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胺功能化DNA水两相萃取实现并增强了多重分子特异性单壁碳纳米管细胞因子传感。

Multiplexed Molecularly-Specific SWCNT Cytokine Sensing is Enabled and Enhanced by Amine-Functionalized DNA Aqueous Two-Phase Extraction.

作者信息

Ryan Amelia, Parveen Sadiyah, Cohen Zachary, Israel Atara, Williams Ryan

机构信息

The City College of New York, Department of Biomedical Engineering, New York, NY 10031.

出版信息

bioRxiv. 2025 May 21:2025.05.16.654499. doi: 10.1101/2025.05.16.654499.

Abstract

Single-walled carbon nanotubes (SWCNT) are versatile building blocks for optical sensors. Their carbon lattice structure, denoted by chiral (n,m) indices, determines the wavelength of their near infrared fluorescence emission. Commercially available SWCNT are polydisperse, containing many (n,m) species with overlapping fluorescence peaks, leading to spectral congestion. Aqueous two-phase extraction (ATPE) has emerged as a valuable tool to sort SWCNT according to their chiral structure and promises improved nanosensor performance as well as unique opportunities for multiplexing. Previous applications of ATPE have enabled ratiometric sensors, but simultaneous detection of multiple analytes using distinct SWCNT chiralities has yet to be realized. This hurdle is largely due to the contrasting surface chemistries needed for ATPE sorting and those needed for biosensing applications. In this work, we introduce a method for purifying multiple chiralities of SWCNT which can be functionalized with molecularly specific antibodies to create a multiplexed sensor platform. We utilize aminated DNA (DNA-NH), which serves as both a conduit for ATPE sorting and an intermediate linker for later antibody conjugation, to realize this goal. We demonstrate that chemically modified DNA enables ATPE sorting, supporting the broad future utility of the technique. We further show that chirality-sorted SWCNT-DNA-NH serve as excellent base constructs for antibody conjugation, forming highly specific sensors with enhanced optical properties (compared to unsorted SWCNT sensors). Importantly, one batch of monochiral base constructs can be functionalized with different antibodies towards different biological applications. Finally, we show that we can sort and functionalize two separate SWCNT chiralities and combine them together to create a multiplexed sensor platform where each peak responds distinctly to its target. There are vast opportunities for expansion of this work through the use of alternative DNA sequences to enable sorting, various SWCNT chiralities, and virtually any commercially available antibody for molecular recognition.

摘要

单壁碳纳米管(SWCNT)是用于光学传感器的多功能构建块。它们的碳晶格结构由手性(n,m)指数表示,决定了其近红外荧光发射的波长。市售的SWCNT是多分散的,包含许多具有重叠荧光峰的(n,m)种类,导致光谱拥挤。水相两相萃取(ATPE)已成为一种根据手性结构对SWCNT进行分类的有价值工具,并有望提高纳米传感器的性能以及实现多路复用的独特机会。ATPE以前的应用已经实现了比率传感器,但尚未实现使用不同的SWCNT手性同时检测多种分析物。这一障碍主要是由于ATPE分类所需的表面化学与生物传感应用所需的表面化学形成对比。在这项工作中,我们介绍了一种纯化多种手性SWCNT的方法,这些SWCNT可以用分子特异性抗体进行功能化,以创建一个多路复用传感器平台。我们利用胺化DNA(DNA-NH),它既是ATPE分类的管道,又是后来抗体偶联的中间连接体,以实现这一目标。我们证明化学修饰的DNA能够实现ATPE分类,支持该技术在未来的广泛应用。我们进一步表明,按手性分类的SWCNT-DNA-NH作为抗体偶联的优良基础构建体,形成了具有增强光学特性的高特异性传感器(与未分类的SWCNT传感器相比)。重要的是,一批单一手性基础构建体可以用针对不同生物应用的不同抗体进行功能化。最后,我们表明我们可以对两种单独的SWCNT手性进行分类和功能化,并将它们组合在一起,创建一个多路复用传感器平台,其中每个峰对其目标有明显的响应。通过使用替代DNA序列进行分类、各种SWCNT手性以及几乎任何用于分子识别的市售抗体,这项工作有巨大的扩展机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b492/12139838/ae0b340d329e/nihpp-2025.05.16.654499v1-f0001.jpg

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