Characterization of recombinant Factor IX fusion proteins enabling subcutaneous administration.

Bleeding factor IX factor IX-Padua hemophilia B recombinant fusion proteins

Journal

Journal of thrombosis and haemostasis : JTH
ISSN: 1538-7836
Titre abrégé: J Thromb Haemost
Pays: England
ID NLM: 101170508

Informations de publication

Date de publication:
15 Jul 2024
Historique:
received: 19 02 2024
revised: 19 06 2024
accepted: 10 07 2024
medline: 18 7 2024
pubmed: 18 7 2024
entrez: 17 7 2024
Statut: aheadofprint

Résumé

The X-linked bleeding disorder Hemophilia B, caused by mutation(s) in the coagulation factor IX (FIX) gene, leads to partial or total loss of its function requiring lifelong FIX replacement therapy. Although new recombinant FIX (rIX) therapeutics like albumin-fusion proteins (rIX-FP) enable longer plasma half-life and thus less frequent administration, the complexity of intravenous (IV) injection remains. The study aims to characterize rIX-FP variants with anticipated enhanced specific activity, which would leverage rIX-FP's superior pharmacokinetic (PK) profile with beneficial characteristics for subcutaneous (SC) administration. Two rIX-FP variants, R338L ("Padua-variant") and R338L/E410K, were characterized in vitro. PK profiles of FIX antigen and activity levels were evaluated in FIX-deficient mice after IV and SC administration of these variants (dosing based on antigen levels). The efficacy of the most promising variant was tested after IV and SC administration (dosing based on activity) in a tail-clip bleeding model. A marketed wildtype (WT) rIX-FP product served as the comparator. Both rIX-FP variants showed a 4- to 5-fold increase in specific activity in vitro compared to rIX(WT)-FP, whilst FXIa-mediated activation was the fastest for rIX(WT)-FP and rIX(R338L)-FP. Compared to rIX(WT)-FP and rIX(R338L/E410K)-FP, rIX(R338L)-FP exhibited higher FIX activity exposure after IV and SC administration, and demonstrated comparable efficacy towards rIX(WT)-FP in reducing bleeding time and blood loss in FIX-deficient mice requiring ∼4 times lower protein amount. rIX(R338L)-FP was shown to be a promising candidate for SC administration, exhibiting increased specific activity combined with higher activity-based exposure, and indicating efficacy at lower protein dose.

Sections du résumé

BACKGROUND BACKGROUND
The X-linked bleeding disorder Hemophilia B, caused by mutation(s) in the coagulation factor IX (FIX) gene, leads to partial or total loss of its function requiring lifelong FIX replacement therapy. Although new recombinant FIX (rIX) therapeutics like albumin-fusion proteins (rIX-FP) enable longer plasma half-life and thus less frequent administration, the complexity of intravenous (IV) injection remains.
OBJECTIVES OBJECTIVE
The study aims to characterize rIX-FP variants with anticipated enhanced specific activity, which would leverage rIX-FP's superior pharmacokinetic (PK) profile with beneficial characteristics for subcutaneous (SC) administration.
METHODS METHODS
Two rIX-FP variants, R338L ("Padua-variant") and R338L/E410K, were characterized in vitro. PK profiles of FIX antigen and activity levels were evaluated in FIX-deficient mice after IV and SC administration of these variants (dosing based on antigen levels). The efficacy of the most promising variant was tested after IV and SC administration (dosing based on activity) in a tail-clip bleeding model. A marketed wildtype (WT) rIX-FP product served as the comparator.
RESULTS RESULTS
Both rIX-FP variants showed a 4- to 5-fold increase in specific activity in vitro compared to rIX(WT)-FP, whilst FXIa-mediated activation was the fastest for rIX(WT)-FP and rIX(R338L)-FP. Compared to rIX(WT)-FP and rIX(R338L/E410K)-FP, rIX(R338L)-FP exhibited higher FIX activity exposure after IV and SC administration, and demonstrated comparable efficacy towards rIX(WT)-FP in reducing bleeding time and blood loss in FIX-deficient mice requiring ∼4 times lower protein amount.
CONCLUSIONS CONCLUSIONS
rIX(R338L)-FP was shown to be a promising candidate for SC administration, exhibiting increased specific activity combined with higher activity-based exposure, and indicating efficacy at lower protein dose.

Identifiants

pubmed: 39019440
pii: S1538-7836(24)00424-0
doi: 10.1016/j.jtha.2024.07.007
pii:
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Informations de copyright

Copyright © 2024. Published by Elsevier Inc.

Auteurs

Kathrin Schön (K)

Pharmacology & Toxicology, Research Marburg, CSL Innovation GmbH, Marburg, Germany; Institute of Pharmacology, Biochemical-Pharmacological Center, University of Marburg, Marburg, Germany.

Sabine Pestel (S)

Pharmacology & Toxicology, Research Marburg, CSL Innovation GmbH, Marburg, Germany.

Julia Riedesel (J)

Pharmacology & Toxicology, Research Marburg, CSL Innovation GmbH, Marburg, Germany.

Waltraud Seyfert-Brandt (W)

Recombinant Protein Expression, Research Marburg, CSL Innovation GmbH, Marburg, Germany.

Philipp Claar (P)

Recombinant Protein Expression, Research Marburg, CSL Innovation GmbH, Marburg, Germany.

Eva Herzog (E)

Pharmacology & Toxicology, Research KOP, CSL Behring LLC, USA.

Alireza Rezvani-Sharif (A)

CSL Limited, Parkville, Victoria, Australia.

Padmapriya Ponnuswamy (P)

Pharmacology & Toxicology, Research Marburg, CSL Innovation GmbH, Marburg, Germany. Electronic address: padmapriya.ponnuswamy@cslbehring.com.

Marc W Nolte (MW)

Pharmacology & Toxicology, Research Marburg, CSL Innovation GmbH, Marburg, Germany.

Classifications MeSH