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Chitosan-functionalized nanostructured lipid carriers containing chloroaluminum phthalocyanine for photodynamic therapy of skin cancer

壳聚糖 光动力疗法 光敏剂 生物相容性材料 酞菁 生物相容性 化学 硬脂酸 材料科学 核化学 有机化学 生物医学工程 医学
作者
Ellen Denise Prado Almeida,Luiz André Santos Silva,Guilherme Rodolfo Souza de Araujo,Monalisa Martins Montalvão,Saulo Santos Matos,Joyce Kelly Marinheiro da Cunha Gonsalves,Rogéria de Souza Nunes,Cristiano Teles de Meneses,Rennan Geovanny Oliveira Araujo,Víctor Hugo Vitorino Sarmento,Waldecy De Lucca Junior,Cristiane Bani Correa,José Joatan Rodrigues Júnior,Ana Amélia Moreira Lira
出处
期刊:European Journal of Pharmaceutics and Biopharmaceutics [Elsevier]
卷期号:179: 221-231
标识
DOI:10.1016/j.ejpb.2022.09.009
摘要

• NLC functionalized with chitosan had not yet been investigated in PTD. • Chitosan coating resulted in greater encapsulation efficiency and greater stability. • Coated NLC was biocompatible and promoted faster drug entry into the skin. • The photodynamic efficiency of coated NLC was unexpectedly lower than uncoated NLC. The objective of this study was to obtain optimized nanostructured lipid carriers (NLC) functionalized with chitosan containing chloroaluminum phthalocyanine (ClAlPc) as a photosensitizer. Initially, the optimization of the preparation method of the NLC was performed, where the influence of different surfactants such as PVA and Tween 80, as well as different solid lipids such as stearic acid and Glycerol Monostearate (GM) was evaluated. The formulation containing GM and PVA (NLC10) was considered promising. Following, by the adsorption method (NLC10q), the formulation was functionalized with chitosan and characterized. NLC10 and NLC10q presented sizes of 131.5 and 231.5 nm, and ZP of −24.30 and + 19.96 mV, respectively. The encapsulation efficiency of NLC10q was 96 %, higher than NLC10 (79 %). The formulations were able to promote significant cutaneous retention of ClAlPc, after 2 h and 4 h of the study, and showed to be non-toxic to fibroblasts (biocompatible). PDT in BF16-F10 melanoma resulted in reduced cell viability to 70 % and 50 % for NLC10 and NLCq, respectively. In view of the results obtained, NLC showed to be promising in the treatment of skin cancer through PDT. NLC10q showed higher encapsulation efficiency and stability than NLC10, but, contrary to what was expected, it presented lower photodynamic efficiency.
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