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掺入巴西香脂油自纳米乳化药物递送系统中的脱氢巴豆亭改善治疗效果的生物利用度:制剂、理化特性及体外抗氧化作用

Bioavailability for the Improved Therapeutic Profile of -Dehydrocrotonin Incorporated into a Copaiba Oil Self-Nanoemulsifying Drug Delivery System: Formulation, Physicochemical Characterizations, and Antioxidant In Vitro Effect.

作者信息

de Oliveira Netto José Robério, Corrêa Natália Pignataro, Aragão de Araujo Leonardo Bruno, Paiva Weslley de Souza, Oliveira Rocha Hugo Alexandre, Morais Lima Waldenice de Alencar, Oliveira do Nascimento José Heriberto, Dos Santos Macedo Daniel Charles, Santos-Magalhães Nereide Stela, da Veiga Júnior Valdir Florêncio, Maciel Maria Aparecida Medeiros

机构信息

Post Graduate Program in Biotechnology (REDE RENORBIO), Federal University of Rio Grande do Norte, Natal 59072-970, RN, Brazil.

Post Graduate Program in Biotechnology, Potiguar University, Campus Salgado Filho, Natal 59075-000, RN, Brazil.

出版信息

Int J Mol Sci. 2025 May 8;26(10):4469. doi: 10.3390/ijms26104469.

Abstract

Benth and Ducke are prominent species in the traditional medicine of the Amazon region of Brazil. species produce oil resin rich in bioactive diterpenes, and is a prolific producer of the diterpene 19--clerodane -dehydrocrotonin (-DCTN). This research aimed to develop a self-nanoemulsion drug delivery system (SNEDDS) by using copaiba oil resin () as a carrier for -DCTN. A stable SNEDDS single-phase nanoemulsion comprising Tween 80 (7%, /) and copaiba oil (0.5%, /) afforded a fine oil-in-water carrier system (SNEDDS-CO). The dropwise solubilization of DCTN (1 mg) into SNEDDS-CO resulted in the nanoformulation called SNEDDS-CO-DCTN. Transmission electron microscopy (TEM) analysis revealed spherical nanodevices, while particle size, polydispersity index (PDI), and zeta potential measurements indicated small nanodroplets (about 10 nm), uniformly distributed (between 0.1 and 0.2) and negatively charged for both systems. The in vitro kinetic of -DCTN-loaded (SNEDDS-CO-DCTN) analyzed by using simulated conditions of the gastrointestinal microenvironment, as perspective for oral drug delivery, showed a controlled release profile, and corresponded to the Fickian diffusion model. The in vitro antioxidant activity of the samples (-DCTN, SNEDDS-CO, and SNEDDS-CO-DCTN) was confirmed through total antioxidant capacity (TAC), reducing power, copper ion chelation, and hydroxyl radical scavenging assays. The antioxidant activity of SNEDDS-CO-DCTN which contained 1 mg of -DCTN per mL of the carrier SNEDDS-CO was similar or even better when compared to the unload -DCTN solubilized in DMSO (10 mg mL). The SNEDDS formulations herein described were successfully obtained under moderated and controlled conditions, exhibiting effective physicochemical data and release characteristics with huge bioaccessibility for co-loading copaiba oil and -DCTN. The novel colloidal system SNEDDS-CO-DCTN is a potential antioxidant nanoproduct and, from now on, is available for further pharmacological investigations.

摘要

本特和杜克是巴西亚马逊地区传统医学中的重要物种。这些物种产生富含生物活性二萜的油树脂,并且是二萜19-贝壳杉烷-脱氢巴豆素(-DCTN)的高产生产者。本研究旨在开发一种自纳米乳化药物递送系统(SNEDDS),使用苦配巴油树脂()作为-DCTN的载体。一种稳定的SNEDDS单相纳米乳液,包含吐温80(7%,/)和苦配巴油(0.5%,/),提供了一种良好的水包油载体系统(SNEDDS-CO)。将DCTN(1毫克)逐滴溶解到SNEDDS-CO中,得到了名为SNEDDS-CO-DCTN的纳米制剂。透射电子显微镜(TEM)分析显示为球形纳米器件,而粒径、多分散指数(PDI)和zeta电位测量表明,两个系统的纳米液滴都很小(约10纳米),分布均匀(在0.1和0.2之间)且带负电荷。通过模拟胃肠道微环境条件对负载-DCTN的(SNEDDS-CO-DCTN)进行体外动力学分析,作为口服药物递送的前景,显示出控释曲线,并且符合菲克扩散模型。通过总抗氧化能力(TAC)、还原能力、铜离子螯合和羟基自由基清除试验,证实了样品(-DCTN、SNEDDS-CO和SNEDDS-CO-DCTN)的体外抗氧化活性。与溶解在二甲基亚砜(10毫克/毫升)中的未负载-DCTN相比,每毫升载体SNEDDS-CO中含有1毫克-DCTN的SNEDDS-CO-DCTN的抗氧化活性相似甚至更好。本文所述的SNEDDS制剂在适度和可控条件下成功获得,表现出有效的物理化学数据和释放特性,对共负载苦配巴油和-DCTN具有巨大的生物可及性。新型胶体系统SNEDDS-CO-DCTN是一种潜在的抗氧化纳米产品,从现在起可用于进一步的药理学研究。

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