Zobrazeno 1 - 10
of 19
pro vyhledávání: '"Ming Shan Zheng"'
Autor:
Ming Shan Zheng, Da Lei Yao, Mei Jin, Chang Hao Zhang, Jong Keun Son, Jie Luo, Jiong Mo Cui, Gao Li
Publikováno v:
Archives of Pharmacal Research. 38:480-484
Two new (1 and 3) and two known diarylheptanoids (2 and 4), along with two tetralones (5 and 6), one naphthoquinone (7), four phenylpropanoids (8-11), and one phenol (12) were isolated from the leaves of Juglans mandshurica. Their structures were elu
Autor:
Hyung Chul Choi, Jae-Ryong Kim, Suk Hwan Baek, So-Young Park, Hwa Young Kim, Hyo Hyun Yang, Jung Hee Cho, Kyoung Hwangbo, Jong-Keun Son, Ming Shan Zheng
Publikováno v:
Archives of Pharmacal Research. 37:1219-1233
Cellular senescence is known to contribute to tissue aging, a variety of age-related diseases, tissue regeneration, and cancer. Therefore, aging intervention might be useful for prevention of aging as well as age-related disease. In this study, we in
Autor:
Kyoung Hwangbo, Suk Hwan Baek, Jong-Keun Son, Jae-Ryong Kim, Hyung Chul Choi, Hwa Young Kim, So-Young Park, Hyo Hyun Yang, Ming Shan Zheng
Publikováno v:
Journal of Natural Medicines. 68:473-480
Cellular senescence contributes to tissue and organismal aging, tumor suppression and progress, tissue repair and regeneration, and age-related diseases. Thus, aging intervention might be a promising target for treatment and prevention of diverse age
Autor:
Haiyan Zhang, Mohammed Hosny, Mi-Hee Woo, Hyun-Wook Chang, Jong-Keun Son, Sunny Kyung-Seon Lee, Ming-Shan Zheng
Publikováno v:
Archives of Pharmacal Research. 37:698-705
Extensive chromatographic separation of the n-BuOH soluble fraction obtained from the stem and root barks of U. davidiana resulted in five hitherto unknown compounds together with a known one (-)-catechin 1. Structures of the five compounds were eluc
Autor:
Chang Seob Seo, Ju Young Park, Ying Li, Jin Ah Ryuk, Mi-Young Lee, Jong Keun Son, Seung Ho Lee, Hye Won Lee, Dong Cheul Moon, Ming Shan Zheng, Je-Hyun Lee, Byoung Seob Ko
Publikováno v:
Archives of Pharmacal Research. 35:1045-1054
Phellodendri Cortex is the bark of the stems of Phellodendron amurense Ruprecht or P. chinense Schneider (Rutaceae), which is orginated from periderm. The internal transcribed spacer sequences of 20 originated plants and identified samples were analy
Autor:
Ming Shan Zheng, Hyun-Wook Chang, Yeun-Kyung Lee, Sang Hyun Kwak, Gao Li, Ying Li, Hong-Beom Bae, Dong-Keun Song, Jae-Ryong Kim, Jong-Keun Son, Chang-Seob Seo, Jun-Sub Jung
Publikováno v:
Archives of Pharmacal Research. 34:1443-1450
In the course of isolating preventive agents against sepsis based on the in vivo assay model, eleven known compounds, (-)-catechin (1), catechin-7-O-β-apiofuranoside (2), catechin-7-O-α-Lrhamnopyranoside (3), catechin-3-O-α-L-rhamnopyranoside (4),
Publikováno v:
Biomolecules and Therapeutics. 18:321-328
- Twenty six compounds (1-26) were isolated from the root barks of Ulmus davidiana var. japonica . The anti-inflammatory activity of the isolated compounds were evaluated against the generation of inflammatory chemical mediators in bone marrow-deri
Autor:
Yurngdong Jahng, Seung Ho Lee, Yeon-Kyong Lee, Eung-Seok Lee, Jong-Keun Son, Byeong-Seon Jeong, Chong-Soon Lee, Hyeun-Wook Chang, Mi-Hee Woo, Ming Shan Zheng, Ming-Lu Xu, Dong-Cheol Moon
Publikováno v:
Archives of Pharmacal Research. 29:946-951
One new stilbene glucoside (6), along with five known compounds (1-5), were isolated from the roots of Polygonum multiflorum Thumb., and their chemical structures established based on physicochemical and spectroscopic data. Of the compounds, compound
Publikováno v:
Bulletin of the Korean Chemical Society. 30:716-718
H COSY spectrum indicated coupling between the oxygenated methine at δ 4.25 (H-7) and the methine signal at δ 1.75 (H-8), which was also coupled to the methyl signal at δ 0.54 (H-9). On the other hand, the methine signal at δ 2.39 (H-8′) was co
Autor:
Ming Shan Zheng, Kyoung Hwangbo, Jung Hee Cho, So-Young Park, Hwa Young Kim, Hyo Hyun Yang, Jae-Ryong Kim, Jong-Keun Son, Hyung Chul Choi, Suk Hwan Baek
Publikováno v:
Archives of pharmacal research. 38(5)
Cellular senescence influences tumor suppression and progress, tissue repair and regeneration, tissue and organismal aging, and age-related diseases. Aging intervention might be an advantageous target for prevention and treatment of diverse age-relat