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Showing posts with label heart failure. Show all posts
Showing posts with label heart failure. Show all posts

Sunday, August 31, 2014

NECTAR-HF fails to demonstrate clinical benefit of vagus nerve stimulation in Heart Failure

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NECTAR-HF fails to demonstrate clinical benefit of vagus nerve stimulation in Heart Failure

Saturday, August 30, 2014

 

BARCELONA, Spain – Stimulating the vagus nerve, which regulates the body’s internal organ systems including the heart, does not improve cardiac function in heart failure patients, according to results of the NEural Cardiac TherApy foR Heart Failure (NECTAR-HF) trial.


NECTAR-HF was presented as a Hot Line today at ESC Congress 2014,  with simultaneous publication in the European Heart Journal.


The trial’s failure to show a cardiac benefit of vagal nerve stimulation (VNS) was unexpected, said study investigator Faiez Zannad, MD, PhD, from l'Institut Lorrain du Coeur et des Vaisseaux Louis Mathieu, in Vandoeuvre-lès-Nancy, France.

“There is robust pre-clinical data showing the benefit of VNS, but the NECTAR-HF trial failed to demonstrate a successful clinical translation of this protocol,” he said.

 

The study is the first randomised, controlled trial designed to evaluate the safety and efficacy of right-sided VNS.


It enrolled 96 heart failure patients from 24 centres across Western Europe to assess the impact of six months of VNS on cardiac function, as well as on cardiac biomarkers, exercise capacity, and quality of life.


Patients, who were about 59 years old and receiving optimal medical therapy, had the VNS device implanted in their neck, near the right vagus nerve, and connected to a pulse generator implanted under the skin of the chest.


After baseline testing of the system, patients were then randomized to either a control group in which the devices remained switched off, or an active VNS group in which the mean stimulation amplitude was 1.24 mA at the start of the study, and 1.42 mA at the 3-month follow-up visit.


After six months, the study found no difference in objective endpoints between the groups.
Both groups had comparable changes from baseline in the primary endpoint of left ventricular end-systolic dimension (LVESD),  as well secondary echocardiographic endpoints, exercise capacity, and levels of the heart failure serum biomarker N-terminal prohormone brain natriuretic peptide (NT-proBNP).


However, there were significant differences between the groups for three subjective endpoints related to quality of life.


Analyses of the Minnesota Living with Heart Failure Questionnaire (MLHFQ) and the Short Form 36 Health Survey (SF-36) demonstrated statistically significant improvement in quality of life with VNS treatment compared to controls (MLHFQ p=0.049; SF-36 Physical and Mental, p=0.02 and 0.24, respectively).


Additionally, 62% of patients in the VNS group had an improvement of at least one point from baseline in their New York Heart Association (NYHA) functional classification compared to only 45% of control patients (p=0.032).

“The safety profile for this application of VNS appeared acceptable, with an overall infection rate of 7.4%, which is comparable to that in patients implanted with a VNS system for the treatment of epilepsy,” noted Professor Zannad.


Given that preliminary studies suggested a benefit of VNS, there are a number of possible explanations for NECTAR-HF’s negative findings.


First, there is still much to learn about the appropriate dosing and technique of VNS. Data from epilepsy VNS studies show that higher-amplitude dosing might be more effective, but it is often not possible because it causes patient discomfort, said Professor Zannad.


Second, patients in the NECTAR-HF trial were relatively well-managed on medical therapy alone, making them perhaps not the best candidates to show a strong benefit of VNS.

Third, the six-month study period may have been too short to detect changes in cardiac function.


Although patients were blinded to their group assignment, meaning they were not told if they were receiving active treatment, it is possible that those in the active treatment group were able to feel the sensation of stimulation. If this was the case, patients could have been vulnerable to a placebo effect, knowing that they were receiving active therapy.
For this reason, the higher quality of life scores among VNS patients compared to controls should be interpreted with caution, he said.

Authors: ESC Press Office
For background information, please contact the ESC Press Office.
For independent comment on site, please contact the ESC Spokesperson coordinator.

Notes to editor
SOURCES OF FUNDING: The study was funded by Boston Scientific Corporation.
DISCLOSURES: Professor Zannad receives honoraria from Air Liquide, Bayer, Biomérieux, Biotronik, Boston Scientific, CVCRx, Janssen, Novartis, Pfizer, Resmed, Roche Diagnostics, Sanofi, Servier, St Jude, Takeda, speaker fees from Mitsubishi and owns stocks at CVCT and CardioRenal diagnostics. Co-author Gaetano De Ferrari receives honoraria from Amgen, Boston Scientific, Menarini and Merck. Co-authors Stephen Ruble, Doug Daum, Scott Meyer, Craig Stolen, Bernd Schubert, Agnes Ramuzat, Nicholas Wold and Kenneth Stein are employees of Boston Scientific Corporation.


About the European Society of Cardiology
The European Society of Cardiology (ESC) represents more than 80 000 cardiology professionals across Europe and the Mediterranean. Its mission is to reduce the burden of cardiovascular disease in Europe.
About ESC Congress 2014


The ESC Congress is currently the world's largest international congress in cardiovascular medicine.  The spotlight of this year's event is “innovation and the heart”.  ESC Congress 2014 takes place from 30 August to 3 September at the Fira Gran Via in Barcelona, Spain. For more information on ESC Congress 2014 contact the ESC Press Office.
To access all the scientific resources from the sessions during the congress, visit ESC Congress 365.


This press release accompanies both a presentation and an ESC press conference at the ESC Congress 2014. Edited by the ESC from material supplied by the investigators themselves, this press release does not necessarily reflect the opinion of the European Society of Cardiology. The content of the press release has been approved by the presenter.

http://www.healthcanal.com/blood-heart-circulation/heart-disease/54662-nectar-hf-fails-to-demonstrate-clinical-benefit-of-vagus-nerve-stimulation-in-heart-failure.html

Wednesday, June 26, 2013

Late-Onset Advanced Heart Block Due to Vagal Nerve Stimulation.

Am J Ther. 2013 Jun 21. [Epub ahead of print]

Late-Onset Advanced Heart Block Due to Vagal Nerve Stimulation.

Schevchuck A, West MB.
Source
Department of Internal Medicine, Division of Cardiology. University of New Mexico, Albuquerque, NM.
Abstract
Vagal nerve stimulation (VNS) is widely accepted as an effective and safe therapy for refractory seizure disorders. Significant cardiac complications, such as complete heart block or symptomatic bradycardia, are extremely rare. We present a case report of a 40-year-old man with drug-resistant epilepsy, treated with VNS, who developed the late-onset (12 months after implant), stimulation-related, symptomatic advanced heart block that was initially misinterpreted for a new type of seizure. The patient was otherwise free from other stimulation-related side effects. To our knowledge, this is the first case report of late-onset advanced heart block due to VNS.
PMID:
23797757
[PubMed - as supplied by publisher]

Related citations in PubMed
See reviews...See all...
http://www.ncbi.nlm.nih.gov/pubmed/23797757





Sunday, November 11, 2012

Pilot Study Extension Indicates Long-Term Treatment Durability with BioControl Medical's CardioFit(R) System

press release
Nov. 8, 2012, 7:00 a.m. EST

Pilot Study Extension Indicates Long-Term Treatment Durability with BioControl Medical's CardioFit(R) System





YEHUD, Israel & NEW HOPE, Minn., Nov 08, 2012 (BUSINESS WIRE) -- BioControl Medical has announced that pilot study extension results unveiled at the American Heart Association Scientific Sessions 2012 have indicated durability of treatment with its CardioFit(R) system for heart failure. Presented on November 7 in "Long-term Benefits of Vagal Nerve Stimulation Therapy in Heart Failure," the extended study data showed that the CardioFit's favorable clinical effects - as demonstrated by improved hemodynamics, quality of life and six-minute walk test - were maintained in patients beyond the study's original six- and 12-month evaluation points, up to 24 months.(1)

"These results are an encouraging validation of vagus nerve stimulation's potential as an effective long-term treatment for heart failure," said Dr. Srdjan Raspopovic, Clinical Center of Serbia, Belgrade, Serbia, a CardioFit pilot study investigator who presented the data at AHA 2012. "Larger controlled studies are currently underway to confirm these findings, and if they do, we believe that VNS will become an important new treatment alternative in the heart failure armamentarium."

Conducted in Italy, Germany, The Netherlands and Serbia, the original multi-center pilot clinical study of the CardioFit was designed to assess the six-month safety and clinical response to the therapy in 32 patients with NYHA II-IV heart failure on optimized background medical therapy.

Study data showed that patients experienced sustained significant improvement across key clinical measures at six and 12 months, including left ventricular function and structure, heart rate variability, and resting heart rate.(2) Patients also showed improvement in self-reported quality of life surveys and six-minute hall walk tests.(2) The study extension's 24-month data, available on 19 patients, showed sustained clinical improvement with the CardioFit therapy. Patient follow up now extends beyond four years, with good therapy tolerance and no reported safety issues.

"The extended pilot results are important data that build on BioControl Medical's growing body of research supporting VNS for the treatment of heart failure," said Ehud Cohen, Ph.D., chief executive officer of BioControl Medical. "We thank the investigators for their rigorous work assessing the long-term effects of CardioFit in our early study, and we look forward to gathering more data on a broader population of patients as our pivotal clinical trial continues to advance."

The safety and efficacy of the CardioFit is being explored further in the INOVATE-HF (INcrease Of VAgal TonE in Heart Failure) global, multi-center, investigational device exemption (IDE) clinical study. Initiated in April 2011, INOVATE-HF is a prospective, randomized, controlled clinical study that will evaluate the system's potential to reduce hospitalization and death among patients with HF, while also exploring whether combined treatment with CardioFit and prescription drug therapy is more effective than drug therapy alone.(3)

INOVATE-HF will ultimately enroll up to 650 patients at up to 80 centers in the United States and Europe. Results of the INOVATE-HF study will be used to support a Premarket Approval Application (PMA) to the U.S. Food and Drug Administration (FDA) for market clearance of CardioFit.

About the CardioFit

The CardioFit system consists of a stimulator, a sensor lead and a stimulation lead, which are implanted under the skin of the chest. The sensor lead is extended from the stimulator to the right ventricle of the heart, and the stimulation lead is extended from the stimulator to the vagus nerve on the right side of the neck. Once activated, the stimulator's electrical pulses are transferred via the stimulation lead to the vagus nerve. At the same time, the sensor lead monitors changes in heart activity and turns stimulation on or off accordingly. Like a pacemaker, the CardioFit System can be programmed on and off via external wireless communication with the device.

About BioControl Medical

Headquartered in Yehud, Israel with offices in New Hope, Minn., BioControl Medical develops and markets advanced implantable devices for the treatment of autonomic disorders, conditions whereby the autonomic nervous system ceases to function properly, resulting in a disruption to the control of involuntary body processes. The devices enable controlled electrical stimulation of various nerves to achieve therapeutic results. For more information on BioControl Medical, visit www.biocontrol-medical.com .

Caution: In the United States, the CardioFit is an investigational device. Limited by Federal (or United States) law to investigational use.

References
(1)Dennert R, et al. "Long-term Benefits of Vagal Nerve Stimulation Therapy in Heart Failure." American Heart Association Scientific Sessions 2012.
(2)De Ferrari GM, Crijns HJ, Borggrefe M, Milasinovic G, Smid J, Zabel M, Gavazzi A, Sanzo A, Dennert R, Kuschyk J, Raspopovic S, Klein H, Swedberg K, Schwartz PJ. "Chronic vagus nerve stimulation: a new and promising therapeutic approach for chronic heart failure." Eur Heart J (2011) 32 (7): 847-855.
(3)Hauptman PJ, Schwartz PJ, Gold MR, Borggrefe M, Van Veldhuisen DJ, Starling, RC, Mann DL. "Rationale and study design of the INcrease Of Vagal TonE in Heart Failure study: INOVATE-HF." American Heart Journal (June 2012) 163 (6): 955-962.
SOURCE: BioControl Medical

http://www.marketwatch.com/story/pilot-study-extension-indicates-long-term-treatment-durability-with-biocontrol-medicals-cardiofitr-system-2012-11-08

Saturday, December 4, 2010

Vagus nerve stimulation in experimental heart failure.

Heart Fail Rev. 2010 Dec 3. [Epub ahead of print]

Vagus nerve stimulation in experimental heart failure.


Department of Medicine, Division of Cardiovascular Medicine, Henry Ford Heart and Vascular Institute, Henry Ford Hospital, 2799 West Grand Boulevard, Detroit, MI, 48202, USA, hsabbah1@hfhs.org.

Abstract

Chronic heart failure (HF) is associated with autonomic dysregulation characterized by a sustained increase in sympathetic drive and by withdrawal of parasympathetic activity. Sympathetic overdrive and increased heart rate are predictors of poor long-term outcome in patients with HF. Considerable evidence exists that supports the use of pharmacologic agents that partially inhibit sympathetic activity as effective long-term therapy for patients with HF; the classic example is the wide use of selective and non-selective beta-adrenergic receptor blockers. In contrast, modulation of parasympathetic activation as potential therapy for HF has received only limited attention over the years given its complex cardiovascular effects. In this article, we review the results of recent experimental animal studies that provide support for the possible use of electrical Vagus nerve stimulation (VNS) as a long-term therapy for the treatment of chronic HF. In addition to exploring the effects of chronic VNS on left ventricular (LV) function, the review will also address the effects of VNS on potential modifiers of the HF state that include cytokine production and nitric oxide elaboration. Finally, we will briefly review other nerve stimulation approaches which is also currently under investigation as potential therapeutic modalities for treating chronic HF.
PMID: 21128115 [PubMed - as supplied by publisher