated with LVSD in treatment-naive patients with hypertension. Methods: The study groups consisted of 266 treatment-naive hypertensive patients who underwent anthropometric, clinical, laboratory, echocardiographic, arterial stiffness, central blood pressure, and 24-h ambulatory blood pressure monitoring evaluations. Echocardiographic measurement was recorded as follows: peak systolic velocity (Sa, subclinical left ventricular systolic function), peak early diastolic and late diastolic velocity at the mitral annulus (Ea and Aa, respectively), mitral E/Ea ratio (subclinical left ventricular diastolic function), standard deviation of time from ECG Q to systolic peak velocity of 12 left ventricular segments (Ts-SD12), and maximal difference between peak systolic velocities of any 2 of the 12 segments (Ts-Max). A Ts-SD12 at least 33 or Ts-Max at least 100 ms was regarded as presence of LVSD. Results: Patients were divided into those without LVSD (group 1, n = 151, 56.8%) and those with LVSD (group 2, n = 115, 43.2%). Group 2 had higher E/Ea and high-density lipoprotein and lower Sa and triglyceride than group 1. On multivariate analysis, Sa was independently and inversely associated with the presence of LVSD [odds ratio (OR) 0.67, 95% confidence interval (CI) 0.48-0.93, P = 0.018]. The linear relationship between variables and degree of LVSD showed that serum potassium levels, E/Ea, and Sa remained significant after multivariate analysis (potassium, β = 0.199, P = 0.006; E/Ea, β = 0.211, P = 0.017; Sa, β = -0.301, P < 0.001 in Ts-SD12 and potassium, β=0.187, P = 0.010; E/Ea, β = 0.234, P = 0.008; Sa, β = -0.322, P < 0.001 in Ts-Max, respectively). Conclusion: Subclinical left ventricular systolic function is independently associated with both the presence and degree of LVSD in treatment-naive hypertensive patients. Subclinical left ventricular diastolic function and serum potassium levels are independently associated with the degree of LVSD. However, arterial stiffness and BP parameters are not determinants.

Original languageEnglish
Pages (from-to)601-609
Number of pages9
JournalJournal of Hypertension
Volume31
Issue number3
DOIs
StatePublished - 2013

Keywords

  • Diastolic function
  • Dyssynchrony
  • Hypertension
  • Potassium
  • Systolic function

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