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用于包封肉桂醛的壳聚糖盐酸盐/磺丁基醚-β-环糊精纳米颗粒的研制及其理化特性分析

Development and physicochemical characterization of chitosan hydrochloride/sulfobutyl ether-β-cyclodextrin nanoparticles for cinnamaldehyde entrapment.

作者信息

Zhu Wenjin, Wu Jiulin, Guo Xiaoban, Sun Xinyu, Li Qingxiang, Wang Jianhua, Chen Li

机构信息

Institute of Biomedical and Pharmaceutical Technology, Fuzhou University, Fuzhou, 350002, P.R. China.

出版信息

J Food Biochem. 2020 Jun;44(6):e13197. doi: 10.1111/jfbc.13197. Epub 2020 Mar 18.

Abstract

In this work, the cinnamaldehyde (CA) loaded nanoparticles were synthesized by directly cross-linking chitosan hydrochloride (CSH) and sulfobutyl ether-β-cyclodextrin (SBE-β-CD). The CA/SBE-β-CD inclusion complex was firstly prepared, and its highest encapsulation efficiency (EE) was 86.34%. Field Emission Scanning Electron Microscope results indicated that the inclusion complex showed massive aggregates with a coarse and fluffy texture and irregular surface. Then, the inclusion complex interacted with CSH to form nanoparticles. The EE of CA in nanoparticles was improved. Atomic force microscopy showed the nanoparticles had regular and spherical morphology. Fourier transform infrared spectroscopy analysis demonstrated that CA was mainly encapsulated in the inner place of CSH/SBE-β-CD nanoparticles (CSNs). The enhanced thermal stability of the nanoparticles was found in differential scanning calorimeter. X-ray diffraction implied that CA-CSNs existed in the amorphous state. CA-CSNs had excellent slow release property. Further, the bacteriostatic effect of CA-CSNs was much better than that of CA and CSNs. All the results indicated that CSNs can be used as a promising carrier to encapsulate CA. PRACTICAL APPLICATIONS: CA is an effective antimicrobial and generally recognized as Safe-GRAS. CA also exhibits many other bioactivities and has been commonly used for digestive, cardiovascular and immune system diseases. However, CA is easy to be oxidized and volatilized during storage for poor water solubility. The nanoencapsulations display the capacities of enhancing solubility of bioactive compounds, protecting them from degradation, and prolonging their residence. In this manuscript, CA loaded nanoparticles were investigated. The results suggested that the nanoencapsulation could benefit for improving water solubility and stability of CA. This strategy could be helpful for its application and development in food preservation.

摘要

在本研究中,通过直接交联壳聚糖盐酸盐(CSH)和磺丁基醚-β-环糊精(SBE-β-CD)合成了负载肉桂醛(CA)的纳米颗粒。首先制备了CA/SBE-β-CD包合物,其最高包封率(EE)为86.34%。场发射扫描电子显微镜结果表明,该包合物呈现大量聚集体,质地粗糙蓬松,表面不规则。然后,该包合物与CSH相互作用形成纳米颗粒。纳米颗粒中CA的EE得到提高。原子力显微镜显示纳米颗粒具有规则的球形形态。傅里叶变换红外光谱分析表明,CA主要包封在CSH/SBE-β-CD纳米颗粒(CSNs)的内部。差示扫描量热仪显示纳米颗粒的热稳定性增强。X射线衍射表明CA-CSNs以无定形状态存在。CA-CSNs具有优异的缓释性能。此外,CA-CSNs的抑菌效果远优于CA和CSNs。所有结果表明,CSNs可作为一种有前景的载体来包封CA。实际应用:CA是一种有效的抗菌剂,通常被认为是安全的(GRAS)。CA还具有许多其他生物活性,常用于治疗消化系统、心血管系统和免疫系统疾病。然而,由于水溶性差,CA在储存过程中容易被氧化和挥发。纳米包封显示出提高生物活性化合物溶解度、保护它们不被降解以及延长其留存时间的能力。在本论文中,对负载CA的纳米颗粒进行了研究。结果表明,纳米包封有利于提高CA的水溶性和稳定性。该策略有助于其在食品保鲜中的应用和开发。

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