Faculty of Pharmacy, Cyprus International University, Nicosia 99258, Cyprus.
Department of Pharmaceutical Sciences, Faculty of Pharmacy, Isra University, Queen Alya Airport Street, Amman 11622, Jordan.
Molecules. 2022 Jul 19;27(14):4611. doi: 10.3390/molecules27144611.
In this study, mucoactive self-emulsifying drug delivery systems (SEDDSs) based on sustained release of N-acetylcysteine (NAC) were developed for providing effective intestinal mucopermeation. Polymeric ionic complexes of NAC were formed with polyethyleneimine (PEI), Eudragit E 100, and Eudragit RS 100 and loaded into a novel SEDDS. The SEDDSs exhibited a stable average size of 75 ± 12 nm (polydispersity index (PDI) < 0.3) and showed a rise in the zeta potential from −17.31 mV to −7.72 mV. On Caco-2 cells, SEDDSs at 1−3% were non-cytotoxic. An average of 91.8 ± 5.4% NAC was released from SEDDSs containing Eudragit E 100 (p ≤ 0.05) and Eudragit RS 100 (p ≤ 0.001) complexes at a significantly slower rate within 80 min, whereas the SEDDS containing PEI released NAC in a matter of seconds. Similarly, the SEDDS complexes revealed a time-dependent reduction in mucus dynamic viscosity of 52.6 ± 19.9%. Consequently, as compared with a blank SEDDS, mucodiffusion revealed about 2- and 1.8-fold significantly greater mucopermeation of SEDDSs anchoring Eudragit E 100−NAC and RS 100−NAC complexes (p ≤ 0.05), respectively. The mucoactive SEDDSs, which steadily released NAC while permeating the mucus, were linked to a significantly increased mucopermeation in vitro as a result of optimal mucolytic targeting.
在这项研究中,开发了基于 N-乙酰半胱氨酸(NAC)持续释放的粘液活性自乳化药物传递系统(SEDDS),以提供有效的肠道粘液渗透。NAC 与聚乙烯亚胺(PEI)、Eudragit E 100 和 Eudragit RS 100 形成聚合离子复合物,并载入新型 SEDDS 中。SEDDS 表现出稳定的平均粒径为 75±12nm(多分散指数(PDI)<0.3),并且zeta 电位从-17.31mV 增加到-7.72mV。在 Caco-2 细胞上,SEDDS 浓度为 1-3%时无细胞毒性。SEDDS 中含有 Eudragit E 100(p≤0.05)和 Eudragit RS 100(p≤0.001)复合物的 NAC 平均释放率为 91.8±5.4%,在 80 分钟内显著减缓,而含有 PEI 的 SEDDS 则在数秒内释放 NAC。同样,SEDDS 复合物显示出随时间变化的粘液动态粘度降低 52.6±19.9%。因此,与空白 SEDDS 相比,SEDDS 锚定 Eudragit E 100-NAC 和 RS 100-NAC 复合物的粘液扩散显示出约 2 倍和 1.8 倍的粘液渗透性显著增加(p≤0.05)。具有粘液活性的 SEDDS 可以稳定地释放 NAC,同时穿透粘液,由于最佳的粘液溶解靶向作用,与体外粘液渗透性的显著增加有关。