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Solid-phase Synthesis of [4.4] Spirocyclic Oximes
Published on: February 6, 2019
Oxime-based 19-nortestosterone-pheophorbide a conjugate: bimodal controlled release concept for PDT
Vladimíra Pavlíčková1, Michal Jurášek, Silvie Rimpelová
1Department of Biochemistry and Microbiology, University of Chemistry and Technology Prague, Technická 5, 166 28, Prague 6, Czech Republic. silvie.rimpelova@vscht.cz tomas.ruml@vscht.cz.
Abstract:
Photodynamic therapy has become a feasible direction for the treatment of both malignant and non-malignant diseases. It has been in the spotlight since FDA regulatory approval was granted to several photosensitizers worldwide. Nevertheless, there are still strong limitations in the targeting specificity that is vital to prevent systemic toxicity. Here, we report the synthesis and biological evaluation of a novel bimodal oxime conjugate composed of a photosensitizing drug, red-emitting pheophorbide a, and nandrolone (NT), a steroid specifically binding the androgen receptor (AR) commonly overexpressed in various tumors. We characterized the physico-chemical properties of the NT-pheophorbide a conjugate (NT-Pba) and singlet oxygen generation. Because light-triggered therapies have the potential to provide important advances in the treatment of hormone-sensitive cancer, the biological potential of this novel specifically-targeted photosensitizer was assessed in prostatic cancer cell lines in vitro using an AR-positive (LNCaP) and an AR-negative/positive cell line (PC-3). U-2 OS cells, both with and without stable AR expression, were used as a second cell line model. Interestingly, we found that the NT-Pba conjugate was not only photodynamically active and AR-specific, but also that its phototoxic effect was more pronounced compared to pristine pheophorbide a. We also examined the intracellular localization of NT-Pba. Live-cell fluorescence microscopy provided clear evidence that the NT-Pba conjugate localized in the endoplasmic reticulum and mitochondria. Moreover, we performed a competitive localization study with the excess of nonfluorescent NT, which was able to displace fluorescent NT-Pba from the cell interior, thereby further confirming the binding specificity. The oxime ether bond degradation was assayed in living cells by both real-time microscopy and a steroid receptor reporter assay using AR U-2 OS cells. Thus, NT-Pba is a promising candidate for both the selective targeting and eradication of AR-positive malignant cells by photodynamic therapy.
Insights
This study developed a novel photosensitizer, NT-Pba, for targeted photodynamic therapy. The conjugate selectively targets androgen receptor-positive cancer cells, enhancing phototoxicity and reducing systemic toxicity for improved cancer treatment.
Area of Science:
- Biomedical Engineering
- Photodynamic Therapy
- Oncology
Background:
- Photodynamic therapy (PDT) offers a promising treatment modality for various diseases.
- Current PDT faces limitations in targeting specificity, leading to systemic toxicity.
- Androgen receptor (AR) is overexpressed in many tumors, presenting a therapeutic target.
Purpose of the Study:
- To synthesize and evaluate a novel bimodal oxime conjugate (NT-Pba) for targeted PDT.
- To assess the AR-specificity and photodynamic activity of NT-Pba in cancer cell lines.
- To investigate the intracellular localization and mechanism of action of NT-Pba.
Main Methods:
- Synthesis and characterization of the NT-Pba conjugate.
- Assessment of singlet oxygen generation.
- In vitro evaluation in AR-positive (LNCaP) and AR-negative/positive (PC-3, U-2 OS) prostate and bone cancer cell lines.
- Live-cell fluorescence microscopy for intracellular localization studies.
- Competitive localization assays and steroid receptor reporter assays.
Main Results:
- The NT-Pba conjugate demonstrated photodynamic activity and AR-specificity.
- NT-Pba exhibited enhanced phototoxicity compared to pheophorbide a alone.
- Intracellular localization confirmed accumulation in endoplasmic reticulum and mitochondria.
- Competitive assays validated specific binding to the androgen receptor.
- Oxime ether bond degradation was confirmed in living cells.
Conclusions:
- NT-Pba is a promising photosensitizer for targeted photodynamic therapy.
- The conjugate shows potential for selective targeting and eradication of AR-positive malignant cells.
- This targeted approach may reduce systemic toxicity associated with conventional PDT.
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