Zhang Jiaqi, Qi Haole, Wang Mingxia, Wei Yongqin, Liang Hao
State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing 100029, P. R. China.
Shenqi Ethnic Medicine College of Guizhou Medical University, Guiyang, Guizhou 550004, China.
J Mater Chem B. 2023 Mar 15;11(11):2440-2454. doi: 10.1039/d2tb02263j.
Enzymatic hydrolysis has been validated as an appropriate strategy for improving the properties of natural protein. Here, we used enzymatic hydrolysis sodium caseinate (Eh NaCas) as a nano-carrier for enhancing the solubility, stability, and antioxidant and anti-biofilm activities of hydrophobic encapsulants. Tanshinone IIA (TA) was loaded into the hydrophobic regions of Eh NaCas by self-assembly, and the encapsulation efficiency could reach 96.54 ± 0.14% under an optimized host-guest ratio. After Eh NaCas packed, the TA-loaded Eh NaCas nanoparticles (Eh NaCas@TA) showed regular spheres, uniform particle size distribution and more optimal drug release. Moreover, the solubility of TA in aqueous solution increased over 2.4 × 10 times, and the TA guest molecules displayed excellent stability under light and other harsh environments. Interestingly, the vehicle protein and TA exhibited synergistic antioxidant effects. Furthermore, Eh NaCas@TA forcefully restrained the growth and destroyed the biofilm construction of compared to free TA, showing positive antibacterial activity. The establishment of these results demonstrated the feasibility and functionality of edible protein hydrolysates as nano-carriers for loading natural plant hydrophobic extracts.
酶促水解已被证实是改善天然蛋白质性质的一种合适策略。在此,我们使用酶促水解酪蛋白酸钠(Eh NaCas)作为纳米载体,以提高疏水性包封剂的溶解性、稳定性以及抗氧化和抗生物膜活性。丹参酮IIA(TA)通过自组装被载入Eh NaCas的疏水区域,在优化的主客体比例下,包封效率可达96.54±0.14%。Eh NaCas包封后,载TA的Eh NaCas纳米颗粒(Eh NaCas@TA)呈现规则球体,粒径分布均匀,药物释放更理想。此外,TA在水溶液中的溶解度增加了2.4×10倍以上,且TA客体分子在光照和其他恶劣环境下表现出优异的稳定性。有趣的是,载体蛋白和TA表现出协同抗氧化作用。此外,与游离TA相比,Eh NaCas@TA有力地抑制了细菌生长并破坏了生物膜结构,显示出积极的抗菌活性。这些结果的建立证明了可食用蛋白水解物作为负载天然植物疏水提取物的纳米载体的可行性和功能性。