DNAパターニングを可能とする液-液相分離液滴のレーザー誘導形成法~新奇の液-液相分離現象の発見とDNA濃縮液滴パターニングへの展開~

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2025-03-03 東京大学

東京大学大学院工学系研究科の研究グループは、レーザー照射による局所加熱を利用し、ポリマー混合溶液中に液-液相分離液滴を任意の場所とタイミングで形成する技術を開発しました。従来、レーザー照射を停止すると液滴は消失していましたが、今回の手法では、液滴が長時間安定して存在する新たな相分離現象を発見しました。さらに、この液滴はDNAを高濃度に濃縮する性質を持ち、微小空間でのバイオ実験の新たな可能性を拓くことが期待されます。

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レーザー誘起ソレット効果による準安定相分離液滴生成と長時間DNA濃縮 Metastable phase-separated droplet generation and long-time DNA enrichment by laser-induced Soret effect

Mika Kobayashi,Yoshihiro Minagawa & Hiroyuki Noji
Communications Chemistry  Published:28 February 2025
DOI:https://doi.org/10.1038/s42004-025-01438-w

DNAパターニングを可能とする液-液相分離液滴のレーザー誘導形成法~新奇の液-液相分離現象の発見とDNA濃縮液滴パターニングへの展開~

Abstract

Spatiotemporally controlled laser-induced phase separation (LIPS) offers unique research avenues and has potential for biological and biomedical applications. However, LIPS conditions often have drawbacks for practical use, which limit their applications. For instance, LIPS droplets are unstable and diminish after the laser is terminated. Here, we developed a novel LIPS method using laser-induced Soret effect with a simple setup to solve these problems. We generate liquid-liquid phase-separated (LLPS) droplets using LIPS in an aqueous two-phase system (ATPS) of dextran (DEX) and polyethylene glycol (PEG). When DEX-rich droplets were generated in the DEX/PEG mix on the phase boundary, the droplets showed unprecedently high longevity; the DEX droplets were retained over 48 h. This counterintuitive behaviour suggests that the droplet is in an unknown metastable state. By exploiting the capability of DEX-rich droplets to enrich nucleic acid polymers, we achieved stable DNA enrichment in LIPS DEX droplets with a high enrichment factor of 1400 ± 400. Further, we patterned DNA-carrying DEX-rich droplets into a designed structure to demonstrate the stability and spatiotemporal controllability of DEX-rich droplet formation. This is the first report for LIPS droplet generation in a DEX/PEG system, opening new avenues for biological and medical applications of LIPS.

生物工学一般
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