Indhuja Devadass, Simon Swift, Sree Sreebhavan, Saeid Baroutian
{"title":"亚临界水萃取Kānuka (Kunzea ericoides):基于抗氧化特性的生物活性谱定性分析。","authors":"Indhuja Devadass, Simon Swift, Sree Sreebhavan, Saeid Baroutian","doi":"10.1007/s12033-025-01399-4","DOIUrl":null,"url":null,"abstract":"<p><p>Kānuka (Kunzea ericoides) has been traditionally recognised for its health-promoting properties. However, limited comprehensive data on its bioactive profile hinders its potential industrial applications. Therefore, this study investigated the bioactive constituents of the kānuka subcritical water extract, exhibiting maximum antioxidant potential, using LC-MS/MS QTOF. Experiments were performed at different extraction temperatures and times to determine antioxidant content and capacity. The data were statistically analysed to select extracts with the maximum antioxidant response for bioactive screening. The highest recovery of polyphenolics and flavonoids occurred at 170 °C, 5 min (319.96 ± 22.67 mg GAE/g dw and 163.57 ± 9.7 mg QE/g dw), correlating with increased antioxidant activity (DPPH: 87.77 ± 1.74%; ABTS: 97.62 ± 0.12; FRAP: 166.43 ± 25.54 mg TE/g dw). Extracts obtained at 170 °C, 180 °C, 200 °C, and 220 °C with shorter extraction times (5, 10, and 15 min) were selected for bioactive screening using multivariate principal component analysis. Consequently, a rich composition of phenylpropanoids, including flavonoids, phenolic acids, stilbenes, and monolignols, was identified in the kānuka extracts using LC-MS/MS QTOF. Additionally, bioactives previously not found in kānuka extracts were identified, including 2',6'-Dihydroxy-4'-methoxydihydrochalcone, resveratrol, scopoletin, and naringin, underscoring its potential as a source of valuable metabolites to the pharmaceutical and food industries.</p>","PeriodicalId":18865,"journal":{"name":"Molecular Biotechnology","volume":" ","pages":"669-692"},"PeriodicalIF":2.5000,"publicationDate":"2026-02-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC12967634/pdf/","citationCount":"0","resultStr":"{\"title\":\"Subcritical Water Extraction of Kānuka (Kunzea ericoides): A Qualitative Analysis of Bioactive Profile Based on Antioxidant Properties.\",\"authors\":\"Indhuja Devadass, Simon Swift, Sree Sreebhavan, Saeid Baroutian\",\"doi\":\"10.1007/s12033-025-01399-4\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Kānuka (Kunzea ericoides) has been traditionally recognised for its health-promoting properties. However, limited comprehensive data on its bioactive profile hinders its potential industrial applications. Therefore, this study investigated the bioactive constituents of the kānuka subcritical water extract, exhibiting maximum antioxidant potential, using LC-MS/MS QTOF. Experiments were performed at different extraction temperatures and times to determine antioxidant content and capacity. The data were statistically analysed to select extracts with the maximum antioxidant response for bioactive screening. The highest recovery of polyphenolics and flavonoids occurred at 170 °C, 5 min (319.96 ± 22.67 mg GAE/g dw and 163.57 ± 9.7 mg QE/g dw), correlating with increased antioxidant activity (DPPH: 87.77 ± 1.74%; ABTS: 97.62 ± 0.12; FRAP: 166.43 ± 25.54 mg TE/g dw). Extracts obtained at 170 °C, 180 °C, 200 °C, and 220 °C with shorter extraction times (5, 10, and 15 min) were selected for bioactive screening using multivariate principal component analysis. Consequently, a rich composition of phenylpropanoids, including flavonoids, phenolic acids, stilbenes, and monolignols, was identified in the kānuka extracts using LC-MS/MS QTOF. 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Subcritical Water Extraction of Kānuka (Kunzea ericoides): A Qualitative Analysis of Bioactive Profile Based on Antioxidant Properties.
Kānuka (Kunzea ericoides) has been traditionally recognised for its health-promoting properties. However, limited comprehensive data on its bioactive profile hinders its potential industrial applications. Therefore, this study investigated the bioactive constituents of the kānuka subcritical water extract, exhibiting maximum antioxidant potential, using LC-MS/MS QTOF. Experiments were performed at different extraction temperatures and times to determine antioxidant content and capacity. The data were statistically analysed to select extracts with the maximum antioxidant response for bioactive screening. The highest recovery of polyphenolics and flavonoids occurred at 170 °C, 5 min (319.96 ± 22.67 mg GAE/g dw and 163.57 ± 9.7 mg QE/g dw), correlating with increased antioxidant activity (DPPH: 87.77 ± 1.74%; ABTS: 97.62 ± 0.12; FRAP: 166.43 ± 25.54 mg TE/g dw). Extracts obtained at 170 °C, 180 °C, 200 °C, and 220 °C with shorter extraction times (5, 10, and 15 min) were selected for bioactive screening using multivariate principal component analysis. Consequently, a rich composition of phenylpropanoids, including flavonoids, phenolic acids, stilbenes, and monolignols, was identified in the kānuka extracts using LC-MS/MS QTOF. Additionally, bioactives previously not found in kānuka extracts were identified, including 2',6'-Dihydroxy-4'-methoxydihydrochalcone, resveratrol, scopoletin, and naringin, underscoring its potential as a source of valuable metabolites to the pharmaceutical and food industries.
期刊介绍:
Molecular Biotechnology publishes original research papers on the application of molecular biology to both basic and applied research in the field of biotechnology. Particular areas of interest include the following: stability and expression of cloned gene products, cell transformation, gene cloning systems and the production of recombinant proteins, protein purification and analysis, transgenic species, developmental biology, mutation analysis, the applications of DNA fingerprinting, RNA interference, and PCR technology, microarray technology, proteomics, mass spectrometry, bioinformatics, plant molecular biology, microbial genetics, gene probes and the diagnosis of disease, pharmaceutical and health care products, therapeutic agents, vaccines, gene targeting, gene therapy, stem cell technology and tissue engineering, antisense technology, protein engineering and enzyme technology, monoclonal antibodies, glycobiology and glycomics, and agricultural biotechnology.