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RecruitingNCT04647331Updated Dec 17, 2025

Betalactam Pharmacokinetics in Endocarditis Patients

An observational study in Infective Endocarditis, sponsored by Uppsala University. Recruiting at 4 sites in Sweden. Open to participants aged 18 Years and older. Per ClinicalTrials.gov, last updated 2025-12-17.

Sponsored by Uppsala University · Observational

Study type
Observational
Model
Case-only
Time perspective
Prospective
Enrollment
150
Ages
18 Years and older
Sex
All
01

Study summary

Infectious endocarditis (IE) is associated with mortality rates of 10-12%. Adequate antibiotic therapy is crucial for survival and is administered in high doses due to the severity of the disease. In most cases, beta-lactam antibiotics (e.g. ampicillin, penicillin G, cefotaxime or cloxacillin) are employed. A number of patient characteristics, such as age, body weight, and renal function) influence the pharmacokinetics of these drugs. Yet, the interindividual variability is poorly understood meaning that a large proportion of patients are at risk of subtherapeutic or excessive drug concentrations that might result in treatment failure or side effects, respectively.

In the present study, data will be collected on antibiotic concentrations in patients treated with beta-lactams for infectious endocarditis as well as patient characteristics and treatment outcomes. A mathematical model will be developed to determine which patient factors determine drug pharmacokinetics. Based on this model, predictions will be made by mathematical simulations on which dosing regimens are optimal for individual patients to ensure therapeutic and non-toxic drug concentrations. In total, 150 patients will be included at four University Hospitals in Sweden; Uppsala University Hospital, Sahlgrenska University Hospital in Gothenburg, Skåne University Hospital in Lund and Karolinska University Hospital in Stockholm. Following informed consent to participate blood samples will be collected at 6 time-points during a dose interval and then at 3 time-points weekly during the full treatment episode (maximum 6 weeks).

Read the detailed description

Objectives The primary objective of the study is to determine the pharmacokinetics of beta-lactam antibiotics in patients with infectious endocarditis, and how the pharmacokinetic profile is associated with various patient factors (e.g. age, body weight, renal function). Secondary objectives are to descriptively assess potential associations between drug exposure, pharmacokinetic/pharmacodynamic targets and clinical outcomes.

Inclusion of patients and sample size Patients are prospectively included at the departments of infectious diseases, internal and acute medicine, cardiology and thoracic surgery at four University Hospitals in Sweden; Uppsala University Hospital, Sahlgrenska University Hospital in Gothenburg, Skåne University Hospital in Lund and Karolinska University Hospital in Stockholm. Potential participants are screened for using the electronic medical records. Inclusion criteria are as follows: (1) admission at one of the study wards, (2) a diagnosis of probable or verified infectious endocarditis, (3) treatment with ampicillin, penicillin G, cefotaxime or cloxacillin and (4) informed written consent to participate in the study. The following exclusion criteria will be applied: (1) age less than 18 years and (2) ongoing or planned hemodialysis.

Based on previous research using similar methods, 30 patients per antibiotic substance (total 150 patients) is considered sufficient to develop a robust mathematical model.

Collection of blood samples and patient data Following inclusion, a series of samples will be taken within one week from start of treatment. Beta-lactams are normally prescribed at 6-8 h dose intervals. One series of 6 blood samples will be collected at 0, 0,5, 1, 2, 4 and 6 or 8 h (depending on dose interval, prior to next dose) after administration of antibiotics. Thereafter, samples will be collected once weekly and 0, 3 or 4 (mid-dose interval) and 6 or 8 h (depending on dose interval, prior to next dose).

Information on patient characteristics, including age, body weight, and gender, will be obtained from the electronic medical records. Further, the results of biomarkers (e.g. albumin, creatinine, CRP), collected as part of routine practice, will be noted. If not collected as standard of care, patients will be subject to extra samples to ensure biomarkers are monitored at least twice weekly.

Clinical outcomes Treatment failure is defined as mortality during antibiotic treatment for infectious endocarditis or relapse of endocarditis within 6 months after completion of therapy with isolation of the same pathogens as in the initial episode. Other indicators of treatment failure include acute surgery for endocarditis, clinical deterioration resulting in transfer to the ICU, thromboembolic events more than 7 days after initiation of antibiotics and resistance development of the causative bacteria. The following side effects will be monitored: deterioration of renal impairment, allergic reaction suspected to be caused by the antibiotic treatment, Clostridioides difficile enteritis or other suspected side effects resulting in a shift of therapy to another antibiotic.

Handling of samples and data Blood samples will be stored at -70 degrees Celsius at the Department of infectious diseases at the respective hospital where the samples have been collected. The samples will be sent to Sahlgrenska University Hospital, Gothenburg, for determination of drug concentrations.

Patient names and personal identification numbers will be replaced by a number. Personal data will be stored at the Department of infectious diseases at the respective hospital where the patient has been included. Only the responsible researchers will have access to the code key and be able to link personal information to the individual participants. All information will be handled in accordance with the General Data Protection Regulation (GDPR) and all analyses and presentation of data will be performed using anonymous data.

Mathematical modeling and simulations The collected drug concentrations will be analyzed by non-linear mixed effects modeling using NONMEM. Associations between administered dose and the measured drug concentration over time will be described (pharmacokinetics). Correlations with patient characteristics and biomarkers, as well as clinical outcomes in terms of cure, mortality and documented side effects (pharmacodynamics) will be explored.

02

Conditions studied

  • Infective Endocarditis

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Keywords

  • Infective Endocarditis
03

Who can participate

Ages eligible
18 Years and older
Sexes eligible
All
Accepts healthy volunteers
No
Sampling method
Non-probability sample

Study population

Adult patients in Uppsala University Hospital treated for verified or suspected left or right sided endocarditis in nativ or prosthetic valve with intravenous antibiotic therapy (ampicillin, cefotaxime, cloxacillin or penicillin G).

Inclusion criteria

  • Verified or suspected left or right sided endocarditis in native or prosthetic valve
  • Intravenous antibiotic therapy with either ampicillin, penicillin G, cefotaxime or cloxacillin
  • Signed informed consent to participate in study

Exclusion criteria

Exclusion Criteria:

  • \<18 years of age
  • Ongoing dialysis
04

Study design

Observational model
Case-only
Time perspective
Prospective
Enrollment
150 participants (estimated)
Patient registry
No
Biospecimen retention
Samples with dna
05

What researchers measure

Primary outcomes

  1. Determinants of the pharmacokinetic profiles of betalactam antibiotics ampicillin, cefotaxime, cloxacillin and penicillin G

    Data on drug concentrations will be analysed using non-linear mixed effect modeling to describe correlations between the observed concentrations and the administered dose, patient characteristics (e.g., age, body weight, gender) or biomarkers (e.g. albumin, creatinine, CRP)

    Time frame: 6 years

  2. Maximum drug concentration (Cmax) of betalactam antibiotics ampicillin, cefotaxime, cloxacillin and penicillin G

    Data on drug concentrations will be analysed using non-linear mixed effect modeling to determine Cmax.

    Time frame: 6 years

  3. Volume of distribution (Vd) of betalactam antibiotics ampicillin, cefotaxime, cloxacillin and penicillin G

    Data on drug concentrations will be analysed using non-linear mixed effect modeling to determine Vd.

    Time frame: 6 years

  4. Clearance (CL) of betalactam antibiotics ampicillin, cefotaxime, cloxacillin and penicillin G

    Data on drug concentrations will be analysed using non-linear mixed effect modeling to determine CL.

    Time frame: 6 years

  5. Half-life (t1/2) of betalactam antibiotics ampicillin, cefotaxime, cloxacillin and penicillin G

    Data on drug concentrations will be analysed using non-linear mixed effect modeling to determine t1/2.

    Time frame: 6 years

  6. Time above the minimum inhibitory concentration (T>MIC) of betalactam antibiotics ampicillin, cefotaxime, cloxacillin and penicillin G

    Data on drug concentrations will be analysed using non-linear mixed effect modeling to determine T\>MIC.

    Time frame: 6 years

  7. Area under the curve (AUC) of betalactam antibiotics ampicillin, cefotaxime, cloxacillin and penicillin G

    Data on drug concentrations will be analysed using non-linear mixed effect modeling to determine AUC.

    Time frame: 6 years

Secondary outcomes

  1. Mortality

    All cause mortality

    Time frame: 12 months

  2. Remission of disease

    Relapse in infective endocarditis within 6 months

    Time frame: 12 months

  3. Thromboembolic event

    Stroke or embolic event related to endocarditis

    Time frame: 12 months

  4. Resistance development

    Resistance development in causing pathogen during treatment assessed with repeated blood culture samples for assessment of bacterial growth and antibiotic susceptibility testing

    Time frame: 12 months

  5. Renal failure

    Elevation of creatinine clearance of at least 30% during antibiotic treatment

    Time frame: 12 months

  6. Clostridioides difficile infection

    Positive culture of C. difficile during and within 6 months of discontinued antibiotic treatment

    Time frame: 12 months

  7. Adverse events

    Adverse events related to antimicrobial therapy

    Time frame: 12 months

  8. Associations between antibiotic pharmacokinetics and outcome

    Potential associations between suboptimal antibiotic concentrations, in relation to established pharmacokinetic/pharmacodynamic targets, and any of the secondary outcomes will be described (exploratory)

    Time frame: 12 months

06

Study locations

2 of 4 sites recruiting
  • Sahlgrenska University Hospital
    Gothenburg, Sweden
    Active, not recruiting
  • Skåne University Hospital
    Lund, Sweden
    Recruiting
  • Karolinska University Hospital
    Stockholm, Sweden
    Not yet recruiting
  • Uppsala University Hospital
    Uppsala, Sweden
    Recruiting
07

References and documents

Individual participant data

Plan to share: No

No publications or documents are linked to this record.

08

Registry details

Key details

Study ID
NCT04647331
Lead sponsor
Uppsala University
Responsible party
Sponsor
First posted
Nov 30, 2020
Start date
Jun 1, 2021
Primary completion
Dec 31, 2025 (estimated)
Completion
Dec 31, 2025 (estimated)
Last update
Dec 17, 2025

Study contacts

Thomas Tängdén, MD, Phd
Contact
thomas.grenholm.tangden@medsci.uu.se
+46708370323
Lisa Faxén, MD
Contact
lisa.faxen@medsci.uu.se
+46768721806
Thomas Tängdén, MD, Phd
principal investigator · Uppsala University Hospital

Oversight

Data monitoring committee
No
FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

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