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Esterase-Responsive Fluorogenic Prodrugs of Aldose Reductase Inhibitor Epalrestat: An Innovative Strategy toward
Roopjyoti Misra1, Pallavi Barman1, Krishna P Bhabak1
1Department of Chemistry, Indian Institute of Technology Guwahati, Guwahati 781039, Assam, India.
Abstract:
In addition to the conventional chemotherapeutic drugs, potent inhibitors of key enzymes that are differentially overexpressed in cancer cells and associated with its progression are often considered as the drugs of choice for treating cancer. Aldose reductase (AR), which is primarily associated with complications of diabetes, is known to be closely related to the development of cancer and drug resistance. Epalrestat (EPA), an FDA-approved drug, is a potent inhibitor of AR and exhibits anticancer activity. However, its poor pharmacokinetic properties limit its bioavailability and therapeutic benefits. We report herein the first examples of esterase-responsive turn-on fluorogenic prodrugs for the sustained release of EPA to cancer cells with a turn-on fluorescence readout. Carboxylesterases are known to be overexpressed in several organ-specific cancer cells and help in selective uncaging of drug from the prodrugs. The prodrugs were synthesized using a multistep organic synthesis and successfully characterized. Absorption and emission spectroscopic studies indicated successful activation of the prodrugs in the presence of porcine liver esterase (PLE) under physiological condition. HPLC studies revealed a simultaneous release of both the drug and the fluorophore from the prodrugs over time with mechanistic insights. While the inhibitory potential of EPA released from the prodrugs toward the enzyme AR was validated in the aqueous medium, the anticancer activity of the prodrugs was studied in a representative cervical cancer cell line. Interestingly, our results revealed that the development of the prodrugs can significantly enhance the anticancer potential of EPA. Finally, the drug uncaging process from the prodrugs by the intracellular esterases was studied in the cellular medium by measuring the turn-on fluorescence using fluorescence microscopy. Therefore, the present study highlights the rational development of the fluorogenic prodrugs of EPA, which will help enhance its anticancer potential with better therapeutic potential.
Insights
This study developed novel fluorogenic prodrugs for sustained release of epalrestat (EPA), an aldose reductase (AR) inhibitor, enhancing its anticancer activity and bioavailability for cancer therapy.
Area of Science:
- Medicinal Chemistry
- Cancer Biology
- Drug Delivery
Background:
- Aldose reductase (AR) is implicated in cancer development and drug resistance.
- Epalrestat (EPA), an AR inhibitor, shows anticancer potential but suffers from poor pharmacokinetics.
- Carboxylesterases are overexpressed in cancer cells, offering a target for selective drug delivery.
Purpose of the Study:
- To design and synthesize esterase-responsive, turn-on fluorogenic prodrugs for sustained release of epalrestat (EPA).
- To evaluate the pharmacokinetic properties, anticancer activity, and drug release mechanism of the novel EPA prodrugs.
- To demonstrate the utility of these prodrugs for targeted cancer therapy with fluorescence readout.
Main Methods:
- Multistep organic synthesis and characterization of EPA prodrugs.
- Spectroscopic studies (absorption, emission) to confirm prodrug activation.
- High-performance liquid chromatography (HPLC) to analyze drug release kinetics.
- In vitro evaluation of AR inhibition and anticancer activity in cervical cancer cells.
- Fluorescence microscopy to visualize intracellular drug uncaging.
Main Results:
- Successfully synthesized and characterized novel fluorogenic prodrugs of epalrestat.
- Demonstrated esterase-mediated activation and sustained release of EPA and a fluorophore under physiological conditions.
- Validated enhanced anticancer activity of EPA released from prodrugs in a cervical cancer cell line.
- Confirmed intracellular drug uncaging via fluorescence microscopy, indicating targeted delivery.
Conclusions:
- The developed fluorogenic prodrugs offer a promising strategy for improving epalrestat's therapeutic potential in cancer treatment.
- Esterase-responsive prodrug design enables targeted drug delivery and enhanced anticancer efficacy.
- This approach provides a valuable tool for monitoring drug release and distribution in cancer cells.
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