Krobthong Sucheewin, Yingchutrakul Yodying, Wongtrakoongate Patompon, Chuntakaruk Hathaichanok, Rungrotmongkol Thanyada, Chaichana Chartchai, Mahatnirunkul Thanisorn, Chomtong Thitikorn, Choowongkomon Kiattawee, Aonbangkhen Chanat
Center of Excellence in Natural Products Chemistry (CENP), Department of Chemistry, Faculty of Science, Chulalongkorn University, Bangkok 10330, Thailand.
Center for Neuroscience, Faculty of Science, Mahidol University, Bangkok 10400, Thailand.
Foods. 2023 Feb 10;12(4):780. doi: 10.3390/foods12040780.
Obesity is a global health concern. Physical activities and eating nutrient-rich functional foods can prevent obesity. In this study, nano-liposomal encapsulated bioactive peptides (BPs) were developed to reduce cellular lipids. The peptide sequence NH-PCGVPMLTVAEQAQ-COH was chemically synthesized. The limited membrane permeability of the BPs was improved by encapsulating the BPs with a nano-liposomal carrier, which was produced by thin-layer formation. The nano-liposomal BPs had a diameter of ~157 nm and were monodispersed in solution. The encapsulation capacity was 61.2 ± 3.2%. The nano-liposomal BPs had no significant cytotoxicity on the tested cells, keratinocytes, fibroblasts, and adipocytes. The in vitro hypolipidemic activity significantly promoted the breakdown of triglycerides (TGs). Lipid droplet staining was correlated with TG content. Proteomics analysis identified 2418 differentially expressed proteins. The nano-liposomal BPs affected various biochemical pathways beyond lipolysis. The nano-liposomal BP treatment decreased the fatty acid synthase expression by 17.41 ± 1.17%. HDOCK revealed that the BPs inhibited fatty acid synthase (FAS) at the thioesterase domain. The HDOCK score of the BPs was lower than that of orlistat, a known obesity drug, indicating stronger binding. Proteomics and molecular docking analyses confirmed that the nano-liposomal BPs were suitable for use in functional foods to prevent obesity.
肥胖是一个全球关注的健康问题。体育活动和食用营养丰富的功能性食品可以预防肥胖。在本研究中,开发了纳米脂质体包裹的生物活性肽(BPs)以减少细胞内脂质。肽序列NH-PCGVPMLTVAEQAQ-COH通过化学合成得到。通过用纳米脂质体载体包裹BPs改善了其有限的膜通透性,该纳米脂质体载体通过薄层形成法制备。纳米脂质体BPs的直径约为157nm,在溶液中呈单分散状态。包封率为61.2±3.2%。纳米脂质体BPs对受试细胞、角质形成细胞、成纤维细胞和脂肪细胞无明显细胞毒性。体外降血脂活性显著促进了甘油三酯(TGs)的分解。脂滴染色与TG含量相关。蛋白质组学分析鉴定出2418种差异表达蛋白。纳米脂质体BPs除了影响脂解作用外,还影响各种生化途径。纳米脂质体BP处理使脂肪酸合酶表达降低了17.41±1.17%。HDOCK显示,BPs在硫酯酶结构域抑制脂肪酸合酶(FAS)。BPs的HDOCK评分低于已知的肥胖药物奥利司他,表明其结合更强。蛋白质组学和分子对接分析证实,纳米脂质体BPs适用于预防肥胖的功能性食品。