Folate-conjugated organic CO prodrugs: Synthesis and CO release kinetic studies

Res Sq [Preprint]. 2024 Apr 12:rs.3.rs-4213303. doi: 10.21203/rs.3.rs-4213303/v1.

Abstract

Carbon monoxide (CO) is an endogenous produced molecule and has shown efficacy in animal models of inflammation, organ injury, colitis and cancer metastasis. Because of its gaseous nature, there is a need for developing efficient CO delivery approaches, especially those capable of targeted delivery. In this study, we aim to take advantage of a previously reported approach of enrichment-triggered prodrug activation to achieve targeted delivery by targeting the folate receptor. The general idea is to exploit folate receptor-mediated enrichment as a way to accelerate a biomolecular Diels-Alder reaction for prodrug activation. In doing so, we first need to find ways to tune the reaction kinetics in order to ensure minimal rection without enrichment and optimal activation upon enrichment. In this feasibility study, we synthesized two diene-dienophile pairs and studied their reaction kinetics and ability to target the folate receptor. We found that folate conjugation significantly affects the reaction kinetics of the original diene-dienophile pairs. Such information will be very useful in future designs of similar targeted approaches of CO delivery.

Keywords: Carbon Monoxide; Diels-Alder reaction; Enrichment triggered delivery; Folate conjugate; Reaction kinetics.

Publication types

  • Preprint