Li Yuanyuan, Yang Dongjie, Wang Sijia, Xu Huifang, Li PengWei
College of Pharmacy, Henan University of Chinese Medicine, 156 Jinshui East Road, Zhengzhou 450046, China.
School of Chemistry and Chemical Engineering, South China University of Technology, 381 Wushan Road, Tianhe District , Guangzhou 510640, China.
ACS Omega. 2024 May 8;9(20):21994-22002. doi: 10.1021/acsomega.3c10395. eCollection 2024 May 21.
To develop reversible pH-responsive emulsifiers of natural origin, alkali lignin (AL) was used to develop oil-in-water Pickering emulsions. AL was first modified to synthesize quaternized alkali lignin (QAL), which displayed pH-responsive properties and demonstrated solubility in both acidic and alkaline solutions. In contrast, QAL exhibited insolubility and formed particles in neutral solutions, thereby making it a suitable candidate for utilization as an emulsifier in doubly pH-responsive Pickering emulsions. At pH 5-9, the emulsions were stable. Above or below this pH range, the system demulsifies, resulting in a reversible Pickering emulsifier with two pH-controlled transitions. On the basis of this pH-dependent behavior, lignin-based Pickering emulsions (LPE) could be subjected to several cycles of emulsification-demulsification by alternating the pH of the aqueous phase between basic and acidic, while the droplet size and storage stability were maintained. Curcumin was used as a drug model to study the loading/release behavior of LPE, finding that 50.08% of curcumin could be encapsulated in LPE. The release of curcumin was pH-dependent. In addition, LPE exhibited an outstanding protective effect against the ultraviolet-induced degradation of curcumin.
为了开发天然来源的可逆pH响应型乳化剂,使用碱木质素(AL)来制备水包油型Pickering乳液。首先对AL进行改性以合成季铵化碱木质素(QAL),其具有pH响应特性,在酸性和碱性溶液中均表现出溶解性。相比之下,QAL在中性溶液中不溶并形成颗粒,因此使其成为在双重pH响应型Pickering乳液中用作乳化剂的合适候选物。在pH 5-9时,乳液是稳定的。在此pH范围之上或之下,体系会破乳,从而得到具有两个pH控制转变的可逆Pickering乳化剂。基于这种pH依赖性行为,通过在碱性和酸性之间交替水相的pH值,木质素基Pickering乳液(LPE)可以进行多次乳化-破乳循环,同时保持液滴尺寸和储存稳定性。使用姜黄素作为药物模型来研究LPE的负载/释放行为,发现50.08%的姜黄素可以被包封在LPE中。姜黄素的释放是pH依赖性的。此外,LPE对紫外线诱导的姜黄素降解表现出出色的保护作用。