Ashkin A, Dziedzic J M
Laser Science Research Department, AT&L Bell Laboratories, Holmdel, NJ 07733-1988.
Proc Natl Acad Sci U S A. 1989 Oct;86(20):7914-8. doi: 10.1073/pnas.86.20.7914.
The ability of infrared laser traps to apply controlled forces inside of living cells is utilized in a study of the mechanical properties of the cytoplasm of plant cells. It was discovered that infrared traps are capable of plucking out long filaments of cytoplasm inside cells. These filaments exhibit the viscoelastic properties of plastic flow, necking, stress relaxation, and set, thus providing a unique way to probe the local rheological properties of essentially unperturbed living cells. A form of internal cell surgery was devised that is capable of making gross changes in location of such relatively large organelles as chloroplasts and nuclei. The utility of this technique for the study of cytoplasmic streaming, internal cell membranes, and organelle attachment was demonstrated.
红外激光阱在活细胞内部施加可控力的能力被用于一项关于植物细胞细胞质力学特性的研究。研究发现,红外阱能够从细胞内部拔出长的细胞质细丝。这些细丝表现出塑性流动、颈缩、应力松弛和固化的粘弹性特性,从而提供了一种独特的方式来探测基本未受干扰的活细胞的局部流变特性。设计了一种细胞内部手术形式,它能够使叶绿体和细胞核等相对较大的细胞器的位置发生重大变化。证明了该技术在研究细胞质流动、细胞内膜和细胞器附着方面的实用性。