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Detection and Identification of Amino Acids in Ficoll Solutions with Femtosecond Laser-induced Breakdown Spectroscopy

机译:飞秒激光诱导击穿光谱法检测和鉴定Ficoll溶液中的氨基酸

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We report femtosecond Laser-induced Breakdown Spectroscopy (fs-LIBS) measurements on several amino acids (Serine, Glutamine, and Cysteine) and Albumin protein solutions mixed with Ficoll polysaccharide at different proportions. The goal is to assess the effects of a host matrix on the identification and spectral characterization of amino acids by fs-LIBS. fs-LIBS utilizes an intense short laser pulse to obliterate a sample into basic constituents and to record the emission spectrum of atoms, ions, and molecules in the cooling down of the plasma plume. Several spectral peaks associated primarily with elemental composition of a sample were observed in the fs-LIBS spectra in a range from 200 to 950 nm. In addition, some molecular information associated with diatomic vibrational modes in certain molecules such as C-C and C-N were also obtained. The presence of Ficoll affects the relative intensity and broadening of the CN band, which could be considered as signatures of the amino acids. The fs-LIBS data and their analysis compare favorably with those derived from Fourier Transform Infrared Spectroscopy (FTIR). Interpretation of the spectral information enclosed in the emission of the diatomic molecules during laser ablation may lead to a better understanding of plume chemistry with a direct consequence on chemical analysis of complex samples such as amino acids. Altogether, the results demonstrate the potential of fs-LIBS technique as a detection method of biomolecules and for probing interactions of these biomolecules with a host matrix.
机译:我们报告了飞秒激光诱导的击穿光谱(fs-LIBS)对几种氨基酸(丝氨酸,谷氨酰胺和半胱氨酸)和白蛋白蛋白溶液与Ficoll多糖的混合比例的测量结果。目的是评估宿主基质对fs-LIBS对氨基酸鉴定和光谱表征的影响。 fs-LIBS利用强烈的短激光脉冲将样品消融为基本成分,并记录等离子体羽流冷却过程中原子,离子和分子的发射光谱。在200-950 nm的fs-LIBS光谱中观察到了几个主要与样品元素组成相关的光谱峰。此外,还获得了与某些分子(例如C-C和C-N)中与双原子振动模式相关的分子信息。 Ficoll的存在会影响CN谱带的相对强度和变宽,这可以认为是氨基酸的特征。 fs-LIBS数据及其分析与傅立叶变换红外光谱(FTIR)得出的数据相比具有优势。激光烧蚀过程中对双原子分子发射中包含的光谱信息的解释可能会导致对羽流化学的更好理解,直接影响复杂样品(例如氨基酸)的化学分析。总之,结果证明了fs-LIBS技术作为生物分子检测方法以及探测这些生物分子与宿主基质相互作用的潜力。

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