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利用偏振激光束对生物微粒进行排列。

Alignment of biological microparticles by a polarized laser beam.

作者信息

Garab Gyozo, Galajda Péter, Pomozi István, Finzi Laura, Praznovszky Tünde, Ormos Pál, van Amerongen Herbert

机构信息

Institute of Plant Biology, Hungarian Academy of Sciences, P.O. Box 521, 6701 Szeged, Hungary.

出版信息

Eur Biophys J. 2005 Jun;34(4):335-43. doi: 10.1007/s00249-004-0454-8. Epub 2005 Apr 6.

Abstract

The optical alignment of biological samples is of great relevance to microspectrometry and to the micromanipulation of single particles. Recently, Bayoudh et al. (J. Mod. Opt. 50:1581-1590, 2003) have shown that isolated, disk-shaped chloroplasts can be aligned in a controlled manner using an in-plane-polarized Gaussian beam trap, and suggested that this is due to their nonspherical shape. Here we demonstrate that the orientation of various micrometer-sized isolated biological particles, trapped by optical tweezers, can be altered in a controlled way by changing the plane of linear polarization of the tweezers. In addition to chloroplasts, we show that subchloroplast particles of small size and irregular overall shape, aggregated photosynthetic light-harvesting protein complexes as well as chromosomes can be oriented with the linearly polarized beam of the tweezers. By using a laser scanning confocal microscope equipped with a differential polarization attachment, we also measured the birefringence of magnetically oriented granal chloroplasts, and found that they exhibit strong birefringence with large local variations, which appears to originate from stacked membranes. The size and sign of the birefringence are such that the resulting anisotropic interaction with the linearly polarized laser beam significantly contributes to the torque orienting the chloroplasts.

摘要

生物样品的光学对准对于显微光谱分析和单粒子的微操纵具有重要意义。最近,巴尤德等人(《现代光学杂志》50:1581 - 1590,2003年)表明,使用面内偏振高斯光束阱可以以可控方式使孤立的盘状叶绿体排列整齐,并认为这是由于它们的非球形形状。在这里,我们证明了被光镊捕获的各种微米级孤立生物粒子的取向可以通过改变光镊的线偏振平面以可控方式改变。除了叶绿体,我们还表明,小尺寸且整体形状不规则的亚叶绿体颗粒、聚集的光合光捕获蛋白复合物以及染色体都可以用光镊的线偏振光束进行取向。通过使用配备差分偏振附件的激光扫描共聚焦显微镜,我们还测量了磁取向的基粒叶绿体的双折射,发现它们表现出强烈的双折射且局部变化很大,这似乎源于堆叠的膜。双折射的大小和符号使得与线偏振激光束产生的各向异性相互作用显著有助于使叶绿体取向的扭矩。

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