首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Cell patterning using a template of microstructured organosilane layer fabricated by vacuum ultraviolet light lithography
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Cell patterning using a template of microstructured organosilane layer fabricated by vacuum ultraviolet light lithography

机译:使用通过真空紫外光刻技术制备的微结构化有机硅烷层模板进行单元构图

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摘要

Micropatterning techniques have become increasingly important in cellular biology. Cell patterning is achieved by various methods. Photolithography is one of the most popular methods, and several light sources (e.g., excimer lasers and mercury lamps) are used for that purpose. Vacuum ultraviolet (VUV) light that can be produced by an excimer lamp is advantageous for fabricating material patterns, since it can decompose organic materials directly and efficiently without photoresist or photosensitive materials. Despite the advantages, applications of VUV light to pattern biological materials are few. We have investigated cell patterning by using a template of a microstructured organosilane layer fabricated by VUV lithography. We first made a template of a microstructured organosilane layer by VUV lithography. Cell adhesive materials (poly(d-lysine) and polyethyleneimine) were chemically immobilized on the organosilane template, producing a cell adhesive material pattern. Primary rat cardiac and neuronal cells were successfully patterned by culturing them on the pattern substrate. Long-term culturing was attained for up to two weeks for cardiac cells and two months for cortex cells. We have discussed the reproducibility of cell patterning and made suggestions to improve it.
机译:微图案技术在细胞生物学中变得越来越重要。通过多种方法实现细胞图案化。光刻是最流行的方法之一,为此使用了几种光源(例如,准分子激光器和水银灯)。可以通过准分子灯产生的真空紫外(VUV)光对于制造材料图案是有利的,因为它可以直接而有效地分解有机材料,而无需使用光致抗蚀剂或光敏材料。尽管有这些优点,但很少使用VUV光线对生物材料进行图案化。我们已经研究了通过使用VUV光刻技术制备的微结构化有机硅烷层的模板进行的电池构图。我们首先通过VUV光刻制作了微结构化有机硅烷层的模板。将电池粘合材料(聚(d-赖氨酸)和聚乙烯亚胺)化学固定在有机硅烷模板上,产生电池粘合材料图案。通过在图案基质上培养它们,成功地对原代大鼠心脏和神经元细胞进行了图案化。心脏细胞的长期培养长达两周,皮质细胞的培养长达两个月。我们已经讨论了细胞图案的可重复性,并提出了改善它的建议。

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