◆发表论文
2024年
1. Extraction and identification of polyphenol from Camellia oleifera leaves using tailor-made deep eutectic solvents based on COSMO-RS design[J]. Food Chemistry, 2024, 444: 138473.(1区,TOP期刊)
2. Structure elucidation and antioxidant activity of a polysaccharide from Penthorum chinense Pursh[J].International Journal of Biological Macromolecules,2024,264: 130720(1区,TOP期刊)
2023年
1. Green extraction of polysaccharides from Camellia oleifera fruit shell using tailor-made deep eutectic solvents[J]. International Journal of Biological Macromolecules, 2023, 253: 127286.(1区,TOP期刊)
2.Antioxidant potential evaluation of polysaccharides from Camellia oleifera Abel in vitro and in vivo[J]. International Journal of Biological Macromolecules, 2023, 248: 125726(1区,TOP期刊)
3.Extraction, Structural, and Antioxidant Properties of Oligosaccharides Hydrolyzed from Panax notoginseng by Ultrasonic-Assisted Fenton Degradation[J]. International Journal of Molecular Sciences, 2023, 24(5): 4506.(2区,TOP期刊)
4.Integrated analysis of transcriptome and metabolome provides insight into Camellia oleifera oil alleviating fat accumulation in high-fat Caenorhabditis elegans[J]. International Journal of Molecular Sciences, 2023, 24(14): 11615.(2区,TOP期刊)
5.Chemical composition of Litsea pungens essential oil and its potential antioxidant and antimicrobial activities." Molecules 28.19 (2023): 6835.(2区,TOP期刊)
6. The positive effects of Camellia oleifera oil on lifespan in Caenorhabditis elegans[J].Journal of Functional Foods 110 (2023): 105869.(2区,TOP期刊)
2022年
1. Comprehensive evaluation of chemical composition and health-promoting effects with chemometrics analysis of plant derived edible oils,Food Chemistry-X 14 (2022) 100341,(1区,TOP期刊)
2. Optimization of Extraction Process, Structure Characterization, and Antioxidant Activity of Polysaccharides from Different Parts of Camellia oleifera Abel,Foods 2022, 11, 3185. (大类2区)
2021年
1. Oleuropein Enhances Stress Resistance and Extends Lifespan via Insulin/IGF-1 and SKN-1/Nrf2 Signaling Pathway in Caenorhabditis elegans,Antioxidants, 2021, 10, 1697. (大类2区)
2. Comparison of Phenolic Compounds in Olive Leaves by Different Drying and Storage Methods. Separations,2021, 8, 156. (大类3区)
3.Blumea laciniata protected Hep G2 cells and Caenorhabditis elegans against acrylamide-induced toxicity via insulin/IGF-1 signaling pathway, Food and Chemical Toxicology, 2021, (TOP期刊)
4.Optimization of the extraction of polysaccharides from the shells of Camellia oleifera and evaluation on the antioxidant potential in vitro and in vivo, Journal of Functional Foods, 2021, (大类2区)
5. Polyphenols from Blumea laciniata Extended the Lifespan and Enhanced Resistance to Stress in Caenorhabditis elegans via the Insulin Signaling Pathway. Antioxidants, 2021, 10, 1744(1-14) (大类2区)
2020年
1. The Antioxidant Capacity In Vitro and In Vivo of Polysaccharides From Bergenia emeiensis,International Journal Molecular Sciences, 2020, 21, 7456(TOP期刊)
2. Optimized Extraction of Polysaccharides from Bergenia emeiensis Rhizome, Their Antioxidant Ability and Protection of Cells from Acrylamide-induced Cell Death, Plants-Basel, 2020, 9, 976(大类2区)
3. Simultaneous optimization of extraction and antioxidant activity from Blumea laciniata and the protective effect on Hela cells against oxidative damage, Arabian Journal of Chemistry, 2020.(大类2区)
2019年
1. The Effect of Extraction Methods on Preliminary Structural Properties and Antioxidant Activities of Polysaccharides from Lactarius vividus. processes, 2019, 7:1-15 (大类3区)
2. Antioxidant and anti-aging activities and structural elucidation of polysaccharides from Panax notoginseng root. Process Biochemistry, 2019, 78:189-199.(大类3区)
3. Heat stress resistance effect of flavonoids from Penthorum chinense pursh on Caenorhabditis elegans. Pharmacognosy magazine, 2019,15:514-521(大类4区)
4. Chemical composition, antioxidant and antihyperglycemic activities of the wild Lactarius deliciosus from China. Molecules, 2019, 24, 1357-1342. (TOP期刊)
2018年
1. Panax notoginseng polysaccharide increases stress resistance and extends lifespan in Caenorhabditis elegans. Journal of Functional Foods, 2018, 45:15-23. (TOP期刊)
2. Structural elucidation and antiaging activity of polysaccharide from Paris polyphylla leaves. International Journal of Biological Macromolecules, 2018,107, 1613-1619. . (IF=8.025/TOP期刊)
3. Optimization of ultrasound-assisted extraction of flavonoids from olive (Olea europaea) leaves, and evaluation of their antioxidant and anticancer activities. Molecules, 2018, 23, 2513-2527.(TOP期刊)
2016年
1. The antioxidant activities effect of neutral and acidic polysaccharides from polysaccharides from Epimedium acuminat on Caenorhabditis elegans. Carbohydrate Polymers, 2016, 144: 122-130. (TOP期刊)
2. Characteristics and bioactivities of different molecular weight polysaccharides from Camellia seed cake. International Journal of Biological Macromolecules, 2016, 91, 1025-1032. (TOP期刊)
2015年
1. Thermal stress resistance and aging effects of Panax notoginseng polysaccharides on C. elegans. International Journal of Biological Macromolecules, 2015, 68:188-194. (TOP期刊)
2014年
1. Ultrasonic-assisted extraction and antioxidant activities of polysaccharides from Camellia oleifera leaves. International Journal of Biological Macromolecules, 2014, 68:7-12. (TOP期刊)
2013年
1. Extraction, antioxidant and antimicrobial activities of Epimedium acuminatum Franch. polysaccharide. Carbohydrate Polymers, 2013, 96: 101-108. (TOP期刊)
2. Structural characterization and antioxidant activities of polysaccharide extracted from Epimedium acuminatum. Carbohydrate Polymers, 2013, 92: 63-68(TOP期刊)
发表CSCD文章
1. 红雪茶提取物的抗氧化活性及其机理初探,天然产物研究与开发,2022, 34: 19-25.
2. 红雪茶总酚酸提取工艺优化及其抗氧化活性研究, 天然产物研究与开发,2021, 33: 84-91.
3. 油橄榄叶甲醇提取物多酚成分、抗氧化及抑癌活性研究,天然产物研究与开发, 2021, 33: 1-6.
4. 3个油茶品种幼苗对干旱胁迫的生理响应, 西北植物学报, 2013,33(8), 1651-1657.
5. 长林无性系油茶抗旱性的综合评价, 广西植物, 2016, 36: 735-740.