1.A multicenter study of neonatal stroke in Shenzhen,China
Li-Xiu SHI ; Jin-Xing FENG ; Yan-Fang WEI ; Xin-Ru LU ; Yu-Xi ZHANG ; Lin-Ying YANG ; Sheng-Nan HE ; Pei-Juan CHEN ; Jing HAN ; Cheng CHEN ; Hui-Ying TU ; Zhang-Bin YU ; Jin-Jie HUANG ; Shu-Juan ZENG ; Wan-Ling CHEN ; Ying LIU ; Yan-Ping GUO ; Jiao-Yu MAO ; Xiao-Dong LI ; Qian-Shen ZHANG ; Zhi-Li XIE ; Mei-Ying HUANG ; Kun-Shan YAN ; Er-Ya YING ; Jun CHEN ; Yan-Rong WANG ; Ya-Ping LIU ; Bo SONG ; Hua-Yan LIU ; Xiao-Dong XIAO ; Hong TANG ; Yu-Na WANG ; Yin-Sha CAI ; Qi LONG ; Han-Qiang XU ; Hui-Zhan WANG ; Qian SUN ; Fang HAN ; Rui-Biao ZHANG ; Chuan-Zhong YANG ; Lei DOU ; Hui-Ju SHI ; Rui WANG ; Ping JIANG ; Shenzhen Neonatal Data Network
Chinese Journal of Contemporary Pediatrics 2024;26(5):450-455
Objective To investigate the incidence rate,clinical characteristics,and prognosis of neonatal stroke in Shenzhen,China.Methods Led by Shenzhen Children's Hospital,the Shenzhen Neonatal Data Collaboration Network organized 21 institutions to collect 36 cases of neonatal stroke from January 2020 to December 2022.The incidence,clinical characteristics,treatment,and prognosis of neonatal stroke in Shenzhen were analyzed.Results The incidence rate of neonatal stroke in 21 hospitals from 2020 to 2022 was 1/15 137,1/6 060,and 1/7 704,respectively.Ischemic stroke accounted for 75%(27/36);boys accounted for 64%(23/36).Among the 36 neonates,31(86%)had disease onset within 3 days after birth,and 19(53%)had convulsion as the initial presentation.Cerebral MRI showed that 22 neonates(61%)had left cerebral infarction and 13(36%)had basal ganglia infarction.Magnetic resonance angiography was performed for 12 neonates,among whom 9(75%)had involvement of the middle cerebral artery.Electroencephalography was performed for 29 neonates,with sharp waves in 21 neonates(72%)and seizures in 10 neonates(34%).Symptomatic/supportive treatment varied across different hospitals.Neonatal Behavioral Neurological Assessment was performed for 12 neonates(33%,12/36),with a mean score of(32±4)points.The prognosis of 27 neonates was followed up to around 12 months of age,with 44%(12/27)of the neonates having a good prognosis.Conclusions Ischemic stroke is the main type of neonatal stroke,often with convulsions as the initial presentation,involvement of the middle cerebral artery,sharp waves on electroencephalography,and a relatively low neurodevelopment score.Symptomatic/supportive treatment is the main treatment method,and some neonates tend to have a poor prognosis.
2.Chemical constituents and their α-glucosidase inhibitory activities of seeds of Moringa oleifera.
Liang CHEN ; Yin-Zhi CEN ; Yang-Li TU ; Xiang-Jie DAI ; Yong-Jun LI ; Xiao-Sheng YANG ; Lin-Zhen LI
China Journal of Chinese Materia Medica 2023;48(17):4686-4692
The chemical constituents of the seeds of Moringa oleifera were isolated and purified by using Sephadex LH-20, Toyo-pearl HW-40F, silica gel, ODS, and MCI column chromatography. The structures of compounds were identified by high-resolution mass spectrometry, ~1H-NMR, ~(13)C-NMR, HMQC, HMBC, and ~1H-~1H COSY, as well as physicochemical properties of compounds and literature data. Twelve compounds were isolated from 30% ethanol fraction of the seeds of M. oleifera and identified as ethyl-4-O-α-L-rhamnosyl-α-L-rhamnoside(1), ethyl-3-O-α-L-rhamnosyl-α-L-rhamnoside(2),(4-hydroxybenzyl)ethyl carbamate(3),(4-aminophenyl)acetic acid(4), ethyl-α-L-rhamnoside(5), methyl-α-L-rhamnoside(6), moringapyranosyl(7), 2-[4-(α-L-rhamnosyl)phenyl]methyl acetate(8), niaziridin(9), 5-hydroxymethyl furfural(10), 4-hydroxybenzeneacetamide(11), and 4-hydroxybenzoic acid(12). Among them, compounds 1 and 2 are two new compounds, compound 3 is a new natural product, and compounds 4-5 were yielded from Moringa plant for the first time. All compounds were evaluated for α-glucosidase inhibitory activity in vitro. Compound 10 showed excellent inhibitory activity with IC_(50) of 210 μg·mL~(-1).
Moringa oleifera/chemistry*
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alpha-Glucosidases
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Moringa
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Seeds
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Plant Extracts/pharmacology*
3. Effects of SIRT1 on morphine-induced conditioned place preference in rats through CREB/BDNF pathway
Ben LIU ; Wan-Yu TU ; Teng-Teng ZHANG ; Shan-Yong YI ; Guo-Sheng LUO ; Wen-Ge JIA ; Chen-Chen LI ; Bin ZHAO ; Lai WEI ; Zhi-Jun YAO ; Ying ZHAO
Chinese Pharmacological Bulletin 2023;39(7):1263-1270
Aim To investigate the effect of microinjection of EX527, a selective SIRT1 antagonist, into the ventrolateral orbital cortex (VLO) on morphine-induced conditioned place preference (CPP), and to explore the role of CREB/BDNF in it. Methods The cannulas were implanted bilaterally in the VLO of rats by brain stereotaxis surgery, and the model of morphine-induced CPP was established. The behavioral experiment consisted of four stages:habituation (d 1), pre-test (d 2-4), conditioning training (d 5-14) and test (d 15). At the stage of conditioning training, EX527 (1 μL, 5 g·L
4.Condensed tannins from roots of Indigofera stachyodes.
Yun-Feng ZHANG ; Zhi-Xiang ZHU ; Wen-Xuan WANG ; Hang ZHANG ; Li LIU ; Shi-Lin ZHANG ; Yun-Fang ZHAO ; Yue-Lin SONG ; Jiao ZHENG ; Peng-Fei TU ; Hui-Xia HUO ; Jun LI
China Journal of Chinese Materia Medica 2021;46(16):4131-4138
Eleven condensed tannins were isolated from the roots of Indigofera stachyodes by various column chromatography techniques including silica gel, octadecyl silica(ODS), Sephadex LH-20, and semi-preparative high performance liquid chromatography(HPLC). These compounds were identified on the basis of physicochemical properties, nuclear magnetic resonance(NMR) and mass spectrometry(MS) data as stachyotannin A(1), epicatechin-(2β→O→7,4β→8)-epiafzelechin-(4β→8)-catechin(2), cinnamtannin D1(3), cinnamtannin B1(4), epicatechin-(2β→O→7,4β→8)-epiafzelechin-(4α→8)-epicatechin(5), gambiriin C(6), proanthocyanidin A1(7), proanthocyanidin A2(8), aesculitannin B(9), proanthocyanidin A4(10), and procyanidin B5(11). Compound 1 is a new compound. Compounds 2-11 were isolated from Indigofera for the first time. Furthermore, compounds 1, 2, and 4-11 showed inhibitory effects on thrombin-induced ATP release in platelets.
Chromatography, High Pressure Liquid
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Indigofera
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Magnetic Resonance Spectroscopy
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Plant Extracts
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Proanthocyanidins
5.Research progress on effective components of Chinese materia medica in regulating autophagy.
Jun-Qi WANG ; Ge SHA-SHA ; Ming-Shuo ZHANG ; Bin WANG ; Tu YA ; Xiu-Lan HUANG ; Li ZHI-YONG
China Journal of Chinese Materia Medica 2020;45(22):5429-5437
Autophagy is a highly conservative and multi-component activated energy metabolism and self-renewal mechanism, which plays a crucial regulatory role in maintaining the normal physiological state of cells and is involved in various pathological processes. In recent years, the mechanism study has made great progress in regulating autophagy with effective components of Chinese materia medica(CMM),which are reported to prevent and treat cancers, neurodegenerative diseases, cardiovascular diseases and metabolic and immune-related diseases. This review outlines the molecular regulation mechanisms of cell autophagy with CMM components in controlling the above-mentioned diseases. There are many relevant reports on the regulatory mechanisms of autophagy in tumor and cardiovascular cells with CMM monomers. The main chemical structural types are alkaloids, saponins, polyphenols, flavonoids and terpenes. And m-TOR pathway is the main mechanism relating to the regulatory mechanisms of autophagy with CMM. Therefore, the regulatory mec-hanisms of cell autophagy become a new research targeting strategy of therapies with CMM. This review provides evidences for the effectiveness and scientificity of CMM in regulating autophagy, in the expectation of providing references for the in-depth studies of CMM in the field of autophagy and the development of natural autophagy regulators.
Asian Continental Ancestry Group
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Autophagy
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Drugs, Chinese Herbal/pharmacology*
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Humans
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Materia Medica
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Medicine, Chinese Traditional
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Saponins
6.A new nor-sesquiterpene glycoside from Corydalis edulis.
Zhi-Tian PENG ; Ling-Hui CHAO ; Chao-Chao WANG ; Hui XIA ; Di-Fa LIU ; Zhang-Wei WANG ; Jiao ZHENG ; Yun-Fang ZHAO ; Peng-Fei TU ; Jun LI
China Journal of Chinese Materia Medica 2020;45(3):579-583
This study is to investigate the chemical constituents from the whole plant Corydalis edulis. The chemical constituents were separated and purified by macroporous resin D101, silica gel, Sephadex LH-20, ODS, and semi-preparative HPLC. Their structures were determined by physicochemical properties and spectroscopic data. Four compounds were isolated from the dichloromethane and water extracts of the whole plant C. edulis, and identified as 6'-β-D-xylosylicariside B2(1),(3S,5R,6S,7E)-5,6-epoxy-3-hydroxy-7-megastigmen-9-one(2), loliolide(3), and 5,5'-dimethoxybiphenyl-2,2'-diol(4), respectively. Compound 1 is a new compound, of which the absolute configuration was established by electronic circular dichroism(ECD) calculations. Compound 4 is obtained from the plants of Papaveraceae family for the first time. Compounds 2 and 3 are firstly isolated from the Corydalis genus.
Chromatography, High Pressure Liquid
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Corydalis/chemistry*
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Glycosides/isolation & purification*
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Molecular Structure
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Phytochemicals/isolation & purification*
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Sesquiterpenes/isolation & purification*
7.The molecular mechanism of the effect of benzoα pyrene on autophagy of molecular chaperones under simulated hypoxia
Fan YANG ; Nan LIN ; Sha-sha ZHANG ; Meng-di ZHANG ; Yu-xia HU ; Tu-ya BAI ; Xiao-li LÜ ; Jun LI ; Zhi-bin XIAO ; Tuo-ya AO-DUN ; Fu-hou CHANG
Acta Pharmaceutica Sinica 2020;55(11):2665-2673
In this study, the effect of benzo[
8.Anti-cyclic citrullinated peptide antibody predicts the development of rheumatoid arthritis in patients with undifferentiated arthritis
Li CHUN ; Zhang YAN ; Song HUI ; Gao JIE ; Zhao DONG-BAO ; Zhu QI ; He DONG-YI ; Wang LI ; Li XIANG-PEI ; Liu XU-DONG ; Xiao WEI-GUO ; Wu XIN-YU ; Wu HUA-XIANG ; Tu WEI ; Hu SHAO-XIAN ; Wang XIN ; Li ZHI-JUN ; Lu ZHI-MIN ; Da ZHAN-YUN ; Liang BO ; Liu XIAO-MIN ; Zhao JIN-WEI ; Li LING ; Han FENG ; Qi WU-FANG ; Wei WEI ; Ma XU ; Li ZHEN-BIN ; Zheng GUI-MIN ; Zhang FENG-XIAO ; Li YI ; Wang YOU-LIAN ; Ling GUANG-HUI ; Chen JIN-WEI ; Hou XIAO-QIANG ; Zhang JING ; Chen QING-PING ; Liu CHANG-LIAN ; Zhang YAN ; Zeng JIA-SHUN ; Zou QING-HUA ; Fang YONG-FEI ; Su YIN ; Li ZHAN-GUO
Chinese Medical Journal 2019;132(24):2899-2904
Background:Clinical outcomes of undifferentiated arthritis (UA) are diverse,and only 40 % of patients with UA develop rheumatoid arthritis (RA) after 3 years.Discovering predictive markers at disease onset for further intervention is critical.Therefore,our objective was to analyze the clinical outcomes of UA and ascertain the predictors for RA development.Methods:We performed a prospective,multi-center study from January 2013 to October 2016 among Chinese patients diagnosed with UA in 22 tertiary-care hospitals.Clinical and serological parameters were obtained at recruitment.Follow-up was undertaken in all patients every 12 weeks for 2 years.Predictive factors of disease progression were identified using multivariate Cox proportional hazards regression.Results:A total of 234 patients were recruited in this study,and 17 (7.3%) patients failed to follow up during the study.Among the 217 patients who completed the study,83 (38.2%) patients went into remission.UA patients who developed RA had a higher rheumatoid factor (RF)-positivity (42.9% vs.16.8%,x2=8.228,P=0.008),anti-cyclic citrullinated peptide (CCP) antibodypositivity (66.7% vs.10.7%,x2 =43.897,P < 0.001),and double-positivity rate of RF and anti-CCP antibody (38.1% vs.4.1%,x2 =32.131,P < 0.001) than those who did not.Anti-CCP antibody but not RF was an independent predictor for RA development (hazard ratio 18.017,95% confidence interval:5.803-55.938;P < 0.001).Conclusion:As an independent predictor of RA,anti-CCP antibody should be tested at disease onset in all patients with UA.
9.Effects of NO on T lymphocyte subsets in peripheral blood of spontaneously hypertensive rats
wang Tu SHEN ; ya Li SHAN ; shi Xiu YU ; Min PENG ; Xin NI ; Li LI ; qiang Jun SI ; zhi Xin LI ; tao Ke MA
Journal of Xi'an Jiaotong University(Medical Sciences) 2018;39(1):26-30
Objective To investigate whether NO can relieve hypertensive cerebrovascular and renal injury by regulating the ratio of peripheral blood T lymphocyte subsets and reducing proinflammatory cytokine release . Methods Twelve-week SHR and WKY rats were randomly divided into three groups :WKY group ,SHR group and SHR+NO intervention group ,with 6 rats in each group .Rats in SHR+ NO intervention group were injected intraperitoneally with sodium nitroprusside according to 10 μg/(kg · d) for 4 weeks ,while WKY group and SHR group were injected intraperitoneally with an equal amount of saline for 4 weeks .After measuring the tail artery blood pressure ,basilar artery and renal pathological changes were observed by HE staining ;the rates of CD4+ /CD8+ and CD4+ CD25+ T cells were detected by flow cytometry ;and the expression of TNF-α was detected by ELISA .Results The expressions of CD4+ /CD8+ and TNF-αin SHR group were significantly higher than those in WKY group (P<0 .01) while the rate of CD4+ CD25+ in SHR group was significantly lower than that in WKY group (P<0 .01) .The expressions of CD4+ /CD8+ and TNF-α in SHR+ NO intervention group were significantly lower than those in SHR group whereas the rate of CD4+ CD25+ was significantly higher than that in SHR group (P<0 .05) .Conclusion NO can improve the target organ damage caused by hypertension by regulating the peripheral blood T lymphocyte subsets ratio and reducing the release of proinflammatory factors .
10.Phenylpropanoid amides from whole plants of Corydalis edulis.
Zhi-Tian PENG ; Ling-Hui CHAO ; Hui-Xia HUO ; Xiao-Nan CHEN ; Hui-Na YAO ; Yuan ZHANG ; Yun-Fang ZHAO ; Peng-Fei TU ; Jiao ZHENG ; Jun LI
China Journal of Chinese Materia Medica 2018;43(1):109-113
Ten phenylpropanoid amides were isolated from the whole plants of Corydalis edulis Maxim. by various of column chromatographies including silica gel, Sephadex LH-20, and ODS. Their structures were identified on the basis of physicochemical properties, MS, NMR, and IR spectroscopic data. These compounds were identified as N-trans-sinapoyl-3-methoxytyramine-4'-O-β-glucoside(1), N-trans-sinapoyl-3-methoxytyramine(2), N-trans-sinapoyltyramine(3), N-trans-p-coumaroyltyramine(4), N-trans-sinapoyl-7-hydroxytyramine(5), N-cis-feruloyltyramine(6), N-cis-p-coumaroyltyramine(7), N-trans-feruloyltyramine(8), N-trans-feruloyl-3-methoxytyramine(9), and N-trans-feruloyl-7-hydroxytyramine(10). Compound 1 is a new compound. Compounds 2-7 are obtained from the plants of Papaveraceae for the first time, while compounds 8-10 are firstly isolated from C. edulis.
Amides
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analysis
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Corydalis
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chemistry
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Glucosides
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analysis
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Phytochemicals
;
analysis
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Tyramine
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analysis

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