Department of Biochemistry, Molecular Biology, and Cell Biology, Northwestern University, Evanston, IL, USA.
J Control Release. 2010 Jan 25;141(2):193-8. doi: 10.1016/j.jconrel.2009.09.017. Epub 2009 Oct 3.
Echogenic liposomes (ELIP) have additional promise, beyond diagnostic agents, as vehicles for delivering oligonucleotides (ODN), especially if the release of the agent can be triggered and its uptake can be enhanced by ultrasound application at a specific site. The purpose of this study was to co-encapsulate air and NF-kappaB decoy ODN within ELIP allowing ultrasound to release encapsulated ODN from ELIP, and to accurately quantify release of encapsulated ODN from ELIP upon ultrasound application. FITC-labeled sense ODN (2 mM) was incorporated within ELIP using freeze/thaw method. Encapsulation efficiency of FITC-ODN was spectrofluorometrically analyzed by quenching fluorescence of unencapsulated FITC-ODN using a complementary strand tagged with Iowa Black FQ-ODN. Quenching of FITC-ODN (0.05 microM) with Iowa Black FQ-ODN (0.1 microM) was found to be efficient (92.4+/-0.2%), allowing accurate determination of encapsulated ODN. Encapsulation efficiency of ODN was 14.2+/-2.5% in DPPC/DOPC/DPPG/CH liposomes and 29.6+/-1.5% in DPPC/DOPE/DPPG/CH liposomes. Application of ultrasound (1 MHz continuous wave, 0.26 MPa peak-to-peak pressure amplitude, 60s.) to the latter formulation triggered 41.6+/-4.3% release of ODN from ODN-containing ELIP. We have thus demonstrated that ODN can be encapsulated into ELIP and released efficiently upon ultrasound application. These findings suggest potential applications to gene therapy for atherosclerosis as well as a variety of other diseases.
声振脂质体(ELIP)除了作为诊断试剂之外,还有额外的应用前景,可用作传递寡核苷酸(ODN)的载体,尤其是如果可以通过在特定部位应用超声来触发试剂的释放,并增强其摄取。本研究的目的是共同包封空气和 NF-κB 诱饵 ODN 于 ELIP 内,使得超声可以从 ELIP 中释放包封的 ODN,并准确地定量超声应用后从 ELIP 中释放的包封 ODN。使用冻融法将 FITC 标记的正义 ODN(2 mM)包封在 ELIP 内。通过使用带 Iowa Black FQ-ODN 标签的互补链猝灭未包封的 FITC-ODN 的荧光,对 FITC-ODN 的包封效率进行荧光分光光度法分析。发现用 Iowa Black FQ-ODN(0.1 μM)猝灭 FITC-ODN(0.05 μM)非常有效(92.4±0.2%),可以准确地测定包封的 ODN。在 DPPC/DOPC/DPPG/CH 脂质体中 ODN 的包封效率为 14.2±2.5%,在 DPPC/DOPE/DPPG/CH 脂质体中为 29.6±1.5%。对后者制剂应用超声(1 MHz 连续波,0.26 MPa 峰峰值压力幅度,60s)触发了含 ODN 的 ELIP 中 41.6±4.3%的 ODN 释放。我们已经证明 ODN 可以有效地包封到 ELIP 中,并在超声应用时释放出来。这些发现为动脉粥样硬化的基因治疗以及各种其他疾病的治疗提供了潜在的应用。