Department of Biotechnology, College of Life Science and Biotechnology, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul 03722, Republic of Korea.
Department of Marine Food Science and Technology, Gangneung-Wonju National University, Gangneung 120, Republic of Korea.
J Control Release. 2024 Jan;365:422-434. doi: 10.1016/j.jconrel.2023.10.021. Epub 2023 Nov 30.
A bioactive compound, collagen peptide (CP), is widely used for biological activities such as anti-photoaging and antioxidant effects, with increased oral bioavailability because of its low molecular weight and high hydrophilicity. However, controlling release time and increasing retention time in the digestive tract for a more convenient oral administration is still a challenge. We developed CP-loaded chitosan (CS) microcapsules via strong and rapid ionic gelation using a highly negative phytic acid (PA) crosslinker. The platform enhanced the oral bioavailability of CP with controlled gastrointestinal delivery by utilizing the mucoadhesiveness and tight junction-opening properties of CS. CS and CP concentrations varied from 1.5 to 3.5% and 0-30%, respectively, for optimal and stable microcapsule synthesis. The physicochemical properties, in vitro release profile with intestinal permeability, in vivo oral bioavailability, in vivo biodistribution, anti-photoaging effect, and antioxidant effect of optimized CS microcapsules were analyzed to investigate the impact of controlling parameters. The structure of CS microcapsules was tuned by PA diffused gradient ionic cross-linking degree, resulting in a controlled CP release region in the gastrointestinal tract. The optimized microcapsules increased C, AUC, and t by 1.5-, 3.4-, and 8.0-fold, respectively. Furthermore, CP in microcapsules showed anti-photoaging effects by downregulating matrix metalloproteinases-1 via antioxidant effects. According to our knowledge, this is the first study to microencapsulate CP for oral bioavailability enhancement. The peptide delivery method employed is simple, economical, and can be applied to customize bioactive compound administration.
一种具有生物活性的化合物,胶原肽(CP),由于其分子量低、亲水性高,具有抗光老化和抗氧化作用等生物活性,口服生物利用度增加。然而,控制其在消化道中的释放时间并延长其在消化道中的保留时间,以便更方便地进行口服给药,仍然是一个挑战。我们使用高度负电性的植酸(PA)交联剂通过强而快速的离子凝胶化开发了 CP 负载壳聚糖(CS)微胶囊。该平台利用 CS 的粘膜粘附性和紧密连接开放特性,通过控制胃肠道输送来增强 CP 的口服生物利用度。CS 和 CP 的浓度分别为 1.5%至 3.5%和 0%至 30%,以获得最佳和稳定的微胶囊合成。分析了优化后的 CS 微胶囊的物理化学性质、体外释放特性与肠道通透性、体内口服生物利用度、体内生物分布、抗光老化作用和抗氧化作用,以研究控制参数的影响。通过 PA 扩散梯度离子交联度调节 CS 微胶囊的结构,在胃肠道中形成 CP 释放的控制区域。优化后的微胶囊分别将 C、AUC 和 t 提高了 1.5 倍、3.4 倍和 8.0 倍。此外,微胶囊中的 CP 通过抗氧化作用下调基质金属蛋白酶-1 发挥抗光老化作用。据我们所知,这是首次研究 CP 的微胶囊化以提高口服生物利用度。所采用的肽传递方法简单、经济,可用于定制生物活性化合物的给药。