90 research outputs found

    Experimental investigation of Phase Equilibria of ternary alloys in the (Co, Cu, Ni)-Si-Zr systems

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    块体非晶合金具有很多优异的性能,如高强度、高硬度、良好的耐磨性和耐 腐蚀性,但由于其塑性较差,在室温下通常发生灾难性的脆性断裂,这严重制约 着块体非晶在工程中的应用。Cu基晶体/非晶复合材料通过在非晶合金基体中引 入塑性晶体相,改善了块体非晶合金的室温宏观塑性,受到了人们的广泛关注。 设计并开发新型Cu基晶体/非晶复合材料正成为晶体/非晶复合材料的一个重要 的研究方向。Cu基晶体非晶复合材料是由多种合金元素组成的复杂合金体系 (Cu,Co,Fe,Ni,Si和Zr等元素),因此其合金材料的成分设计比较困难,而相图 作为材料设计的重要理论基础,在金属材料成分设计中发挥着重要作用。但到...Bulk amorphous alloy has many excellent properties, such as high strength, high hardness, good wear resistance and corrosion resistance, however, baecuse it has poor plasticity and catastrophic brittle fracture at room temperature, which seriously restricts the application of bulk amorphous in engineering application. Cu-rich crystalline/amorphous composites, which include plastic crystal phas...学位:工学硕士院系专业:材料学院_材料学学号:2072010115009

    人工湿地强化脱氮系统运行条件优化研究

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    微生物的硝化与反硝化作用是人工湿地脱氮的主要途径,如何调控与优化湿地沿程溶解氧浓度和污水碳氮比,对于提高人工湿地脱氮效果至关重要。为此,在人工湿地前端埋设曝气管、后端增设碳源投加管,构建了一种人工湿地强化脱氮系统,并选择曝气速率、曝气运行/停止时间比、碳源投加量、进水方式进行正交试验,开展了人工湿地碳氧联合调控脱氮研究。结果表明,各因素的影响大小依次为:曝气运行/停止时间比>曝气速率>碳源投加量>进水方式;最优运行条件为:曝气速率为2.5 L·h-1,曝气运行/停止时间比为8 h/16 h,碳源投加量为0.025 g·L-1,进水方式为0.25 L×4

    老年人备灾现状及应对策略的研究进展

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    阐述国内外老年人的备灾现状,老年人应对灾害能力下降,备灾能力较低,应对灾害相关知识和教育缺乏,慢性疾病影响其备灾状态,其获取备灾信息途径和方式单一。提出需建立社区备灾组织、提供..

    灰绿曲霉产纤维素酶的研究

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    灰绿曲霉(Aspergillus glaucus)发酵液通过硫酸铵盐析、Sephadex G-100分子筛、DEAE Sepharose Fast Flow离子交换柱和Phenyl Sepharose Fast Flow疏水层析,分离纯化一种外切葡聚糖酶(CBH)和一种内切葡聚糖酶(EG).通过SDS-PAGE和凝胶柱层析法测定分子质量表明:CBH全酶分子质量为71 ku,由两个分子质量为35 ku的同型亚基组成;EG为单体蛋白,全酶分子质量为32 ku.酶学性质研究表明:CBH催化pNPC的最适pH为6.0,最适温度为55℃,酶活在pH 5.0~8.0区间和温度低于55℃时稳定;EG催化CMC-Na的最适pH为4.0,最适温度为50℃,酶活在pH3.5~7.5区间和温度低于65℃时稳定.Na+、K+、Ba2+、Mg2+以及NO3-和SO42-对CBH和EG酶活均无影响;Ca2+和Mn2+对CBH有激活作用,Fe2+和Mn2+对EG有激活作用,而Zn2+、Cd2+和Cu2+对CBH和EG均有不同程度的抑制效应.酶动力学分析表明:CBH催化pNPC水解的米氏常数Km值为1.4 mmol/L(pH 6.0,55℃),EG催化CMC-Na水解的米氏常数Km值为5.0 mg/mL(pH 4.0,50℃)

    Preparation and biological safety of basic fibroblast growth factor/double-layered collagen composite

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    背景:胶原特殊的分子结构和生物活性有利于多种细胞黏附、增殖和分化,并可降解为新生组织提供足够空间。目的:制备一种复合负载碱性成纤维细胞生长因子的壳聚糖-肝素纳米粒子双层胶原基复合材料,并评价其生物安全性。方法:制备交联风干胶原膜和交联冻干胶原膜。将壳聚糖-肝素纳米粒滴于交联冻干胶原膜上,再将湿态交联风干胶原膜置于复合纳米粒子的交联冻干胶原膜上风干,即碱性成纤维细胞生长因子/双层胶原基复合材料。采用急性全身毒性试验、溶血试验、热原试验和细胞毒性试验评价其生物安全性。结果与结论:碱性成纤维细胞生长因子/双层胶原基复合材料为双层结构,一侧表面致密,另一侧疏松多孔。在其中间负载碱性成纤维细胞生长因子的壳聚糖-肝素纳米粒子呈不规则球形分布于胶原膜内侧面;急性全身毒性试验、热原试验、溶血试验均为阴性,细胞毒性为0级。说明碱性成纤维细胞生长因子/双层胶原基复合材料具有良好的生物安全性,对机体无毒,符合ISO10993-1评价标准。BACKGROUND: Collagen is a common used scaffold in tissue engineering, its specific molecular structure and biological activity are conducive to a variety of cell adhesion, proliferation and differentiation, and can speed up wound healing and degradation to provide sufficient space for new tissues.OBJECTIVE: To prepare a kind of inhomogeneous double layered collagen composite incorporated with basic fibroblast growth factor (bFGF) loaded chitosan-heparin (CS-Hep) nanoparticles, and to evaluate its biological safety.METHODS: The air-dried dense layer collagen membranes and freeze-dried loose layer collagen membrane were prepared respectively and then cross-linked by D-ribose (termed as CAM and CFM respectively).CS-Hep nanoparticles were prepared and then dropped on the surface of CFM.The wet CAM was laid on the surface of CFM with nanoparticles, and then air dried completely at 4 ℃.The obtained material was termed as bDM.Its physical and chemical properties were investigated.In addition, its bio-safety was also examined through acute systemic toxicity, pyrogen, hemolysis and cellular toxicity tests.RESULTS AND CONCLUSION: The bFGF/double-layered collagen composite was made up of double layers with one dense layer (CAM) and another loose layer (CFM).As part of bDM, CS-Hep nanopartiles with irregular global shape were aligned in the scope of D-period structure of the inner surface of CFM; the bFGF/double-layered collagen composite had no systemic acute toxicity, no cytotoxicity and pyrogen reactions as well as no hemolytic effect.The bFGF/double-layered collagen composite is prepared and found to have good biocompatibility and safety.Moreover, this material conforms to the ISO 10993-1, and can be used as a basic scaffold material in tissue engineering天津市科技支撑计划重点项目(08ZCKFSF02100);博士点基金项目(20101106110042)---

    EB病毒潜伏膜蛋白1调节EGF受体核移位

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    EB病毒编码的病毒潜伏膜蛋白 1(LMP1)是重要的致瘤蛋白,一直以来是EB病毒致瘤机制的研究核心.传统的受体学说认为,细胞膜受体作为第一信使,在细胞膜上与其配体结合发挥生物学效应.但近年来,对EGFR家族成员受体核移位在基因表达调控中意义的研究,拓宽了人们对细胞膜受体生物学功能的认识.利用我们建立的Tet-on系统调控LMP1表达的细胞系,采用Western blot和激光共聚焦显微镜等技术证实,LMP1可调控EGFR的核移位,并呈一定的剂量效应.通过GFP与EGFR及不同突变体的融合蛋白在细胞内的表达发现,EGFR的核定位信号在其核移位过程中起着一定的作用,并初步发现LMP1调控EGFR核移位为配体非依赖性

    人体健康状态系统辨识研究

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    21世纪,随着中国人口老龄化的到来,各种非传染性慢性疾病(NCD)、老年性疾病的问题和医疗费用的恶性膨胀将引发严重社会问题和医疗危机。解决当前全球医疗危机的唯一出路将医学的首要目标设定为"预防疾病和损伤,维持和促进健康"(WHO的GOM小组,1996.11)。预防疾病应着重检测从正常生理向病理生理的渐变过程。然而,这一过程中身心状态的变化规律则一直处在目前医学研究视线之外。而在人体从正常生理向病理生理某些生理特征参数必然发生变异。我们的研究发现通过对动态体表温度变化模式、血清内多蛋白表达规律,应激条件下的心电变化模式的分析可以大大提高疾病的诊断准确率。因此进一步综合利用多个生理参数的动态、长期变化规律,特别是对其变化模式进行识别,据此建立起与健康状态的关联关系,将有助于解决人类健康状态辨识的根本问题
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