Isolation and Purification of the Anti-Bacterial Compound of Cinnamon Oil Extracted from South India

M. Jayashankar, R. Alkhafaji
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Abstract

Cinnamon oil is derived from the leaves of the cinnamon tree, the essential oil of the plant is extracted by steam distillation, while its bark is used to make cinnamon spice. The present study was conducted to isolate the most important bioactive compounds from cinnamon oil extracted from South India. The thin-layer chromatography (TLC) combined with high-performance liquid chromatography (HPLC) were used to determine and estimate the isolates obtained. It found that the organic phase's highest retention time was 5.433, and the peak area percentage was 88.8 %. The organic phase sample had a high peak area percentage, indicating that there was a lot of bioactive chemical in it. The broad absorption band at 3270 cm-1 is due to the (-OH) group, 1670 and 1623 cm-1 to the C=C group, 1449 and 1381 cm-1 to the (-C-H) group, and the band at 1120 cm-1 to the (-C-O) group. A pseudo molecular ion peak at m/z 275 for a [M+H] +. This study resulted in finding a peak in the positive mode mass spectra, indicating a molecular weight of 274 and the molecular formula of C15H14O5.1H 13CNMR investigations verified the presence of phenol hydroxide groups, two aromatic ring systems, methylene groups, and a phenoxy carbon in the chemical composition of the compound. Moreover, the composition is quite similar to catechins, and this chemical is separated from the organic phase of cinnamon oil. The potent inhibitory activity of the newly synthesized catechin antagonist against S.aureus and E.coli was found to assess cell death by detection of DNA fragments using agarose gel electrophoresis and SEM analysis.
南印度肉桂油抗菌化合物的分离纯化
肉桂油是从肉桂树的叶子中提取的,植物的精油是通过蒸汽蒸馏提取的,而它的树皮则用来制作肉桂香料。本研究旨在从南印度肉桂油中分离出最重要的生物活性化合物。采用薄层色谱(TLC)和高效液相色谱(HPLC)相结合的方法对分离物进行鉴定。结果表明,有机相的最高保留时间为5.433,峰面积百分比为88.8%。有机相样品具有较高的峰面积百分比,表明其含有大量的生物活性化学物质。3270 cm-1处的宽吸收波段为(-OH)基团,1670和1623 cm-1处为C=C基团,1449和1381 cm-1处为(-C-H)基团,1120 cm-1处为(-C-O)基团。A [m +H] +在m/z 275处有一个伪分子离子峰。本研究在正模式质谱中发现了一个峰,表明其分子量为274,分子式为c15h14o5.1 1h 13CNMR研究证实了该化合物的化学组成中存在酚羟基、两个芳环体系、亚甲基和一个苯氧碳。此外,其成分与儿茶素非常相似,这种化学物质是从肉桂油的有机相中分离出来的。新合成的儿茶素拮抗剂对金黄色葡萄球菌和大肠杆菌具有较强的抑制活性,通过琼脂糖凝胶电泳和扫描电镜分析检测DNA片段来评估细胞死亡情况。
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