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Critical hydration and temperature effects on terahertz biomolecular sensing

机译:临界水合作用和温度对太赫兹生物分子传感的影响

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The terahertz dielectric response of partially thermally denatured, hen egg white lysozyme (HEWL) films is measured as a function of frequency and hydration using terahertz time domain spectroscopy (THz-TDS). Results are compared to similar measurements on native state samples. The frequency and hydration dependence of the absorbance for the two sample types are highly similar except for a notable suppression at ~ 0.4 THz (13 cm~(-1)) in the partially denatured sample. In contrast to the native state sample which has a nearly frequency independent index of refraction, the index of the partially denatured sample decreases as a function of frequency. A transition is observed in both the absorbance and the index at a hydration level of ~ 0.25h (grams H_2O per gram lysozyme). Below the transition, the response slowly increases while above 0.25h, the slope of both the absorbance and index sharply increases. Interestingly, we observed similar behavior in the native sample. The Cole-Cole plots exhibit a hydration dependence that is distinct from the native sample and indicative of neither pure resonance nor dielectric relaxation. We consider the implications of these results on THz biomolecular sensors.
机译:使用太赫兹时域光谱仪(THz-TDS),测量部分热变性的鸡蛋清溶菌酶(HEWL)薄膜的太赫兹介电响应随频率和水合作用的变化。将结果与原始状态样品的类似测量结果进行比较。两种样品类型的吸光度与频率和水合依赖性高度相似,不同之处在于部分变性样品在〜0.4 THz(13 cm〜(-1))处有明显的抑制作用。与具有几乎与频率无关的折射率的原始状态样本相反,部分变性的样本的折射率随频率而降低。在约0.25h的水合水平(克H_2O /克溶菌酶)下,吸光度和指数均发生了转变。在过渡以下,响应缓慢增加,而在0.25h以上,吸收率和折射率的斜率急剧增加。有趣的是,我们在本地样本中观察到了类似的行为。 Cole-Cole曲线显示出与天然样品不同的水合依赖性,并且既不表示纯共振也不表示介电弛豫。我们考虑这些结果对太赫兹生物分子传感器的影响。

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