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Updated: Jan 27, 2026

Cytotoxic Efficacy of Photodynamic Therapy in Osteosarcoma Cells In Vitro
Published on: March 18, 2014
Screening of two-photon activated photodynamic therapy sensitizers using a 3D osteosarcoma model
Agnes Dobos1, Wolfgang Steiger1, Dominik Theiner2
1TU Wien, Institute of Materials Science and Technology, Getreidemarkt 9, 1060 Vienna, Austria. Aleksandr.Ovsianikov@tuwien.ac.at and Austrian Cluster for Tissue Regeneration, Austria.
Abstract:
Photodynamic therapy (PDT) involves a photosensitizing agent activated with light to induce cell death. Two-photon excited PDT (TPE-PDT) offers numerous benefits compared to traditional one-photon induced PDT, including an increased penetration depth and precision. However, the in vitro profiling and comparison of two-photon photosensitizers (PS) are still troublesome. Herein, we report the development of an in vitro screening platform of TPE-PS using a 3D osteosarcoma cell culture. The platform was tested using three different two-photon (2P) active compounds - a 2P sensitizer P2CK, a fluorescent dye Eosin Y, and a porphyrin derivative (TPP). Their 2P absorption cross-sections (σ2PA) were characterised using a fully automated z-scan setup. TPP exhibited a remarkably high σ2PA at 720 nm (8865 GM) and P2CK presented a high absorption at 850 nm (405 GM), while Eosin Y had the lowest 2P absorption at the studied wavelengths (<100 GM). The cellular uptake of PS visualized using confocal laser scanning microscopy showed that both TPP and P2CK were internalized by the cells, while Eosin Y stayed mainly in the surrounding media. The efficiency of the former two TPE-PS was quantified using the PrestoBlue metabolic assay, showing a significant reduction in cell viability after two-photon irradiation. The possibility of damage localization was demonstrated using a co-culture of adipose derived stem cells together with osteosarcoma spheroids showing no signs of damage to the surrounding healthy cells after TPE-PDT.
Insights
A new platform screens two-photon excited photodynamic therapy (TPE-PDT) agents using 3D cell cultures. This method effectively identifies potent TPE-PDT compounds and demonstrates precise cancer cell targeting with minimal damage to healthy cells.
Area of Science:
- Biomedical Engineering
- Photodynamic Therapy
- Cancer Research
Background:
- Photodynamic therapy (PDT) utilizes photosensitizers activated by light for cell death.
- Two-photon excited PDT (TPE-PDT) offers enhanced penetration depth and precision over traditional PDT.
- In vitro screening and comparison of TPE-PDT photosensitizers (PS) remain challenging.
Purpose of the Study:
- Develop and validate an in vitro screening platform for TPE-PDT agents.
- Compare the efficacy of different two-photon active compounds.
- Assess the targeting precision and safety of TPE-PDT in a co-culture model.
Main Methods:
- Established a 3D osteosarcoma cell culture for TPE-PS screening.
- Characterized two-photon absorption cross-sections (σ2PA) using automated z-scan.
- Quantified cellular uptake via confocal microscopy and cell viability using PrestoBlue assay.
Main Results:
- TPP and P2CK showed high two-photon absorption and cellular internalization.
- Eosin Y exhibited low 2P absorption and minimal cellular uptake.
- TPE-PDT with TPP and P2CK significantly reduced cancer cell viability.
- Co-culture experiments demonstrated TPE-PDT's ability to spare adjacent healthy cells.
Conclusions:
- The developed 3D cell culture platform is effective for screening TPE-PS.
- TPP and P2CK are promising candidates for TPE-PDT applications.
- TPE-PDT allows for precise damage localization, sparing surrounding healthy tissues.
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