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Effects of Aerobic Interval and Continuous Exercise Trainings in Patients With Chronic Heart Failure

27. Oktober 2010 aktualisiert von: Chang Gung Memorial Hospital

Effects of Aerobic Interval and Continuous Exercise Trainings on Cardiovascular Hemorheological Characteristics and Atherothrombosis/Angiogenesis-related Variables in Patients With Chronic Heart Failure

Heart failure (HF) is a major and increasingly common cardiovascular syndrome, and is the end result of many cardiovascular disorders. It has been reported that HF patients with pharmacological therapy often remain burdened by dyspnea and fatigue, diminished exercise tolerance, reduced quality of life, recurrent hospitalizations, and early mortality. HF is associated with neurohumoral changes as the body attempts to reverse the effect of reduced cardiac output and organ perfusion. Persistent neurohumoral excitation, however, actually results in deterioration of myocardial function with inflammatory response, end-organ damage, and skeletal muscle derangement, which lead to worsened exercise capacity.

Physical training can have beneficial effects on neurohumoral, inflammatory, metabolic and central hemodynamic responses, as well as on endothelial, skeletal muscle and cardiovascular function, leading to improvement in functional capacity and quality of life. All these training-induced changes can effectively counteract the progression of deleterious compensatory mechanisms of HF.

Several lines of evidence suggest greater aerobic and cardiovascular adaptations after high-intensity exercise than with moderate levels in patients with coronary artery disease or left ventricular dysfunction function and in healthy subjects. Aerobic interval training (AIT) involving periods at 90% of VO2peak has been shown to rescue impaired cardiomyocyte contractility, attenuate myocardial hypertrophy, and reduce myocardial expression of atrial natriuretic peptide in animal model of post-infarction heart failure. However, underlying mechanisms of AIT-improved regulations remain unclear.

The different effects of AIT and moderate continuous training (MCT) on hemorheology, atherothrombosis or angiogenesis modulated by erythrocyte, monocyte or EPC in patients with CHF have been not investigated yet. Accordingly, the investigators will conduct this three-year study to clarify how the two exercise trainings affect cardiovascular hemorheological characteristics and atherothrombosis/ angiogenesis-related variables in patients with chronic heart failure. The investigators expect that these results obtained from this study can aid in determining appropriate exercise intervention to improve aerobic fitness as well as simultaneously improve hemodynamic control and minimize the risk of thrombogenesis in patients with CHF.

Studienübersicht

Detaillierte Beschreibung

Heart failure (HF) is a major and increasingly common cardiovascular syndrome, and is the end result of many cardiovascular disorders. It has been reported that HF patients with pharmacological therapy often remain burdened by dyspnea and fatigue, diminished exercise tolerance, reduced quality of life, recurrent hospitalizations, and early mortality. HF is associated with neurohumoral changes as the body attempts to reverse the effect of reduced cardiac output and organ perfusion. Persistent neurohumoral excitation, however, actually results in deterioration of myocardial function with inflammatory response, end-organ damage, and skeletal muscle derangement, which lead to worsened exercise capacity.

Physical training can have beneficial effects on neurohumoral, inflammatory, metabolic and central hemodynamic responses, as well as on endothelial, skeletal muscle and cardiovascular function, leading to improvement in functional capacity and quality of life. All these training-induced changes can effectively counteract the progression of deleterious compensatory mechanisms of HF. Which exercise intensity yields maximal beneficial adaptations is controversial.

Several lines of evidence suggest greater aerobic and cardiovascular adaptations after high-intensity exercise than with low and moderate levels in patients with coronary artery disease or left ventricular dysfunction function and in healthy subjects. Aerobic interval training (AIT) involving periods at 90% of VO2peak has been shown to rescue impaired cardiomyocyte contractility, attenuate myocardial hypertrophy, and reduce myocardial expression of atrial natriuretic peptide in animal model of post-infarction heart failure.

However, underlying mechanisms of AIT-improved regulations of cardiac hemodynamics and risk factors in patients with CHF remain unclear.

Pathological erythrocyte deformability and aggregation reduces capillary perfusion and oxygen transfer to tissue, resulting in tissue ischemia or infraction. Shedding of procoagulant-rich microparticles from activated monocytes can accelerate the pathogenesis of atherothrombosis. Bone marrow-derived, circulating endothelial progenitor cells (EPC) is contributes to the maintenance of endothelial function and organ perfusion by mechanisms ranging from endothelial repair to angiogenesis. However, the different effects of AIT and moderate continuous training (MCT) on hemorheology, atherothrombosis or angiogenesis modulated by erythrocyte, monocyte or EPC in patients with CHF have been not investigated yet.

Accordingly, we will conduct this three-year study that includes 1st year study: the effects of AIT and MCT on hemorheology modulated by erythrocyte in patients with CHF; 2nd year: the effects of AIT and MCT on atherothrombosis modulated by monocyte in patients with CHF; and 3rd year study: the effects of AIT and MCT on angiogenesis modulated by EPC in patients with CHF to clarify how the two exercise trainings affect cardiovascular hemorheological characteristics and atherothrombosis/ angiogenesis-related variables in patients with chronic heart failure. We expect that these results obtained from this study can aid in determining appropriate exercise intervention to improve aerobic fitness as well as simultaneously improve hemodynamic control and minimize the risk of thrombogenesis in patients with CHF.

Studientyp

Interventionell

Einschreibung (Voraussichtlich)

90

Phase

  • Unzutreffend

Kontakte und Standorte

Dieser Abschnitt enthält die Kontaktdaten derjenigen, die die Studie durchführen, und Informationen darüber, wo diese Studie durchgeführt wird.

Studienorte

    • Tao-Yuan
      • Kwei-Shan., Tao-Yuan, Taiwan, 333
        • Rekrutierung
        • Chang Gung University
        • Kontakt:
        • Hauptermittler:
          • Jong-shyan Wang, Ph.D
        • Unterermittler:
          • Tieh-Cheng Fu, M.D

Teilnahmekriterien

Forscher suchen nach Personen, die einer bestimmten Beschreibung entsprechen, die als Auswahlkriterien bezeichnet werden. Einige Beispiele für diese Kriterien sind der allgemeine Gesundheitszustand einer Person oder frühere Behandlungen.

Zulassungskriterien

Studienberechtigtes Alter

18 Jahre und älter (Erwachsene, Älterer Erwachsener)

Akzeptiert gesunde Freiwillige

Nein

Studienberechtigte Geschlechter

Alle

Beschreibung

Inclusion Criteria:

  • cardiac event with optimal medial treatment within 3 months and have 4 more weeks spared from heart disease attack or major cardiac procedure.

Exclusion Criteria:

  • unstable angina pectoris,
  • uncompensated heart failure,
  • myocardial infarction during the past 4 weeks,
  • complex ventricular arrhythmias,
  • orthopedic or neurological limitations to exercise

Studienplan

Dieser Abschnitt enthält Einzelheiten zum Studienplan, einschließlich des Studiendesigns und der Messung der Studieninhalte.

Wie ist die Studie aufgebaut?

Designdetails

  • Hauptzweck: Behandlung
  • Zuteilung: Zufällig
  • Interventionsmodell: Parallele Zuordnung
  • Maskierung: Keine (Offenes Etikett)

Waffen und Interventionen

Teilnehmergruppe / Arm
Intervention / Behandlung
Experimental: aerobic intermittent group
  • 1.exercise(Aerobic interval training (AIT)): training with 90% of VO2 peak and 40% of VO2 peak cycle for total 30 minutes exercise time
  • 2.exercise(moderate continuous training (MCT)):training with 60% of VO2peak for 30 min
Experimental: aerobic continuous group
  • 1.exercise(Aerobic interval training (AIT)): training with 90% of VO2 peak and 40% of VO2 peak cycle for total 30 minutes exercise time
  • 2.exercise(moderate continuous training (MCT)):training with 60% of VO2peak for 30 min
Kein Eingriff: control
home exercise group
  • 1.exercise(Aerobic interval training (AIT)): training with 90% of VO2 peak and 40% of VO2 peak cycle for total 30 minutes exercise time
  • 2.exercise(moderate continuous training (MCT)):training with 60% of VO2peak for 30 min

Was misst die Studie?

Primäre Ergebnismessungen

Ergebnis Maßnahme
Maßnahmenbeschreibung
Zeitfenster
ventilation efficacy
Zeitfenster: three year
Ventilation efficacy could be show as ventilation equivalent(minute ventilation / oxygen consumption (VE/VO2) or minute ventilation / Carbon dioxide production (VE/VCO2). The slope of VE/VCO2 predict mortality in HF patient. These data ia available during cardiopulmonary exercise test(CPX or CPET). We also got other traditional data including Peak HR, Peak O2 consumption, Peak workload......
three year

Mitarbeiter und Ermittler

Hier finden Sie Personen und Organisationen, die an dieser Studie beteiligt sind.

Ermittler

  • Hauptermittler: Jong-Shyan Wang, Ph.D, Chamg Gung university

Publikationen und hilfreiche Links

Die Bereitstellung dieser Publikationen erfolgt freiwillig durch die für die Eingabe von Informationen über die Studie verantwortliche Person. Diese können sich auf alles beziehen, was mit dem Studium zu tun hat.

Studienaufzeichnungsdaten

Diese Daten verfolgen den Fortschritt der Übermittlung von Studienaufzeichnungen und zusammenfassenden Ergebnissen an ClinicalTrials.gov. Studienaufzeichnungen und gemeldete Ergebnisse werden von der National Library of Medicine (NLM) überprüft, um sicherzustellen, dass sie bestimmten Qualitätskontrollstandards entsprechen, bevor sie auf der öffentlichen Website veröffentlicht werden.

Haupttermine studieren

Studienbeginn

1. Juli 2010

Primärer Abschluss (Voraussichtlich)

1. Juni 2013

Studienabschluss (Voraussichtlich)

1. Juni 2013

Studienanmeldedaten

Zuerst eingereicht

18. Oktober 2010

Zuerst eingereicht, das die QC-Kriterien erfüllt hat

27. Oktober 2010

Zuerst gepostet (Schätzen)

28. Oktober 2010

Studienaufzeichnungsaktualisierungen

Letztes Update gepostet (Schätzen)

28. Oktober 2010

Letztes eingereichtes Update, das die QC-Kriterien erfüllt

27. Oktober 2010

Zuletzt verifiziert

1. Oktober 2010

Mehr Informationen

Begriffe im Zusammenhang mit dieser Studie

Zusätzliche relevante MeSH-Bedingungen

Andere Studien-ID-Nummern

  • 98-3605B

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