Laboratório de Transformação de Plantas e Análise em Microscopia (LTPAM), Departamento de Bioquímica, Universidade Federal do Rio Grande do Norte (UFRN), Natal 59078-970, Brazil.
Laboratório de Biotecnologia de Polímeros Naturais (BIOPOL), Departamento de Bioquímica, Universidade Federal do Rio Grande do Norte (UFRN), Natal 59078-970, Brazil.
Oxid Med Cell Longev. 2021 Apr 24;2021:3043720. doi: 10.1155/2021/3043720. eCollection 2021.
is widely used in folk medicine without any scientific basis. Considering this, the aim of this study was to evaluate the chemical profile and the antioxidant activity of leaf extracts using and assays. Six extracts were obtained from fresh leaves using a serial extraction (nonpolar to polar solvents). These extracts were first evaluated with the presence of phytochemical compounds using the methods thin layer chromatography (TLC), ultrahigh performance liquid chromatography (UHPLC-DAD), and high performance liquid chromatography, both with diode array detection (HPLC-DAD). Based on the compounds identified, it was used some bioinformatics tools in order to identify possible pathway and gene targets. After that, the antioxidant capacity from these extracts was analysed by assays and assays using model. Phytochemical analyses showed the presence of polyphenols, such as rutin, vitexin, and quercetin diglycosides in all extracts, especially in ethanol extract (EE) and methanol extract (EM). Bioinformatics analysis showed these polyphenols linked to antioxidant pathways. Furthermore, EE and EM displayed a high antioxidant capacity in DPPH and superoxide radical scavenging assays. They also had no effect on cell viability for 3T3 nontumour cell. However, for B16-F10 tumour cell lines, these extracts had toxicity effect. assays using N2 showed that EE was not toxic, and it did not affect its viability nor its development. Besides, EE increased worm survival under oxidative stress and reduced intracellular reactive oxygen species (ROS) levels by 50%. Thus, EE displayed an important and antioxidant capacity. The EE extract has polyphenols, suggesting that these compounds may be responsible for a myriad of biological activities having this potential to be used in various biotechnological applications.
在没有任何科学依据的情况下,被广泛应用于民间医学。考虑到这一点,本研究旨在评估叶提取物的化学成分和抗氧化活性,使用和 assays。从新鲜叶片中使用连续提取(非极性到极性溶剂)获得了六种提取物。这些提取物首先使用薄层色谱法(TLC)、超高效液相色谱(UHPLC-DAD)和高效液相色谱,均带有二极管阵列检测(HPLC-DAD)等方法来评估植物化合物的存在。基于鉴定出的化合物,使用一些生物信息学工具来识别可能的途径和基因靶点。之后,使用模型通过 assays 和 assays 分析这些提取物的抗氧化能力。TLC、UHPLC-DAD 和 HPLC-DAD 等方法表明所有提取物中均存在多酚类化合物,如芦丁、荭草苷和槲皮素二糖苷,尤其是在乙醇提取物(EE)和甲醇提取物(EM)中。生物信息学分析表明这些多酚类化合物与抗氧化途径有关。此外,EE 和 EM 在 DPPH 和超氧自由基清除测定中表现出较高的抗氧化能力。它们对 3T3 非肿瘤细胞的细胞活力也没有影响。然而,对于 B16-F10 肿瘤细胞系,这些提取物具有毒性作用。 assays 使用 N2 表明 EE 没有毒性,不会影响其活力或发育。此外,EE 可增加线虫在氧化应激下的存活率,并将细胞内活性氧(ROS)水平降低 50%。因此,EE 表现出重要的 和 抗氧化能力。EE 提取物含有多酚类化合物,表明这些化合物可能是多种生物活性的原因,具有在各种生物技术应用中使用的潜力。