Department of Biomedical Engineering, School of Medicine, Tsinghua University, Beijing, 100084, China.
Shenzhen Key Laboratory for Minimal Invasive Medical Technologies, Institute of optical imaging and sensing, Graduate School at Shenzhen, Tsinghua University, Shenzhen, 518055, China.
Sci Rep. 2019 Feb 13;9(1):1891. doi: 10.1038/s41598-018-38454-x.
The process of unwinding and renaturation of DNA has been widely used in studies of nucleotide sequence organization. Compared with traditional methods for DNA unwinding and renaturation, the label-free and non-destruction detection technology is significant and desiderated. We realized an optical system based on optical rotation via weak measurement for detection of single- and double-strand state of DNA. The optical rotation, which was induced by the status change of single and double DNA strands, was exploited to modulate the preselected polarization of a weak measurement system. With this modulation, the optical rotation caused by the separation of DNA strands can be determined through the center wavelength shift of the output spectrum. By monitoring the wavelength shift in real time, the separation processes of the DNAs with different base ratio (25% and 70%) and length (4nt and 40nt), and DNAs with three terminally modified cholesterol molecules were experimentally explored in varied pH and temperature conditions. In addition, the detection limit of the DNA concentration was obtained to be 5 × 10 mol/L. Our work based on optical rotation detection of single- and double-strand DNA exhibits the unique advantages of real-time monitoring, label-free, non-destruction and simplicity.
DNA 的解旋和复性过程已被广泛应用于核苷酸序列组织的研究中。与传统的 DNA 解旋和复性方法相比,无标记和非破坏性检测技术具有重要意义和必要性。我们通过弱测量实现了一种基于旋光的光学系统,用于检测 DNA 的单链和双链状态。通过弱测量系统的预选择偏振调制,可以利用单链和双链 DNA 状态变化引起的旋光来检测 DNA 单链和双链的状态变化。通过这种调制,可以通过输出光谱的中心波长移动来确定 DNA 链分离引起的旋光。通过实时监测波长移动,可以在不同 pH 值和温度条件下,实验探索不同碱基比(25%和 70%)和长度(4nt 和 40nt)的 DNA 以及带有三个末端修饰胆固醇分子的 DNA 的分离过程。此外,还获得了 DNA 浓度的检测极限为 5×10−7mol/L。我们基于单链和双链 DNA 旋光检测的工作具有实时监测、无标记、非破坏性和简单的独特优势。