de Oliveira Benedito Marcio, Teodoro Jéssica Beatriz Miranda, Ambrósio Jéssica Aparecida Ribeiro, Gonçalves Erika Peterson, Beltrame Milton, Cortez Marcolino Luciana Maria, Pinto Juliana Guerra, Ferreira-Strixino Juliana, Simioni Andreza Ribeiro
Organic Synthesis Laboratory, Institute of Research and Development, University of Vale do Paraíba, São José dos Campos, Brazil.
Laboratory of Photobiology Applied to Health, Institute of Research and Development, University of Vale do Paraíba, São José dos Campos, Brazil.
J Biomater Sci Polym Ed. 2022 Jan;33(1):93-109. doi: 10.1080/09205063.2021.1980359. Epub 2021 Oct 23.
Development delivery systems, such as nanoparticles, represent a growing area in biomedical research. Nanoparticles (NP) were prepared using a double-emulsion method to load zinc(II) phthalocyanine (ZnPc). NP were obtained using poly (lactic acid) (PLA). ZnPc is a second generation of photosensitizer used in photodynamic therapy (PDT). ZnPc loaded PLA nanoparticles (NPLA-ZnPc) were prepared by double-emulsion method, characterized and available in cellular culture. The mean nanoparticle size presented particle size was 384.7 ± 84.2 nm with polydispersity index (PDI) of 0.150 ± 0.015, and the encapsulation efficiency was of 83%. The nanoparticle formulations presented negative zeta potential values (-27.5 ± 1.0 mV), explaining their colloidal stability. ZnPc loaded nanoparticles maintain its photophysical behavior after encapsulation. Photosensitizer release from nanoparticles was sustained over 168 h with a biphasic ZnPc release profile. An phototoxic effect in range of 80% was observed in 9 L/LacZ gliosarcoma cells at laser light doses (10 J cm) with 3.0 µg mL of NPLA-ZnPc. All the physical-chemical, photophysical and photobiological measurements performed allow us to conclude that ZnPc loaded PLGA nanoparticles is a promising drug delivery system for PDT.
诸如纳米颗粒之类的开发递送系统是生物医学研究中一个不断发展的领域。使用双乳液法制备纳米颗粒(NP)以负载锌(II)酞菁(ZnPc)。NP是使用聚乳酸(PLA)获得的。ZnPc是用于光动力疗法(PDT)的第二代光敏剂。通过双乳液法制备了负载ZnPc的PLA纳米颗粒(NPLA-ZnPc),对其进行了表征并可用于细胞培养。呈现的平均纳米颗粒尺寸为384.7±84.2nm,多分散指数(PDI)为0.150±0.015,包封率为83%。纳米颗粒制剂呈现负的zeta电位值(-27.5±1.0mV),这解释了它们的胶体稳定性。负载ZnPc的纳米颗粒在包封后保持其光物理行为。纳米颗粒中光敏剂的释放持续超过168小时,具有双相ZnPc释放曲线。在激光剂量(10J/cm)下,使用3.0μg/mL的NPLA-ZnPc,在9L/LacZ胶质肉瘤细胞中观察到80%范围内的光毒性作用。所进行的所有物理化学、光物理和光生物学测量使我们能够得出结论,负载ZnPc的PLGA纳米颗粒是一种有前途的用于PDT的药物递送系统。