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制备用户友好型和仿生的1,1'-羰基二咪唑交联明胶/琼脂微流控装置。

Fabrication of user-friendly and biomimetic 1,1'-carbonyldiimidazole cross-linked gelatin/agar microfluidic devices.

作者信息

Jocic Simonne, Mestres Gemma, Tenje Maria

机构信息

Uppsala University, Dept. Engineering Sciences, Uppsala 751 21, Sweden.

Uppsala University, Dept. Engineering Sciences, Uppsala 751 21, Sweden; Lund University, Dept. Biomedical Engineering, Lund 221 00, Sweden; Science for Life Laboratory, Uppsala 752 37, Sweden.

出版信息

Mater Sci Eng C Mater Biol Appl. 2017 Jul 1;76:1175-1180. doi: 10.1016/j.msec.2017.03.030. Epub 2017 Mar 6.

Abstract

We have developed a straightforward technique for fabricating user-friendly and biomimetic microfluidic devices out of a gelatin/agar gel cross-linked with 1,1'-carbonyldiimidazole. The fabrication procedure requires only inexpensive starting materials such as glass capillaries and wires to mold 3D cylindrical channels into the gel with the possibility of achieving channel diameters of 375μm and 1000μm. We demonstrate that the channel absent of gel injury can retain fluid within its dimensions for at least 7h. We also show that the device material does not autofluoresce nor provide hindrances with fluorescent imaging. A discussion of the chemical linkage identities of cross-linked gelatin/agar is included via ATR-FTIR studies. Crosslinking of the gelatin/agar is further confirmed by the lack of a gel to sol transition at physiological temperature as assessed by DSC measurements. SEM micrographs that demonstrate the 100nm mean pore width of the cross-linked gelatin/agar are provided. This device is considered biomimetic because it represents components present in the natural extracellular matrix such as collagen and proteoglycans in the form of cross-linked gelatin/agar.

摘要

我们开发了一种简单的技术,用于用与1,1'-羰基二咪唑交联的明胶/琼脂凝胶制造用户友好型和仿生微流控装置。制造过程仅需要玻璃毛细管和金属丝等廉价的起始材料,就能在凝胶中模制出3D圆柱形通道,通道直径可达375μm和1000μm。我们证明,没有凝胶损伤的通道能够在其尺寸范围内保持流体至少7小时。我们还表明,该装置材料不会自发荧光,也不会对荧光成像造成阻碍。通过ATR-FTIR研究对交联明胶/琼脂的化学连接特性进行了讨论。通过DSC测量评估,明胶/琼脂在生理温度下缺乏凝胶-溶胶转变,进一步证实了交联。提供了显示交联明胶/琼脂平均孔径为100nm的SEM显微照片。该装置被认为是仿生的,因为它以交联明胶/琼脂的形式代表了天然细胞外基质中存在的成分,如胶原蛋白和蛋白聚糖。

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