Javascript must be enabled to continue!
Improved pharmacokinetic and pharmacodynamic profile of a novel PEGylated native Erwinia chrysanthemi L-Asparaginase
View through CrossRef
SummaryIntroduction. Erwinase® (native Erwinia chrysanthemi L-Asparaginase (nErA)) is an approved second-line treatment for acute lymphoblastic leukaemia (ALL) in children and adolescents, who develop hypersensitivity or neutralising antibodies to E.coli derived L-Asparaginases (ASNases). However, nErA has a short in vivo half-life requiring frequent dosing schedules in patients. In this study, nErA was covalently conjugated to PEG molecules with the aim of extending its half-life in vivo. Methods. Firstly, efficacy of this novel product PEG-nErA was investigated on human ALL cell lines (Jurkat, CCRF-CEM and CCRF-HSB2), in vitro. Secondly, its pharmacokinetic (PK) and pharmacodynamic (PD) characteristics were determined, in vivo (12 rats in each group). Results. It was found that the specific activity (U/mg of enzyme) and the kinetic constant (KM) of nErA remained unaltered post PEGylation. PEG-nErA was shown to have similar cytotoxicity to nErA (IC50: 0.06–0.17 U/mL) on human ALL cell lines, in vitro. Further, when compared to nErA, PEG-nErA showed a significantly improved half-life in vivo, which meant that L-Asparagine (Asn) levels in plasma remained depleted for up to 25 days with a four-fold lower dose (100 U/kg) compared with 72 h for nErA at 400 U/kg dose. Conclusion. Overall, this next generation product PEG-nErA (with improved PK and PD characteristics compared to nErA) would bring a significant advantage to the therapeutic needs of ALL patients and should be further explored in clinical trials.
Title: Improved pharmacokinetic and pharmacodynamic profile of a novel PEGylated native Erwinia chrysanthemi L-Asparaginase
Description:
SummaryIntroduction.
Erwinase® (native Erwinia chrysanthemi L-Asparaginase (nErA)) is an approved second-line treatment for acute lymphoblastic leukaemia (ALL) in children and adolescents, who develop hypersensitivity or neutralising antibodies to E.
coli derived L-Asparaginases (ASNases).
However, nErA has a short in vivo half-life requiring frequent dosing schedules in patients.
In this study, nErA was covalently conjugated to PEG molecules with the aim of extending its half-life in vivo.
Methods.
Firstly, efficacy of this novel product PEG-nErA was investigated on human ALL cell lines (Jurkat, CCRF-CEM and CCRF-HSB2), in vitro.
Secondly, its pharmacokinetic (PK) and pharmacodynamic (PD) characteristics were determined, in vivo (12 rats in each group).
Results.
It was found that the specific activity (U/mg of enzyme) and the kinetic constant (KM) of nErA remained unaltered post PEGylation.
PEG-nErA was shown to have similar cytotoxicity to nErA (IC50: 0.
06–0.
17 U/mL) on human ALL cell lines, in vitro.
Further, when compared to nErA, PEG-nErA showed a significantly improved half-life in vivo, which meant that L-Asparagine (Asn) levels in plasma remained depleted for up to 25 days with a four-fold lower dose (100 U/kg) compared with 72 h for nErA at 400 U/kg dose.
Conclusion.
Overall, this next generation product PEG-nErA (with improved PK and PD characteristics compared to nErA) would bring a significant advantage to the therapeutic needs of ALL patients and should be further explored in clinical trials.
Related Results
Pharmacokinetics and Pharmacodynamics in Mice of a Pegylated Recombinant Erwinia Chrysanthemi-Derived L-Asparaginase.
Pharmacokinetics and Pharmacodynamics in Mice of a Pegylated Recombinant Erwinia Chrysanthemi-Derived L-Asparaginase.
Abstract
Abstract 2033
Poster Board II-10
Background:
L-asparaginase is a standard and well-establ...
Immunogenicity Profile in Mice of a Pegylated Recombinant Erwinia Chrysanthemi-Derived L-Asparaginase.
Immunogenicity Profile in Mice of a Pegylated Recombinant Erwinia Chrysanthemi-Derived L-Asparaginase.
Abstract
Abstract 2034
Poster Board II-11
Background:
Hypersensitivity is the most common dose-lim...
Monitoring Asparaginase Activity in 21 Patients with Extranodal NK/T-Cell Lymphoma Shows a Very High Proportion of Asparaginase Inactivation
Monitoring Asparaginase Activity in 21 Patients with Extranodal NK/T-Cell Lymphoma Shows a Very High Proportion of Asparaginase Inactivation
Abstract
Introduction
Extranodal NK/T-cell lymphoma (ENKTL) is a rare disease; in Western countries it represents less than 1% of all Non-Hodgkin lymp...
Erwinia chrysanthemi
EC16 Produces a Second Set of Plant-Inducible Pectate Lyase Isozymes
Erwinia chrysanthemi
EC16 Produces a Second Set of Plant-Inducible Pectate Lyase Isozymes
The enterobacterium
Erwinia chrysanthemi
causes soft-rot diseases involving extensive tissue maceration in a wide variety of plants and secretes multiple pe...
Lactose metabolism in Erwinia chrysanthemi
Lactose metabolism in Erwinia chrysanthemi
Wild-type strains of the phytopathogenic enterobacterium Erwinia chrysanthemi are unable to use lactose as a carbon source for growth although they possess a beta-galactosidase act...
Metabolic profile of leukemia cells influences treatment efficacy of L-asparaginase
Metabolic profile of leukemia cells influences treatment efficacy of L-asparaginase
Abstract
Background
Effectiveness of L-asparaginase administration in acute lymphoblastic leukemia treatment is mirrored ...
Pegylated interferons for chronic hepatitis C virus infection: an indirect analysis of randomized trials
Pegylated interferons for chronic hepatitis C virus infection: an indirect analysis of randomized trials
Summary. Dual therapy with pegylated interferon and ribavirin is recommended for patients with chronic hepatitis C virus infection who meet criteria for treatment, but it is unclea...
Impacts of man-made structures on marine biodiversity and species status - native & non-native species
Impacts of man-made structures on marine biodiversity and species status - native & non-native species
<p>Coastal environments are exposed to anthropogenic activities such as frequent marine traffic and restructuring, i.e., addition, removal or replacing with man-made structur...

