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        find Keyword "Calcium" 68 results
        • PRIMARY CLINICAL STUDY ON SELF-SETTING CALCIUM PHOSPHATE CEMENT IN BONE DEFECT REPAIR OF EXTREMITIES

          Objective To investigate the clinical application of self-settingcalcium phosphate cement (CPC) in bone defect repair of extremities. Methods From May 1998 to January 2000, 32 cases of bone defect, in 36 sites, were repairedand reviewed, aged from 4 to 59 years old (24.7 years old on average), with bone defect 2 to 125 cm2 in size (13.1 cm2 on average). The causes of the bone defect werefracture, bone cyst, iliac bone harvesting, fibrous dysplasia, enchondroma and bone tuberculosis, which involved femur, iliac, tibia, humerus, phalanx, fibula, calcaneus, talus and acetabulum. All of the cases were followed up for 1 to 23 months, 15.3 months on average, before radiographic examination. Results All operations were successful and no general response was observed in all of the cases. X-ray examination showed an integrity interface between CPC and bone. And CT showed no gap existed. There was no increase of serum calcium and phosphate levels. Conclusion CPC is applicable in the low- or non-weight-bearing site of the extremities.

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        • Change of Intracellular Free Calcium in Mesenchymal Stem Cells Derived from Umbilical Cord Blood after Myogenic Induction

          Objective To study the influence of three different ways of myogenic induction on Ca2+ regulation of mesenchymal stem cells (MSCs) derived from umbilical cord blood. Methods From January 2007 to April 2010, three different ways of myogenic induction including the adoptions of 5azacytidine, extraction of myocardium, and myocardial differentiation medium were used to induce MSCs derived from the umbilical cord blood of dogs in Xinhua Hospital of Shanghai Jiaotong University. Confocal laser scanning microscope was used to detect cells induced by the three abovementioned methods, cardiomyocytes and Ca2+ combined with Fluo3/AM inside the MSCs. For each group of cells, 2 to 5 visual fields were chosen, and 30 visual fields were recorded for each kind of cells. The mean fluorescence intensity of ten images shot in one minute was used to reflect the concentration of free intracellular Ca2+. Furthermore, the change of the concentration was continuously monitored by optical density(OD) value. Results After induction, the Ca2+ concentration inside the MSCs was significantly higher than that inside the cardiomyocytes (F=59.400, P=0.000). There was a statistical difference among the intracellular Ca2+ concentration induced respectively by 5azacytidine, extraction of myocardium, and myocardial differentiation medium (F=18.988, P=0.000). No significant difference existed between the intracellular Ca2+ concentration induced by 5-azacytidine and extraction of myocardium (OD value: 1 076.88±44.65 vs. 1 040.90±37.48, P=0.186), while the intracellular Ca2+ concentration induced by 5azacytidine was significantly higher than that induced by myocardial differentiation medium (OD value: 1 076.88±44.65 vs. 973.91±46.49, P=0.001), and the intracellular Ca2+ concentration induced by extraction of myocardium was significantly higher than that induced by myocardial differentiation medium (OD value: 1 040.90±37.48 vs. 973.91±46.49, P=0.001). The concentration of intracellular Ca2+ induced by all the three different methods fluctuated spontaneously, which was quite similar with the cardiomyocytes, but the frequency and the scope of the fluctuation were quite different. Ca2+ was released instantly by KCl stimulation in the two groups of MSCs pretreated by 5-aza and extraction of myocardium. Though MSCs pretreated by myocardial differentiation medium had response to KCl stimulation, Ca2+ could not be released in this group. On the contrary, the duration of Ca2+ release was prolonged. Conclusion Ca2+ regulation system of MSCs derived from umbilical cord blood can be influenced by these myogenic inductions. However, the reason and effect of the differences need to be elucidated by further investigation.

          Release date:2016-08-30 05:56 Export PDF Favorites Scan
        • EFFECT OF DEXAMETHASONE TO INTRACELLULAR FREECa2+ OF FROZEN HUMAN RETINAL PIGMENT EPITHELIAL CELLS IN VITRO

          OBJECTIVE:To observe the effect of dexamethasone to intracellular free Ca2+ of frozen RPE cells. METHODS:The cultured human RPE cells were frozen for 30s at --70deg;C. The RPE cells were loaded with Fura-2/AM and analyzed using a digital imaging microscopy system,the effect of dexamethasone to intracellular free Ca2+ was measured at a serial concentration of 40, 60,100,150,200mu;g/ml. RESULTS:The concentration of intracellular free Ca in frozen human RPE cells was increased to 18.6%~29.8% by dexamethasone at concenlration of 40mu;g/ml~60mu;g/ml,while was decreased to 28.4%~35.2% at 150mu;g/ml~200mu;g/ml. CONCLUSIONS:Effect of dexamethasone showed two aspects of effect to frozen cultured human RPE ceils,that it was inhibitor at high concentration and stimulator at low concentration (Chin J Ocul Fundus Dis,1997,13: 86-88)

          Release date:2016-09-02 06:12 Export PDF Favorites Scan
        • THE DETERMINATION OF INTRACELLULAR FREE Ca2+ CONCENTRATION OF DISSOCIATED RABBIT RETINA CELLS BY Fura-2/AM

          PURPOSE:To approach the establishment of t be optimal method for determining the intracellular free Ca2+ concentration[Ca2+]i of dissociated newborn rabbit retina cells by using fluorescent indicator-Fura-2/AM. METHODS:Trypsin was employed to prepare the retlna cell suspensions which were then loaded with Fura-2/AM followed by fluorescence determination. RESULTS:The cellular viability rate of retina cell suspensiotls prepared by 0.05% trypsin 10 minutes at 37deg;C was over 90%. Loading the retina cell suspensions with Fura-2/AM 40 minutes at 37deg;C and then measurlng the fluorescent intensity of the suspensions within 30 minutes were proved to be the optimum. CONCLUSIONS:The resting [Ca2+]i of retina cell suspension was (223plusmn;27)nmol/L whlch was within the expected range of [Ca2+]i level. 25mmoI/L and S0mmol/L K+ increased the [Ca2+Ji 59% and 148% respectively. These results indicate that the preparation of retina cell suspensions and the method of [Ca2+Ji determination are reliable and feasible. (Chin J Ocul Fundus Dis,1996,12: 108-110 )

          Release date:2016-09-02 06:21 Export PDF Favorites Scan
        • Efficacy and Safety of Intravenous Calcium Infusion for Preventing Ovarian Hyperstimulation Syndrome: A Meta-analysis

          ObjectiveTo systematically review the efficacy and safety of intravenous calcium infusion for preventing ovarian hyperstimulation syndrome (OHSS). MethodsDatabases including PubMed, EMbase, The Cochrane Library (Issue 7, 2015), CNKI, Sinomed and WanFang Data were searched from inception to July 2015 to collect randomized controlled trials (RCTs) and non-RCTs about intravenous calcium infusion for OHSS. Two reviewers independently screened literature, extracted data and assessed the risk of bias of included studies. Then, meta-analysis was performed using RevMan 5.3 software. ResultsA total of six studies involving 1 061 women were included. The results of meta-analysis showed that intravenous calcium infusion could reduce the incidence of moderate OHSS (RR=0.27, 95% CI 0.11 to 0.65, P=0.003), but not the incidence of severe OHSS (RR=0.77, 95% CI 0.23 to 2.63, P=0.68). In addition, intravenous calcium infusion had a tendency to increase the pregnant rate (RR=1.19, 95% CI 0.94 to 1.50, P=0.15). The subgroup analysis showed that, compared with placebo/no treatment, intravenous calcium infusion reduced the incidence of moderate OHSS, but not the incidence of severe OHSS. There were no statistical differences between intravenous calcium infusion and other positive control (cabergoline and hydroxyethyl starch) in the incidence of OHSS and pregnant rate. No side effect was reported in the studies included. ConclusionsCurrent evidence indicates that intravenous calcium infusion can reduce the incidence of OHSS without influence pregnant outcomes. Due to the quantity and quality limitations of included studies, more high quality case-control or cohort studies are needed to verify the above conclusions.

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        • EFFECTS OF VERAPAMIL AND ENERGY COMPOUNDS ON STRUCTURAL AND FUNCTIONAL CHANGES OF SMALL BOWEL′S IN RABBITS

          Objective To probe the change of the structure and function of the small bowel by injection of different drugs (verapamil, energy compounds or normal saline) via the superior mesenteric artery (SMA) injections.Methods The model of the small intestine ischemia/reperfusion (I/R) injury was made in grey rabbits. Free calcium concentration in mitochondria of the small intestine was determined, and the ultrastructural change was also observed by electron microscopy at the very time of occlusion, 60 minutes after occlusion and 30 minutes after reperfusion. Results The free calcium concentration in mitochondria was more declined in verapamil group (2.976±0.410 nmol/mg.prot) than in N.S. group (4.234±0.542 nmol/mg.prot), P<0.01, at 60 minutes after occlusion. At 30 minutes after reperfusion, free calcium concentration in mitochondria was more decreased in energy compunds group (2.401±0.323 nmol/mg.prot) and verapamil group (3.847±0.610 nmol/mg.prot) than in the N.S. group (5.981±1.031 nmol/mg.prot). Conclusion Verapamil and energy compouds have protective effects on the functions and ultrastructures of the I/R of small intestine.

          Release date:2016-09-08 02:00 Export PDF Favorites Scan
        • OSTEOGENIC ACTIVITY OF POROUS CALCIUM PHOSPHATE CERAMICS FABRICATED BY RAPID PROTOTYPING

          Objective Calcium phosphate bioceramics has a broad appl ication prospect because of good biocompatibil ity, but porous scaffolds with complex shape can not be prepared by the traditional methods. To fabricate porous calcium phosphate ceramics by rapid prototyping and to investigate the in vitro osteogenic activities. Methods The porous calcium phosphate ceramics was fabricated by rapid prototyping. The bone marrow mesenchymal stem cells (BMSCs)were isolated from bone marrow of Beagle canine, and the 3rd passage BMSCs were seeded onto the porous ceramics. The cell/ceramics composite cultured in osteogenic medium were taken as the experimental group (group A) and the cell/ceramics composite cultured in growth medium were taken as the control group (group B). Meanwhile, the cells seeded on the culture plate were cultured in osteogenic medium or growth medium respectively as positive control (group C) or negative control (group D). After 1, 3, and 7 days of culture, the cell prol iferation and osteogenic differentiation on the porous ceramics were evaluated by DNA quantitative analysis, histochemical staining and alkal ine phosphatase (ALP) activity. After DiO fluorescent dye, the cell adhesion, growth, and prol iferation on the porous ceramics were also observed by confocal laser scanning microscope (CLSM). Results DNA quantitative analysis results showed that the number of BMSCs in all groups increased continuously with time. Plateau phase was not obvious in groups A and B, but it was clearly observed in groups C and D. The CLSM observation indicated that the activity of BMSCs was good and the cells spread extensively, showing good adhesion and prol iferation on the porous calcium phosphate ceramics prepared by rapid prototyping. ALP quantitative analysis results showed that the stain of cells on the ceramics became deeper and deeper with time in groups A and B, the staining degree in group A were ber than that in group B. There was no significant difference in the change of the ALP activity among 4 groups at the first 3 days (P gt; 0.05); the ALP activity increased obviously in 4 groups at 7 days, group A was significantly higher than other groups (P lt; 0.05) and groups C, D were significantly higher than group D (P lt; 0.05). Conclusion The porous calcium phosphate ceramics has good cytocompatibil ity and the designed pores are favorable for cell ingrowth. The porous ceramicsfabricated by rapid prototyping has prominent osteogenic differentiation activity and can be used as a choice of scaffolds for bone tissue engineering.

          Release date:2016-08-31 05:48 Export PDF Favorites Scan
        • HISTOPATHOLOGICAL CHANGES OF THREE KINDS OF BONE GRAFTS IN VIVO

          Objective To evaluate the tissue response induced by three kinds of bone transplantation materials implanted in rat so as to provide proper evidence for their cl inical appl ication. Methods Thirty-six healthy mature Sprague- Dawly mice, weighing from 229 g to 358 g, were randomly assigned to groups A and B (n=18). Three kinds of materials wereimplanted into muscles of rats. Calcium sulfate (CS) granular preparations and allogeneic demineral ized bone matrix (DBM) were transplanted into the left (group A1) and right (group A2) thigh muscle pouches of group A. Respectively, whereas xenogenic DBM were transplanted into the left (group B1) thigh muscle pouches of group B and the right (group B2) sites were taken as control without implant. The samples (n=6) were collected to make the observation of gross and histology and to analyze histological score after 2, 4, and 6 weeks. Results The gross observation: implanted materials were gradually absorbed at late stage in group A1. No obvious degradation and absorption, but fibrosis of tissues were observed in group A2 and B1. The inflammatory reactions were more severe in groups A2 and B1. In group B2, only the changes of scar were seen at operative site. The histological observation: no obvious inflammatory reactions were seen in group A1, CS were gradually absorbed and completely absorbed at 6 weeks, while fibrosis of tissues increased at late stage. Inflammatory reactions in group A2 and group B1 were alleviated gradually, no obvious absorption and degradation were observed. The different two DBM could induce granulation tissues and bone formation at different sites and secondary fibrosis with no obvious immune response was observed. In group B2, there was an increase in collagen fiber density and angiogenesis at late stage. The scores of inflammatory infiltration were significantly higher in groups A2, B1 than in groups A1, B2 (P lt; 0.05), and the scores of fibrosis was larger in groups A1, A2 and B1 than in group B2 (P lt; 0.05). Conclusion CS has rapid dissolution and good biocompatibil ity. It is a good replaceable packing materials of bone defects in some upper l imb’s or acute bone fracture. Both of two DBM have biocompatibil ity and osteoinductive potential, which dissolution are very slow. Due to these capacity, they can be served as an ideal materials in treatment of lower l imb’s bone defect and nonunion.

          Release date:2016-09-01 09:06 Export PDF Favorites Scan
        • Experiment of porous calcium phosphate/bone matrix gelatin composite cement for repairing lumbar vertebral bone defect in rabbit

          Objective To investigate the effect of a porous calcium phosphate/bone matrix gelatin (BMG) composite cement (hereinafter referred to as the " porous composite cement”) for repairing lumbar vertebral bone defect in a rabbit model. Methods BMG was extracted from adult New Zealand rabbits according to the Urist’s method. Poly (lactic-co-glycolic) acid (PLGA) microsphere was prepared by W/O/W double emulsion method. The porous composite cement was developed by using calcium phosphate cement (CPC) composited with BMG and PLGA microsphere. The physicochemical characterizations of the porous composite cement were assessed by anti-washout property, porosity, and biomechanical experiment, also compared with the CPC. Thirty 2-month-old New Zealand rabbits were used to construct vertebral bone defect at L3 in size of 4 mm×3 mm×3 mm. Then, the bone defect was repaired with porous composite cement (experimental group, n=15) or CPC (control group, n=15). At 4, 8, and 12 weeks after implantation, each bone specimen was assessed by X-ray films for bone fusion, micro-CT for bone mineral density (BMD), bone volume fraction (BVF), trabecular thickness (Tb. Th.), trabecular number (Tb.N.), and trabecular spacing (Tb. Sp.), and histological section with toluidine blue staining for new-born bone formation. Results The study demonstrated well anti-washout property in 2 groups. The porous composite cement has 55.06%±1.18% of porosity and (51.63±6.73) MPa of compressive strength. The CPC has 49.38%±1.75% of porosity and (63.34±3.27) MPa of compressive strength. There were significant differences in porosity and compressive strength between different cements (t=4.254, P=0.006; t=2.476, P=0.034). X-ray films revealed that the zone between the cement and host bone gradually blurred with the time extending. At 12 weeks after implantation, the zone was disappeared in the experimental group, but clear in the control group. There were significant differences in BMD, BVF, Tb. Th., Tb. N., and Tb. Sp. between 2 groups at each time point (P<0.05). Histological observation revealed that there was new-born bone in the cement with the time extending in 2 groups. Among them, bony connection was observed between the new-born bone and the host in the experimental group, which was prior to the control group. Conclusion The porous composite cement has dual bioactivity of osteoinductivity and osteoconductivity, which are effective to promote bone defect healing and reconstruction.

          Release date:2017-12-11 12:15 Export PDF Favorites Scan
        • EFFECT OF CALCIUM ON RECONSTRUCTION OF BASEMENT MEMBRANE IN COMPOSITECHITOSAN TISSUE ENGINEERING SKIN

          Objective To search the most suitable concentration of calcium in the medium for the basement membrane reconstruction in tissue engineering skin in vitro. Methods Composite chitosan tissue engineering skin was prepared according to previous studies. Four groups were included according to the concentrationof calcium (1.00, 1.45, 1.65 and 1.95 mmol/L respectively). After 7 days and 15 days of culture, the histological manifestation of basement membrane in tissue engineering skin was observed by hematoxylin amp; eosin staining and PAS staining, and collagen Ⅳ of basement membrane was detected immunohistochemicallyatthe dermalepidermal junction. Results This tissue engineering skin shared some histological features of normal skin, including a welldifferentiated stratifiedepidermis and a dense dermis. The epithelium in the group of 1.95 mmol/L calcium differentiated better than those in other groups. PAS staining showing a regularly red dying strap domain at the dermal-epidermal junction. Collagen Ⅳ was positively stained immunohistochemically at the dermalepidermal junction inthe tissue engineering skin. Conclusion The above results suggest that the medium with 1.95 mmol/L calcium should be suitable for the growth of composite chitosan tissue engineering skin and the reconstruction of basement membrane.

          Release date:2016-09-01 09:22 Export PDF Favorites Scan
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