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Development of a process for generating three-dimensional microbial patterns amenable for engineering use

机译:开发一种用于产生三维微生物图案的过程适用于工程用途

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摘要

We describe in detail a process for generating three-dimensional patterns of microbes on an optimum substrate in such a way that the patterns are amenable for engineering applications. Further, we demonstrate approaches that make it possible to use the three-dimensional microbial patterns for applications outside the realm of the life sciences. Specifically, the microbes are normally grown on a gel media. In order to separate the grown patterns from the gel, we have introduced a permeable membrane. These membranes provide support for the growth of microbial colonies and allow them to be used in other applications. Among the membranes, a polyvinylidene fluoride membrane could be made suitable after its surface treatment to promote microbe adherence. We demonstrate two approaches for generating the required patterns. In both cases, a two dimensional pattern of an ink is dispensed on the membrane kept on the media. The subsequent growth of microbes is used to acquire the three dimensional pattern. The two proposed approaches are a microbial approach and an antimicrobial approach. In the former, baker's yeast, which was found to be the most suitable among the microbes tested, is dispensed in an ink form on selected locations on a PVDF membrane. The same pattern evolves upon growth. In the antimicrobial approach, the PVDF membrane is fully coated with yeast ink and iso-amyl alcohol as growth inhibitor is dispensed in a pattern. After growth of the yeast, the pattern evolved is the negative of the dispensed pattern. The fabricated patterns are proposed to be used in applications such as stamps for printing micro-electronics, microlenses, microfluidics and for direct use in braille printing. A polydimethyl siloxane stamp fabricated using a grown yeast pattern for micro-contact printing is also demonstrated.
机译:我们详细描述了一种方法,用于以最佳基板在最佳基板上产生微生物的三维模式,使得图案适用于工程应用。此外,我们展示了使得可以使用三维微生物模式以在生命科学领域之外使用三维微生物模式。具体地,微生物通常在凝胶介质上生长。为了将生长的图案与凝胶分离,我们引入了渗透膜。这些膜提供了对微生物菌落的生长的支持,并允许它们用于其他应用。在膜中,聚偏二氟乙烯膜可以在其表面处理之后进行,以促进微生物粘附。我们展示了用于生成所需模式的两种方法。在这两种情况下,分配在保持在介质上的膜上的二维图案。微生物的随后生长用于获取三维图案。两种拟议方法是一种微生物方法和抗微生物方法。在前者中,被发现是在测试的微生物中最适合的贝克酵母被用墨水形式分配在PVDF膜上的选定位置。同样的模式在生长时发展。在抗微生物方法中,PVDF膜完全涂有酵母油墨和异戊醇,因为生长抑制剂以图案分配。在酵母生长之后,演变的模式是分配图案的阴性。提出了制造的图案,用于用于印刷微电子,微透镜,微流体和直接用在盲文印刷中的邮票的应用中。还证明了使用生长的酵母图案制造用于微接触印刷的聚二甲基硅氧烷印模。

著录项

  • 来源
    《RSC Advances》 |2016年第27期|共8页
  • 作者单位

    Indian Inst Technol Dept Mat Sci &

    Engn Kanpur 208016 Uttar Pradesh India;

    Indian Inst Technol Dept Biol Sci &

    Bioengn Kanpur 208016 Uttar Pradesh India;

    Indian Inst Technol Dept Biol Sci &

    Bioengn Kanpur 208016 Uttar Pradesh India;

    Indian Inst Technol Dept Mat Sci &

    Engn Kanpur 208016 Uttar Pradesh India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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