Batishchev Oleg V, Kalutskii Maksim A, Varlamova Ekaterina A, Konstantinova Anna N, Makrinsky Kirill I, Ermakov Yury A, Meshkov Ivan N, Sokolov Valerij S, Gorbunova Yulia G
Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences, Moscow, Russia.
Kurnakov Institute of General and Inorganic Chemistry, Russian Academy of Sciences, Moscow, Russia.
Front Mol Biosci. 2023 May 15;10:1192794. doi: 10.3389/fmolb.2023.1192794. eCollection 2023.
Porphyrins are well-known photosensitizers (PSs) for antibacterial photodynamic therapy (aPDT), which is still an underestimated antibiotic-free method to kill bacteria, viruses, and fungi. In the present work, we developed a comprehensive tool for predicting the structure and assessment of the photodynamic efficacy of PS molecules for their application in aPDT. We checked it on a series of water-soluble phosphorus(V) porphyrin molecules with OH or ethoxy axial ligands and phenyl/pyridyl peripheral substituents. First, we used biophysical approaches to show the effect of PSs on membrane structure and their photodynamic activity in the lipid environment. Second, we developed a force field for studying phosphorus(V) porphyrins and performed all-atom molecular dynamics simulations of their interactions with bacterial lipid membranes. Finally, we obtained the structure-activity relationship for the antimicrobial activity of PSs and tested our predictions on two models of Gram-negative bacteria, and . Our approach allowed us to propose a new PS molecule, whose MIC values after an extremely low light dose of 5 J/cm (5.0 ± 0.4 μg/mL for and 4.9 ± 0.8 μg/mL for ) exceeded those for common antibiotics, making it a prospective antimicrobial agent.
卟啉是用于抗菌光动力疗法(aPDT)的著名光敏剂(PSs),抗菌光动力疗法仍是一种未得到充分重视的无抗生素杀菌方法,可杀灭细菌、病毒和真菌。在本研究中,我们开发了一种综合工具,用于预测PS分子的结构并评估其在aPDT中的光动力疗效。我们用一系列带有OH或乙氧基轴向配体以及苯基/吡啶基周边取代基的水溶性五价磷卟啉分子对该工具进行了检验。首先,我们采用生物物理方法来展示PSs对膜结构的影响及其在脂质环境中的光动力活性。其次,我们开发了一种用于研究五价磷卟啉的力场,并对其与细菌脂质膜的相互作用进行了全原子分子动力学模拟。最后,我们得出了PSs抗菌活性的构效关系,并在两种革兰氏阴性菌模型上检验了我们的预测。我们的方法使我们能够提出一种新的PS分子,其在极低光剂量5 J/cm² 后的最低抑菌浓度(MIC)值(对于[具体菌1]为5.0±0.4 μg/mL,对于[具体菌2]为4.9±0.8 μg/mL)超过了常见抗生素,使其成为一种有前景的抗菌剂。