聚二甲基硅氧烷
制作
材料科学
纳米技术
胶粘剂
表面能
辐照
图层(电子)
PDMS印章
复合材料
化学工程
微流控
核物理学
病理
工程类
替代医学
物理
医学
作者
G. Isoyama,Bin Jeremiah D. Barba,Yuji Hosaka,Mitsumasa Taguchi
摘要
We propose a single-step fabrication method for polydimethylsiloxane (PDMS) cell-adhesive microwell arrays with long-lasting (>10 months in aqueous medium) hydrophilic inner surfaces without the need for any chemical treatment such as development. Irradiation of a PDMS film with a low-energy electron beam (55 kV) in air generated a ∼40-μm-thick hydrophilic silica-like layer on the PDMS surface, which was the key to the prolonged hydrophilicity. Moreover, the concomitant compaction of the irradiated area produced dozens-of-micrometers-deep concave wells. The hydrophilic microwells generated on the hydrophobic non-irradiated PDMS surface easily trapped nano-/picoliter droplets and cells/single-cells. In addition, the surfaces of the microwells offered stable and favorable cell-adherent environments. The method presented here can realize stable and reliable lab-on-chips and cater to the expanding demand in biological and medical applications.
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