Poh-Fitzpatrick M B
Photodermatol. 1986 Jun;3(3):148-57.
Mechanisms of porphyrin-sensitized photochemistry involving biomolecular substrates have been studied in a diverse array of in vitro and in vivo experimental protocols. Porphyrin-sensitized, singlet oxygen-mediated photooxidative damage has been implicated in peroxidation of cell membrane lipids; cross-linking of cell membrane and intracellular proteins; inhibition of cell membrane associated, cytosolic, mitochondrial and microsomal enzymes; disruption of intracellular organelles with release of inflammatory mediators and hydrolases; damage to DNA with retarded protein synthesis and delay in cell cycle; and activation of complement-generated inflammatory events leading to cell injury or death.
涉及生物分子底物的卟啉敏化光化学机制已在各种各样的体外和体内实验方案中得到研究。卟啉敏化的单线态氧介导的光氧化损伤与细胞膜脂质过氧化、细胞膜和细胞内蛋白质交联、细胞膜相关的胞质、线粒体和微粒体酶抑制、细胞内细胞器破坏并释放炎症介质和水解酶、DNA损伤并伴有蛋白质合成受阻和细胞周期延迟以及补体激活引发的炎症事件导致细胞损伤或死亡有关。