Wu Guohui, Mikhailovsky Alexander, Khant Htet A, Zasadzinski Joseph A
Department of Chemical Engineering, University of California, Santa Barbara, California, USA.
Methods Enzymol. 2009;464:279-307. doi: 10.1016/S0076-6879(09)64014-3.
Liposomes show great promise as intravenous drug delivery vehicles, but it is often difficult to combine stability in the circulation with rapid, targeted release at the site of interest. Targeting to specific tissues requires developing highly specific ligands with strong affinities to receptors overexpressed on diseased cells; a new cellular target requires developing new ligands and identifying new receptors. Novel photoactivated, hollow, gold nanoshell (HGN)/liposome composites provide a new approach to both controlled release and specific targeting. HGN are extremely efficient near infrared (NIR) light absorbers, and are not susceptible to photobleaching like conventional dyes. Near-complete liposome contents release can be initiated within seconds by irradiating HGNs with an NIR pulsed laser. Targeting the drug is limited only by the dimensions of the laser beam; no specific ligands or antibodies are required, so different tissues and cells can be targeted with the same HGN/liposomes. HGNs can be encapsulated within liposomes or tethered to the outer surface of liposomes for the most efficient drug release. HGNs in liposome solutions can also trigger release, but with lower efficiency. Drug release is induced by adsorbing femto- to nanosecond NIR light pulses that cause the HGNs to rapidly increase in temperature. The resulting large temperature gradients lead to the formation of vapor microbubbles in aqueous solutions, similar to the cavitation bubbles induced by sonication. The collapse of the unstable vapor bubbles causes liposome-membrane rupture and contents release, with minimal damage to the surroundings, and little overall heating of the solution.
脂质体作为静脉给药载体具有很大的前景,但通常很难在循环中保持稳定性的同时在靶部位实现快速、靶向释放。靶向特定组织需要开发与病变细胞上过度表达的受体具有强亲和力的高度特异性配体;针对新的细胞靶点则需要开发新的配体并识别新的受体。新型光活化空心金纳米壳(HGN)/脂质体复合材料为控释和特异性靶向提供了一种新方法。HGN是极其高效的近红外(NIR)光吸收剂,并且不像传统染料那样容易发生光漂白。通过用NIR脉冲激光照射HGN,可以在几秒钟内引发脂质体内容物几乎完全释放。药物靶向仅受激光束尺寸的限制;不需要特定的配体或抗体,因此相同的HGN/脂质体可以靶向不同的组织和细胞。HGN可以封装在脂质体内或连接到脂质体的外表面以实现最有效的药物释放。脂质体溶液中的HGN也可以触发释放,但效率较低。药物释放是由吸附飞秒到纳秒的NIR光脉冲诱导的,这些光脉冲会使HGN的温度迅速升高。由此产生的大温度梯度导致在水溶液中形成蒸汽微泡,类似于超声处理诱导的空化气泡。不稳定蒸汽泡的坍塌会导致脂质体膜破裂并释放内容物,对周围环境的损害最小,并且溶液的整体加热很少。