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Updated: Feb 7, 2026

An In Vitro Approach to Photodynamic Therapy
Published on: August 17, 2018
Side effects of intra-gastric photodynamic therapy: an in vitro study
Paola Faraoni1, Alessio Gnerucci1, Francesco Ranaldi1
1Department of Experimental and Clinical Biomedical Sciences "Mario Serio", Viale Pieraccini 6, I-50139 Florence, University of Florence, Italy.
Abstract:
Since many years it has been acknowledged that some bacterial species, among which H. pylori, P. aeruginosa, P. acnes accumulate endogenous photosensitizers (PS) in the form of porphyrins. This makes antibacterial photodynamic therapy (PDT) easier to perform due to the possible avoidance of external PS. In this study, we focus on gastric infections associated with the presence of Helicobacter pylori (H. pylori), known to accumulate and release both protoporphyrin IX (PPIX) and coproporphyrins. PDT versus H. pylori can be carried out by modified endoscopes or by new ingestible luminous devices under development. In both cases of in vitro and in vivo applications, either for therapy (PDT) or diagnosis, scientific literature lacks studies on the possible side-effects of light treatments on the surrounding tissues. To this aim we evaluated in vitro side-effects due to a possible intrinsic photosensitivity of gastric mucosa or to a photosensitization by the PS released from the bacterium itself. Photo-toxicity studies were conducted on the AGS cell line (ATCC® CRL-1739™), commonly used as a model for the stomach mucosa tissue, considering PPIX as the photosensitizing agent. After first evaluations of PPIX dark toxicity, its uptake and accumulation sites, photo-toxicity tests were conducted using a LED light source peaked at 400 nm, by varying both PPIX concentration (50 nM - 2 μM) and light dose in the range 0.6-13 J/cm2, representing different treatment procedures found in literature. The oxidative stress consequent to irradiation was investigated both in terms of ROS production and assessment of the activity of enzymes involved in ROS-related biological mechanisms. A significant phototoxic effect was found only for PPIX concentration > 100 nM for all tested light doses. This indicates that the evaluated photo-treatments do not cause side effects even with the sensitization due to PPIX released by the bacteria.
Insights
Photodynamic therapy (PDT) for H. pylori infections is promising, as bacteria accumulate photosensitizers. This study found that gastric mucosa phototoxicity only occurs at high photosensitizer concentrations, suggesting PDT is safe for stomach tissues.
Area of Science:
- Photodynamic therapy
- Bacterial infections
- Gastric mucosa research
Background:
- Bacterial species like Helicobacter pylori accumulate endogenous photosensitizers (PS), such as porphyrins, simplifying photodynamic therapy (PDT).
- H. pylori specifically accumulates and releases protoporphyrin IX (PPIX) and coproporphyrins, relevant for gastric infection PDT.
- Existing literature lacks data on potential side-effects of light treatments on gastric tissues during PDT or diagnosis.
Purpose of the Study:
- To evaluate in vitro side-effects of light treatments on gastric mucosa.
- To assess potential photosensitization of gastric mucosa by endogenous photosensitizers released by H. pylori.
- To determine the phototoxicity thresholds of protoporphyrin IX (PPIX) on gastric mucosal models.
Main Methods:
- Photo-toxicity studies were performed on the AGS cell line, a gastric mucosa model.
- Protoporphyrin IX (PPIX) was used as the photosensitizing agent.
- Cells were exposed to LED light (400 nm) at varying PPIX concentrations (50 nM - 2 μM) and light doses (0.6-13 J/cm²).
- Oxidative stress was assessed via reactive oxygen species (ROS) production and related enzyme activity.
Main Results:
- Significant phototoxic effects were observed only at PPIX concentrations exceeding 100 nM, regardless of light dose.
- No significant phototoxicity was detected at lower PPIX concentrations, even with varying light exposure.
- These findings suggest a safety margin for PDT in gastric applications.
Conclusions:
- The evaluated photodynamic therapy (PDT) protocols do not induce significant side effects on gastric mucosal models.
- Even with photosensitization from H. pylori-released PPIX, phototoxicity is minimal below 100 nM concentration.
- This research supports the safety of using PDT for treating H. pylori-associated gastric infections.
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