AI Article Synopsis

  • Antibody-directed enzyme prodrug therapy (ADEPT) utilizes an enzyme linked to antibodies to convert inactive prodrugs into active cancer drugs, although the diffusion of the active drugs away from the target site poses a challenge.
  • Research is exploring a molecular brachytherapy approach that involves converting soluble radiotherapeutics to insoluble forms at the target site for better immobilization, which has seen limited investigation so far.
  • The study also developed 21 compounds based on aggregation-induced emission (AIE) principles, which enhance solubility and provide a platform for further research into effective strategies for molecular brachytherapy.

Article Abstract

A targeted strategy for treating cancer is antibody-directed enzyme prodrug therapy, where the enzyme attached to the antibody causes conversion of an inactive small-molecule prodrug into an active drug. A limitation may be the diffusion of the active drug away from the antibody target site. A related strategy with radiotherapeutics entails enzymatically promoted conversion of a soluble to insoluble radiotherapeutic agent, thereby immobilizing the latter at the target site. Such a molecular brachytherapy has been scarcely investigated. In distinct research, the advent of molecular designs for aggregation-induced emission (AIE) suggests translational use in molecular brachytherapy. Here, several 2-(2-hydroxyphenyl)benzothiazole substrates that readily aggregate in aqueous solution (and afford AIE) were elaborated in this regard. In particular, (1) the 2-(2-hydroxyphenyl) unit was derivatized to bear a pegylated phosphodiester that imparts water solubility yet undergoes enzymatic cleavage, and (2) a -phenol unit was attached to the benzo moiety to provide a reactive site for final-step iodination (here examined with natural abundance iodide). The pegylated phosphodiester-iodinated benzothiazole undergoes conversion from aqueous-soluble to aqueous-insoluble upon treatment with a phosphatase or phosphodiesterase. The aggregation is essential to molecular brachytherapy, whereas the induced emission of AIE is not essential but provides a convenient basis for research development. Altogether, 21 compounds were synthesized (18 new, 3 known via new routes). Taken together, blending biomedical strategies of enzyme prodrug therapy with materials chemistry concerning substances that undergo AIE may comprise a step forward on the long road toward molecular brachytherapy.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9786593PMC
http://dx.doi.org/10.3390/molecules27248682DOI Listing

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