HPLC/MALDI-TOF-MS表征及其营养潜力:极性定向溶剂萃取和抗氧化动力学

IF 5.2 2区 化学 Q2 CHEMISTRY, PHYSICAL Journal of Molecular Liquids Pub Date : 2025-05-15 Epub Date: 2025-03-11 DOI:10.1016/j.molliq.2025.127349
Mehwish Shah , Zheng Linyan , Muhammad Qasim , Yemawaysh Zewdie , Liping Qiu , Muhammad Ayaz
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引用次数: 0

摘要

传统上,绢兰(seriphedium quettense, S. quettense)被用于治疗多种疾病,具有丰富的生物活性代谢,虽然这种植物有几种已知的民族医学用途,但其极性引导指纹图谱的动力学建模和生物学评价尚未报道。材料与方法本研究采用极性定向萃取法提取荆芥提取物,采用HPLC/MALDI-TOF质谱法测定样品中总酚和总黄酮含量(TPC/TFC)。此外,我们阐明了样品对各种氧化剂,自由基,微生物菌株和癌细胞系的抑制潜力,以评估其在营养保健品中的潜在应用。结果MeOH提取物中含有大量的没食子酸(GA)和柠檬酸(CA),含量分别为0.5和16µg/mg GA当量。此外,乙酸乙酯(EA)提取物(1.9µg/mg QE当量)中含有丰富的类黄酮(如QU)。EA和CL提取物的TFC最高(分别为130.46和81.08µg QE/mg), MeOH + WT提取物的TPC最高(108.67µg GA/mg)。富含酚酸的提取物具有较强的抗氧化能力。其中,MeOH提取物对DPPH自由基具有较高的清除活性(IC50 = 5.48µg/mL)。MeOH + EtOH和MeOH + WT提取物对铜绿假单胞菌和枯草芽孢杆菌具有较强的抑菌活性(IC50分别为11.1和11µg/mL)。NH提取物对HeLa宫颈癌细胞系具有体外细胞毒性,IC50值为14.29µg/mL。丁香提取物对毛霉的抑菌活性显著(DIZ = 11±0.03)。血液相容性结果表明,各提取物均安全。结构-生物活性关系表明,不同类型的植物化学物质组合在提取物中具有神经保护和抗衰老作用。结论黄芪提取物中含有具有生物活性的次生代谢产物,可能与黄芪药理作用有关。这些结果的分子机制及其在营养保健领域的潜在应用需要进一步的详细研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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HPLC/MALDI-TOF-MS characterization and nutraceutical potential of Seriphedium quettense extracts: A polarity directed solvent extraction and antioxidant kinetics

Background

Seriphedium quettense (S. quettense) is traditionally used against various diseases and is rich in bioactive metabolities Although this plant has several known ethnomedicinal uses, its polarity-guided fingerprinting with kinetic modelling and biological evaluations are not yet been reported.

Materials and Methods

In this study, we performed polarity-directed extraction of fractions from S. quettense and samples were subjected to HPLC/MALDI-TOF MS analysis, total phenolic and flavonoids contents (TPC/TFC) following standard procedures. Furhter, we elucidated the inhibitory potentials of samples towards various oxidants, free radicals, microbial strains, and cancer cell lines to assess their potential use in nutraceuticals.

Results

Considerable amount of phenolic acids such as gallic acid (GA) and citric acid (CA) were found in the MeOH extract (0.5 and 16 µg/mg GA equivalent respectively). Moreover, flavonoids such as QU were abundantly found in the ethyl acetate (EA) extract (1.9 µg/mg QE equivalent). Highest TFC was found in EA and CL extracts (130.46 and 81.08 µg QE/mg respectively), while the highest TPC was observed in MeOH + WT extract (108.67 µg GA/mg). Extracts rich in phenolic acids revealed strong antioxidant capacity. In particular, the MeOH extract showed high activity (IC50 = 5.48 µg/mL) in diphenylpicryl hydrazine (DPPH) free-radical scavenging assays. The MeOH + EtOH and MeOH + WT extracts exhibited considerable antibacterial activity against Pseudomonas aeruginosa and Bacillus subtilis (IC50 = 11.1 and 11 µg/mL, respectively). The extracts also demonstrated in vitro cytotoxicity against the HeLa cervical cancer cell line, with the NH extract demonstrating a high activity of IC50 = 14.29 µg/mL. The CL extract demonstrated significant antifungal activity (DIZ = 11 ± 0.03) against Mucor species. The hemocompatibility results revealed that all extracts were safe. The structural-bioactivity relationship showed neuroprotective and anti-aging activity of the combination of different classes of phytochemicals in these extracts.

Conclusions

Our findings indicate that S. quettense plant extracts contain bioactive secondary metabolites which might contribute towards the pharmacological potentials of the plant. Further detailed studies are required to elucidate the molecular mechanism of these results and its potential applications in nutraceutical sector.
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来源期刊
Journal of Molecular Liquids
Journal of Molecular Liquids 化学-物理:原子、分子和化学物理
CiteScore
10.30
自引率
16.70%
发文量
2597
审稿时长
78 days
期刊介绍: The journal includes papers in the following areas: – Simple organic liquids and mixtures – Ionic liquids – Surfactant solutions (including micelles and vesicles) and liquid interfaces – Colloidal solutions and nanoparticles – Thermotropic and lyotropic liquid crystals – Ferrofluids – Water, aqueous solutions and other hydrogen-bonded liquids – Lubricants, polymer solutions and melts – Molten metals and salts – Phase transitions and critical phenomena in liquids and confined fluids – Self assembly in complex liquids.– Biomolecules in solution The emphasis is on the molecular (or microscopic) understanding of particular liquids or liquid systems, especially concerning structure, dynamics and intermolecular forces. The experimental techniques used may include: – Conventional spectroscopy (mid-IR and far-IR, Raman, NMR, etc.) – Non-linear optics and time resolved spectroscopy (psec, fsec, asec, ISRS, etc.) – Light scattering (Rayleigh, Brillouin, PCS, etc.) – Dielectric relaxation – X-ray and neutron scattering and diffraction. Experimental studies, computer simulations (MD or MC) and analytical theory will be considered for publication; papers just reporting experimental results that do not contribute to the understanding of the fundamentals of molecular and ionic liquids will not be accepted. Only papers of a non-routine nature and advancing the field will be considered for publication.
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