1.Study on absorbed components of Aconitum kusnezoffii under Yunnan Baiyao compatibility in effect of activating blood circulation and removing blood stasis.
Bo YANG ; Ying HAN ; Qing-Yu ZHANG ; Hui DONG ; Hui SUN ; Xi-Jun WANG
China Journal of Chinese Materia Medica 2019;44(15):3349-3357
Rat model of blood stasis syndrome was prepared by subcutaneous injecting of epinephrine hydrochlorid,then the model rats were administrated by Yunnan Baiyao for 15 days. Blood rheology,coagulation function and histopathology were chosen as indicators to evaluate the successful replication of blood stasis syndrome model and the treatment effect of Yunnan Baiyao. UPLC-Q-TOF-MS was used to rapidly analyze the serum samples of blood stasis syndrome rat after 15 days Yunnan Baiyao treatment,Progenesis QI software was employed to identify the alkaloids components. The results showed that Yunnan Baiyao reduced the plasma viscosity and whole blood viscosity of rats with blood stasis syndrome,prolonged thrombin and prothrombin time,reduced fibrinogen content,and effectively improved pathological state such as inflammatory cell infiltration,blood stasis,congestion and edema of various organs in rats with blood stasis syndrome. Seven alkaloids components from Aconitum kusnezoffii,including karacolidine,senbusine B,isotalatizidine,karakoline,denudatine,talatisamine and chasmanine were found in the rat serum after Yunnan Baiyao treatment. Based on the effectiveness of Yunnan Baiyao in the treatment of blood stasis syndrome induced by epinephrine hydrochloride in rats,alkaloids components from the root of A. kusnezoffii absorbed into blood after Yunnan Baiyao treatment were clarified rapidly and accurately with the help of UPLC-Q-TOF-MS. Karacolidine,senbusine B,isotalatizidine,karakoline,denudatine,talatisamine and chasmanine are the pharmacodynamic material basis of the root of A. kusnezoffii for activating blood circulation and removing blood stasis.
Aconitum
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chemistry
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Animals
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Blood Circulation
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drug effects
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Blood Viscosity
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Drugs, Chinese Herbal
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pharmacology
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Prothrombin Time
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Rats
;
Thrombin Time
2.Extraction and purification of NUDT9 homology domain of human transient receptor potential melastatin 2 channel.
Peiwu YE ; Xiafei YU ; Cheng MA ; Wei YANG
Journal of Zhejiang University. Medical sciences 2019;48(1):5-11
OBJECTIVE:
To develop methods of extraction and purification of Cterminal NUDT9 homology domain of human transient receptor potential melastatin 2 (TRPM2) channel.
METHODS:
After sonication and centrifuge of strain Rosetta (DE3) which was induced by isopropylthio-β-D-galactoside, GST-NUDT9-H was collected after the binding of supernatant with GST beads and eluted with reduced glutathione. Then the elution buffer containing fusion protein was purified by size exclusion chromatography after concentration and centrifuge. Finally, with the cleavage of thrombin and binding with the GST beads, NUDT9-H with high purity in supernatant was collected.
RESULTS:
The GST-NUDT9-H fusion protein was stabilized with lysis buffer containing 0.5% n-dodecyl -β-d-maltoside (DDM), and wash buffer containing 0.025% DDM in size-exclusion chromatography system, and finally the NUDT9-H with high purity was obtained after cleaved by thrombin (1 U/2 mg fusion protein) for 24 h.
CONCLUSIONS
Due to the poor stability of NUDT9-H, it is necessary to add DDM in extraction and purification buffer to stabilize the conformation of NUDT9-H, so as to increase its yields and purity.
Escherichia coli
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genetics
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Glucosides
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chemistry
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Humans
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Protein Domains
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Protein Stability
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Pyrophosphatases
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chemistry
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genetics
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isolation & purification
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Recombinant Fusion Proteins
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chemistry
;
isolation & purification
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TRPM Cation Channels
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chemistry
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isolation & purification
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Thrombin
;
metabolism
3.Blood-cooling and hemostasis effects of Rehmanniae Radix before and after carbonizing.
Xiao-Ming QI ; Xiang-Long MENG ; Mei-Jing HE ; Bo WANG ; Shuo-Sheng ZHANG
China Journal of Chinese Materia Medica 2019;44(5):954-961
To compare the blood-cooling and hemostasis effects of Rehmanniae Radix before and after carbonizing on rats with blood heat and hemorrhage syndrome. The blood heat and hemorrhage syndrome rat model was established. Indexes including rectal temperature,whole blood viscosity,plasma viscosity,thrombin time(TT),activated partial thromboplastin time(APTT),prothrombin time(PT),fibrinogen content(FIB),red blood cell(RBC),hemoglobin(Hb),hematocrit(HCT),blood platelet count(PLT),mean platelet volume(MPV),serum IL-1,serum IL-6 and lung histopathology were detected to investigate the blood-cooling and hemostasis effects of Rehmanniae Radix and its carbonized products. Compared with the blank control group,the rectal temperature was significantly increased with rise of the high,middle and low whole blood viscosities and plasma viscosity(P<0.05); both the high and low whole blood restore viscosity and the high and low whole blood relative viscosity were increased significantly(P< 0.05); TT,APTT and PT were notably prolonged with the increase in FIB content(P<0.05); RBC,Hb and HCT increased significantly(P< 0.05); concentrations of serum IL-1 and IL-6 were also increased(P< 0.05) in model group. Additionally,obvious hemorrhages in lung and stomach were observed in rats of the model group. Rehmanniae Radix and its carbonized products can significantly reduce rectal temperature,high middle and low whole blood viscosities and plasma viscosity(P<0.05). TT and APTT were shortened,with lower expression of FIB in group of Rehmannia Radix and its carbonized products. Hemorrhages of lung and stomach were improved by Rehmannia Radix and its carbonized products. The results indicated that Rehmannia Radix before and after carbonizing had the hemostasis and blood-cooling effects by promoting coagulation,improving blood rheology and inhibiting expressions of IL-1 and IL-6.
Animals
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Blood Coagulation
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Blood Viscosity
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Body Temperature
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Drugs, Chinese Herbal
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pharmacology
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Hemorrhage
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drug therapy
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Hemostasis
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Interleukin-1
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metabolism
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Interleukin-6
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metabolism
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Partial Thromboplastin Time
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Plant Roots
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Rats
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Rehmannia
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chemistry
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Thrombin Time
4.Epithelial cell adhesion efficacy of a novel peptide identified by panning on a smooth titanium surface.
Hidemichi KIHARA ; David M KIM ; Masazumi NAGAI ; Toshiki NOJIRI ; Shigemi NAGAI ; Chia-Yu CHEN ; Cliff LEE ; Wataru HATAKEYAMA ; Hisatomo KONDO ; John DA SILVA
International Journal of Oral Science 2018;10(3):21-21
Epithelial attachment via the basal lamina on the tooth surface provides an important structural defence mechanism against bacterial invasion in combating periodontal disease. However, when considering dental implants, strong epithelial attachment does not exist throughout the titanium-soft tissue interface, making soft tissues more susceptible to peri-implant disease. This study introduced a novel synthetic peptide (A10) to enhance epithelial attachment. A10 was identified from a bacterial peptide display library and synthesized. A10 and protease-activated receptor 4-activating peptide (PAR4-AP, positive control) were immobilized on commercially pure titanium. The peptide-treated titanium showed high epithelial cell migration ability during incubation in platelet-rich plasma. We confirmed the development of dense and expanded BL (stained by Ln5) with pericellular junctions (stained by ZO1) on the peptide-treated titanium surface. In an adhesion assay of epithelial cells on A10-treated titanium, PAR4-AP-treated titanium, bovine root and non-treated titanium, A10-treated titanium and PAR4-AP-treated titanium showed significantly stronger adhesion than non-treated titanium. PAR4-AP-treated titanium showed significantly higher inflammatory cytokine release than non-treated titanium. There was no significant difference in inflammatory cytokine release between A10-treated and non-treated titanium. These results indicated that A10 could induce the adhesion and migration of epithelial cells with low inflammatory cytokine release. This novel peptide has a potentially useful application that could improve clinical outcomes with titanium implants and abutments by reducing or preventing peri-implant disease.
Amino Acid Sequence
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Animals
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Benzeneacetamides
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chemical synthesis
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pharmacology
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Cattle
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Cell Adhesion
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drug effects
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Cell Movement
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drug effects
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Cells, Cultured
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Cytokines
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metabolism
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Dental Implants
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Enzyme-Linked Immunosorbent Assay
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Epithelial Attachment
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drug effects
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Epithelial Cells
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cytology
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metabolism
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Microscopy, Confocal
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Microscopy, Electron, Scanning
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Piperidones
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chemical synthesis
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pharmacology
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Platelet-Rich Plasma
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Receptors, Thrombin
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Surface Properties
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Titanium
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chemistry
5.Study on antiplatelet and antithrombin activitives and effective components variation of Puhuang-Wulingzhi before and after compatibility.
Shu-lan SU ; Ping XUE ; Zhen OUYANG ; Wei ZHOU ; Jin-ao DUAN
China Journal of Chinese Materia Medica 2015;40(16):3187-3193
The changes of bioactive constituents were analyzed for Puhuang-Wulingzhi before and after compatibility and the antiplatelet and antithrombin activitives were evaluated in order to elucidate the scientific and reasonable of Puhuang-Wulingzhi compatibility. UPLC-QTOF-MA-Markerlynx, principal component analysis (PCA) and orthogonal partial least-squares discriminant analysis were used for data analysis and tracking changes of chemical composition during the decocting process. In vitro platelet aggregation induced by ADP, thrombin time(TT) and prothrombin time (PT) were investigated for Puhuang-Wulingzhi before and after compatibility. The results showed that significant differences were found between the mixed decoction and codecoction of Wulingzhi and Puhuang. Five compounds changed obviously were identified as typhaneoside, naringenin, isorhamnetin-3-O-ruinoside, quercetin-3-O-neohesperidoside, kaempferol-3-O-neohesperidoside. The codecoction, comparing with the single decoction, was more significant in antiplatelet aggregation and could prolong thrombin time. In the same crude drug dose, the thrombin time (TT) elongation were greater. These data could provide references for elucidation of bioactive components for this herb pair.
Animals
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Antithrombins
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chemistry
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pharmacology
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Blood Platelets
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drug effects
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physiology
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Drugs, Chinese Herbal
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chemistry
;
pharmacology
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Female
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Humans
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Molecular Structure
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Platelet Aggregation
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drug effects
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Rabbits
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Thrombin Time
6.Quality evaluation of bletillae rhizoma based on hemostatic biopotency.
Xing-Xing LIU ; Li DONG ; Xiao-Hong ZHANG ; Yong-Xi DONG ; Ai-Min WANG ; Shang-Gao LIAO ; Yong-Lin WANG
China Journal of Chinese Materia Medica 2014;39(19):3764-3767
This dissertation is to determine the biopotency of hemostat which processed in different places by establishing a bioassay method of Bletillae Rhizoma based on the thrombin time. Contrast test is the main methodology. Specifically, the reference substance of Bletillae Rhizoma is determined by comparing with the control substance of vitamin K1 using thrombin time, which is calibrated the Bletillae Rhizoma. The hemostatic biopotency is calculated by using the method of "parallel line assay method based on quantitative responses" (3.3) from different processed products. It indicates that there is a strong linear correlation between Bletillae Rhizoma and control drugs (Y = 66.332-23.913X, R2 = 0.995 3). The hemostatic biopotency of Bletillae Rhizoma from different processed products ranged between 821.93-1 187.53 U x g(-1) shown in the paper, and all of them can meet the requirements of the test. The methodology has an appropriate instrument precision (RSD 3.8%), intermediate precision (RSD 4.6%), repeatability (RSD 3.2%) and stability (RSD 3.7%). Therefore, it can be turned out that the methodology which established in the dissertation is good at determinating the hemostatic biopotency of Bletillae Rhizoma and it is reliable, simple and repeatable.
Animals
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Drugs, Chinese Herbal
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pharmacology
;
standards
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Hemostatics
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pharmacology
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standards
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Orchidaceae
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chemistry
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Rats
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Rats, Sprague-Dawley
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Rhizome
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chemistry
;
Thrombin Time
7.Comparison of structural characteristics and anticoagulation activity of enoxaparin sodium with different degree of 1,6-anhydro derivatives.
He ZHU ; You-Jing LIÜ ; Xian-Wei HAN ; Shi-Long LIU ; Jie-Jie HAO ; Xiao-Liang ZHAO ; Guang-Li YU
Acta Pharmaceutica Sinica 2014;49(7):1049-1053
The fine structure of enoxaparin sodium samples with different degree of 1,6-anhydro derivatives were analyzed with polyacrylamide gel electrophoresis, high performance liquid chromatography, ultraviolet spectroscopy, infrared spectroscopy and nuclear magnetic resonance spectroscopy. A further study of anticoagulation activity of enoxaparins was performed, including those on their inhibition activities of coagulation factor Xa (FXa) and thrombin (FIIa). The results showed that the anti-FXa and -FIIa activities of enoxaparins with different degree of 1,6-anhydro derivatives (20.0%-39.7%) with similar structure characteristics, had decreasing tendency when the degree of 1,6-anhydro derivatives increased. Especially, the anti-FXa activity was sensitive to the change of the degree of 1,6-anhydro derivatives.
Anticoagulants
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chemistry
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Enoxaparin
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chemistry
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Factor Xa Inhibitors
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chemistry
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Thrombin
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antagonists & inhibitors
8.Filtration of active fractions with hemostasis effect from platycladi cacumen carbonisatum.
Chen LIU ; Jia LIU ; Chuan-Zhu ZHENG ; Li ZHANG ; An-Wei DING ; Bin YU
China Journal of Chinese Materia Medica 2014;39(16):3152-3156
OBJECTIVETo discuss the hemostasis of the different polarities of Platycladi Cacumen Carbonisatum (PCC) on the blood heat and hemorrhage syndrome rat model induced by dry yeast.
METHODThe SD rats were divided into seven groups. Yunnan Baiyao was taken as the positive control drug. The rats in the control group and model group were fed with CMC-Na for 7 days, and the rats in other groups were fed with corresponding drugs simultaneously. On day 7, the blood heat and hemorrhage syndrome rat model was established. Indexes including the whole blood viscosity, plasma viscosity, thrombin time (TT), activated partial thromboplastin time (APTT), prothrombin time (PT), fibrinogen content (FIB), red blood cell (RBC), hemoglobin (HGB), hematocrit (HCT), blood platelet count (PLT), thrombocytocrit (PCT), mean platelet volume (MPV), platelet distribution width (PDW) and the rate of platelet aggregation induced by ADP were detected. Additionally, the pathological examinations of lungs among each group were compared.
RESULTCompared with the control group, the RBC, HGB and HCT of rats in the model group increased significantly, with distinct increase in high, middle and low whole blood viscosity and plasma viscosity of rats in the model group; TT and APTT were notably prolonged, while PT was notably shortened, with significant increase in FIB content; PLT, PCT, MPV and PDW remarkably increased; Additionally, the rate of platelet aggregation induced by ADP significantly decreased. After ig administration of the ethyl acetate extract of PCC, the low whole blood viscosity and plasma viscosity remarkably decreased; TT and APTT were significantly shortened, with notable reduction in PDW and in FIB content Additionally, the rate of platelet aggregation induced by ADP significantly increased. The injury of lungs was also improved in ethyl acetate extract group. The rate of platelet aggregation induced by ADP of n-butanol extract group notablly increased. Plasma viscosity of water extract group remarkably decreased, with TT being significantly shortened. But the effects of n-butanol extract or water extract were weaker than that of ethyl acetate extract. And the effect of petroleum ether extract was the weakest.
CONCLUSIONEthyl acetate extract is the active part of PCC, showing the effect of hemostasis by reducing the low whole blood and plasma viscosity, improving coagulation function mainly by acting on the endogenous coagulation, and ameliorating the function of platelet aggregation.
Animals ; Blood Coagulation ; drug effects ; Blood Viscosity ; drug effects ; Cupressaceae ; chemistry ; Drugs, Chinese Herbal ; isolation & purification ; pharmacology ; Filtration ; Hemostatics ; isolation & purification ; pharmacology ; Male ; Platelet Aggregation ; drug effects ; Rats ; Rats, Sprague-Dawley ; Thrombin Time
9.Correlation of coagulation indicators with inflammatory markers for sepsis in the patients with hematological malignancies.
Yang FU ; Hong JIANG ; Li-Xin LI ; Jie CHEN ; Qian NIU ; Ruo-Xu LI
Journal of Experimental Hematology 2014;22(5):1381-1385
This study was aimed to investigate the correlation of coagulation indicators [prothrombin time (PT), activated partial thromboplastin time (APTT), thrombin time (TT) and fibrinogen (FIB), antithrombinIII (ATIII), D-dimer (D-D) levels] with inflammatory markers [procalcitonin (PCT), C reactive protein (CRP), interleukin-6 (IL-6), serum amyloid A (SAA)] for sepsis in hematologic malignancy patients. A total of 326 febrile in patients with hematologic diseases from 2062 patients in West China Hospital, Sichuan University from March 2011 to April 2013 were retrospectively analyzed. The patients were divided into sepsis group(n = 72), non-sepsis group(n = 176) and non-sepsis with low Alb group (n = 78) according to blood culture. The results showed that the values of PT, APTT, D-dimer, Plt in sepsis group were higher than those in non-sepsis group, and the difference between them was statistically significant. While the ATIII level in the sepsis group was lower than that in non-sepsis group, and the difference between them was statistically significant (P < 0.05). And the four inflammatory biomarkers in the sepsis patients were higher than those in non-sepsis patients (P < 0.05). TT and FIB level were not significantly different (P > 0.05). There was not a significant difference in these indicators between non-sepsis group and non-sepsis with low Alb group. The correlation analysis suggested that the level of PCT positively correlated with APTT, D-dimer level (P < 0.05); and negatively correlated with the ATIII (P < 0.05). It is concluded that sepsis results in the concurrent activation of inflammatory and procoagulant pathways. The hematologic malignancy patients with sepsis have an obviously higher systemic inflammatory response, and accompanied with coagulation dysfunction.
Biomarkers
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Blood Coagulation
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C-Reactive Protein
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Calcitonin
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Calcitonin Gene-Related Peptide
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Fibrin Fibrinogen Degradation Products
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Hematologic Neoplasms
;
chemistry
;
complications
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Humans
;
Interleukin-6
;
Partial Thromboplastin Time
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Protein Precursors
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Retrospective Studies
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Sepsis
;
complications
;
Serum Amyloid A Protein
;
Thrombin Time
10.Sulfated modification and anticoagulant activity in vitro of sulfated glucan isolated from the aqueous extract of Hedysarum polybotrys.
Long GUO ; Ying-lai YANG ; Tao YANG ; Zi-heng LIU ; Shi-lan FENG
Acta Pharmaceutica Sinica 2013;48(11):1665-1670
SHG was sulfated by chlorosulfonic acid-pyridine method, and six samples which we got were prepared in different reaction conditions. There is a characteristic absorption peak near 260 nm in UV spectra and there are two characteristic absorption peaks near 1240 cm(-1) and 810 cm(-1) in the FT-IR. Degree of sulfation (DS) was calculated by elemental analysis and turbidimetry. Under the same conditions the absorption peaks become strong with the DS increase. The anticoagulant activity of SHG and sulfated modification samples was evaluated by the classic coagulant assays of prothrombin time (PT), activated partial thrombin time (APTT) live enzymes, and plasma thrombin time (TT). Results show that sulfated SHG has a good anticoagulant activity in vitro, and DS increased activity within a certain range.
Animals
;
Anticoagulants
;
chemistry
;
isolation & purification
;
pharmacology
;
Blood Coagulation Tests
;
Fabaceae
;
chemistry
;
Glucans
;
chemistry
;
isolation & purification
;
pharmacology
;
Partial Thromboplastin Time
;
Plants, Medicinal
;
chemistry
;
Prothrombin Time
;
Rabbits
;
Spectrophotometry, Ultraviolet
;
Spectroscopy, Fourier Transform Infrared
;
Sulfonic Acids
;
chemistry
;
Thrombin Time

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