Danish Minna K, Vozza Giuliana, Byrne Hugh J, Frias Jesus M, Ryan Sinéad M
School of Food Science and Environmental Health, Dublin Inst. of Technology, Marlborough St., Dublin 1, Ireland.
FOCAS Research Inst., Dublin Inst. of Technology, Kevin St., Dublin 8, Ireland.
J Food Sci. 2017 Sep;82(9):2094-2104. doi: 10.1111/1750-3841.13824. Epub 2017 Aug 10.
The chicken- or fish-derived tripeptide, leucine-lysine-proline (LKP), inhibits the angiotensin converting enzyme and may be used as an alternative treatment for prehypertension. However, it has low permeation across the small intestine. The formulation of LKP into a nanoparticle (NP) has the potential to address this issue. LKP-loaded NPs were produced using an ionotropic gelation technique, using chitosan (CL113). Following optimization of unloaded NPs, a mixture amount design was constructed using variable concentration of CL113 and tripolyphosphate at a fixed LKP concentration. Resultant particle sizes ranged from 120 to 271 nm, zeta potential values from 29 to 37 mV, and polydispersity values from 0.3 to 0.6. A ratio of 6:1 (CL113:TPP) produced the best encapsulation of approximately 65%. Accelerated studies of the loaded NPs indicated stability under normal storage conditions (room temperature). Cytotoxicity assessment showed no significant loss of cell viability and in vitro release studies indicated an initial burst followed by a slower and sustained release.
源自鸡肉或鱼肉的三肽,亮氨酸 - 赖氨酸 - 脯氨酸(LKP),可抑制血管紧张素转换酶,可用作高血压前期的替代治疗方法。然而,它在小肠中的渗透性较低。将LKP制成纳米颗粒(NP)有可能解决这一问题。采用离子凝胶化技术,使用壳聚糖(CL113)制备了负载LKP的纳米颗粒。在优化未负载纳米颗粒后,在固定的LKP浓度下,使用不同浓度的CL113和三聚磷酸钠构建了混合量设计。所得颗粒大小在120至271纳米之间,zeta电位值在29至37毫伏之间,多分散性值在0.3至0.6之间。6:1(CL113: TPP)的比例产生了约65%的最佳包封率。对负载纳米颗粒的加速研究表明,在正常储存条件(室温)下具有稳定性。细胞毒性评估显示细胞活力没有显著损失,体外释放研究表明最初有一个突释,随后是较慢的持续释放。