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利用集成式插件式液滴分配器进行确定性液滴内微珠喷射,适用于基于单个微珠的应用。

Deterministic bead-in-droplet ejection utilizing an integrated plug-in bead dispenser for single bead-based applications.

机构信息

Department of Mechanical Engineering, Pohang University of Science and Technology (POSTECH), 77 Cheongam-Ro, Nam-Gu, Pohang, Gyeongbuk 37673, Korea.

Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-Ro, Yuseong-Gu, Daejeon 34141, Korea.

出版信息

Sci Rep. 2017 Apr 10;7:46260. doi: 10.1038/srep46260.

Abstract

This paper presents a deterministic bead-in-droplet ejection (BIDE) technique that regulates the precise distribution of microbeads in an ejected droplet. The deterministic BIDE was realized through the effective integration of a microfluidic single-particle handling technique with a liquid dispensing system. The integrated bead dispenser facilitates the transfer of the desired number of beads into a dispensing volume and the on-demand ejection of bead-encapsulated droplets. Single bead-encapsulated droplets were ejected every 3 s without any failure. Multiple-bead dispensing with deterministic control of the number of beads was demonstrated to emphasize the originality and quality of the proposed dispensing technique. The dispenser was mounted using a plug-socket type connection, and the dispensing process was completely automated using a programmed sequence without any microscopic observation. To demonstrate a potential application of the technique, bead-based streptavidin-biotin binding assay in an evaporating droplet was conducted using ultralow numbers of beads. The results evidenced the number of beads in the droplet crucially influences the reliability of the assay. Therefore, the proposed deterministic bead-in-droplet technology can be utilized to deliver desired beads onto a reaction site, particularly to reliably and efficiently enrich and detect target biomolecules.

摘要

本文提出了一种确定性液滴内射流(BIDE)技术,可精确控制射出液滴中的微珠分布。通过将微流控单颗粒处理技术与液体分配系统有效集成,实现了确定性 BIDE。集成的珠滴分配器可将所需数量的珠滴转移到分配体积中,并按需射出珠滴。以 3 s 的间隔无故障地射出单珠滴。通过对珠滴数量进行确定性控制,实现了多珠滴分配,突出了所提出分配技术的原创性和质量。分配器采用插件插座式连接,通过编程序列完全实现自动化分配过程,无需进行任何微观观察。为了展示该技术的潜在应用,在蒸发液滴中进行了基于珠滴的链霉亲和素-生物素结合测定,使用了超低数量的珠滴。结果表明,液滴中的珠滴数量对测定的可靠性有至关重要的影响。因此,所提出的确定性液滴内射珠技术可用于将所需的珠滴递送到反应部位,特别是用于可靠和高效地富集和检测目标生物分子。

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