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    find Author "ZHANG Junmei" 3 results
    • Adhesion and Proliferation of Osteoblasts on Pure Titanium Surface Treated by Microarc Oxidation and Collagen Ⅰ

      【摘要】 目的 探討微弧氧化(microarc oxidation,MAO)結合應用于純鈦種植體表面處理的可行性。 方法 根據對純鈦鈦片處理的不同將實驗分為對照組(A組,不作處理)、MAO組(B組,純鈦片上進行MAO處理)及MAO加Ⅰ型膠原組(C組,純鈦片上MAO處理后吸附Ⅰ型膠原)。將成骨細胞培養于各組鈦片上,通過掃描電鏡、MTT法檢測不同時間點各組鈦片表面的細胞生長及增殖情況,并檢測堿性磷酸酶(alkaline phosphatase,ALP)活性。 結果 掃描電鏡顯示成骨細胞在C組鈦片上細胞黏附情況優于A、B組;MTT法及ALP活性檢測示培養3、6 d,成骨細胞在C組鈦片上的增殖及ALP活性與A、B組比較差異均有統計學意義(Plt;0.05)。 結論 MAO結合Ⅰ型膠原處理的鈦片可更有效提高成骨細胞表面附著、增殖,且具有較高的ALP活性。【Abstract】 Objective To study the feasibility of applying microarc oxidation (MAO) with collagen Ⅰ in surface modification of pure titanium. Methods According to different processing methods, the pure titanium was divided into three groups: the control group (without surface modification, group A), MAO group (with microarc oxidation applied in pure titanium surface modification, group B), MAO+Ⅰ group (with microarc oxidation and collagen Ⅰ applied in pure titanium treatment, group C). Osteoblasts were cultured on the surface of titanium in each group, and the cell proliferation in each group was detected at different time points by scanning electron microscopy and MTT method. Moreover, the activity of alkaline phosphatase (ALP) was also detected. Results Scanning electron microscopy showed that adhesion of osteoblasts for group C was better than group A and group B. MTT method and ALP activity detection indicated that there was a significant difference between group C and group A, B in cell proliferation and ALP activity on the third and sixth day of cultivation (Plt;0.05). Conclusion MAO with collagen Ⅰ applied in surface modification of pure titanium may increase osteoblast attachment, and promote its proliferation and ALP activity.

      Release date:2016-09-08 09:26 Export PDF Favorites Scan
    • EFFECT OF IGF-1 ON PROLIFERATION AND DIFFERENTIATION OF PRIMARY HUMAN EMBRYONIC MYOBLASTS

      【Abstract】 Objective To investigate the effect of IGF-1 on the growth of primary human embryonicmyoblasts. Methods The method of incorporation of 3H-TdR was used to evaluate the abil ity of prol iferation of myoblasts.The count per minute (CPM) values of myoblasts at different concentrations(1, 2, 4, 8, 16 and 32 ng/mL) of IGF-1 were measured,and dose-effect curves were drawn to choose the optional concentration of IGF-1 to promote the prol iferation. Then theexperimental group of myoblasts received the addition of the optional concentration of IGF-1 in the growth medium, the controlgroup just received the growth medium. The flow cytometry was used to detect the cell cycle . The method of incorporation of3H-TdR was used to measure the peak-CPM. The myotube fusion rate was measured in myoblasts with different concentrations(0, 5,10, 15, 20, 25 and 30 ng/ mL) of IGF-1 in fusion medium, the dose-effect curves were also drawn, so as to decided the optional concentrationof IGF-1 in stimulating differentiation. Fusion medium with optional concentration of IGF-1 was used in experimentalgroup, and the control group just with fusion medium. The fusion rate of myotube and the synthesis of creatine kinase(CK) weredetected in both groups. Results The optional concentration of 5 ng/mL IGF-1 was chosen for stimulating prol iferation . It was shown that the time of cell cycle of control was 96 hours, but that of the experimental group was reduced to 60 hours. The results of flow cytometry showed that the time of G1 phase, S phase and G2M phase was 70.03, 25.01 and 0.96 hoursrespectively in control group, and were 22.66, 16.47 and 20.87 hours respectively in experimental group. The time-CPM value curves showed that the peak-CPM emerged at 96 hours in control group and 48 hours in experimental group, which was in agreementwith the results of the flow cytometry. The optional concentration stimulating prol iferation was 20 ng/mL IGF-1. Compared with control, the quantity of CK was increased by 2 000 mU/mL and the fusion rate was elevated by 30% in experimental group. Conclusion The concentrations of 20 ng/mL IGF-1 can elevat obviously the fusion rate and the quantity of CK. IGF-1 can enhance the prol iferation and differentiation of myoblasts via inducing the number of myoblasts at G1 phase and increasing the number of myoblasts at S and G2M phases.

      Release date:2016-09-01 09:09 Export PDF Favorites Scan
    • Efficacy of Mental Practice on Rehabilitation of Hand Function in Patients with Post-stroke: A Systematic Review

      Objective?To evaluate Mental Imagery on rehabilitation of functions in patients with stroke. Methods?Cochrane Central Register of Controlled Trials (CENTRAL), MEDLINE, EMbase, PEDro (www.pedro.org.au), OpenSIGLE, National Technical Information Service (NTIS), CNKI, VIP, Wanfang Data, and CBM were searched for the Randomized controlled trials (RCTs) of Mental Imagery on rehabilitation of functions in patients with stroke from the date of establishment of the databases to October 2010. The bibliographies of the included studies were searched, too. Three independent researchers evaluated the included studies using GRADE. The extracted data were analyzed by RevMan 5.0.25 and GRAEDprofiler 3.2.2. Results?A total 16 trials were discovered. Meta-analyses showed that at the end of 4th, 6th, and 8th, compared with conventional rehabilitation, the mental practice increased the score measured by FMA (WMD=7.81, 95%CI 1.96 to 13.65; WMD=13.89, 95%CI 4.53 to 23.25; and WMD=9.45, 95%CI 3.67 to 15.23, respectively) and ARAT (WMD=5.70, 95%CI 3.17 to 8.22, P=0.30). The 4 outcomes were all of low quality in the GRADE system. Conclusion?The current evidence shows mental practice could improve the upper limb function in patients after stroke, and the side effects of mental practice are not found in meta-analyses. Compared with other rehabilitative therapies, it is simper, of lower input costs, and of low operating costs. The clinicians should recommend it. Due to the limitations of the included studies, more large-sample, high-quality RCTs are required.

      Release date:2016-09-07 11:04 Export PDF Favorites Scan
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