Kwon Yie Hyuk, Shin Taek Hwan, Jang Moon Ho, Yoon Ho Yub, Kang Min Hyung, Kang Myung Joo, Choi Young Wook
J Nanosci Nanotechnol. 2017 Feb;17(2):1008-17. doi: 10.1166/jnn.2017.12670.
We have previously demonstrated that RIPL peptide-conjugated liposomes (RIPL-L) exhibited high hepsin (HPN) selectivity and enhanced intracellular drug delivery. In this study, surface modification of RIPL-L was performed to reduce plasma protein adsorption and off-target effects. For steric stabilization, distearoyl phosphatidylethanolamine (DSPE)-polyethylene glycol (PEG)2000 was used (5% molar ratio to total lipid) to prepare PEG-RIPL-L. Further, pH-sensitive oligopeptides [(HD)4 or (HE)4] were coupled to shield the RIPL polyarginine moiety, yielding (HD)4/PEG-RIPL-L and (HE)4/PEG-RIPL-L. All liposomal vesicles had a narrow and homogenous size distribution of approximately 140–150 nm, with zeta potentials varying from −15 to 36 mV. Increased plasma stability was observed upon quantifying the protein adsorbed onto liposomes by using a micro bicinchoninic acid assay. The (HD)4- and (HE)4-coupling capacity of PEG-RIPL-L was investigated by measuring the amount of oligopeptide involved in transient ionic complexation (TIC-oligopep) and zeta potential changes. As the molar ratio of (HD)4 and (HE)4 increased, TIC-oligopep increased and zeta potential decreased. (HE)4/PEG-RIPL-L were pH-sensitive, producing 1.6-fold greater cellular uptake of FITC-dextran by LNCaP cells at pH 6.8 than at pH 7.4. This result suggested that (HE)4/PEG-RIPL-L might provide a sterically stabilized, pH-sensitive drug carrier for HPN-specific cancer targeting.
我们之前已经证明,RIPL肽偶联脂质体(RIPL-L)表现出高的组织蛋白酶H(HPN)选择性并增强了细胞内药物递送。在本研究中,对RIPL-L进行了表面修饰以减少血浆蛋白吸附和脱靶效应。为了实现空间稳定化,使用二硬脂酰磷脂酰乙醇胺(DSPE)-聚乙二醇(PEG)2000(占总脂质的摩尔比为5%)来制备PEG-RIPL-L。此外,将pH敏感的寡肽[(HD)4或(HE)4]偶联以屏蔽RIPL的聚精氨酸部分,得到(HD)4/PEG-RIPL-L和(HE)4/PEG-RIPL-L。所有脂质体囊泡的尺寸分布狭窄且均匀,约为140 - 150 nm,ζ电位在-15至36 mV之间变化。通过使用微量二辛可宁酸测定法对吸附在脂质体上的蛋白质进行定量分析,观察到血浆稳定性有所提高。通过测量参与瞬时离子络合(TIC-寡肽)的寡肽量和ζ电位变化,研究了PEG-RIPL-L的(HD)4和(HE)4偶联能力。随着(HD)4和(HE)4的摩尔比增加,TIC-寡肽增加而ζ电位降低。(HE)4/PEG-RIPL-L对pH敏感,在pH 6.8时LNCaP细胞对FITC-葡聚糖的细胞摄取量比在pH 7.4时高1.6倍。该结果表明,(HE)4/PEG-RIPL-L可能为HPN特异性癌症靶向提供一种空间稳定的、对pH敏感的药物载体。