Programa de Pós-Graduação em Ciências Farmacêuticas, Faculdade de Farmácia, Universidade Federal do Rio Grande do Sul, Av. Ipiranga 2752, Porto Alegre, 90610-000, RS, Brazil.
J Biomed Nanotechnol. 2009 Jun;5(3):240-6. doi: 10.1166/jbn.2009.1028.
The objective of this work was to verify if hydrophilic gels containing benzophenone-3 loaded nanocapsules (HG-NCBZ3) could improve the sunscreen in vitro effectiveness against UVA radiation and its photostability compared to a conventional hydrogel containing the free sunscreen (HG-BZ3). In parallel, the immune response of the nanostructured system was evaluated by mouse ear swelling test and the local lymph node assay. The nanocapsules were prepared by interfacial deposition of poly(epsilon-caprolactone) and characterized in terms of particle size, polydispersity index, zeta potential, drug content and encapsulation efficiency. HG-NCBZ3 UV scans showed higher absorption intensity values than HG-NCplacebo, prepared using unloaded nanocapsules. Films of the gels were irradiated with UVA light and the BZ3 recovery was evaluated by HPLC. BZ3 recovery decreased from 100% to 29% for HG-BZ3 and to 56% for HG-NCBZ3 after 13 h. After wavelength scans within 13 h, the relative areas under the curves (AUC) decreased from 1.00 to 0.62 for HG-BZ3 and remained constant for HG-NCBZ3. Sensitization assay showed that stimulation indexes lower than 3 for all the hydrogel samples. Formulations did not induce increases higher than 10% in ear swelling, indicating that the hydrogels did not cause cutaneous sensitization in mice. The nanoencapsulation improved both the photostability and the effectiveness of BZ3 compared to the non-encapsulated sunscreen and the topical application of free and nanoencapsulated BZ3 did not produce significant allergy response in mice.
本工作旨在验证载有二苯甲酮-3 的亲水性纳米胶囊水凝胶(HG-NCBZ3)是否可以提高防晒剂的体外 UVA 辐射防护效果,并提高其光稳定性,与含有游离防晒剂的常规水凝胶(HG-BZ3)相比。同时,通过小鼠耳肿胀试验和局部淋巴结试验评估纳米结构系统的免疫反应。纳米胶囊通过聚(ε-己内酯)的界面沉积制备,并对粒径、多分散指数、Zeta 电位、药物含量和包封效率进行了表征。HG-NCBZ3 的 UV 扫描显示出比使用未载药纳米胶囊制备的 HG-NCplacebo 更高的吸收强度值。凝胶的薄膜用 UVA 光照射,并通过 HPLC 评估 BZ3 的回收率。HG-BZ3 的 BZ3 回收率从 100%降低到 13 小时后的 29%,而 HG-NCBZ3 的 BZ3 回收率从 100%降低到 13 小时后的 56%。在 13 小时内进行波长扫描后,曲线下相对面积(AUC)从 HG-BZ3 的 1.00 降低到 0.62,而 HG-NCBZ3 的 AUC 保持不变。敏化试验表明,所有水凝胶样品的刺激指数均低于 3。制剂不会引起肿胀增加超过 10%,表明水凝胶不会在小鼠中引起皮肤致敏。与未包封的防晒霜相比,纳米包封提高了 BZ3 的光稳定性和有效性,游离和纳米包封的 BZ3 的局部应用未在小鼠中产生显著的过敏反应。