1.Application of DNA molecular marker technologies in study of medicinal Physalis species.
Shang-Guo FENG ; Yu-Jia ZHU ; Kai-Li JIAO ; Chen-Jia SHEN ; Qi-Cai YING ; Hui-Zhong WANG
China Journal of Chinese Materia Medica 2018;43(4):672-675
As traditional Chinese medicinal herbs, Physalis plants have a variety of pharmacological activities, such as anti-inflammatory, anti-oxidant, and anti-cancer effects, and have been used for the treatment of malaria, rheumatism, hepatitis, asthma, and cancer. In addition to the medicinal value, many Physalis species are also the high-grade nutrition health care fruits, can be made canned and candied etc. In the study, the application progress of DNA molecular marker technologies in medicinal Physalis plants in recent years was reviewed, in order to provide an important molecular technical basis for the identification, classification and rational development and protection of medicinal Physalis resources.
DNA, Plant
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genetics
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Genetic Markers
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Physalis
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genetics
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Plants, Medicinal
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genetics
2.Chemical constituents of Physalis minima.
Li-Sha CHAI ; Guo-Sheng LIU ; Yu-Xun ZHU ; Shang-Yi WANG ; Cheng-Shuo YANG ; Yong LI
China Journal of Chinese Materia Medica 2021;46(15):3865-3872
Fifteen compounds(1-15) were isolated from the 95% EtOH extract of the whole herb of Physalis minima by various chromatography techniques including silica gel, Sephadex LH-20, middle chromatogram isolated gel(MCI), octadecyl silica(ODS), and semi-preparative high performance liquid chromatography(HPLC). Their structures were elucidated by infrared spectroscopy(IR), ultraviolet spectroscopy(UV), high-resolution electrospray ionization mass spectrometry(HR-ESI-MS), nuclear magnetic re-sonance(NMR), and circular dichroism(CD) as(5S)-5,11-dihydroxy-3-methyl-5-pentylfuran-2(5H)-one(1), withaphysalin R(2), withaphysalin Q(3), withaphysanolide A(4), phaseic acid(5), grasshopper ketone(6), 3S,5R-dihydroxy-6S,7-megastigmadien-9-one(7), vanillic acid(8), 2-trans,4-trans-abscisic acid(9), capillasterolide(10), 5,3'-dihydroxy-3,7,4'-trimethoxyflavone(11),(-)-loliolide(12), 4-hydroxyacetophenone(13), acetosyringone(14), and aurantiamide acetate(15). Compound 1 was a new butenolide, and compounds 5-7 and 10-12 were isolated from the Physalis for the first time. Compounds 4, 13, and 15 were isolated for the first time from P. minima. Moreover, their anti-inflammatory activity was evaluated in vitro. Compound 12 was found to possess an inhibitory effect on the transcription of an NF-κB-dependent reporter gene in LPS-induced 293 T/NF-κB-luc cells at 10 μmol·L~(-1), showing an inhibitory rate of 62.31%±4.8%.
Anti-Inflammatory Agents
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Chromatography, High Pressure Liquid
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NF-kappa B
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Physalis
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Spectrometry, Mass, Electrospray Ionization
3.Asymptomatic Right Coronary Artery-to-Pulmonary Artery Fistula Incidentally Detected by Transthoracic Echocardiography.
Woo Hyun LIM ; Si Hyuck KANG ; Kihyun JEON ; Iksung CHO ; Kyung Hee KIM ; Sung Wook HWANG ; Hyung Kwan KIM ; Dae Won SOHN
Journal of Cardiovascular Ultrasound 2009;17(3):106-109
In this case report, we describe a 71-year-old woman with right conal coronary artery-to-pulmonary trunk fistula. She visited the outpatient clinic of the nephrology department for long-term management of renal dysfunction. On transthoracic echocardiography (TTE) conducted as a part of cardiac evaluation, an abnormal Doppler color flow taking a course toward echocardiographic probe was incidentally detected outside the main pulmonary trunk, giving an impression of congenital coronary arteriovenous (AV) fistula. Computed tomography coronary angiography confirmed the presence of congenital coronary AV fistula from a conal branch of the right coronary artery to the main pulmonary trunk in the form of a ground cherry. Although the direction of Doppler color flow is not usual (i.e. toward, not away from, echocardiographic probe) in this case, congenital coronary AV fistula should be in the first priority among potential diagnoses when an abnormal Doppler color flow was found near the main pulmonary trunk on TTE.
Aged
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Ambulatory Care Facilities
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Arteries
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Arteriovenous Fistula
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Coronary Angiography
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Coronary Vessel Anomalies
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Coronary Vessels
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Echocardiography
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Female
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Fistula
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Humans
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Nephrology
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Physalis
4.Chemical constituents of Physalis pubescens.
Li-ping LUO ; Fan-qin CHENG ; Long JI ; He-yong YU
China Journal of Chinese Materia Medica 2015;40(22):4424-4427
Chemical constituents of 95% ethanol extract of the dried persistent calyx of Physalis pubescens were investigated. By chromatography on a silica gel column and reverse-phase preparative HPLC, 10 compounds were isolated from the dichloromethane fraction. Based on the MS and 1D/2D NMR data, these compounds were identified as 5-O-(E-feruloyl) blumenol (1), isovanillin (2), (E) -ethyl 3-(4-hydroxyphenyl) acrylate (3), 4-hydroxybenzaldehyde(4), 4-methylphenol (5), (E) -methyl cinnamate (6), 7,3',4' trimethoxyquercetin (7), 5,3', 5'-trihydroxy-3,7,4'-trimethoxyflavone(8), danielone (9), and 5,5'-diisobutoxy-2,2'-bifuran (10).
Chromatography, High Pressure Liquid
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Drugs, Chinese Herbal
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chemistry
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isolation & purification
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Molecular Structure
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Physalis
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chemistry
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Spectrometry, Mass, Electrospray Ionization
5.Withaminimas A-F, six withanolides with potential anti-inflammatory activity from Physalis minima.
Shan-Shan WEI ; Cai-Yun GAO ; Rui-Jun LI ; Ling-Yi KONG ; Jun LUO
Chinese Journal of Natural Medicines (English Ed.) 2019;17(6):469-474
Withaminimas A-F (1-6), six new withaphysalin-type withanolides were isolated from the aerial parts of Physalis minima L.. The structures of these compounds were elucidated through a variety of spectroscopic techniques including HR-MS, NMR, and ECD. Compound 1 belongs to rare 18-norwithanolides, and 2-3 were 13/14-secowithanolides. According to the traditional usage of P. minima, inhibitory effects on nitric oxide (NO) production in lipopolysaccaride-activated RAW264.7 macrophages were evaluated, and compounds 1-4 exhibited significant inhibitory effects with IC values among 3.91-18.46 μmol·L.
Animals
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Anti-Inflammatory Agents
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chemistry
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pharmacology
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Drugs, Chinese Herbal
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chemistry
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pharmacology
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Lipopolysaccharides
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pharmacology
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Macrophages
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drug effects
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immunology
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Mice
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Molecular Structure
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Physalis
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chemistry
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RAW 264.7 Cells
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Structure-Activity Relationship
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Withanolides
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chemistry
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pharmacology