纳米酮在生命系统抗体中的相互作用

Rajasekaran Ekambaram, Indupriya Rajasekaran
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引用次数: 0

摘要

本文利用生物分子的碳值揭示了纳米粒子如何组装和作用的一个事实。这就是生物分子如何相互作用,从而在感兴趣的系统中产生微观甚至宏观水平的相互作用。该研究表明,纳米碳分析可以更好地利用微观层面的理解。我计划将这种变化现象从纳米扩展到微观,以在人性中建立大规模的应用。应用包括在序列和结构水平上的修正,以永久修复有缺陷的生物分子,为现有的生物分子添加风味,以更快地递送或恢复等。我在这里展示了碳和其他物质所起的积极作用。这可能会扩展到另一个尚未创建新应用程序的设置系统。我们可以将这种变化现象从纳米扩展到大尺度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanone interactions in antibody of living systems
One of the facts about how nanoparticle assemble and act is revealed using carbon value in biomolecule of living system here. This is how the biomolecules interact to bring about a micro or even macro level interaction in system of interest. This study shows micro level understanding can be better utilized from carbon analysis at nano level. I plan to extend this phenomena of change from nano to micro for building large scale applications in human nature. Applications include corrections in both at sequence and structure level for permanent recovery of defective one, adding flavor to the existing biomolecule for faster delivery or recovery etc. I have demonstrated here the active role played by carbon and all. This might be extended to another system of setup where new applications yet to be created. One can extend this phenomena of change from nano to large scale one.
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