首页> 美国卫生研究院文献>Scientific Reports >Spectroscopic and Biophysical Interaction Studies of Water-soluble Dye modified poly(o-phenylenediamine) for its Potential Application in BSA Detection and Bioimaging
【2h】

Spectroscopic and Biophysical Interaction Studies of Water-soluble Dye modified poly(o-phenylenediamine) for its Potential Application in BSA Detection and Bioimaging

机译:水溶性染料改性聚邻苯二胺的光谱学和生物物理相互作用研究及其在BSA检测和生物成像中的潜在应用

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Ultrasound-assisted synthesis of water soluble poly(o-phenylenediamine) (POPD) and its doping with Acid Orange (AO), Fluorescein (Fluo) and Rhodamine-6G (R6G) dyes was carried out with a view to enhance the photophysical properties of POPD. XPS studies confirmed that doping of POPD occured through hydrogen bonding between NH group of POPD and C=O/SO, S=O groups of the dyes. The presence of strong hydrogen bonding was also confirmed via UV-vis studies by the addition of urea and sodium chloride to the dye modified POPD adducts. Molar extinction coefficient of these adducts was found to bear a close relationship with the molecular structure. Fluorescence life time, (τf,) was found to be lowest (1.8 ns) for AO-POPD and highest (3.2 ns) for Fluo-POPD. The structure of AO-POPD was more strained, while that of Fluo-POPD was least strained. Intrinsic fluorescence decay constant, (k0f) showed increasing values for POPD, AO-POPD, Fluo-POPD, R6G-POPD as 0.071, 0.072, 0.153, and 0.172 (108 s−1), which could be correlated to the increasing strain-free molecular structure of the adducts. Circular dichroism spectra (CD) of BSA in presence of POPD and R6G- POPD revealed that it partially broke its helical structure, while Fluo-POPD and AO-POPD showed enhancement in the helical content. The 3-D fluorescence studies confirmed enhancement in hydrophobicity of POPD and R6G- POPD and increase in hydrophylicity of AO-POP and Fluo-POPD in the microenvironment of tryptophan residue-213 of BSA. Fluo-POPD and R6G-POPD adducts were chosen to find out the lowest detection limit (LOD) of BSA by differential pulse voltammetry (DPV) which was found to be 1.35 nM, and 1.65 nM using Fluo-POPD and R6G -POPD respectively. The binding constant of BSA with Fluo-POPD- and R6G-POPD was obtained as 3.98 × 106 Lmol−1 and 5.27 × 102 Lmol−1. These polymers could therefore, be used for the detection of BSA. Live cell imaging revealed that POPD nanoparticles were bound to the outer membrane of E. coli, while R6G-POPD, showed penetration into the cytoplasm and excellent labeling of E. coli. This facile technique could be used to design tunable biomarkers by tailoring the conjugated polymer with a desired dye molecule.
机译:超声辅助合成水溶性聚邻苯二胺(POPD)及其掺杂酸性橙(AO),荧光素(Fluo)和若丹明-6G(R6G)染料,以增强其光物理性能。 POPD。 XPS研究证实,POPD的掺杂是通过POPD的NH基团与染料的C = O / SO -,S = O基团之间的氢键结合而发生的。通过在染料改性的POPD加合物中添加尿素和氯化钠也可通过UV-vis研究证实,存在强氢键。发现这些加合物的摩尔消光系数与分子结构密切相关。发现AO-POPD的荧光寿命(τf)最低(1.8 ns),而Fluo-POPD最高(3.2 timens)。 AO-POPD的结构应变更大,而Fluo-POPD的结构应变最小。内在荧光衰减常数(k 0 f)显示POPD,AO-POPD,Fluo-POPD,R6G-POPD的值分别为0.071、0.072、0.153和0.172(10 8 < / sup> s -1 ),这可能与加合物的无应变分子结构的增加有关。在存在POPD和R6G-POPD的情况下,BSA的圆二色性光谱(CD)显示其部分破坏了其螺旋结构,而Fluo-POPD和AO-POPD显示出螺旋含量的增强。 3-D荧光研究证实,在BSA色氨酸残基213的微环境中,POPD和R6G-POPD的疏水性增强,而AO-POP和Fluo-POPD的亲水性增强。选择Fluo-POPD和R6G-POPD加合物通过差示脉冲伏安法(DPV)找出BSA的最低检测限(LOD),分别使用Fluo-POPD和R6G -POPD分别为1.35 nM和1.65 nM。得到的BSA与Fluo-POPD-和R6G-POPD的结合常数为3.98×10 6 Lmol -1 和5.27×10 2 Lmol -1 。因此,这些聚合物可用于检测BSA。活细胞成像显示POPD纳米颗粒结合到大肠杆菌的外膜上,而R6G-POPD显示渗透到细胞质中并具有出色的大肠杆菌标记作用。通过用所需的染料分子修饰共轭聚合物,这种简便的技术可用于设计可调生物标记。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号