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Pharmacokinetics of Antibiotics in Patients With Cystic Fibrosis Trated With Elexacaftor/Tezacaftor/Ivacaftor (ETI)

Pharmacokinetics of Antibiotics in Patients With Cystic Fibrosis Trated With Elexacaftor/Tezacaftor/Ivacaftor (ETI)

Status
Recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT07629986
Acronym
PKCF
Enrollment
30
Registered
2026-06-05
Start date
2026-03-19
Completion date
2028-05-01
Last updated
2026-06-05

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Cystic Fibrosis (CF), Pulmonary Exacerbation, Respiratory Infection Bacterial

Keywords

Cystic Fibrosis, CFTR modulators, Elexacaftor/Tezacaftor/Ivacaftor, Antibiotics, Pharmacokinetics, Therapeutic drug monitoring, Pulmonary Exacerbation

Brief summary

Cystic fibrosis (CF) is associated with major pharmacokinetic and pharmacodynamic alterations affecting antibiotic exposure, including changes in absorption, distribution, metabolism, and elimination. Historically, these alterations justified the use of higher antibiotic doses in CF patients in order to achieve therapeutic concentrations and improve pulmonary outcomes. The advent of highly effective CFTR modulators, particularly the triple combination elexacaftor/tezacaftor/ivacaftor (ETI), has substantially improved pulmonary function, nutritional status, inflammatory burden, and quality of life in patients with CF. ETI therapy also appears to modify respiratory microbiology and reduce the frequency of pulmonary exacerbations. These clinical and physiological improvements may alter antibiotic pharmacokinetics and pharmacodynamics in patients with CF, potentially making current high-dose antibiotic recommendations less appropriate for some patients. Since repeated exposure to high-dose antibiotics is associated with cumulative toxicities, particularly aminoglycoside-related ototoxicity and nephrotoxicity, reassessment of antibiotic dosing strategies is warranted. The PKCF study is a multicenter, prospective, observational, non-interventional study designed to characterize the pharmacokinetic profiles of intravenous antibiotics administered during pulmonary exacerbations in adolescents and adults with cystic fibrosis receiving ETI therapy.

Detailed description

Patients with cystic fibrosis experience substantial physiological changes that affect the pharmacokinetics of medications, including antibiotics. Altered gastrointestinal absorption, increased volume of distribution, enhanced renal clearance, chronic systemic inflammation, and modified protein binding have historically led to recommendations for increased antibiotic dosing in CF patients. Additionally, thick airway mucus, biofilm formation, high bacterial inoculum, and chronic airway infection contribute to altered antibiotic pharmacodynamics and reduced antibiotic efficacy. Highly effective CFTR modulators, particularly elexacaftor/tezacaftor/ivacaftor (ETI), have profoundly changed the clinical course of cystic fibrosis by improving lung function, reducing pulmonary exacerbations, improving nutritional status, and modifying airway microbiology. These changes may normalize or partially normalize antibiotic pharmacokinetics and pharmacodynamics. However, evidence regarding the impact of ETI therapy on antibiotic pharmacokinetics remains extremely limited. To date, only one retrospective pediatric study has evaluated the effect of CFTR modulators on intravenous tobramycin pharmacokinetics during pulmonary exacerbations. The PKCF study aims to prospectively evaluate plasma antibiotic concentrations and pharmacokinetic parameters in CF patients receiving ETI during pulmonary exacerbations requiring antibiotic therapy. Antibiotic concentrations will be compared with established PK/PD targets according to current national recommendations. The study may contribute to future optimization of antibiotic dosing strategies in patients with CF treated with ETI, while minimizing toxicity and supporting antimicrobial stewardship.

Interventions

Routine antibiotic therapy and therapeutic drug monitoring are performed according to standard clinical practice

Sponsors

Fondation Ildys
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
12 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Diagnosis of cystic fibrosis confirmed by sweat test and/or genetic testing * Treatment with elexacaftor/tezacaftor/ivacaftor (ETI) for at least 3 months * Age 12 years or older * Patient informed and not objecting to participation; for minors, parents/legal guardians informed and not objecting to participation * Clinical indication for antibiotic therapy for pulmonary exacerbation or respiratory infection according to treating physician * Affiliation to a social security system

Exclusion criteria

* Lung transplantation or heart-lung transplantation * Patients under guardianship or curatorship * Pregnant or breastfeeding women

Design outcomes

Primary

MeasureTime frameDescription
Pharmacokinetic profiles of antibiotics during pulmonary exacerbation treatmentDay 3 of antibiotic therapyPlasma antibiotic concentrations will be measured at Day 3 of treatment to determine pharmacokinetic parameters including: * Cmax (maximum plasma concentration) * Cmin (minimum plasma concentration) Pharmacokinetic/pharmacodynamic ratios will be evaluated according to bacterial minimum inhibitory concentrations (MICs): * Cmin/MIC ratio for time-dependent antibiotics * Cmax/MIC ratio for concentration-dependent antibiotics Antibiotic exposure will be compared with PK/PD targets validated by national expert recommendations.

Secondary

MeasureTime frameDescription
Clinical efficacy: body weight evolutionBaseline, Day 3, Day 7-10, and end of antibiotic treatmentthe Clinical parameters body weight in kilograms
Clinical efficacy: temperature evolutionBaseline, Day 3, Day 7-10, and end of antibiotic treatmentthe Clinical parameters temperature in celsius degree
Clinical efficacy: appetite evolutionBaseline, Day 3, Day 7-10, and end of antibiotic treatmentthe Clinical parameters "appetite" will be score on a scale from 0 to 10 with higher score mean worse outcome
Clinical efficacy: fatigue evolutionBaseline, Day 3, Day 7-10, and end of antibiotic treatmentthe Clinical parameters "fatigue" will be score on a scale from 0 to 10 with higher score mean worse outcome
Clinical efficacy: dyspnea evolutionBaseline, Day 3, Day 7-10, and end of antibiotic treatmentthe Clinical parameters "dyspnea" will be score on a scale from 0 to 10 with higher score mean worse outcome
Clinical efficacy: sputum volumeBaseline, Day 3, Day 7-10, and end of antibiotic treatmentthe Clinical parameters "sputum volume" will be score on a scale from 0 to 10 with higher score mean worse outcome
Clinical efficacy: sputum purulenceBaseline, Day 3, Day 7-10, and end of antibiotic treatmentthe Clinical parameters "sputum purulence" will be score on a scale from 0 to 10 with higher score mean worse outcome
biological evolution: Renal function evolutionBaseline, Day 3, and end of antibiotic treatmentrenal function will be evaluated by measuring plasma creatinine and calculated glomerular filtration rate
biological evolution: inflammatory markersBaseline, Day 3, and end of antibiotic treatmentinflammation will be evaluated by measuring plasma c protein reactive and plasma leukocytes concentration
Treatment adherencethrough study completion, an average 14 daysTreatment adherence will be evaluated by the ratio of antibiotic doses administered to doses prescribed
number of participants with treatment-related adverse eventsthrough study completion, an average 14 daysAdverse events related to antibiotic therapy will be collected and graded according to NCI CTCAE version 6.0

Countries

France

Contacts

CONTACTMarion Buyse, PharmD, PhD
marion.buyse@ildys.org+33298293447
CONTACTMatthieu Pichelin
matthieu.pichelin@ildys.org

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Jun 6, 2026