Related Experiment Video
Updated: Jul 7, 2026

An In Vitro Approach to Photodynamic Therapy
Published on: August 17, 2018
Pain during photodynamic therapy is associated with protoporphyrin IX fluorescence and fluence rate
S R Wiegell1, J Skiveren, P A Philipsen
1Department of Dermatology, Bispebjerg Hospital, University of Copenhagen, Bispebjerg Bakke 23, Copenhagen NV, Denmark. SRW01@bbh.regionh.dk
Background:
Pain during photodynamic therapy (PDT) is a considerable problem that needs to be studied to improve this otherwise attractive treatment of skin diseases.
Objectives:
To compare pain during PDT using two different fluence rates, and also to evaluate the association between pain and protoporphyrin IX (PpIX) fluorescence, lesion type, lesion preparation and lesion localization.
Methods:
Twenty-six patients with actinic keratoses (AKs) in different localizations and 34 patients with facial acne vulgaris were treated with methyl aminolaevulinate-PDT. Patients with acne were illuminated using two different fluence rates. Pain score during PDT and PpIX fluorescence prior to illumination were measured.
Results:
The study showed that pain during illumination was associated with the PpIX fluorescence in the treatment area (P = 0.0003, R(2) = 0.31). When using a fluence rate of 34 mW cm(-2) patients with acne had a pain score of 6 [interquartile range (IQR) 5-7] compared with 8 (IQR 6-10) when using a fluence rate of 68 mW cm(-2) (P = 0.018). After correcting the pain score for PpIX fluorescence no differences in pain scores were found between first and second acne treatment, locations of AK lesions or between the two types of lesions.
Conclusions:
Pain during PDT was correlated with the PpIX fluorescence in the treatment area prior to illumination. Pain was reduced using a lower fluence rate during PDT of acne.
More Related Videos
09:03Optimizing Photoneuromodulation Techniques to Evaluate the Role of Green Light-Emitting Diodes in Pain Management
Published on: March 28, 2025
11:04An In-House-Built and Light-Emitting-Diode-Based Photodynamic Therapy Device for Enhancing Verteporfin Cytotoxicity in a 2D Cell Culture Model
Published on: January 13, 2023