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Compounds Isolated from Wikstroemia taiwanensis Regulate Bone Remodeling by Modulating Osteoblast and Osteoclast Activities
Zuha Imtiyaz, Yi Tzu Lin, Fang Yu Liang, Wen Fei Chiou,
Mei Hsien Lee
藥學院
生藥學研究所
臺北醫學大學附設醫院
研究成果
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同行評審
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引文 斯高帕斯(Scopus)
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Medicine and Dentistry
Osteoplasty
100%
Osteoblast
100%
Osteoclast Activity
100%
Osteoclast
66%
Osteoporosis
50%
Acid Phosphatase Tartrate Resistant Isoenzyme
33%
Receptor
16%
Ossification
16%
Physiological Process
16%
Nuclear Factor
16%
Alternative Complement Pathway C3 C5 Convertase
16%
Kaempferol
16%
Bone Mass
16%
Bone Strength
16%
Glucopyranoside
16%
Osteolysis
16%
Alkaline Phosphatase
16%
Astragalin
16%
Biochemistry, Genetics and Molecular Biology
Osteoblast
100%
Bone Remodeling
100%
Osteoclast Activity
100%
Wikstroemia
100%
Osteoclast
66%
Tartrate-Resistant Acid Phosphatase
33%
Physiological Process
16%
Kaempferol
16%
Ossification
16%
Bone Mass
16%
Eicosanoid Receptor
16%
Complement Factor B
16%
Alkaline Phosphatase
16%
Osteolysis
16%
Bone Strength
16%
Pharmacology, Toxicology and Pharmaceutical Science
Acid Phosphatase Tartrate Resistant Isoenzyme
100%
Wikstroemia
100%
Alternative Complement Pathway C3 C5 Convertase
50%
Nuclear Factor
50%
Receptor
50%
Kaempferol
50%
Glucopyranoside
50%
Astragalin
50%
Alkaline Phosphatase
50%