94 research outputs found

    Development, validation and implementation of biomarker testing in cardiovascular medicine state-of-the-art: Proceedings of the European Society of Cardiology - Cardiovascular Round Table.

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    Many biomarkers that could be used to assess ejection fraction, heart failure, or myocardial infarction fail to translate into clinical practice because they lack essential performance characteristics or fail to meet regulatory standards for approval. Despite their potential, new technologies have added to the complexities of successful translation into clinical practice. Biomarker discovery and implementation requires a standardised approach that includes: identification of a clinical need; identification of a valid surrogate biomarker; stepwise assay refinement, demonstration of superiority over current standard-of-care; development and understanding of a clinical pathway; and demonstration of real-world performance. Successful biomarkers should improve efficacy or safety of treatment, while being practical at a realistic cost. Everyone involved in cardiovascular healthcare, including researchers, clinicians, and industry partners, are important stakeholders in facilitating the development and implementation of biomarkers. This paper provides suggestions for a development pathway for new biomarkers, discusses regulatory issues and challenges, and suggestions for accelerating the pathway to improve patient outcomes. Real life examples of successful biomarkers-high sensitivity cardiac troponin (hs-cTn), T2* cardiovascular magnetic resonance (CMR) imaging, and echocardiography-are used to illustrate the value of a standardised development pathway in the translation of concepts into routine clinical practice

    Apollo Lunar Astronauts Show Higher Cardiovascular Disease Mortality: Possible Deep Space Radiation Effects on the Vascular Endothelium

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    As multiple spacefaring nations contemplate extended manned missions to Mars and the Moon, health risks could be elevated as travel goes beyond the Earth’s protective magnetosphere into the more intense deep space radiation environment. The primary purpose of this study was to determine whether mortality rates due to cardiovascular disease (CVD), cancer, accidents and all other causes of death differ in (1) astronauts who never flew orbital missions in space, (2) astronauts who flew only in low Earth orbit (LEO), and (3) Apollo lunar astronauts, the only humans to have traveled beyond Earth’s magnetosphere. Results show there were no differences in CVD mortality rate between non-flight (9%) and LEO (11%) astronauts. However, the CVD mortality rate among Apollo lunar astronauts (43%) was 4–5 times higher than in non-flight and LEO astronauts. To test a possible mechanistic basis for these findings, a secondary purpose was to determine the long-term effects of simulated weightlessness and space-relevant total-body irradiation on vascular responsiveness in mice. The results demonstrate that space-relevant irradiation induces a sustained vascular endothelial cell dysfunction. Such impairment is known to lead to occlusive artery disease, and may be an important risk factor for CVD among astronauts exposed to deep space radiation

    Long-term Tolerability of Ticagrelor for the Secondary Prevention of Major Adverse Cardiovascular Events: A Secondary Analysis of the PEGASUS-TIMI 54 Trial.

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    IMPORTANCE: In the PEGASUS-TIMI 54 trial, treatment with ticagrelor reduced the incidence of cardiovascular death, myocardial infarction, or stroke by 15% to 16% among stable patients compared with placebo. However, more patients prematurely discontinued treatment with ticagrelor than with placebo. OBJECTIVE: To investigate the reasons and timing of discontinuation of treatment with ticagrelor among stable patients prior myocardial infarction. DESIGN, SETTING, AND PARTICIPANTS: In the PEGASUS-TIMI 54 trial, 21 162 stable outpatients with prior myocardial infarction were randomly assigned to 90 mg of ticagrelor twice daily, 60 mg of ticagrelor twice daily, or placebo, with all of the patients receiving a low dose of aspirin. These participants were followed up for a median of 33 months (study start date: October 2010; completion date: December 2014). Discontinuation of treatment was evaluated by treatment arm, cause, and timing. This analysis was initiated in May 2015. MAIN OUTCOME AND MEASURE: Discontinuation of treatment. RESULTS: Over 33 months, 32%, 29%, and 21% of patients receiving 90 mg of ticagrelor, 60 mg of ticagrelor, and placebo, respectively, discontinued treatment (P < .001). Discontinuation of treatment due to an adverse event occurred in 19%, 16%, and 9% of patients, respectively (P < .001). The most frequent adverse events leading to discontinuation of treatment were bleeding (with Kaplan-Meier event rates of 7.8%, 6.2%, and 1.5% of patients, respectively; P < .001) and dyspnea (6.5%, 4.6%, and 0.8% of patients, respectively; P < .001). Eighty-six percent of bleeding events that led to the discontinuation of treatment with ticagrelor were nonmajor, and 86% of adverse events due to dyspnea that led to discontinuation of treatment with ticagrelor were mild or moderate in severity. The discontinuation rates are annualized for patients who received 90 mg of ticagrelor twice daily (hazard ratio [HR], 2.00 [95% CI, 1.84-2.16] for the first year; HR, 1.12 [95% CI, 1.00-1.26] for the second and third years) and patients who received 60 mg of ticagrelor twice daily (HR, 1.59 [95% CI, 1.46-1.73] for the first year; HR, 1.18 [95% CI, 1.06-1.32] for the second and third years) compared with patients who received placebo. CONCLUSIONS AND RELEVANCE: When initiated among stable patients with prior myocardial infarction, discontinuation of treatment with ticagrelor was driven primarily by nonserious adverse events occurring primarily early after randomization. For patients completing 1 year of treatment, the subsequent discontinuation rate was low. These data demonstrate how adverse events considered "nonserious" by traditional trial criteria may have an effect on quality of life and, thus, may precipitate the discontinuation of treatments and underscore the need for patient education and counseling on the timing and nature of adverse effects with the aim of improving adherence when appropriate. TRIAL REGISTRATION: clinicaltrials.gov Identifier: NCT01225562
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