Sakurai Yu, Matsuda Takashi, Hada Tomoya, Harashima Hideyoshi
Faculty of Pharmaceutical Sciences, Hokkaido University.
Biol Pharm Bull. 2015;38(8):1185-91. doi: 10.1248/bpb.b15-00138.
Plasmid DNA (pDNA) is expected to be a new class of medicine for treating currently incurable diseases. To deliver these nucleic acids, we developed a liposomal delivery system we have called a multifunctional envelope-type nano device (MEND). In this report, we demonstrate that a MEND containing a pH-sensitive cationic lipid, YSK05 (YSK-MEND), efficiently delivered pDNA via systemic injection, and that its expression was highly dependent on the encapsulation state of the pDNA. In the preparation, the pH, ionic strength, and sodium chloride (NaCl) concentration of the lipid/pDNA mixture strongly affected the encapsulation efficiency of pDNA. Additionally, the transgene expression of luciferase in the liver by the injected YSK-MEND was dependent on the encapsulation state of pDNA rather than the nature of the YSK-MEND. Confocal laser scanning microscopy findings revealed that injection of the YSK-MEND led to homogenous gene expression in the liver compared to injection via the hydrodynamic tail vein (HTV). Concerning the safety of the YSK-MEND, a transient increase in the activity of liver enzymes was observed. However, no significant adverse events were observed. Taken together, the YSK-MEND represents a potentially attractive therapy for the treatment of various hepatic diseases.
质粒DNA(pDNA)有望成为治疗目前无法治愈疾病的新型药物类别。为了递送这些核酸,我们开发了一种脂质体递送系统,称之为多功能包膜型纳米装置(MEND)。在本报告中,我们证明含有pH敏感阳离子脂质YSK05的MEND(YSK-MEND)通过全身注射有效地递送了pDNA,并且其表达高度依赖于pDNA的封装状态。在制备过程中,脂质/pDNA混合物的pH、离子强度和氯化钠(NaCl)浓度强烈影响pDNA的封装效率。此外,注射的YSK-MEND在肝脏中对荧光素酶的转基因表达取决于pDNA的封装状态,而不是YSK-MEND的性质。共聚焦激光扫描显微镜检查结果显示,与通过流体动力学尾静脉(HTV)注射相比,注射YSK-MEND可导致肝脏中基因表达均匀。关于YSK-MEND的安全性,观察到肝酶活性短暂增加。然而,未观察到明显的不良事件。综上所述,YSK-MEND代表了一种治疗各种肝脏疾病的潜在有吸引力的疗法。