The photosensitization mechanisms of urocanic acid (UA), the main skin chromophores of ultraviolet (UV) light, are investigated by means of theoretical calculations. The results indicate that the direct photooxidative damage to DNA bases by triplet state UA through electron transfer reaction is not favorable on thermodynamic grounds. However, UA can photogenerate various reactive oxygen species (ROS, e.g., O-1(2), O-2(center dot-)) theoretically and the ROS-generating mechanisms are illustrated as follows. Firstly, the O-1(2)-generating pathway involves direct energy transfer between triplet state UA and O-3(2). Secondly, UA gives birth to O-2(center dot-) through two pathways: (i) direct electron transfer between triplet state UA and O-3(2); (ii) electron transfer between anion radical of UA (generated through autoionization reactions) and (3) O-2. (C) 2008 Elsevier B.V. All rights reserved.