Refine
Has Fulltext
- yes (2)
Is part of the Bibliography
- yes (2)
Document Type
- Doctoral Thesis (2) (remove)
Keywords
- Rezeptorblocker (2) (remove)
Design of novel IL-4 antagonists employing site-specific chemical and biosynthetic glycosylation
(2021)
The cytokines interleukin 4 (IL-4) and IL-13 are important mediators in the humoral immune response and play a crucial role in the pathogenesis of chronic inflammatory diseases, such as asthma, allergies, and atopic dermatitis. Hence, IL-4 and IL-13 are key targets for treatment of such atopic diseases.
For cell signalling IL-4 can use two transmembrane receptor assemblies, the type I receptor consisting of receptors IL-4R and γc, and type II receptor consisting of receptors IL-4R and IL-13R1. The type II receptor is also the functional receptor of IL-13, receptor sharing being the molecular basis for the partially overlapping effects of IL-4 and IL-13. Since both cytokines require the IL-4R receptor for signal transduction, this allows the dual inhibition of both IL-4 and IL-13 by specifically blocking the receptor IL-4R.
This study describes the design and synthesis of novel antagonistic variants of human IL-4. Chemical modification was used to target positions localized in IL-4 binding sites for γc and IL-13R1 but outside of the binding epitope for IL-4R. In contrast to existing studies, which used synthetic chemical compounds like polyethylene glycol for modification of IL-4, we employed glycan molecules as a natural alternative. Since glycosylation can improve important pharmacological parameters of protein therapeutics, such as immunogenicity and serum half-life, the introduced glycan molecules thus would not only confer a steric hindrance based inhibitory effect but simultaneously might improve the pharmacokinetic profile of the IL-4 antagonist.
For chemical conjugation of glycan molecules, IL-4 variants containing additional cysteine residues were produced employing prokaryotic, as well as eukaryotic expression systems. The thiol-groups of the engineered cysteines thereby allow highly specific modification. Different strategies were developed enabling site-directed coupling of amine- or thiol- functionalized monosaccharides to introduced cysteine residues in IL-4. A linker-based coupling procedure and an approach requiring phenylselenyl bromide activation of IL-4 thiol-groups were hampered by several drawbacks, limiting their feasibility. Surprisingly, a third strategy, which involved refolding of IL-4 cysteine variants in the presence of thiol- glycans, readily allowed synthesis of IL-4 glycoconjugates in form of mixed disulphides in milligram amount. This approach, therefore, has the potential for large-scale synthesis of IL-4 antagonists with highly defined glycosylation. Obtaining a homogenous glycoconjugate with exactly defined glycan pattern would allow using the attached glycan structures for fine-tuning of pharmacokinetic properties of the IL-4 antagonist, such as absorption and metabolic stability.
The IL-4 glycoconjugates generated in this work proved to be highly effective antagonists inhibiting IL-4 and/or IL-13 dependent responses in cell-based experiments and in in vitro binding studies. Glycoengineered IL-4 antagonists thus present valuable alternatives to IL-4 inhibitors used for treatment of atopic diseases such as the neutralizing anti-IL-4R antibody Dupilumab.
Die Volkskrankheit Adipositas zieht eine Reihe von kostenträchtigen Komplikationen mit sich wie z. B. Diabetes mellitus Typ 2 und kardiovaskuläre Erkrankungen. Der Endocannabinoidblocker Rimonabant ist hierbei ein viel versprechendes Medikament, mit dem nicht nur die Adipositas an sich, sondern zusätzlich auch ihre weit reichenden Komplikationen im kardiovaskulären Bereich reduziert werden können. Im Rahmen der vorliegenden Arbeit konnten an Hand 6 Monate alter diabetischer Ratten, welche für 10 Wochen mit Rimonabant behandelt wurden, aufgezeigt werden, dass Rimonabant auf verschiedenste Weise die Initialphase der Atherogenese positiv beeinflusst. Zum einen konnte die Anzahl der zirkulierenden Monozyten signifikant vermindert und auch die für die initiale Rekrutierung von Thrombozyten und Monozyten wichtigen Chemokine RANTES und MCP-1 reduziert werden. Zum anderen zeigten sich positive Effekte auf das Lipidprofil der Probanden. Ein besonderes Augenmerk lag auf dem Aktivitätszustand der Thrombozyten: Mit Rimonabant wurde sowohl die thrombozytäre Aktivierung minimiert als auch ein positiver Einfluss auf die Thrombozytenadhäsion und -aggregation bestätigt. Folglich reduziert Rimonabant das kardiovaskuläre Risiko, indem es die pro-inflammatorischen und pro-atherosklerotischen Kaskaden vermindert.