Christian Puelacher
University of Basel
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Featured researches published by Christian Puelacher.
Canadian Medical Association Journal | 2015
Tobias Reichlin; Raphael Twerenbold; Karin Wildi; Maria Rubini Gimenez; Nathalie Bergsma; Philip Haaf; Sophie Druey; Christian Puelacher; Berit Moehring; Michael Freese; Claudia Stelzig; Lian Krivoshei; Petra Hillinger; Cedric Jäger; Thomas Herrmann; Philip Kreutzinger; Milos Radosavac; Kateryna Pershyna; Ursina Honegger; Max Wagener; Thierry Vuillomenet; Isabel Campodarve; Roland Bingisser; Òscar Miró; Katharina Rentsch; Stefano Bassetti; Stefan Osswald; Christian Mueller
Background: We aimed to prospectively validate a novel 1-hour algorithm using high-sensitivity cardiac troponin T measurement for early rule-out and rule-in of acute myocardial infarction (MI). Methods: In a multicentre study, we enrolled 1320 patients presenting to the emergency department with suspected acute MI. The high-sensitivity cardiac troponin T 1-hour algorithm, incorporating baseline values as well as absolute changes within the first hour, was validated against the final diagnosis. The final diagnosis was then adjudicated by 2 independent cardiologists using all available information, including coronary angiography, echocardiography, follow-up data and serial measurements of high-sensitivity cardiac troponin T levels. Results: Acute MI was the final diagnosis in 17.3% of patients. With application of the high-sensitivity cardiac troponin T 1-hour algorithm, 786 (59.5%) patients were classified as “rule-out,” 216 (16.4%) were classified as “rule-in” and 318 (24.1%) were classified to the “observational zone.” The sensitivity and the negative predictive value for acute MI in the rule-out zone were 99.6% (95% confidence interval [CI] 97.6%–99.9%) and 99.9% (95% CI 99.3%–100%), respectively. The specificity and the positive predictive value for acute MI in the rule-in zone were 95.7% (95% CI 94.3%–96.8%) and 78.2% (95% CI 72.1%–83.6%), respectively. The 1-hour algorithm provided higher negative and positive predictive values than the standard interpretation of highsensitivity cardiac troponin T using a single cut-off level (both p < 0.05). Cumulative 30-day mortality was 0.0%, 1.6% and 1.9% in patients classified in the rule-out, observational and rule-in groups, respectively (p = 0.001). Interpretation: This rapid strategy incorporating high-sensitivity cardiac troponin T baseline values and absolute changes within the first hour substantially accelerated the management of suspected acute MI by allowing safe rule-out as well as accurate rule-in of acute MI in 3 out of 4 patients. Trial registration: ClinicalTrials.gov, NCT00470587
Circulation | 2015
Raphael Twerenbold; Karin Wildi; Cedric Jaeger; Maria Rubini Gimenez; Miriam Reiter; Tobias Reichlin; Astrid Walukiewicz; Mathias Gugala; Lian Krivoshei; Nadine Marti; Petra Hillinger; Christian Puelacher; Katharina Rentsch; Ursina Honegger; Carmela Schumacher; Felicitas Zurbriggen; Michael Freese; Claudia Stelzig; Isabel Campodarve; Stefano Bassetti; Stefan Osswald; Christian Mueller
Background— It is unknown whether more sensitive cardiac troponin (cTn) assays maintain their clinical utility in patients with renal dysfunction. Moreover, their optimal cutoff levels in this vulnerable patient population have not previously been defined. Methods and Results— In this multicenter study, we examined the clinical utility of 7 more sensitive cTn assays (3 sensitive and 4 high-sensitivity cTn assays) in patients presenting with symptoms suggestive of acute myocardial infarction. Among 2813 unselected patients, 447 (16%) had renal dysfunction (defined as Modification of Diet in Renal Disease–estimated glomerular filtration rate <60 mL·min−1·1.73 m−2). The final diagnosis was centrally adjudicated by 2 independent cardiologists using all available information, including coronary angiography and serial levels of high-sensitivity cTnT. Acute myocardial infarction was the final diagnosis in 36% of all patients with renal dysfunction. Among patients with renal dysfunction and elevated baseline cTn levels (≥99th percentile), acute myocardial infarction was the most common diagnosis for all assays (range, 45%–80%). In patients with renal dysfunction, diagnostic accuracy at presentation, quantified by the area under the receiver-operator characteristic curve, was 0.87 to 0.89 with no significant differences between the 7 more sensitive cTn assays and further increased to 0.91 to 0.95 at 3 hours. Overall, the area under the receiver-operator characteristic curve in patients with renal dysfunction was only slightly lower than in patients with normal renal function. The optimal receiver-operator characteristic curve–derived cTn cutoff levels in patients with renal dysfunction were significantly higher compared with those in patients with normal renal function (factor, 1.9–3.4). Conclusions— More sensitive cTn assays maintain high diagnostic accuracy in patients with renal dysfunction. To ensure the best possible clinical use, assay-specific optimal cutoff levels, which are higher in patients with renal dysfunction, should be considered. Clinical Trial Registration— URL: http://www.clinicaltrials.gov. Unique identifier: NCT00470587.
Clinical Chemistry | 2016
Jasper Boeddinghaus; Tobias Reichlin; Louise Cullen; Jaimi Greenslade; William Parsonage; Christopher J. Hammett; John W. Pickering; Tracey Hawkins; Sally Aldous; Raphael Twerenbold; Karin Wildi; Thomas Nestelberger; Karin Grimm; Maria Rubini-Giménez; Christian Puelacher; Vera Kern; Katharina Rentsch; Martin Than; Christian Mueller
BACKGROUND The early triage of patients toward rule-out and rule-in of acute myocardial infarction (AMI) is challenging. Therefore, we aimed to develop a 2-h algorithm that uses high-sensitivity cardiac troponin I (hs-cTnI). METHODS We prospectively enrolled 1435 (derivation cohort) and 1194 (external validation cohort) patients presenting with suspected AMI to the emergency department. The final diagnosis was adjudicated by 2 independent cardiologists. hs-cTnI was measured at presentation and after 2 h in a blinded fashion. We derived and validated a diagnostic algorithm incorporating hs-cTnI values at presentation and absolute changes within the first 2 h. RESULTS AMI was the final diagnosis in 17% of patients in the derivation and 13% in the validation cohort. The 2-h algorithm developed in the derivation cohort classified 56% of patients as rule-out, 17% as rule-in, and 27% as observation. Resulting diagnostic sensitivity and negative predictive value (NPV) were 99.2% and 99.8% for rule-out; specificity and positive predictive value (PPV) were 95.2% and 75.8% for rule-in. Applying the 2-h algorithm in the external validation cohort, 60% of patients were classified as rule-out, 13% as rule-in, and 27% as observation. Diagnostic sensitivity and NPV were 98.7% and 99.7% for rule-out; specificity and PPV were 97.4% and 82.2% for rule-in. Thirty-day survival was 100% for rule-out patients in both cohorts. CONCLUSIONS A simple algorithm incorporating hs-cTnI baseline values and absolute 2-h changes allowed a triage toward safe rule-out or accurate rule-in of AMI in the majority of patients.
European Heart Journal | 2016
Raphael Twerenbold; Cedric Jaeger; Maria Rubini Gimenez; Karin Wildi; Tobias Reichlin; Thomas Nestelberger; Jasper Boeddinghaus; Karin Grimm; Christian Puelacher; Berit Moehring; Gil Pretre; Nicolas Schaerli; Isabel Campodarve; Katharina Rentsch; Stephan Steuer; Stefan Osswald; Christian Mueller
Aims High-sensitivity cardiac troponin (hs-cTn) assays provide higher diagnostic accuracy for acute myocardial infarction (AMI) when compared with conventional assays, but may result in increased use of unnecessary coronary angiographies due to their increased detection of cardiomyocyte injury in conditions other than AMI. Methods and results We evaluated the impact of the clinical introduction of high-sensitivity cardiac troponin T (hs-cTnT) on the use of coronary angiography, stress testing, and time to discharge in 2544 patients presenting with symptoms suggestive of AMI to the emergency department (ED) within a multicentre study either before (1455 patients) or after (1089 patients) hs-cTnT introduction. Acute myocardial infarction was more often the clinical discharge diagnosis after hs-cTnT introduction (10 vs. 14%, P < 0.001), while unstable angina less often the clinical discharge diagnosis (14 vs. 9%, P = 0.007). The rate of coronary angiography was similar before and after the introduction of hs-cTnT (23 vs. 23%, P = 0.092), as was the percentage of coronary angiographies showing no stenosis (11 vs. 7%, P = 0.361). In contrast, the use of stress testing was substantially reduced from 29 to 19% (P < 0.001). In outpatients, median time to discharge from the ED decreased by 79 min (P < 0.001). Mean total costs decreased by 20% in outpatients after the introduction of hs-cTnT (P = 0.002). Conclusion The clinical introduction of hs-cTn does not lead to an increased or inappropriate use of coronary angiography. Introduction of hs-cTn is associated with an improved rule-out process and thereby reduces the need for stress testing and time to discharge. Clinical Trial Registration Information www.clinicaltrials.gov. Identifier, NCT00470587.
Circulation | 2017
Jasper Boeddinghaus; Thomas Nestelberger; Raphael Twerenbold; Karin Wildi; Patrick Badertscher; Janosch Cupa; Tobias Bürge; Patrick Mächler; Sydney Corbière; Karin Grimm; Maria Rubini Gimenez; Christian Puelacher; Samyut Shrestha; Dayana Flores Widmer; Jakob Fuhrmann; Petra Hillinger; Zaid Sabti; Ursina Honegger; Nicolas Schaerli; Nikola Kozhuharov; Katharina Rentsch; Òscar Miró; Beatriz López; F. Javier Martín-Sánchez; Esther Rodríguez-Adrada; Beata Morawiec; Damian Kawecki; Eva Ganovská; Jiri Parenica; Jens Lohrmann
Background: Four strategies for very early rule-out of acute myocardial infarction using high-sensitivity cardiac troponin I (hs-cTnI) have been identified. It remains unclear which strategy is most attractive for clinical application. Methods: We prospectively enrolled unselected patients presenting to the emergency department with symptoms suggestive of acute myocardial infarction. The final diagnosis was adjudicated by 2 independent cardiologists. Hs-cTnI levels were measured at presentation and after 1 hour in a blinded fashion. We directly compared all 4 hs-cTnI–based rule-out strategies: limit of detection (LOD, hs-cTnI<2 ng/L), single cutoff (hs-cTnI<5 ng/L), 1-hour algorithm (hs-cTnI<5 ng/L and 1-hour change<2 ng/L), and the 0/1-hour algorithm recommended in the European Society of Cardiology guideline combining LOD and 1-hour algorithm. Results: Among 2828 enrolled patients, acute myocardial infarction was the final diagnosis in 451 (16%) patients. The LOD approach ruled out 453 patients (16%) with a sensitivity of 100% (95% confidence interval [CI], 99.2%–100%), the single cutoff 1516 patients (54%) with a sensitivity of 97.1% (95% CI, 95.1%–98.3%), the 1-hour algorithm 1459 patients (52%) with a sensitivity of 98.4% (95% CI, 96.8%–99.2%), and the 0/1-hour algorithm 1463 patients (52%) with a sensitivity of 98.4% (95% CI, 96.8%–99.2%). Predefined subgroup analysis in early presenters (⩽2 hours) revealed significantly lower sensitivity (94.2%, interaction P=0.03) of the single cutoff, but not the other strategies. Two-year survival was 100% with LOD and 98.1% with the other strategies (P<0.01 for LOD versus each of the other strategies). Conclusions: All 4 rule-out strategies balance effectiveness and safety equally well. The single cutoff should not be applied in early presenters, whereas the 3 other strategies seem to perform well in this challenging subgroup. Clinical Trial Registration: URL: http://www.clinicaltrials.gov. Unique identifier: NCT00470587.
JAMA Cardiology | 2016
Maria Rubini Gimenez; Raphael Twerenbold; Jasper Boeddinghaus; Thomas Nestelberger; Christian Puelacher; Petra Hillinger; Karin Wildi; Cedric Jaeger; Karin Grimm; Karl-Frieder Heitzelmann; Zaid Sabti; Patrick Badertscher; Janosch Cupa; Ursina Honegger; Nicolas Schaerli; Nikola Kozhuharov; Jeanne du Fay de Lavallaz; Beatriz López; Emilio Salgado; Òscar Miró; F. Javier Martín-Sánchez; Esther Rodríguez Adrada; Beata Morawiec; Jiri Parenica; Eva Ganovská; Claire Neugebauer; Katharina Rentsch; Jens Lohrmann; Stefan Osswald; Tobias Reichlin
Importance It is currently unknown whether the uniform (universal clinical practice for more than 2 decades) or 2 sex-specific cutoff levels are preferable when using high-sensitivity cardiac troponin T (hs-cTnT) levels in the diagnosis of acute myocardial infarction (AMI). Objective To improve the management of suspected AMI in women by exploring sex-specific vs uniform cutoff levels for hs-cTnT. Design, Setting, and Participants In an ongoing prospective, diagnostic, multicenter study conducted at 9 emergency departments, the present study evaluated patients enrolled from April 21, 2006, through June 5, 2013. The participants included 2734 adults presenting with suspected AMI. Duration of follow-up was 2 years, and data analysis occurred from June 5 to December 21, 2015. Interventions The final diagnosis was centrally adjudicated by 2 independent cardiologists using all available information, including measurements of serial hs-cTnT blood concentrations twice: once using the uniform 99th percentile cutoff value level of 14 ng/L and once using sex-specific 99th percentile levels of hs-cTnT (women, 9 ng/L; men, 15.5 ng/L). Main Outcomes and Measures Diagnostic reclassification in women and men using sex-specific vs the uniform cutoff level in the diagnosis of AMI. Results Of the 2734 participants, 876 women (32%) and 1858 men (68%) were included. Median (interquartile range) age was 68 (55-77) and 59 (48-71) years, respectively. With the use of the uniform cutoff value, 127 women (14.5%) and 345 men (18.6%) received a final diagnosis of AMI. Among these, at emergency department presentation, levels of hs-cTnT were already above the uniform cutoff value in 427 patients (sensitivity, 91.3% [95% CI, 85%-95.6%] in women vs 90.7% [95% CI, 87.1%-93.5% in men]; specificity, 79.2% [95% CI, 76.1%-82.1%] in women vs 78.5% [95% CI, 76.4%-80.6%] in men). After readjudication using sex-specific 99th percentile levels, diagnostic reclassification regarding AMI occurred in only 3 patients: 0.11% (95% CI, 0.02-0.32) of all patients and 0.6% (95% CI, 0.13-1.85) of patients with AMI. The diagnosis in 2 women was upgraded from unstable angina to AMI, and the diagnosis in 1 man was downgraded from AMI to unstable angina. These diagnostic results were confirmed when using 2 alternative pairs of uniform and sex-specific cutoff values. Conclusions and Relevance The uniform 99th percentile should remain the standard of care when using hs-cTnT levels for the diagnosis of AMI.
American Heart Journal | 2016
Gino Lee; Raphael Twerenbold; Yunus Tanglay; Tobias Reichlin; Ursina Honegger; Max Wagener; Cedric Jaeger; Maria Rubini Gimenez; Thomas Hochgruber; Christian Puelacher; Milos Radosavac; Philipp Kreutzinger; Fabio Stallone; Petra Hillinger; Lian Krivoshei; Thomas Herrmann; Romy Mayr; Michael Freese; Damian Wild; Katharina Rentsch; John A. Todd; Stefan Osswald; Michael J. Zellweger; Christian Mueller
BACKGROUND A pilot study using a novel high-sensitivity cardiac troponin I (hs-cTnI) assay suggested that cTnI might be released into blood during exercise-induced myocardial ischemia. We investigated the potential clinical value of this signal. METHODS We included 819 patients with suspected exercise-induced myocardial ischemia referred for rest/bicycle myocardial perfusion single-photon emission computed tomography. The treating cardiologist used all available clinical information to quantify clinical judgment regarding the presence of myocardial ischemia using a visual analog scale twice: prior and after stress testing. High-sensitivity cTnI measurements were obtained before, immediately after peak stress, and 2 hours after stress testing in a blinded manner. Myocardial ischemia was adjudicated using perfusion single-photon emission computed tomography and coronary angiography findings. RESULTS Exercise-induced myocardial ischemia was detected in 278 (34%) patients. High-sensitivity cTnI levels were significantly higher at all time points in patients with myocardial ischemia as compared with those without (P < .001 for all). Combining clinical judgment prior exercise testing with baseline hs-cTnI levels increased diagnostic accuracy as quantified by the area under the receiver operating characteristics curve (AUC) from 0.672 to 0.757 (P < .001). Combining clinical judgment after exercise testing (AUC 0.704) with baseline or poststress hs-cTnI levels also increased the diagnostic accuracy (AUC 0.761-0.771, P < .001 for all). In contrast, exercise-induced changes in hs-cTnI during exercise did not seem useful, as they were small and similar in patients with or without myocardial ischemia. CONCLUSIONS High-sensitivity cTnI concentrations at rest and after exercise, but not its exercise-induced changes, provide substantial incremental value to clinical judgment including exercise electrocardiography regarding the presence of myocardial ischemia.
International Journal of Cardiology | 2015
Karin Wildi; Christa Zellweger; Raphael Twerenbold; Cedric Jaeger; Tobias Reichlin; Philip Haaf; Jonathan Faoro; Maria Rubini Gimenez; Andreas Fischer; Berit Nelles; Sophie Druey; Lian Krivoshei; Petra Hillinger; Christian Puelacher; Thomas Herrmann; Isabel Campodarve; Katharina Rentsch; Stephan Steuer; Stefan Osswald; Christian Mueller
BACKGROUND The incremental value of copeptin, a novel marker of endogenous stress, for rapid rule-out of non-ST-elevation myocardial infarction (NSTEMI) is unclear when sensitive or even high-sensitivity cardiac troponin cTn (hs-cTn) assays are used. METHODS In an international multicenter study we evaluated 1929 consecutive patients with symptoms suggestive of acute myocardial infarction (AMI). Measurements of copeptin, three sensitive and three hs-cTn assays were performed at presentation in a blinded fashion. The final diagnosis was adjudicated by two independent cardiologists using all clinical information including coronary angiography and levels of hs-cTnT. The incremental value in the diagnosis of NSTEMI was quantified using four outcome measures: area under the receiver-operating characteristic curve (AUC), integrated discrimination improvement (IDI), sensitivity and negative predictive value (NPV). Early presenters (< 4h since chest pain onset) were a pre-defined subgroup. RESULTS NSTEMI was the adjudicated final diagnosis in 358 (18.6%) patients. As compared to the use of cTn alone, copeptin significantly increased AUC for two (33%) and IDI (between 0.010 and 0.041 (all p < 0.01)), sensitivity and NPV for all six cTn assays (100%); NPV to 96-99% when the 99 th percentile of the respective cTnI assay was combined with a copeptin level of 9 pmol/l (all p < 0.01). The incremental value in early presenters was similar to that of the overall cohort. CONCLUSION When used for rapid rule-out of NSTEM in combination with sensitive or hs-cTnI assays, copeptin provides a numerically small, but statistically and likely also clinically significant incremental value.
American Heart Journal | 2016
Karin Wildi; Berit Nelles; Raphael Twerenbold; Maria Rubini Gimenez; Tobias Reichlin; Hélène Singeisen; Sophie Druey; Philip Haaf; Zaid Sabti; Petra Hillinger; Cedric Jaeger; Isabel Campodarve; Philip Kreutzinger; Christian Puelacher; Mathias Gugala; Gilles Pretre; Stephanie Doerflinger; Max Wagener; Fabio Stallone; Michael Freese; Claudia Stelzig; Katharina Rentsch; Stefano Bassetti; Roland Bingisser; Stefan Osswald; Christian Mueller
BACKGROUND The early and accurate diagnosis of acute myocardial infarction (AMI) is an important medical and economic challenge. We aimed to prospectively evaluate the performance of the new European Society of Cardiology rapid 0-hour/3-hour (0 h/3 h) rule out protocol for AMI. METHODS We enrolled 2,727 consecutive patients presenting with suspected AMI without persistent ST-segment elevation to the emergency department in a prospective international multicenter study. The final diagnosis was adjudicated by 2 independent cardiologists. The performance of the 0 h/3 h rule out protocol was evaluated using 4 high-sensitivity (primary analysis) and 3 sensitive cardiac troponin (cTn) assays. RESULTS Acute myocardial infarction was the final diagnosis in 473 patients (17.3%). Using the 4 high-sensitivity cTn assays, the 0-hour rule out protocol correctly ruled out 99.8% (95% [confidence interval] CI, 98.7%-100%), 99.6% (95% CI, 98.5%-99.9%), 100% (95% CI, 97.9%-100%), and 100% (95% CI, 98.0%-100%) of late presenters (>6 h from chest pain onset). The 3-hour rule out protocol correctly ruled out 99.9% (95% CI, 99.1%-100%), 99.5% (95% CI, 98.3%-99.9%), 100% (95% CI, 98.1%-100%), and 100% (95% CI, 98.2%-100%) of early presenters (<6 h from chest pain onset). Using the 3 sensitive cTn assays, the 0-hour rule out protocol correctly ruled out 99.6% (95% CI, 98.6%-99.9%), 99.0% (95% CI, 96.9%-99.7%), and 99.1% (95% CI, 97.2%-99.8%) of late presenters; and the 3-hour rule out protocol correctly ruled out 99.4% (95% CI, 98.3%-99.8%), 99.2% (95% CI, 97.3%-99.8%), and 99.0% (95% CI, 97.2%-99.7%) of early presenters. Overall, the 0 h/3 h rule out protocol assigned 40% to 60% of patients to rule out. None of the patients assigned rule out died during 3-months follow-up. CONCLUSIONS The 0 h/3 h rule out protocol seems to allow the accurate rule out of AMI using both high-sensitivity and sensitive cTn measurements in conjunction with clinical assessment. Additional studies are warranted for external validation.
European Journal of Heart Failure | 2017
Tobias Breidthardt; Raphael Twerenbold; Claudine Gantenbein; Fabio Stallone; Katharina Rentsch; Maria Rubini Gimenez; Nikola Kozhuharov; Zaid Sabti; Dominik Breitenbücher; Karin Wildi; Christian Puelacher; Ursina Honegger; Max Wagener; Carmela Schumacher; Petra Hillinger; Stefan Osswald; Christian Mueller
Treatment goals in acute heart failure (AHF) are poorly defined. We aimed to characterize further the impact of in‐hospital haemoconcentration and worsening renal function (WRF) on short‐ and long‐term mortality.