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将生化世界和半导体世界融合:.

Synthesizing the biochemical and semiconductor worlds: .

机构信息

Physical Measurement Laboratory, National Institute Standards and Technology, 100 Bureau drive, Gaithersburg, MD, 20878, USA.

出版信息

Nanoscale. 2022 Nov 3;14(42):15586-15595. doi: 10.1039/d2nr04040a.

Abstract

Since its inception nearly 40 years ago [Kallenbach, , , 1983, , 829; N. C. Seeman, , 1982, , 237], Nucleic Acid Nanotechnology (NAN) has matured and is beginning to find commercial applications. For the last 20 years, it has been suggested that NAN might be an effective replacement for parts of the semiconductor lithography or protein engineering workflows. However, in that time, these incumbent technologies have made significant advances, and our understanding of NAN's strengths and weaknesses has progressed, suggesting that the greatest opportunities in fact lie elsewhere. Given the commitment of resources necessary to bring new technologies to the market and the desire to use those resources as wisely as possible, we conduct a critical examination of where NAN may benefit from, and provide benefit to, adjacent technologies and compete least with market incumbents. While the accuracy of our conclusions may be limited by our ability to extrapolate from the current state of NAN to its future commercial success, we conclude that the next promising direction is to create a bridge between biology and semiconductor technology. We also hope to stimulate a robust conversation around this technology's capabilities with the goal of building consensus on those research and development efforts that would advance NAN to the greatest effect in real-world applications.

摘要

自 40 年前成立以来[Kallenbach,,, 1983,, 829; N. C. Seeman,, 1982,, 237],核酸纳米技术(NAN)已经成熟并开始找到商业应用。在过去的 20 年中,有人提出 NAN 可能是半导体光刻或蛋白质工程工作流程的有效替代品。然而,在那段时间里,这些现有技术取得了重大进展,我们对 NAN 的优势和劣势的理解也在不断深入,这表明最大的机会实际上在于其他领域。考虑到将新技术推向市场所需的资源投入,以及尽可能明智地利用这些资源的愿望,我们对 NAN 可能受益于相邻技术并与市场现有产品竞争最少的领域进行了批判性的审视。虽然我们从 NAN 的当前状态推断其未来商业成功的准确性可能受到限制,但我们得出的结论是,下一个有前途的方向是在生物学和半导体技术之间架起桥梁。我们还希望围绕这项技术的能力展开一场激烈的讨论,目标是就那些能够以最有效的方式将 NAN 推进到实际应用中的研发工作达成共识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d39/10949957/fd2f04fb8d1d/nihms-1858160-f0001.jpg

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