Lanigan P M P, Munro I, Grace E J, Casey D R, Phillips J, Klug D R, Ces O, Neil M A A
Biomed Opt Express. 2012 Jul 1;3(7):1609-19. doi: 10.1364/BOE.3.001609. Epub 2012 Jun 14.
This paper demonstrates spatially selective sampling of the plasma membrane by the implementation of time-multiplexed holographic optical tweezers for Smart Droplet Microtools (SDMs). High speed (>1000fps) dynamical hologram generation was computed on the graphics processing unit of a standard display card and controlled by a user friendly LabView interface. Time multiplexed binary holograms were displayed in real time and mirrored to a ferroelectric Spatial Light Modulator. SDMs were manufactured with both liquid cores (as previously described) and solid cores, which confer significant advantages in terms of stability, polydispersity and ease of use. These were coated with a number of detergents, the most successful based upon lipids doped with transfection reagents. In order to validate these, trapped SDMs were maneuvered up to the plasma membrane of giant vesicles containing Nile Red and human biliary epithelial (BE) colon cancer cells with green fluorescent labeled protein (GFP)-labeled CAAX (a motif belonging to the Ras protein). Bright field and fluorescence images showed that successful trapping and manipulation of multiple SDMs in x, y, z was achieved with success rates of 30-50% and that subsequent membrane-SDM interactions led to the uptake of Nile Red or GFP-CAAX into the SDM.
本文通过为智能微滴工具(SDMs)实现时分复用全息光镊,展示了对质膜的空间选择性采样。在标准显示卡的图形处理单元上计算高速(>1000帧/秒)动态全息图,并由用户友好的LabView界面控制。时分复用二元全息图实时显示并反射到铁电空间光调制器上。制造的SDMs既有液芯(如前所述)也有实心芯,这在稳定性、多分散性和易用性方面具有显著优势。这些SDMs涂覆了多种去污剂,最成功的是基于掺杂转染试剂的脂质。为了验证这些,将捕获的SDMs操纵到含有尼罗红和人胆管上皮(BE)结肠癌细胞的巨型囊泡的质膜上,这些癌细胞带有绿色荧光标记蛋白(GFP)标记的CAAX(一种属于Ras蛋白的基序)。明场和荧光图像显示,在x、y、z方向上成功捕获和操纵了多个SDMs,成功率为30 - 50%,随后膜与SDM的相互作用导致尼罗红或GFP - CAAX被摄取到SDM中。