首页> 外文期刊>Vibrational Spectroscopy: An International Journal devoted to Applications of Infrared and Raman Spectroscopy >Fourier transform infrared microspectroscopy detects biochemical changes during C. elegans lifespan
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Fourier transform infrared microspectroscopy detects biochemical changes during C. elegans lifespan

机译:傅里叶变换红外线微型光谱检测在C.秀丽隐杆线虫寿命期间检测生化变化

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This study reports on the use of Fourier transform infrared (FTIR) microspectroscopy imaging to investigate biochemical changes occurring during C. elegans lifespan. C. elegans wild-type (N2) and the tub-1 mutant strain were cultured in agar plates. FTIR imaging was performed on single worms in transmission mode at day 8,11, and 15. Principalcomponent analysis was then performed to analyze the spectra acquired during C. elegans lifespan. The FTIR spectra were clustered in three groups correspondingto the spectra acquired frdrnthe worms at day 8, 11, and 15. The results showed major changes in lipids (vibration 1744cm~(-1) assigned to C=0 stretching) and proteins (vibrations 1648 em~(-1) assigned to C=0 stretching of amide land 1548 cm~(-1) assigned to N-H bending and C-N stretching in amid II). The vibration assigned to glycogen around 1155 cm~(-1) was present in the spectra acquired at day 8 and 11 but the peak area decreased by 49.3% and 73.3% in the spectra acquired at day 15 respectively from WT(N2) and tub-1 mutant strain. Furthermore, PC-1 loadings as a function of wavenumbers show that the presence of the vibration 1698 cm~(-1), attributed to antiparallel β-sheet, could indicate the formation of lipofuscin. The results obtained demonstrate that FTIR imaging could be used as a tool to monitor biochemical changes during lifespan studies, which could bring additional information to our understanding of longevity.
机译:本研究报告了使用傅里叶变换红外(FTIR)微型光谱成像来研究C.秀丽隐杆线的生物化学变化。 C. Elegans野生型(N2)和胰蛋白酶-1突变菌株在琼脂平板中培养。在8,11,11,11,11,11,11,11,11,119期间对单蠕虫进行FTIR成像。然后进行校长分析以分析C.秀丽隐杆线虫寿命期间获得的光谱。将FTIR光谱聚集在对应于第8,11,11和15天的Spectra获得FRDRN蠕虫的三组中。结果表明脂质的主要变化(振动1744cm〜(-1)分配给C = 0拉伸)和蛋白质(振动1648 EM〜(-1)分配到C = 0拉伸酰胺焊盘1548cm〜(-1),分配到NH弯曲和CN II中的CN)。分配给糖原的振动在第8天和第11天的光谱中存在于1155cm〜(-1)中,但是峰面积分别在WT(N2)和桶中分别在第15天获得的光谱中减少了49.3%和73.3%。 -1突变菌株。此外,PC-1作为波数的函数的负载表明,归因于反平行β-片的振动1698cm〜(-1)可以表明脂血清素的形成。所获得的结果表明,FTIR成像可以用作在寿命期间监测生化变化的工具,这可以为我们对长寿的理解提供额外信息。

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