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Xiaoming Yang

Wannan Medical College · CN
Area of research
Complementary and alternative medicine · Hepatology
Research interest
Research interests include Ginkgo biloba and Cashew Applications, Liver physiology and pathology, Neurological Disease Mechanisms and Treatments, and Tea Polyphenols and Effects.
h-index
34
citations
3,903
works
188
NIH funding
primary concept
email

Recent publications

Separation and purification of polyprenols from Ginkgo biloba leaves by silver ion anchored on imidazole-based ionic liquid functionalized mesoporous MCM-41 sorbent.
Food Chemistry 2024cited by 37position: middledoi
Extraction, Purification, Structural Characterization, and Antitumor Effects of Water-Soluble Intracellular Polysaccharide (IPSW-1) from <i>Phellinus igniarius</i> Mycelia
Journal of Agricultural and Food Chemistry 2024cited by 12position: lastdoi
Combinative effect of pulsed-light irradiation and solid-state fermentation on ginkgolic acids, ginkgols, ginkgolides, bilobalide, flavonoids, product quality and sensory assessment of Ginkgo biloba dark tea
Food Chemistry 2024cited by 12position: middledoi
Thermal fixation technologies affect phenolic profile, ginkgolides, bilobalide, product quality, and ginkgolic acids in <i>Ginkgo biloba</i> leaf tea
Journal of Food Science 2024cited by 7position: lastdoi
Water-Soluble Intracellular Polysaccharides (IPSW-2 to 4) from Phellinus igniarius Mycelia: Fractionation, Structural Elucidation, and Antioxidant Activity
Foods 2024cited by 7position: lastdoi
Development, Validation, and Application of High-Performance Liquid Chromatography with Diode-Array Detection Method for Simultaneous Determination of Ginkgolic Acids and Ginkgols in <i>Ginkgo biloba</i>.
2024cited by 4position: contributordoi
Water-Soluble Intracellular Polysaccharides (IPSW-2 to 4) from <i>Phellinus igniarius</i> Mycelia: Fractionation, Structural Elucidation, and Antioxidant Activity.
2024cited by 2position: contributordoi
Oxidative stress: Roles in skeletal muscle atrophy
Biochemical Pharmacology 2023cited by 244position: middledoi
Pulsed light irradiation improves degradation of ginkgolic acids and retainment of ginkgo flavonoids and terpene trilactones in Ginkgo biloba leaves
Industrial Crops and Products 2023cited by 22position: middledoi
Effects of processing methods on quality, antioxidant capacity, and cytotoxicity of <i>Ginkgo biloba</i> leaf tea product
Journal of the Science of Food and Agriculture 2023cited by 17position: middledoi
Screening of Ginkgo Individuals with Superior Growth Structural Characteristics in Different Genetic Groups Using Terrestrial Laser Scanning (TLS) Data
Plant Phenomics 2023cited by 8position: middledoi
Effects of processing methods on quality, antioxidant capacity, and cytotoxicity of Ginkgo biloba leaf tea product.
2023cited by 8position: contributordoi
Non-thermal pretreatment affects Ginkgo biloba L. seed's product qualities, sensory, and physicochemical properties.
2022cited by 14position: contributordoi
Process optimization of intermediate-wave infrared drying: Screening by Plackett–Burman; comparison of Box-Behnken and central composite design and evaluation: A case study
Industrial Crops and Products 2021cited by 98position: lastdoi
Effect of pulsed‐vacuum, hot‐air, infrared, and freeze‐drying on drying kinetics, energy efficiency, and physicochemical properties of <scp><i>Ginkgo biloba</i></scp> L. seed
Journal of Food Process Engineering 2021cited by 76position: middledoi
Thermal and non-thermal processing affect Maillard reaction products, flavor, and phytochemical profiles of Ginkgo biloba seed
Food Bioscience 2021cited by 63position: lastdoi
Do non-thermal pretreatments followed by intermediate-wave infrared drying affect toxicity, allergenicity, bioactives, functional groups, and flavor components of Ginkgo biloba seed? A case study
Industrial Crops and Products 2021cited by 53position: lastdoi
Ginkgo biloba L. seed; A comprehensive review of bioactives, toxicants, and processing effects
Industrial Crops and Products 2021cited by 46position: lastdoi
Separation and purification of polyprenols from Ginkgo biloba L. leaves by bulk ionic liquid membrane and optimizing parameters
Industrial Crops and Products 2021cited by 44position: middledoi
Non‐thermal pretreatment affects <i>Ginkgo biloba</i> L. seed's product qualities, sensory, and physicochemical properties
Journal of Food Science 2021cited by 37position: lastdoi
Osmotic, osmovacuum, sonication, and osmosonication pretreatment on the infrared drying of <i>Ginkgo</i> seed slices: Mass transfer, mathematical modeling, drying, and rehydration kinetics and energy consumption
Journal of Food Science 2021cited by 28position: lastdoi
Cholesterol Stabilizes TAZ in Hepatocytes to Promote Experimental Non-alcoholic Steatohepatitis
Cell Metabolism 2020cited by 198position: middledoi
Effect of different drying methods on product quality, bioactive and toxic components of <scp><i>Ginkgo biloba</i></scp> L. seed
Journal of the Science of Food and Agriculture 2020cited by 76position: lastdoi
Optimization of infrared-drying parameters for Ginkgo biloba L. seed and evaluation of product quality and bioactivity
Industrial Crops and Products 2020cited by 74position: middledoi
Drying methods affect organoleptic and physicochemical properties of rehydrated ginkgo seed slices
Industrial Crops and Products 2020cited by 65position: middledoi
Collagen type II suppresses articular chondrocyte hypertrophy and osteoarthritis progression by promoting integrin β1−SMAD1 interaction
Bone Research 2019cited by 224position: middledoi
Melatonin prevents bone destruction in mice with retinoic acid–induced osteoporosis
Molecular Medicine 2019cited by 81position: middledoi
Effect of Alkylresorcinols on Autophagy, Migration, and Invasion of HepG2 Cells
Journal of Food Science 2019cited by 16position: middledoi
Effect of Alkylresorcinols on Autophagy, Migration, and Invasion of HepG2 Cells.
2019cited by 7position: contributordoi
Altered levels of α-melanocyte stimulating hormone in cerebrospinal fluid and plasma of patients with traumatic brain injury
Brain Research 2018cited by 15position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Isaac Duah Boateng · Jiangsu University18 papers (2020–2024)Fengnan Li · Jiangsu University6 papers (2021–2024)Desy Anggraini Soetanto · Jiangsu University4 papers (2021–2024)Weimin Liu · Jiangsu University3 papers (2023–2024)Haile Ma · Jiangsu University2 papers (2014–2015) · 2 papers (2021–2021)Dongsheng Huang · Sun Yat-sen University2 papers (2019–2019)Bo Gao · Harbin Institute of Technology2 papers (2019–2019)Yan Peng · National University of Malaysia2 papers (2019–2019)Anjing Liang · Sun Yat-sen University2 papers (2019–2019)Yuanyuan Li · Hebei Medical University2 papers (2020–2023)Danzhao Guo · Jiangsu University2 papers (2015–2024)Yueying Li · Northeast Normal University2 papers (2014–2015)Hang Zhou · Sun Yat-sen University2 papers (2019–2019)Caixia Xu · Harbin Normal University2 papers (2019–2019)Ya‐Zhou Guo · Jiangsu University2 papers (2019–2024)Xianjian Qiu · Sun Yat-sen University2 papers (2019–2019)Peiqiang Su · Sun Yat-sen University2 papers (2019–2019)Lonny R. Levin · Cornell University1 papers (2020–2020)Utpal B. Pajvani · Columbia University Irving Medical Center1 papers (2020–2020)