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Effect of the CFTR-modulating Triple Therapy Elexacaftor - Tezacaftor - Ivacaftor

Effect of the CFTR-modulating Triple Therapy Elexacaftor - Tezacaftor - Ivacaftor on Numerical Distribution in Peripheral Mononuclear Immune Cells Derived From Patients With Cystic Fibrosis

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT05576324
Enrollment
130
Registered
2022-10-12
Start date
2020-12-30
Completion date
2023-10-18
Last updated
2022-10-12

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

Conditions

Cystic Fibrosis

Keywords

Cystic fibrosis, Clinical parameters, Immune cell function

Brief summary

The aim of this study is to investigate the frequency distribution, cytokine profile and function of peripheral, mononuclear leukocyte populations (monocytes, NK cells, T/B lymphocytes) and their correlation to clinical and biochemical parameters in patients with cystic fibrosis receiving CFTR modulatory triple therapy consisting of elexacaftor, tezacaftor and ivacaftor and to compare it with patients without CFTR modulatory therapy and healthy control subjects.

Detailed description

The therapy of cystic fibrosis usually consists of an inhalative therapy with hy-pertonic saline and other mucolytics (e.g. dornase alpha) for secretolysis as well as a pancreatic enzyme replacement therapy. In recent years, however, the introduction of novel drugs, the so-called CFTR modulators, has revolutionized the previous treatment concept of a symptom-oriented therapy. Ivacaftor, which was approved by the FDA in 2012 for the treatment of patients with G551D mutation, causes a prolongation of the opening probability of the CFTR channel (CFTR potentiator) and was able to show a significant improvement in lung function in studies. By combining ivacaftor with the CFTR corrector lumacaftor, which improves the processing of the CFTR channel in the endoplasmic reticulum as well as its incorporation into the cell membrane, this therapeutic strategy has also been successfully tested for use in patients with F508del homozygous mutation. Also, the combination of ivacaftor with another CFTR corrector, tezacaftor, was approved for the treatment of patients with F508del heterozygous mutations in which the second mutation was classified as a mutation with residual activity and was able to show an increase in FEV1. The efficacy of this therapeutic approach was further enhanced by the combination of ivacaftor as a CFTR potentiator with tezacaftor and a next-generation CFTR corrector, elexacaftor; in the pivotal study, an improvement in FEV1 of an average of 14 points in untreated patients and 11 points in ivacaftor/tezacaftor-pretreated patients was demonstrated, as well as a significant decrease in hospitalizations due to pulmonary exacerbation. Since September 2020 in the European Union, this combination has been approved under the trade name Kaftrio® for the treatment of patients with F508del homozygous mutation or F508del heterozygous mutation and minimal function mutation. This form of therapy is based on a concept that comes closest to a causal therapy. In April 2021, the EMA granted approval for the drug for all patients older than 12 years and with evidence of at least one F508del mutation. In addition, the manufacturer applied for an extension of the approval in the EU for children aged 6-11 years based on the also very positive study results and received a positive decision from the European Medicines Agency (EMA) in November 2021. However, in addition to the clear role of the CFTR channel in epithelial tissues, it has been increasingly shown in recent years that the CFTR channel is also expressed by a variety of immune cells of the innate as well as the acquired immune system, such as neutrophils, macrophages, monocytes, and B and T lymphocytes. Its absence or dysfunction in cystic fibrosis seems to trigger a disturbed regulation or an exaggerated reaction of various immune responses.

Interventions

Elexacaftor / Ivacaftor / Tezacaftor is a triple drug therapy that modulates CFTR availability at (apical) cell membranes and increases opening probability.

Sponsors

University of Erlangen-Nürnberg Medical School
Lead SponsorOTHER

Study design

Observational model
CASE_CONTROL
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
6 Years to No maximum
Healthy volunteers
Yes

Inclusion criteria

* Patients (m/f/d) with molecularly genetically confirmed cystic fibrosis aged 6 years and older. * Do not meet any of the

Exclusion criteria

* Written informed consent * For study arm Kaftrio® ongoing: Kaftrio® therapy for at least 6 months * For study arm Kaftrio® longitudinal: no Kaftrio® therapy started yet

Design outcomes

Primary

MeasureTime frameDescription
Peripheral Blood Immunogramsprior ETIRelative and absolute peripheral blood immune cell count as determined by multicolor flow cytometry

Secondary

MeasureTime frameDescription
Attenuation Coefficient (AC)prior ETIDifference of mean/median AC in treated vs. untreated pediatric patients (6-11 yrs) as measured by Ultrasound-guided attenuation parameter (UGAP)
Serum bile acidsprior ETILevel of serum bile acids as measured by mass spectrometry
Respiratory function test (FEV1, FVC)prior ETIRespiratory function test (FEV1, FVC) as measured by bodyplethysmography
Blood cell countprior ETIBlood cell count as defined in x10\^3/µl
Erythrocytoid hemoglobin A1cprior ETIErythrocytoid hemoglobin A1c in %
Plasma electrolytes6 months ETIPlasma electrolytes (Na, Cl) as defined by mmol/l
Liver transaminasesprior ETIAspartate/Alanine aminotransferase (AST, ALt) as defined in U/l
Plasmatic bilirubinprior ETITotal and direct plasmatic bilirubin as defined in mg/dl
Prothrombin timeprior ETIProthrombin time as defined by Quick percent
Coagulation factorsprior ETIVitamin K- dependent coagulation factors (II, VII, IX, X) as measured in %
Plasmatic albumineprior ETIPlasma levels of albumine (defined in g/dl)
Shear Wave Velocity (SWV)prior ETIDifference of mean/median SWV in treated vs. untreated patients as measured by Acoustic Radiation Force Impulse Imaging (ARFI)
Plasmatic cholinesteraseprior ETIPlasmatic cholinesterase (defined in U/l)
Plasmatic glutamate dehydrogenase6 months ETIPlasmatic glutamate dehydrogenase (defined in U/l)
Plasmatic creatininprior ETIPlasmatic creatinin (defined in mg/dl)
Serum immunoglobulinsprior ETISerum immunoglobulins G, A, M, E (defined in g/l)
Sweat chlorideprior ETISweat chloride level (defined in mmol/l)
BMIprior ETIBMI in kg/m\^2
Ageprior ETIPatients' age in years
Microbial colonization statusprior ETIMicrobial colonization status as defined by microbiological reports
Individual concomitant medication regimeprior ETIIndividual concomitant medication regime
Functional pulmonary magnetic resonance imagingprior ETIVentilation defect, perfusion defect, combined defects in longitudinal pediatric cohort (6-11 yrs)
Neutrophilic dihydrorhodamine assayprior ETIAssay for determination of neutrophilic reactive oxygen species (measured as stimulation index)
Plasmatic C-reactive proteineprior ETIPlasmatic C-reactive proteine (defined in mg/l)

Countries

Germany

Contacts

Primary ContactAlexander Schnell, Dr. med.
alexander.schnell@uk-erlangen.de+499131/8533118
Backup ContactAndre Hörning, PD Dr. med.
andre.hoerning@uk-erlangen.de+499131/8533118

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 10, 2026