Department of Mechanical Engineering, Worcester Polytechnic Institute, Worcester, MA, 01609, USA.
Department of Physics, Worcester Polytechnic Institute, Worcester, MA, 01609, USA.
Sci Rep. 2020 Nov 18;10(1):20099. doi: 10.1038/s41598-020-77067-1.
Miniaturization and integration of optical tweezers are attractive. Optical fiber-based trapping systems allow optical traps to be realized in miniature systems, but the optical traps in these systems lack reliability or mobility. Here, we present the all-fiber modular optical tweezers (AFMOTs), in which an optical trap can be reliably created and freely moved on a sample substrate. Two inclined optical fibers are permanently fixed to a common board, rendering a modular system where fiber alignments are maintained over months. The freely movable optical trap allows particles to be trapped in their native locations. As a demonstration, we applied AFMOTs to trap and deform freely floating individual cells. By the cell mechanical responses, we differentiated the nontumorigenic breast epithelial cell line (MCF10A) from its cancerous PTEN mutants (MCF10 PTEN-/-). To further expand the functionalities, three modalities of AFMOTs are demonstrated by changing the types of fibers for both the optical trap creation and particle position detection. As a miniature and modular system that creates a reliable and mobile optical trap, AFMOTs can find potential applications ranging from point-of-care diagnostics to education, as well as helping transition the optical trapping technology from the research lab to the field.
微型化和集成光学镊子具有吸引力。基于光纤的捕获系统允许在微型系统中实现光学陷阱,但这些系统中的光学陷阱缺乏可靠性或移动性。在这里,我们提出了全光纤模块化光学镊子(AFMOTs),其中可以在样品衬底上可靠地创建和自由移动光学陷阱。两个倾斜光纤永久固定在一个共同的板上,形成一个模块化系统,其中光纤对准可以保持数月。自由移动的光学陷阱允许粒子在其天然位置被捕获。作为演示,我们应用 AFMOTs 来捕获和变形自由漂浮的单个细胞。通过细胞力学响应,我们将非致瘤性乳腺上皮细胞系(MCF10A)与致癌性 PTEN 突变体(MCF10 PTEN-/-)区分开来。为了进一步扩展功能,通过改变光学陷阱创建和粒子位置检测用光纤的类型,演示了 AFMOTs 的三种模式。作为一种创建可靠和移动光学陷阱的微型化和模块化系统,AFMOTs 可以在从即时诊断到教育等各个领域找到潜在的应用,同时有助于将光学捕获技术从研究实验室转移到现场。