Department of Chemistry, School of Science, Xi'an Jiaotong University , Xi'an, 710049, China.
Key Laboratory of Biomedical Information Engineering of Education Ministry, School of Life Science and Technology, Xi'an Jiaotong University , Xi'an, 710049, China.
ACS Appl Mater Interfaces. 2017 Mar 29;9(12):11073-11081. doi: 10.1021/acsami.7b01554. Epub 2017 Mar 14.
Novel ratiometric fluorescent short single-stranded DNA (ssDNA) nanothermometers (ssDNA FT) were developed using the fluorescence resonance energy transfer (FRET) effect of the ssDNA's end labeled fluorophores. An optimal ssDNA sequence and associated ssDNA FT were determined through combined MD simulation and temperature-related FRET analysis. Their fluorescence properties and thermo-responsivities were analyzed using fluorescence spectra. The influences of ssDNA' sequence length, sequence composition and fluorescent labels for temperature sensing were investigated. Results revealed the prepared, optimized ssDNA FT showed a high average temperature sensitivity of 7.04% °C, wide linear response range of 0-100 °C, and excellent stability with various environmental factors. Furthermore, this ssDNA FT was successfully used for intracellular temperature sensing in cancer cells and was used for in vivo thermos-imaging during microwave hyperthermia of tumor tissue. Advantages in size, sensitivity, and stability proved the feasibility of ssDNA FT in nanoscale thermometry applications, and this novel fluorescent thermometry mechanism is of large potential in the development of FTs. This investigation of ssDNA's molecular thermosensitivity could give rise to a new prospective in the nanothermometry field.
新型比率荧光短单链 DNA(ssDNA)纳米温度计(ssDNA FT)是利用 ssDNA 末端标记荧光团的荧光共振能量转移(FRET)效应开发的。通过组合 MD 模拟和与温度相关的 FRET 分析,确定了最佳的 ssDNA 序列和相关的 ssDNA FT。使用荧光光谱分析了它们的荧光特性和温度响应性。研究了 ssDNA 序列长度、序列组成和荧光标记对温度传感的影响。结果表明,所制备的优化后的 ssDNA FT 表现出高平均温度灵敏度为 7.04%℃,0-100℃的宽线性响应范围,以及对各种环境因素的优异稳定性。此外,该 ssDNA FT 成功用于癌细胞内的温度感应,并用于肿瘤组织微波热疗过程中的体内热成像。在尺寸、灵敏度和稳定性方面的优势证明了 ssDNA FT 在纳米温度计应用中的可行性,这种新型荧光测温机制在 FTs 的发展中具有很大的潜力。对 ssDNA 分子热敏感性的研究可能会为纳米温度计领域带来新的前景。