Yi-Ming Shi
Chinese Academy of Sciences
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Featured researches published by Yi-Ming Shi.
Organic Letters | 2012
Xiao Luo; Yi-Ming Shi; Rong-Hua Luo; Shi-Hong Luo; Xiao-Nian Li; Rui-Rui Wang; Yong-Tang Zheng; Xue Du; Wei-Lie Xiao; Jian-Xin Pu; Han-Dong Sun
Three unique nortriterpenoids, schilancitrilactones A-C (1-3), were isolated from the stems of Schisandra lancifolia . Compound 1 possesses a 5/5/7/5/5/5-fused hexacyclic ring system with a C(29) backbone, while 2 and 3 feature a C(27) skeleton with a 5/7/5/5/5-fused pentacyclic ring system. Their absolute stereochemistries were established by CD and single-crystal X-ray diffraction experiments. Compound 3 showed anti-HIV-1 activity with an EC(50) value of 27.54 μg/mL, and 1 exhibited antifeedant activity at 15.73 μg/cm(2).
Organic Letters | 2011
Yi-Ming Shi; Xing-Yao Li; Xiao-Nian Li; Xiao Luo; Yongbo Xue; Cheng-Qin Liang; Juan Zou; Ling-Mei Kong; Yan Li; Jian-Xin Pu; Wei-Lie Xiao; Han-Dong Sun
Schicagenins A-C (1-3), three unprecedented nortriterpenoids characterized with a tetracyclic oxa-cage motif and C(9) side chain, were discovered from the leaves and stems of Schisandra chinensis. Their structures were determined on the basis of extensive spectroscopic analysis, and the absolute stereochemistries were established by single-crystal X-ray diffraction and CD experiments. A plausible biosynthetic pathway of 1-3 was also discussed.
Organic Letters | 2012
Juan Zou; Xue Du; Guo Pang; Yi-Ming Shi; Wei-Guang Wang; Rui Zhan; Ling-Mei Kong; Xiao-Nian Li; Yan Li; Jian-Xin Pu; Han-Dong Sun
Ternifolide A (1), a new diterpenoid featuring a unique 10-membered lactone ring formed between C-6 and C-15, along with ternifolide B (2), a nor-diterpenoid, and ternifolide C (3) were isolated from the leaves of Isodon ternifolius. Both H-8 and H-9 being α-orientations in compound 1 were found for the first time. The absolute configurations of 1 and 3 were confirmed by X-ray diffraction study. Compounds 1 and 3 were evaluated for their cytotoxicity.
Organic Letters | 2012
Cheng-Qin Liang; Yi-Ming Shi; Rong-Hua Luo; Xing-Yao Li; Zhong-Hua Gao; Xiao-Nian Li; Liu-Meng Yang; Shan-Zhai Shang; Yan Li; Yong-Tang Zheng; Hong-Bin Zhang; Wei-Lie Xiao; Han-Dong Sun
A pair of new triterpenoid epimers, kadcoccitones A (1) and B (2), together with a new biogenetically related compound kadcoccitone C (3), were isolated from Kadsura coccinea. The epimers featured an unprecedented carbon skeleton with a 6/6/5/5-fused tetracyclic ring system unit and a C(9) side chain. Their structures were determined by spectroscopic data, ECD calculation, and single-crystal X-ray diffraction. Compounds 1 and 3 showed anti-HIV-1 activity with an EC(50) value of 47.91 and 32.66 μg/mL, respectively.
Organic Letters | 2015
Zhengxi Hu; Yi-Ming Shi; Wei-Guang Wang; Xiao-Nian Li; Xue Du; Miao Liu; Yan Li; Yongbo Xue; Yonghui Zhang; Jian-Xin Pu; Han-Dong Sun
Six new lanostane-related triterpenoids, kadcoccinones A-F (1-6), were isolated from Kadsura coccinea. Compound 3 possesses a novel 6/6/9-fused carbocyclic core containing a rare oxabicyclo[4.3.1]decane system. Compounds 4 and 5 are isomers representing the first example of the 18(13 → 12)-abeo-26-norlanostane triterpenoid. The absolute configurations of 1 and 4-6 were defined by X-ray diffraction and experimental ECD spectra, and that of 3 was elucidated by quantum chemical calculations. The plausible biogenetic pathway of 1-6 is postulated.
Organic Letters | 2013
Yi-Ming Shi; Xin‐Bo Wang; Xiao-Nian Li; Xiao Luo; Zi‐Ying Shen; Yi‐Ping Wang; Wei-Lie Xiao; Han-Dong Sun
A new class of highly oxygenated Schisandra nortriterpenoids, lancolides A-D (1-4), from Schisandra lancifolia, represents the first example of natural products that possess a tricyclo[6.3.0.0(2,11)]undecane-bridged system. Their structures were elucidated by NMR spectra, X-ray diffraction, and quantum chemical calculations. Lancolides A (1) and D (4) had specific antiplatelet aggregation induced by platelet-activating factor (PAF).
Journal of Ethnopharmacology | 2015
Yan-Ni Shi; Yi-Ming Shi; Lian Yang; Xing-Cong Li; Jin-Hua Zhao; Yan Qu; Hong-Tao Zhu; Dong Wang; Rong-Rong Cheng; Chong-Ren Yang; Min Xu; Ying-Jun Zhang
ETHNOPHARMACOLOGICAL RELEVANCE Piper wallichii (Miq.) Hand.-Mazz. is a medicinal plant used widely for the treatment of rheumatoid arthritis, inflammatory diseases, cerebral infarction and angina in China. Previous study showed that lignans and neolignans from Piper spp. had potential inhibitory activities on platelet aggregation. In the present study, we investigated the chemical constituents of Piper wallichii and their antithrombotic activities, to support its traditional uses. MATERIALS AND METHODS The methanolic extract of the air-dried stems of Piper wallichii was separated and purified using various chromatographic methods, including semi-preparative HPLC. The chemical structures of the isolates were determined by detailed spectroscopic analysis, and acidic hydrolysis in case of the new glycoside 2. Determination of absolute configurations of the new compound 1 was facilitated by calculated electronic circular dichroism using time-dependent density-functional theory. All compounds were tested for their inhibitory effects on platelet aggregation induced by platelet activating factor (PAF) in rabbits׳ blood model, from which the active ones were further evaluated the in vivo antithrombotic activity in zebrafish model. RESULTS A new neolignan, piperwalliol A (1), and four new aromatic glycosides, piperwalliosides A-D (2-5) were isolated from the stems of Piper wallichii, along with 25 known compounds, including 13 lignans, six aromatic glycosides, two phenylpropyl aldehydes, and four biphenyls. Five known compounds (6-10) showed in vitro antiplatelet aggregation activities. Among them, (-)-syringaresinol (6) was the most active compound with an IC50 value of 0.52 mM. It is noted that in zebrafish model, the known lignan 6 showed good in vivo antithrombotic effect with a value of 37% at a concentration of 30 μM, compared with the positive control aspirin with the inhibitory value of 74% at a concentration of 125μM. CONCLUSION This study demonstrated that lignans, phenylpropanoid and biphenyl found in Piper wallichii may be responsible for antithrombotic effect of the titled plant.
Organic Letters | 2016
Zhengxi Hu; Yi-Ming Shi; Wei-Guang Wang; Jian-Wei Tang; Min Zhou; Xue Du; Yonghui Zhang; Jian-Xin Pu; Han-Dong Sun
Kadcoccinin A (1), a cage-like sesquiterpenoid possessing a tricyclo[4.4.0.0(3,10)]decane scaffold, and the biosynthetically related kadcoccinin B (2) were isolated from the stems of Kadsura coccinea. Their structures and absolute configurations were determined from extensive spectroscopic analysis and quantum chemical calculations. Additionally, their cytotoxic and antifungal effects were initially evaluated, and a plausible biosynthetic pathway was proposed.
Fitoterapia | 2013
Cheng-Qin Liang; Jing Hu; Rong-Hua Luo; Yi-Ming Shi; Shan-Zhai Shang; Zhong-Hua Gao; Rui-Rui Wang; Yong-Tang Zheng; Wen-Yong Xiong; Hong-Bin Zhang; Wei-Lie Xiao; Han-Dong Sun
Six new lignans, schisphenlignans F-K (1-6), together with ten known ones, were isolated from the leaves and stems of Schisandra sphenanthera. Their structures were elucidated on the basis of spectroscopic methods, including extensive NMR, MS and CD spectra. In addition, some compounds were tested for their acute activity on insulin sensitivity in 3T3-L1 differentiated adipocytes and anti-HIV-1 activity.
Natural Product Research | 2015
Yan-Ni Shi; Lian Yang; Jin-Hua Zhao; Yi-Ming Shi; Yan Qu; Hong-Tao Zhu; Dong Wang; Chong-Ren Yang; Xing-Cong Li; Min Xu; Ying-Jun Zhang
Fifteen known compounds including four triterpenoids (1–4), one sterol (5), one diketopiperazine alkaloid (6) and nine phenolics (7–15) were isolated from the stems of Piper wallichii. Their structures were elucidated by means of spectroscopic analysis, and acidic hydrolysis in case of the 2-oxo-3β,19α,23-trihydroxyurs-12-en-28-oic acid β-D-glucopyranosyl ester (1). The structure of compound 1 was fully assigned by 1D and 2D NMR experiments for the first time. All isolates were tested for their antibacterial, antifungal, anti-inflammatory and antiplatelet aggregation bioactivities.