Department of Chemical Engineering and Materials Science, University of Minnesota, Minneapolis, Minnesota, 55455, USA.
Bristol, Myers, Squibb, 1 Squibb Drive, New Brunswick, NJ, 08902, USA.
Sci Rep. 2020 Feb 3;10(1):1706. doi: 10.1038/s41598-020-58764-3.
Photolabile chelating cages or protecting groups need complex chemical syntheses and require UV, visible, or two-photon NIR light to trigger release. Different cages have different solubilities, reaction rates, and energies required for triggering. Here we show that liposomes containing calcium, adenosine triphosphate, or carboxyfluorescein are tethered to plasmon-resonant hollow gold nanoshells (HGN) tuned to absorb light from 650-950 nm. Picosecond pulses of near infrared (NIR) light provided by a two-photon microscope, or by a stand-alone laser during flow through microfluidic channels, trigger contents release with spatial and temporal control. NIR light adsorption heats the HGN, inducing vapor nanobubbles that rupture the liposome, releasing cargo within milliseconds. Any water-soluble molecule can be released at essentially the same rate from the liposome-HGN. By using liposomes of different composition, or HGN of different sizes or shapes with different nanobubble threshold fluences, or irradiating on or off resonance, two different cargoes can be released simultaneously, one before the other, or in a desired ratio. Calcium release from liposome-HGN can be spatially patterned to crosslink alginate gels and trap living cells. Liposome-HGN provide stable, biocompatible isolation of the bioactive compound from its surroundings with minimal interactions with the local environment.
光解螯合笼或保护基团需要复杂的化学合成,并且需要 UV、可见光或双光子近红外 (NIR) 光来触发释放。不同的笼具有不同的溶解度、反应速率和触发所需的能量。在这里,我们展示了含有钙、三磷酸腺苷或羧基荧光素的脂质体被连接到等离子体共振中空金纳米壳 (HGN) 上,这些纳米壳被调谐以吸收 650-950nm 的光。双光子显微镜或在微流道中流动时的独立激光提供的纳秒近红外 (NIR) 光脉冲以时空控制的方式触发内容物释放。NIR 光吸收加热 HGN,诱导蒸气纳米气泡破裂脂质体,在几毫秒内释放货物。任何水溶性分子都可以以基本相同的速率从脂质体-HGN 中释放。通过使用不同组成的脂质体,或具有不同纳米气泡阈值荧光强度的不同尺寸或形状的 HGN,或在共振或非共振下照射,可同时释放两种不同的货物,一种在另一种之前,或按所需比例释放。脂质体-HGN 中的钙释放可以进行空间图案化以交联藻酸盐凝胶并捕获活细胞。脂质体-HGN 提供了稳定、生物相容的生物活性化合物与其周围环境的隔离,与局部环境的相互作用最小。