Supramolecular Enzyme-Peptide Gels for Localized Therapeutic Biocatalysis

Author:

Fuchs Madeline,Seroski Dillon,Morales Bethsymarie Soto,Melgar Lucas,Scibilio Giannia,Ziegler Abigail,Liu Renjie,Keselowsky Benjamin,Hudalla Gregory

Abstract

Enzyme therapeutics are often compromised by poor accumulation within target tissues, necessitating high doses that can exacerbate off-target effects. We report an injectable supramolecular enzyme-peptide gel platform for prolonged local enzyme retentionin vivo. The gel is based on CATCH(+/-) (Co-AssemblingTags based onCHarge-complementarity), cationic and anionic peptide pairs that form β-sheet fibrils upon mixing1. Enzymes recombinantly fused to CATCH(-) peptide integrate into CATCH(+/-) β-sheet fibrils during assembly, resulting in an enzyme-peptide gel. Catalytically-active gels were fabricated with four disparate enzymes: CATCH(-)-NanoLuc luciferase, CATCH(-)-cutinase, CATCH(-)-uricase, and CATCH(-)-adenosine synthase A. CATCH(-)-cutinase gels demonstrated tunability of the platform, while CATCH(-)-NanoLuc gels demonstrated prolonged tissue retention relative to soluble enzyme. CATCH(-)-uricase gels resolved localized inflammation in a gout model, while CATCH(-)-adenosine synthase A gels suppressed localized lipopolysaccharide-induced inflammation. Modular and tunable enzyme content, coupled with prolonged tissue retention, establish CATCH enzyme-peptide gels as a generalizable vehicle for effective local therapeutic biocatalysis.

Publisher

Cold Spring Harbor Laboratory

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