1.Insulin protects isolated hearts from ischemia/reperfusion injury: cross-talk between PI3-K/Akt and JNKs.
Hai-Tao LIU ; Hai-Feng ZHANG ; Rui SI ; Quan-Jiang ZHANG ; Kun-Ru ZHANG ; Wen-Yi GUO ; Hai-Chang WANG ; Feng GAO
Acta Physiologica Sinica 2007;59(5):651-659
Our previous results have demonstrated that insulin reduces myocardial ischemia/reperfusion (MI/R) injury and increases the postischemic myocardial functions via activating the cellular survival signaling, i.e., phosphatidylinositol 3-kinase (PI3-K)-Akt-endothelial nitric oxide synthase (eNOS)-nitric oxide (NO) cascade. However, it remains largely controversial whether c-Jun NH2-terminal kinase (JNK) is involved in the effects of insulin on MI/R injury. Therefore, the aims of the present study were to investigate the role of JNK, especially the cross-talk between JNK and previously expatiated Akt signaling, in the protective effect of insulin on I/R myocardium. Isolated hearts from adult Sprague-Dawley rats were subjected to 30 min of regional ischemia and followed by 2 or 4 h of reperfusion (n=6). The hearts were pretreated with PI3-K inhibitor LY294002, or phosphorylated-JNK inhibitor SP600125, respectively, then perfused retrogradely with insulin, and the mechanical functions of hearts, including the heart rate (HR), left ventricular developed pressure (LVDP) and instantaneous first derivation of left ventricular pressure (+/-LVdp/dt(max)) were measured. At the end of reperfusion, the infarct size (IS) and apoptotic index (AI) were examined. MI/R caused significant cardiac dysfunction and myocardial apoptosis (strong TUNEL-positive staining). Compared with the control group, insulin treatment in MI/R rats exerted protective effects as evidenced by reduced myocardial IS [(28.9 +/- 2.0)% vs (45.0 +/- 4.0) %, n=6, P<0.01], inhibited cardiomyocyte apoptosis [decreased AI: (16.0 +/- 0.7) % vs (27.6 +/- 1.3) %, n=6, P<0.01] and improved recovery of cardiac systolic/diastolic function (including LVDP and +/-LVdp/dt(max)) at the end of reperfusion. Moreover, insulin resulted in 1.7-fold and 1.5-fold increases in Akt and JNK phosphorylation in I/R myocardium, respectively (n=6, P<0.05). Inhibition of Akt activation with LY294002 abolished, and inhibition of JNK activation with SP600125 enhanced the cardioprotection by insulin, respectively. And the abolishment by LY294002 could be partly converted by SP600125 pretreatment. In addition, SP600125 also decreased the Akt phosphorylation (n=6, P<0.05). These results demonstrate that insulin simultaneously activates both Akt and JNK, and the latter further increases the phosphorylation of Akt which attenuates MI/R injury and improves heart function; this cross-talk between Akt and JNK in the insulin signaling is involved in insulin-induced cardioprotective effect.
Animals
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Apoptosis
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Heart
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Insulin
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metabolism
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JNK Mitogen-Activated Protein Kinases
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MAP Kinase Signaling System
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Myocardial Infarction
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Myocardial Ischemia
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Myocardial Reperfusion Injury
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Myocardium
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Myocytes, Cardiac
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Nitric Oxide Synthase Type III
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Phosphatidylinositol 3-Kinase
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metabolism
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Phosphatidylinositol 3-Kinases
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metabolism
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Phosphorylation
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Proto-Oncogene Proteins c-akt
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Rats
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Rats, Sprague-Dawley
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Reperfusion Injury
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Signal Transduction
2.High Selective Synthesis of 11?-hydroxycanrenone by Biotransformation
Rong-Sheng TAO ; Hai-Feng HU ; Xiao-Dun LI ; Bao-Quan ZHU ;
Microbiology 1992;0(02):-
Canrenone is an important intermediate for the synthesis of eplerenone,a cardiovascular drug.C_ 11 ?-hydroxylation of canrenone is the key reaction,which can be done by microbial transformation.Rhizopus sp.SIPI-0602,kept in our lab,could high selectively transform canrenone to a compound named SIPI-11.By determining and analyzing the MS,UV,NMR etc.spectra of compound SIPI-11,its chemical structure was elucidated to be 11?-hydroxycanrenone.The study on flask transformation technology showed that the transformation ratio exceeded 90% when the substrate concentration was not more than 6g/L.
5.Significance of C-reaction protein for differential diagnosis of fever after chemotherapy on children with acute lymphoblastic leukemia.
Cheng-qing FANG ; Yong-min TANG ; Hai-feng LI ; Hua SONG ; Shu-wen SHI ; Shi-long YANG ; Wei-quan XU
Chinese Journal of Pediatrics 2004;42(7):536-537
Antimetabolites, Antineoplastic
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adverse effects
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therapeutic use
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C-Reactive Protein
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analysis
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Child
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Child, Preschool
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Cytarabine
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adverse effects
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therapeutic use
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Diagnosis, Differential
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Female
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Fever
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blood
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chemically induced
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diagnosis
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Humans
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Infant
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Male
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Precursor Cell Lymphoblastic Leukemia-Lymphoma
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blood
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drug therapy
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Teniposide
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therapeutic use
6.Effects of storage time on quality of Desmodium styracifolium seeds.
Quan YANG ; Xiao-min TANG ; Hai-yun PAN ; Ling-feng MEI ; Chun-rong ZHANG ; Xuan-xuan CHENG ; Lu-qi HUANG
China Journal of Chinese Materia Medica 2015;40(20):3953-3957
The dynamic changes of germination percentage, germination potential, thousand-seed weight, antioxidase activity in Desmodium styracifolium seeds with different storage time were tested, and electrical conductivity, contents of soluble sugar, soluble protein, starch in seed leach liquor were also determined in order to reveal the mechanism of seed deterioration. The results as the following. (1) The germination percentage, germination potential and thousand-seed weight of D. styracifolium seeds declined, while the seed coat color darkened with the extension of storage time. (2) The activities of superoxide dismutase (SOD) and peroxidase (POD) decreased with the prolongation of storage period. The SOD activity declined fastest in 1,095-1,185 d of storage, while the POD activity declined significantly in 365-395 d of storage. (3) The electrical conductivity and the contents of soluble sugar, starch in seed leach liquor increased, while the content of soluble protein declined with the extension of storage time. (4) Correlation analysis indicated that the germination percentage, germination potential and thousand-seed weight of D. styracifolium seeds have a significantly positive correlation with SOD and POD activity, while have a significantly negative correlation with the electrical conductivity, contents of soluble sugar and starch. It can be concluded that during the storage of D. styracifolium seeds, physiological and biochemical changes including decrease in antioxidase activity, rise in electrical conductivity, degradation effluent of soluble sugar and starch, degradation of soluble protein were the main factors leading to the seed deterioration.
Color
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Fabaceae
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chemistry
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enzymology
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growth & development
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metabolism
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Germination
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Peroxidases
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metabolism
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Plant Proteins
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metabolism
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Seeds
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chemistry
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enzymology
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growth & development
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metabolism
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Starch
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metabolism
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Superoxide Dismutase
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metabolism
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Time Factors
7.Study on multi-target optimization of prescription dose of Mahuang decoction.
Yu HE ; Yu-Quan GAI ; Hui-Fen ZHOU ; Yan-Wen SUN ; Wei-Feng JIN ; Hai-Tong WAN
China Journal of Chinese Materia Medica 2014;39(7):1270-1275
OBJECTIVETo optimize the prescription dose of Mahuang decoction in a multi-target manner, in order to provide reference for the quantitative optimization of the prescription dose of the traditional Chinese medicine compound.
METHODThe number of diaphoretic spots in rats, the tracheal antispasmodic rate in guinea pigs and the writhing times by acetic acid in mice were taken as the indexes for evaluating the diaphoretic, antispasmodic and analgesic effects. According to the experimental results of the 16 orthogonal combination prescriptions, a mathematical dose-effect model was built by support vector regression (SVR) and quadratic response surface regression (RSR) respectively. The multi-target optimization was achieved by elitist non-dominated sorting genetic algorithm (NSGA-II) and entropy weight TOPSIS method.
RESULTThe optimal dose of Mahuang decoction after being optimized by SVR modeling contained 17.71 g of Ephedrae Herba, 9.57 g of Cinnamomi Ramulus, 11.75 g of Armeniacae Semen Amarum and 4.39 g of Glycyrrhizae Radix et Rhizoma Praeparata Cum Melle. The optimized result by RSR modeling contained 13.37 g of Ephedrae Herba, 11.61 g of Cinnamomi Ramulus, 11.98 g of Armeniacae Semen Amarum and 5.67 g of Glycyrrhizae Radix et Rhizoma Praeparate Cum Melle. SVR was superior to RSR in both of the forecast capacity and optimization results.
CONCLUSIONSVR-NSGA-II-TOPSIS method could be adopted for the multi-target optimization for the dose of Mahuang decoction and other traditional Chinese medicine compounds. It is proved to be the optimal prescription with the best efficacy, and could provide scientific quantitative basis for determining the dose of traditional Chinese medicine compound prescriptions and developing new traditional Chinese medicines.
Animals ; Cinnamomum ; chemistry ; Drug Compounding ; methods ; Drug Dosage Calculations ; Drug Prescriptions ; Ephedra ; chemistry ; Ephedra sinica ; chemistry ; Glycyrrhiza ; chemistry ; Guinea Pigs ; Mice ; Rats
8.Identification of novel inhibitors of the streptogramin group A acetyltransferase via virtual screening.
Guang-Feng WANG ; Niu HUANG ; Zhi-Hong MENG ; Quan-Hai LIU
Acta Pharmaceutica Sinica 2007;42(1):47-53
Virginiamycin acetyltransferase D (VatD) plays a vital rule in streptogramins resistance by chemically inactivating streptogramin A. Therefore, it is desirable to discover novel small molecular weight inhibitors of VatD via state-of-the-art virtual screening techniques. This "cocktail" strategy by combining VatD inhibitor with streptogramins may provide new therapeutic opportunity for resistant bacteria infections. Structure-based virtual screening method (molecular docking) was applied to rank and score a chemical database containing 300 000 commercially available compounds against the VatD substrate binding site. Twenty six out of the 200 top scored compounds from the docking calculation were selected and submitted to the VatD enzymatic inhibition assay. The plasmid pRSET B/vatD was constructed and transformed into E. coli (trxB) host cells for over-expression, and VatD enzyme was purified and validated by showing acetyltransferase activity to Virginiamycin M1. Three out of these 26 tested compounds showed enzymatic inhibition on VatD with IC50 168.6, 91.0 and 55.2 micromol x L(-1), separately. Other compounds could not be dissolved in the system and/or had little effect on the enzyme (IC50 > 200 micromol x L(-1)). To our knowledge, it is first time that small molecular weight organic compounds were identified as VatD inhibitors. It is expected that the VatD inhibitors identified at present study could serve as lead compounds for the further development of the novel therapeutic agents to overcome streptogramins resistance.
Acetyltransferases
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antagonists & inhibitors
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genetics
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metabolism
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Catalysis
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drug effects
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Drug Design
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Drug Resistance, Bacterial
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Enzyme Inhibitors
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chemistry
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metabolism
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pharmacology
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Escherichia coli
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genetics
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Genetic Vectors
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Kinetics
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Molecular Structure
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Plasmids
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Streptogramin Group A
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chemistry
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metabolism
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pharmacology
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Transformation, Genetic
9.Reverse second dorsal metatarsal artery island flap for repairing the soft tissue defect at toes.
Yu-feng JIAO ; Hai-quan WANG ; Yao-sheng LI
Chinese Journal of Plastic Surgery 2009;25(6):427-429
OBJECTIVETo report the application of reverse second dorsal metatarsal artery island flap for From May 2005 to September 2008, 5 cases with soft tissue repairing the soft tissue defect at toes.
METHODSdefects at toes were treated with reverse second dorsal metatarsal artery island flaps. The flaps size ranged from 2 cm x 3 cm to 5 cm x 6 cm.
RESULTSAll the 5 flaps survived completely. The patients could walk 1-2 months after operation. The patients were followed up for 5-7 months with good appearance, texture and sensation of toes.
CONCLUSIONThe reverse second dorsal metatarsal artery island flap has a reliable blood supply and good tissue texture. It is a practical method for repairing the soft tissue defect at toes.
Adult ; Fascia ; transplantation ; Female ; Foot Injuries ; surgery ; Humans ; Male ; Middle Aged ; Skin Transplantation ; methods ; Soft Tissue Injuries ; surgery ; Surgical Flaps ; blood supply ; Toes ; injuries ; Young Adult