College of Chemistry and Pharmaceutical Sciences, Qingdao Agricultural University, 700 Changcheng Road, Qingdao, 266109, China.
Innovation Platform of Marine Drug Screening & Evaluation, Qingdao National Laboratory for Marine Science and Technology, Qingdao, 266100, China.
Acta Biomater. 2023 Sep 1;167:489-505. doi: 10.1016/j.actbio.2023.06.025. Epub 2023 Jun 25.
Antibiotics show unsuccessful application in biofilm destruction, which induce chronic infections and emergence of antibiotic resistant bacteria. Photodynamic therapy (PDT) and photothermal therapy (PTT), as widely accepted antimicrobial tools of phototherapy, could effectively activate the immune system and promote the proliferation of wound tissue, thus becoming the most promising therapeutic strategy to replace antibiotics and avoid drug-resistant strains. However, there is no consensus on whether antibacterial and wound healing achieved by PDT/PTT depend not only on the cytotoxic effect of the treatment itself, but also on the activation of host immune system. In this study, CaSiO-ClO@PDA-ICG nanoparticles (CCPI NPs) were designed as PDT/PTT antimicrobial model material. With the comparison of healing effect between wide-type mice and severely immunodeficient (C-NKG) mice, the dependence of PDT/PTT-induced microbial apoptosis and wound healing on immune activation and macrophage phenotype transformation was explored and verified. Furthermore, the induced phenotypic transformation of macrophages during PDT/PTT treatment was demonstrated to play crucial role in the improvement of epithelial-mesenchymal transformation (EMT). In summary, this study represents great significance for further identifying the role of immune system activation in antibacterial phototherapy and developing new treatment strategies for biofilm-infected wound healing. STATEMENT OF SIGNIFICANCE: A PDT/PTT combination therapy model nanoparticle was established for biofilm-infected wounds. Both microbial apoptosis and wound healing achieved by PDT/PTT combination therapy were highly dependent on the activated immune system, especially the M2 macrophage phenotype. PDT/PTT could promote the polarization of monocytes to the phenotype of M2 macrophages, which promotes EMT behavior of the tissue at the edge of the wound through the secretion of TGF-β1, thus accelerating wound healing.
抗生素在破坏生物膜方面的应用效果并不理想,这会导致慢性感染和抗生素耐药菌的出现。光动力疗法(PDT)和光热疗法(PTT)作为光疗中广泛接受的抗菌手段,可以有效地激活免疫系统并促进伤口组织的增殖,因此成为替代抗生素和避免耐药菌株的最有前途的治疗策略。然而,目前还没有共识认为 PDT/PTT 所实现的抗菌和伤口愈合效果不仅取决于治疗本身的细胞毒性作用,还取决于宿主免疫系统的激活。在本研究中,设计了 CaSiO-ClO@PDA-ICG 纳米粒子(CCPI NPs)作为 PDT/PTT 抗菌模型材料。通过比较野生型小鼠和严重免疫缺陷(C-NKG)小鼠的愈合效果,探索并验证了 PDT/PTT 诱导的微生物凋亡和伤口愈合对免疫激活和巨噬细胞表型转化的依赖关系。此外,还证明了 PDT/PTT 治疗过程中巨噬细胞的诱导表型转化在改善上皮-间充质转化(EMT)方面发挥着关键作用。综上所述,本研究对于进一步确定免疫系统激活在抗菌光疗中的作用以及开发用于生物膜感染性伤口愈合的新治疗策略具有重要意义。