Fiadorwu Joshua, Subedi Kiran, Todd Daniel, Basti Mufeed M
Department of Applied Science and Technology, College of Science and Technology, North Carolina Agricultural and Technical State University, Greensboro, NC 27411, USA.
Analytical Services Laboratory, College of Agriculture and Environmental Sciences (CAES), North Carolina Agricultural and Technical State University, Greensboro, NC 27411, USA.
Foods. 2023 Sep 21;12(18):3510. doi: 10.3390/foods12183510.
Beetroot ( L.) is known for being a rich source of phytochemicals, minerals and vitamins. This study aims to show how the combination of extraction/chromatography/mass spectrometry and NMR offers an efficient way to profile metabolites in the extracts of beetroot. Such combination may lead to the identification of more nutritional or medicinal compounds in natural products, and it is essential for our ongoing investigation to study the selective adsorption/desorption of these metabolites' on/off nanoparticles. The aqueous and organic extracts underwent analyses using UV-vis spectroscopy; GC-MS; LC-MS; H, C, P, TOCSY, HSQC, and selective TOCSY NMR experiments. Polar Extract: The two forms of betalain pigment were identified by UV-vis and LC MS. Fourteen amino acids, sucrose, and other compounds, among which is riboflavin, were identified by LC-MS. Two-dimensional TOCSY showed the spin coupling correlations corresponding to some of these compounds. The HSQC spectrum showed H/C spin correlation in sucrose, confirming its high abundance in beetroot. Organic Extract: GC-MS data enabled the identification of several compounds including six fatty acid methyl esters (FAME) with higher than, on average, 90% similarity score. Selective TOCSY NMR data showed the spin coupling pattern corresponding to oleic, linoleic, and linolenic fatty acids. P NMR spectra indicate that phospholipids exist in both the organic and aqueous phase.
甜菜(L.)以富含植物化学物质、矿物质和维生素而闻名。本研究旨在展示萃取/色谱/质谱与核磁共振相结合如何为分析甜菜提取物中的代谢物提供一种有效的方法。这种结合可能会导致在天然产物中鉴定出更多的营养或药用化合物,并且对于我们正在进行的研究来说,研究这些代谢物在纳米颗粒上的选择性吸附/解吸至关重要。对水提取物和有机提取物进行了紫外可见光谱、气相色谱 - 质谱、液相色谱 - 质谱、氢谱、碳谱、磷谱、全相关谱、异核单量子相干谱以及选择性全相关谱核磁共振实验分析。极性提取物:通过紫外可见光谱和液相色谱 - 质谱鉴定出两种形式的甜菜红素色素。通过液相色谱 - 质谱鉴定出十四种氨基酸、蔗糖以及其他化合物,其中包括核黄素。二维全相关谱显示了与其中一些化合物相对应的自旋耦合相关性。异核单量子相干谱表明蔗糖中存在氢/碳自旋相关性,证实了其在甜菜中含量很高。有机提取物:气相色谱 - 质谱数据能够鉴定出几种化合物,包括六种脂肪酸甲酯(FAME),其平均相似度得分高于90%。选择性全相关谱核磁共振数据显示了与油酸、亚油酸和亚麻酸相对应的自旋耦合模式。磷谱表明磷脂同时存在于有机相和水相中。