Department of Engineering of Bioprocess and Biotechnology, School of Pharmaceutical Sciences, São Paulo State University - UNESP, Araraquara, São Paulo, 14800-903, Brazil.
Department of Drugs and Medicines, School of Pharmaceutical Sciences, São Paulo State University - UNESP, Araraquara, 14800-903, São Paulo, Brazil.
Photodiagnosis Photodyn Ther. 2021 Jun;34:102273. doi: 10.1016/j.pdpdt.2021.102273. Epub 2021 Mar 30.
Antimicrobial Photodynamic Therapy (A-PDT) is a modern and non-invasive therapeutic modality. Nanostructures like the polymeric nanocapsules (NC) has proved to be a system that has enormous potential to improve current antimicrobial therapeutic practice. NC of Zinc phenyl-thio-phthalocyanine and Amphotericin B association (NC/ZnS4Pc + AMB) built with poly(lactide-co-glycolide) (PLGA) 50:50 using the preformed polymer interfacial deposition method were developed at a 0.05 mg mL theoretical concentration to improve antifungal activity with two actives association and assistance from PDTa. It showed an average particle diameter of 253.8 ± 17.3, an average polydispersity index of 0.36 ± 0.01, and a negative Zeta potential average of -31.03 ± 5.54 for 158 days. UV-vis absorption and emission spectroscopy analyses did not show changes in photophysical properties in the steady-state of NC/ZnS4Pc + AMB counterparts free ZnS4Pc. The encapsulation percentage of actives was 89.24 % and 7.40 % for ZnS4Pc and AMB, respectively. Cell viability assay using NIH/3T3 ATCC® CRL-1658 ™ cells line showed no cytotoxicity for the concentrations tested. The photodynamic activity assay using NC/ZnS4Pc + AMB diluted showed fungal toxicity against Candida albicans yeast with energetic fluences of 12 J.cm and 25 J.cm by a decrease in cell viability. The MFC assay demonstrated a fungistatic activity for the conditions employed in the PDTa assay. The results show that NC/ZnS4Pc + AMB is a promising nanomaterial for antimicrobial inactivation using PDT.
光动力抗菌疗法(A-PDT)是一种现代的、非侵入性的治疗方式。纳米结构,如聚合纳米胶囊(NC),已被证明是一种具有巨大潜力的系统,可以改善当前的抗菌治疗实践。使用预形成聚合物界面沉积法,以 0.05mg/mL 的理论浓度构建了聚(丙交酯-共-乙交酯)(PLGA)50:50 的锌苯硫代酞菁和两性霉素 B 联合的 NC(NC/ZnS4Pc+AMB),以提高抗真菌活性,两种活性物质联合使用,并辅以 PDTa。它显示出平均粒径为 253.8±17.3nm,平均多分散指数为 0.36±0.01,负 Zeta 电位平均为-31.03±5.54,持续 158 天。紫外可见吸收和发射光谱分析表明,在 NC/ZnS4Pc+AMB 对照物中,自由 ZnS4Pc 的稳态下,光物理性质没有变化。活性物质的包封率分别为 89.24%和 7.40%,用于 ZnS4Pc 和 AMB。使用 NIH/3T3 ATCC® CRL-1658 ™细胞系进行细胞活力测定,结果表明,在所测试的浓度下,该物质对细胞没有细胞毒性。使用稀释后的 NC/ZnS4Pc+AMB 进行的光动力活性测定显示,该物质对白色念珠菌酵母具有真菌毒性,细胞活力下降,能量通量分别为 12J/cm 和 25J/cm。MFC 测定表明,在 PDTa 测定中使用的条件下,该物质具有抑菌活性。结果表明,NC/ZnS4Pc+AMB 是一种很有前途的纳米材料,可用于光动力抗菌灭活。