首页> 外文会议>Conference on Ultrafast Phenomena in Semiconductors and Nanostructure Materials; 20080120-23; San Jose,CA(US) >From cells to embryos: The application of femtosecond laser pulses for altering cellular material in complex biological systems
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From cells to embryos: The application of femtosecond laser pulses for altering cellular material in complex biological systems

机译:从细胞到胚胎:飞秒激光脉冲在复杂生物系统中改变细胞物质的应用

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摘要

We report the application of high-intensity femtosecond laser pulses as a novel tool for manipulating biological specimens. When femtosecond laser pulses were focused to a near diffraction-limited focal spot, cellular material within the laser focal volume was surgically ablated. Several dissection cuts were made in the membrane of live mammalian cells, and membrane surgery was accomplished without inducing cell collapse or disassociation. By altering how the laser pulses were applied, focal adhesions joining live epithelial cells were surgically removed, resulting in single cell isolation. To further examine the versatility of this reported tool, cells were transiently permeabilized for introducing foreign material into the cytoplasm of live mammalian cells. Localizing focused femtosecond laser pulses on the biological membrane resulted in the formation of transient pores, which were harnessed as a pathway for the delivery of exogenous material. Individual mammalian cells were permeabilized in the presence of a hyperosmotic cryoprotective disaccharide. Material delivery was confirmed by measuring the volumetric response of cells permeabilized in 0.2, 0.3, 0.4 and 0.5 M cryoprotective sugar. The survival of permeabilized cells in increasing osmolarity of sugar was assessed using a membrane integrity assay. Further demonstrating the novelty of this reported tool, laser surgery of an aquatic embryo, the zebrafish {Danio rerio), was also performed. Utilizing the transient pores that were formed in the embryonic cells of the zebrafish embryo, an exogenous fluorescent probe FITC, Streptavidin-conjugated quantum dots or plasmid DNA (sCMV) encoding EGFP was introduced into the developing embryonic cells. To determine if the laser induced any short- or long-term effects on development, laser-manipulated embryos were reared to 2 and 7 days post-fertilization and compared to control embryos at the same developmental stages. Light microscopy and scanning electron microscopy were used to compare whole body mosaics of the developed larvae. Key developmental features that were compared included the olfactory pit, dorsal, ventral and pectoral fins, notochord, otic capsule and otic vesicle. No differences in the morphology and placement of the fore-, mid- and hindbrains were observed.
机译:我们报告了高强度飞秒激光脉冲的应用作为处理生物样本的新型工具。当飞秒激光脉冲聚焦到接近衍射极限的焦点时,将通过激光烧蚀激光聚焦区内的细胞物质。在活的哺乳动物细胞的膜上进行了几次解剖切开,并且在不引起细胞塌陷或分离的情况下完成了膜手术。通过改变激光脉冲的施加方式,通过手术去除了连接活上皮细胞的粘着斑,从而实现了单细胞分离。为了进一步检查该报道的工具的多功能性,将细胞瞬时渗透以将异物引入活的哺乳动物细胞的细胞质中。将聚焦的飞秒激光脉冲定位在生物膜上会导致形成瞬时孔,这些孔可作为外源物质输送的途径。在高渗冷冻保护性二糖存在下,通透了单个哺乳动物细胞。通过测量在0.2 M,0.3 M,0.4 M和0.5 M冷冻保护糖中透化的细胞的体积反应来确认材料的递送。使用膜完整性测定法评估透化细胞在糖的渗透压增加中的存活率。为了进一步证明该报道工具的新颖性,还对水生胚胎斑马鱼(Danio rerio)进行了激光手术。利用在斑马鱼胚胎的胚胎细胞中形成的瞬时孔,将外源荧光探针FITC,链霉亲和素结合的量子点或编码EGFP的质粒DNA(sCMV)引入发育中的胚胎细胞中。为了确定激光是否对发育产生了短期或长期影响,将受激光操纵的胚胎饲养到受精后2天和7天,并与处于相同发育阶段的对照胚胎进行比较。使用光学显微镜和扫描电子显微镜比较发育幼虫的全身镶嵌体。比较的主要发育特征包括嗅觉凹坑,背鳍,腹鳍和胸鳍,脊索,耳囊和耳囊。未观察到前脑,中脑和后脑的形态和位置差异。

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