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采用响应面法优化超声辅助提取条件并鉴定黑种草籽提取物中的百里醌

Optimisation of Ultrasound-Assisted Extraction Conditions Using Response Surface Methodology and Identification of Thymoquinone from Black Cumin ( L.) Seed Extract.

作者信息

Kaushik Nita, Barmanray Aradhita

机构信息

Department of Food Technology, Guru Jambheshwar University of Science and Technology, Hisar-125001, Haryana, India.

出版信息

Food Technol Biotechnol. 2025 Jun;63(2):262-273. doi: 10.17113/ftb.63.02.25.8560.

DOI:10.17113/ftb.63.02.25.8560
PMID:40735154
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12270582/
Abstract

RESEARCH BACKGROUND

L., commonly known as black cumin, is a medicinal plant renowned for its rich bioactive composition and health-promoting properties. Among its key compounds, thymoquinone has gained significant attention in nutraceutical and pharmaceutical research for its potential to prevent and manage chronic inflammatory conditions and immune dysfunctions. With growing global interest in natural health solutions, the aim of this study is to optimise ultrasound-assisted extraction (UAE) conditions to maximise thymoquinone yield from the extract of black cumin ( L.) seeds and characterise the bioactive compounds. By using UAE and advanced analytical techniques, the research contributes to the development of sustainable extracts rich in bioactive compounds with applications in medicine and nutrition.

EXPERIMENTAL APPROACH

In this study, ultrasound-assisted extraction method was used with response surface methodology (RSM) software to extract the bioactive compounds, including total phenolic content (TPC) and compounds that can bind free DPPH radical. To increase the extraction efficiency of bioactive compounds, the following parameters were examined: the ratio of the mass of seed powder to the volume of solvent of 50-100 %, extraction temperature of 30 °C, amplitude of 30-60 % and extraction time of 30-60 min. Black cumin seed extracts were characterised using scanning electron microscopy (SEM), while gas chromatography-mass spectrometry (GC-MS) analysis was carried out to identify thymoquinone. Additionally, Fourier transform infrared (FTIR) spectroscopy confirmed the presence of thymoquinone and several functional groups, including amines, alkanes, acids, esters, alkyls and alkenes.

RESULTS AND CONCLUSIONS

Ultrasonic extraction using methanol as a solvent resulted in a higher yield of thymoquinone (28.62 %), identified using GC-MS analysis. The presence of thymoquinone was further confirmed by the functional groups detected in FTIR analysis. Under the specified extraction conditions, total phenolic content (TPC, expressed as gallic acid equivalents), yield (in %) and DPPH radical scavenging activity increased by approx. 271.03 mg/g, and 4.5 and 83.06 %, respectively. In addition to thymoquinone, thymohydroquinone was also identified based on its molecular mass, retention time and peak values. Thymoquinone, a natural and potent phytochemical, offers a range of therapeutic properties, including immune-enhancing potential.

NOVELTY AND SCIENTIFIC CONTRIBUTION

Thymoquinone is a bioactive compound found in black cumin seeds, known for its potent antioxidant and immunity boosting properties. This research was conducted achieve the best possible extraction conditions for bioactive substances. Additionally, the results support the potential of thymoquinone as a therapeutic agent to treat various health conditions. The novelty lies in the development and optimisation of extraction techniques to maximise the yield and bioactivity of thymoquinone, a compound renowned for its robust antioxidant and immune-modulating properties. This work uniquely bridges the gap between the traditional use of black cumin and modern scientific validation, and addresses global health priorities. The results emphasise the importance of as a sustainable and natural source of health-promoting compounds, meeting the increasing demand for plant-based bioactive compounds in preventive healthcare. By characterising the extraction conditions and demonstrating therapeutic potential of thymoquinone, this study contributes to both the scientific literature and practical advances in the development of functional food and nutraceuticals.

摘要

研究背景

黑种草(Nigella sativa L.),俗称黑孜然,是一种药用植物,以其丰富的生物活性成分和促进健康的特性而闻名。在其关键化合物中,百里醌因其预防和管理慢性炎症性疾病及免疫功能障碍的潜力,在营养保健品和药物研究中受到了广泛关注。随着全球对天然健康解决方案的兴趣日益浓厚,本研究旨在优化超声辅助提取(UAE)条件,以最大限度地提高黑种草(Nigella sativa L.)种子提取物中百里醌的产量,并对生物活性化合物进行表征。通过使用超声辅助提取和先进的分析技术,该研究有助于开发富含生物活性化合物的可持续提取物,应用于医学和营养领域。

实验方法

在本研究中,采用超声辅助提取方法结合响应面法(RSM)软件提取生物活性化合物,包括总酚含量(TPC)和能够结合游离DPPH自由基的化合物。为了提高生物活性化合物的提取效率,考察了以下参数:种子粉末质量与溶剂体积之比为50 - 100%、提取温度为30℃、振幅为30 - 60%以及提取时间为30 - 60分钟。使用扫描电子显微镜(SEM)对黑种草种子提取物进行表征,同时进行气相色谱 - 质谱联用(GC - MS)分析以鉴定百里醌。此外,傅里叶变换红外(FTIR)光谱证实了百里醌以及包括胺、烷烃、酸、酯、烷基和烯烃在内的几种官能团的存在。

结果与结论

以甲醇为溶剂进行超声提取,通过GC - MS分析鉴定出百里醌的产率较高(28.62%)。FTIR分析中检测到的官能团进一步证实了百里醌的存在。在规定的提取条件下,总酚含量(以没食子酸当量表示)、产率(%)和DPPH自由基清除活性分别提高了约271.03 mg/g、4.5%和83.06%。除了百里醌,还根据其分子量、保留时间和峰值鉴定出了百里氢醌。百里醌是一种天然且有效的植物化学物质,具有一系列治疗特性,包括增强免疫力的潜力。

新颖性与科学贡献

百里醌是黑种草种子中发现的一种生物活性化合物,以其强大的抗氧化和增强免疫力的特性而闻名。本研究旨在实现生物活性物质的最佳提取条件。此外,研究结果支持了百里醌作为治疗多种健康状况的治疗剂的潜力。新颖之处在于开发和优化提取技术,以最大限度地提高百里醌的产量和生物活性,百里醌以其强大的抗氧化和免疫调节特性而闻名。这项工作独特地弥合了黑种草传统用途与现代科学验证之间的差距,并满足了全球健康优先事项。结果强调了黑种草作为促进健康化合物的可持续和天然来源的重要性,满足了预防性医疗保健中对植物源生物活性化合物日益增长的需求。通过表征提取条件并证明百里醌的治疗潜力,本研究为功能食品和营养保健品开发的科学文献及实际进展做出了贡献。

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