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Baicalin ameliorates insulin resistance and regulates hepatic glucose metabolism via activating insulin signaling pathway in obese pre-diabetic mice Journal article
Miao, Lingchao, Zhang, Xutao, Zhang, Haolin, Cheong, Meng Sam, Chen, Xiaojia, Farag, Mohamed A., CHEANG WAI SAN, Xiao, Jianbo. Baicalin ameliorates insulin resistance and regulates hepatic glucose metabolism via activating insulin signaling pathway in obese pre-diabetic mice[J]. Phytomedicine, 2024, 124, 155296.
Authors:  Miao, Lingchao;  Zhang, Xutao;  Zhang, Haolin;  Cheong, Meng Sam;  Chen, Xiaojia; et al.
Adobe PDF | Favorite | TC[WOS]:6 TC[Scopus]:7  IF:6.7/6.2 | Submit date:2024/01/18
Baicalin  Diabetes Mellitus  Obesity  Insulin Resistance  Glucose Metabolism  
Portulaca Oleracea L. (Purslane) Extract Protects Endothelial Function by Reducing Endoplasmic Reticulum Stress and Oxidative Stress through AMPK Activation in Diabetic Obese Mice Journal article
Miao, Lingchao, Zhou, Chunxiu, Zhang, Haolin, Cheong, Meng Sam, Tan, Yi, Wang, Yuehan, Zhang, Xutao, Yu, Hua, Cheang, Wai San. Portulaca Oleracea L. (Purslane) Extract Protects Endothelial Function by Reducing Endoplasmic Reticulum Stress and Oxidative Stress through AMPK Activation in Diabetic Obese Mice[J]. Antioxidants, 2023, 12(12), 2132.
Authors:  Miao, Lingchao;  Zhou, Chunxiu;  Zhang, Haolin;  Cheong, Meng Sam;  Tan, Yi; et al.
Favorite | TC[WOS]:1 TC[Scopus]:1  IF:6.0/6.7 | Submit date:2024/01/02
Diabetes Mellitus  Endoplasmic Reticulum Stress  Endothelial Function  Nitric Oxide  Purslane  Reactive Oxygen Species  
Anti-diabetic potential of apigenin, luteolin, and baicalein via partially activating PI3K/Akt/Glut-4 signaling pathways in insulin-resistant HepG2 cells Journal article
Miao, Lingchao, Zhang, Haolin, Cheong, Meng Sam, Zhong Ruting, Garcia-Oliveira, Paula, Prieto, Miguel A, Cheng, Ka-Wing, Wang, Mingfu, Cao, Hui, Nie, Shaoping, Simal-Gandara, Jesus, Cheang, Wai San, Xiao, Jianbo. Anti-diabetic potential of apigenin, luteolin, and baicalein via partially activating PI3K/Akt/Glut-4 signaling pathways in insulin-resistant HepG2 cells[J]. Food Science and Human Wellness, 2023, 12(6), 1991-2000.
Authors:  Miao, Lingchao;  Zhang, Haolin;  Cheong, Meng Sam;  Zhong Ruting;  Garcia-Oliveira, Paula; et al.
Favorite | TC[WOS]:23 TC[Scopus]:21  IF:5.6/6.8 | Submit date:2022/08/11
Apigenin  Luteolin  Baicalein  Insulin-resistant Hepg2 Cells  Signaling Pathway  Reactive Oxygen Species (Ros)  Advanced Glycation End-products (Ages)  Glycogen Synthase Kinase (Gsk-3β)  Glucose Transporter Protein 4 (Glut4)  
Apigenin alleviates diabetic endothelial dysfunction through activating AMPK/PI3K/Akt/eNOS and Nrf2/HO-1 signaling pathways Journal article
Miao, Lingchao, Cheong, Meng Sam, Zhou, Chunxiu, Farag, Mohamed, Cheang, Wai San, Xiao, Jianbo. Apigenin alleviates diabetic endothelial dysfunction through activating AMPK/PI3K/Akt/eNOS and Nrf2/HO-1 signaling pathways[J]. Food Frontiers, 2023, 4(1), 420-431.
Authors:  Miao, Lingchao;  Cheong, Meng Sam;  Zhou, Chunxiu;  Farag, Mohamed;  Cheang, Wai San; et al.
Favorite | TC[WOS]:5 TC[Scopus]:6 | Submit date:2022/12/23
Apigenin  Diabetes Mellitus  Endothelial Dysfunction  Nitric Oxide  Asoprotection  
Citri Reticulatae Pericarpium extract and flavonoids reduce inflammation in RAW 264.7 macrophages by inactivation of MAPK and NF-κB pathways Journal article
Zhang, Xutao, Zhou, Yan, Cheong, Meng Sam, Khan, Haroon, Ruan, C.C., Fu, Manqin, Xiao, Jianbo, Cheang, Wai San. Citri Reticulatae Pericarpium extract and flavonoids reduce inflammation in RAW 264.7 macrophages by inactivation of MAPK and NF-κB pathways[J]. Food Frontiers, 2022, 3(4), 785-795.
Authors:  Zhang, Xutao;  Zhou, Yan;  Cheong, Meng Sam;  Khan, Haroon;  Ruan, C.C.; et al.
Favorite | TC[WOS]:29 TC[Scopus]:30  IF:3.5/3.9 | Submit date:2022/08/11
Anti-inflammation  Citri Reticulatae Pericarpium  Lipopolysaccharide  Macrophages  Mapk  Nf-κb  Inflammation  
Apigenin Relieves Diabetes Endothelial Dysfunction through Activating PI3K/Akt/AMPK/eNOS and Nrf2/HO-1 Signaling Pathways Conference paper
Miao, Lingchao, Zhou, Chunxiu, Cheong, Meng Sam, Xiao, Jianbo, CHEANG WAI SAN. Apigenin Relieves Diabetes Endothelial Dysfunction through Activating PI3K/Akt/AMPK/eNOS and Nrf2/HO-1 Signaling Pathways[C], 2022.
Authors:  Miao, Lingchao;  Zhou, Chunxiu;  Cheong, Meng Sam;  Xiao, Jianbo;  CHEANG WAI SAN
Favorite |  | Submit date:2024/04/02
AMPK activation mediates vasoprotective effects of Portulaca oleracea L. in diabetes Presentation
会议地点: Hangzhou, China, 会议日期: 2022-08-07, 报告日期: 2022-08-07
Authors:  CHEANG WAI SAN;  Miao, Lingchao;  Zhou, Chunxiu;  Cheong, Meng Sam
Favorite |  | Submit date:2024/04/02
Changes of volatile substance composition during processing of nine-processed tangerine peel (Jiuzhi Chenpi) determined by gas chromatography-ion mobility spectrometry Journal article
Fu, Manqin, Wang, Yuehan, Yu, Yuanshan, Wen, Jing, Cheong, Meng Sam, Cheang, Wai San, Wu, Jijun. Changes of volatile substance composition during processing of nine-processed tangerine peel (Jiuzhi Chenpi) determined by gas chromatography-ion mobility spectrometry[J]. Frontiers in Nutrition, 2022, 9(963655).
Authors:  Fu, Manqin;  Wang, Yuehan;  Yu, Yuanshan;  Wen, Jing;  Cheong, Meng Sam; et al.
Favorite | TC[WOS]:3 TC[Scopus]:3  IF:4.0/4.4 | Submit date:2022/08/11
Nine-processed Tangerine Peel  Terpenes  Volatile Components  Gc-ims  Food Processing  
Roles of Reactive Oxygen Species in Vascular Complications of Diabetes: Therapeutic Properties of Medicinal Plants and Food Journal article
Tan, Yi, Cheong, Meng Sam, Cheang, Wai San. Roles of Reactive Oxygen Species in Vascular Complications of Diabetes: Therapeutic Properties of Medicinal Plants and Food[J]. Oxygen, 2022, 2(3), 246-268.
Authors:  Tan, Yi;  Cheong, Meng Sam;  Cheang, Wai San
Adobe PDF | Favorite |  | Submit date:2022/07/03
Apigenin ameliorates endothelial dysfunction and oxidative stress in diabetes by activating PI3K/AKT pathway Conference paper
Miao, Lingchao, Zhou, Chunxiu, Cheong, Meng Sam, Tan, Yi, Xiao, Jianbo, Cheang, Wai San. Apigenin ameliorates endothelial dysfunction and oxidative stress in diabetes by activating PI3K/AKT pathway[C]:Wolters Kluwer, 2021, S99-S100.
Authors:  Miao, Lingchao;  Zhou, Chunxiu;  Cheong, Meng Sam;  Tan, Yi;  Xiao, Jianbo; et al.
Favorite |  | Submit date:2022/08/11