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Completed

NCT Number: NCT04590950

Dosage and PD Study of Eftrenonacog-alfa

The purpose of this study is to evaluate the performance of different methods for measuring factor IX activity levels in haemophilia B patients treated with eftrenonacog-alfa and assess its pharmacodynamics (PD) in a real-life setting.

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Key information

About this study

A recent European survey showed that increasing number of hemophilia B patients was switched from standard to extended half-life drugs. While some clinicians currently prefer to treat empirically rather than based on laboratory results, adoption of replacement therapy based on extended half-life products such as eftrenonacog-alfa may increase the interest in individualized pharmacokinetic assessments allowing the development of an initial dosing regimen. Thus inaccurate FIX activity measurements might be critical, especially when FIX trough level is used to tailor patient dosing regimens. It is therefore important that FIX activity levels are accurately determined allowing adequate recovery without increasing the cost of medical management of hemophilia B patients due to unnecessary dose corrections.

With the expansion of the prescription of eftrenonacog-alfa, the problem of accurately measuring its recovery has risen within hemostasis laboratories. Chronometric one-stage assays (OSA) are currently the most widely performed tests for FIX activity measurement. They are based on activated partial thromboplastin time (aPTT) reagent and factor-deficient plasma. Various aPTT reagents are commercialized. They could lead to a substantial variability in FIX results. Chromogenic two-stage assays (CSA) are less frequently used in clinical laboratories. They present fewer reagent choice compared to OSA. Several studies have evaluated OSA and CSA performances in samples spiked with eftrenonacog-alfa and have evidenced that some commonly used aPTT reagents would not be suitable for accurately monitoring this product. Whether these results are commutable to post-infusion samples collected from real-life patients remains unclear.

Unlike the measurement of a unique coagulation factor activity, thrombin generation assay (TGA) is a dynamic global test that explores the coagulation cascade as well as the anticoagulant pathways. TGA could be therefore a valuable tool to monitor replacement therapy in hemophilia B patients.

Hence the investigators sought in a real-life setting to compare 2 CSA and 1 OSA reagents to a product specific OSA in severe hemophilia B patients supplemented with eftrenonacog-alfa. The investigators also aimed to evaluate the pharmacodynamics (PD) of eftrenonacog-alfa using TGA.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • severe haemophilia B patients
  • treated with eftrenonacog-alfa

Exclusion criteria

  • any other haemostatic or replacement therapy

Treatment and study plan

Non interventional study

Other

Non interventional study

Primary outcomes

  1. FIX activity levels

    Time frame: One month

    2 chromogenic assays (Bio phen FIX and Rox FIX) and 2 chronometric assays (CK Prest with standard human plasma or FIX deficient plasma supplemented with eftrenonacog-alfa as calibrators)

Secondary outcomes

  1. Thrombin generation assay

    Time frame: One month

    Thrombin generation assay is performed using a microplate fluorometer. Plasma samples are run using 20 μL low phospholipids reagent (PPP-reagent) (1 μM tissue factor and 4 micromoles (μM )phospholipid vesicles) or 20 μL Thrombin Calibrator. Assay is initiated by auto dispensing 20 μL of Fluo-Substrate solution containing calcium ions and fluorogenic substrate, Z-Gly-Gly-Arg-7-amino-4-methylcoumarin. Generated thrombin cleaves the substrate and fluorescence increase is monitored at 37 °C for 60 min with a measurement every 20 seconds.

    Thrombin scope®, version 5.0.0.742 is used to calculate the amount of thrombin generated over time taking into account for each sample the calibrator activity. Consequently, five parameters are reported by the Thrombin scope® the fist is lag time (LT; in min)

  2. Thrombin generation assay

    Time frame: One month

    microplate fluorometer, time to peak

  3. Thrombin generation assay

    Time frame: One month

    microplate fluorometer, peak height

  4. Thrombin generation assay

    Time frame: One month

    microplate fluorometer, endogenous thrombin potential

  5. Thrombin generation assay

    Time frame: One month

    microplate fluorometer, velocity

Sponsors and collaborators

Lead sponsor

Assistance Publique - Hôpitaux de Paris

Other

Collaborators

  • URC-CIC Paris Descartes Necker Cochin

Registry information

Official study title

Monitoring and Pharmacodynamics Effect of Recombinant Factor IX Fc in Severe Haemophilia B Patients: a Real-life Study

Acronym: BIOPAL

Important dates

Study start
2019
Primary completion
2020
Study completion
2020
First posted
Oct 19, 2020
Registry last updated
Mar 4, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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