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101.
本文通过从污水处理厂活性污泥中分离得到一株高效降解轻油(煤油)细菌5092-2,通过形态学、16S rRNA鉴定该菌为Mangroveibacter sp.。进一步对其生长条件进行了研究,发现该菌在23℃到38℃、pH为5.0到9.0范围内生长无明显差异。在温度为35℃,pH 7.2~7.4,160 r/min培养7 d,菌株降解煤油的能力达到52.3%,具有进一步研究的价值。  相似文献   
102.
【背景】耐甲氧西林金黄色葡萄球菌(Methicillin Resistant Staphylococcus aureus,MRSA)是一种具有多重耐药性的人畜共患病原菌,常引起奶牛乳房炎等疾病。形成生物被膜是MRSA重要的耐药机制之一。研究发现ica操纵子调控的胞间多糖黏附素(Polysaccharide Intercellular Adhesin,PIA)通过促进MRSA的黏附与聚集介导生物被膜形成,icaA和icaD基因共表达可显著提高MRSA的N-乙酰葡聚糖转移酶活性,但icaA/D蛋白对MRSA生物被膜形成和耐药性的影响仍不清楚。【目的】探讨icaA/D基因、MRSA生物被膜形成及耐药性三者之间的相关性,为寻找药物作用新靶点提供科学依据。【方法】以具有多重耐药性且生物被膜形成能力强的乳源MRSA M5分离株为研究对象,利用同源重组技术构建其icaA/D基因缺失株;利用FITC-ConA染色结合激光共聚焦显微镜观察野生株与icaA/D基因缺失株的生物被膜形成过程与能力;采用微量肉汤稀释法测定14种抗菌药物对野生株与icaA/D基因缺失株的最小抑菌浓度(MinimumInhibitoryConcentration,MIC)。【结果】构建了MRSA M5的icaA/D基因缺失株。激光共聚焦显微镜下观察到野生株在培养16 h后形成了一层厚的成熟生物被膜,随后开始解离,直至120 h完全解离;而icaA/D基因缺失株在培养后16 h仅形成一薄层生物被膜,48h完全解离。10种受试抗菌药物对缺失株的MIC较野生株减小,而且缺失株对8种药物的敏感性由原来的耐药或中介转变为中介或敏感。【结论】icaA/D基因缺失可明显降低MRSA的生物被膜形成能力与耐药性。  相似文献   
103.
【背景】金针菇菌种在继代培养的过程中会出现菌种退化的现象,影响着金针菇的产量与质量。【目的】为研究金针菇退化菌种菌丝的生理生化特征,筛选金针菇退化菌株。【方法】以金针菇原始菌株(H)和退化菌株(T)为研究对象,测定不同碳源培养基上菌丝的生理生化特征及超氧化物歧化酶(SuperoxideDismutase,SOD)、过氧化物酶(Peroxidase,POD)和过氧化氢酶(Catalase,CAT)的活性,并测定菌丝在栽培瓶中的漆酶(Laccase,Lac)和锰过氧化物酶(ManganesePeroxidase,MnP)的活性,记录菌丝在搔菌后的恢复情况。【结果】T在各个碳源的菌丝生长速度低于H,粉孢子等级在3-4级之间,SOD、CAT活性低于H,在栽培料中的Lac活性和MnP活性在第5天时与H相同,在第10、15、20天低于H。T在搔菌后菌丝恢复时间比H恢复时间长,恢复后的菌丝长势没有H长势浓密。【结论】通过探究金针菇原始菌株与退化菌株的菌丝生理生化特征,为判断金针菇菌株是否为退化菌株提供理论依据。  相似文献   
104.
枯草芽孢杆菌Bacillus subtilis是微生物生理生化机理研究的模式菌株,也是工业应用生产小分子化合物、大宗化学品、工业酶、药物及保健品等生物制剂的良好底盘细胞。近些年,研究枯草芽孢杆菌的合成生物技术和代谢工程方法日新月异,为利用其作为底盘细胞生产目标产品提供了良好的工具和理论参考。文中综述了利用枯草芽孢杆菌为细胞工厂,在代谢改造中通过调节全局调控因子,基因组精简及优化,多位点、多维调控,自身生物传感动态调控,膜蛋白工程等方法,系统调控优化菌株;在蛋白质试剂生产改造中,通过优化基因启动子、蛋白质信号肽、菌株自身蛋白质分泌元件,构建无化学诱导剂表达系统等方法,优化生产菌株。另外,文中对未来进一步针对优化枯草芽孢杆菌进行工业生产中需要注意和重点关注的问题、方向进行展望。  相似文献   
105.
Previous investigations into the optimisation of internal plates have mostly focused on the material properties of the implant. In this work, we optimise the shape, size and placement of the plate for successfully minimising bone remodelling around the implant. A design optimisation algorithm based on strain energy density criterion, combined with the finite element analysis, has been used in this study. The main optimisation goal was to reduce this change and keep it close to the conditions of an intact femur. The results suggest that the anterolateral side of the bone would be the optimum location for the plate, as for the geometry, the optimum moves towards having a thick, wide and short plate. These important results could be directly applicable to orthopaedic surgeons treating a femur fracture with internal plates. Since the optimisation algorithm remains the same for any patient, this advancement provides the surgeon with a tool to minimise the post surgery remodelling by trying to maintain the natural structure of the bone.  相似文献   
106.
A combined experimental/numerical study was performed to calculate the 3D octahedral shear strain map in a mouse tibia loaded axially. This study is motivated by the fact that the bone remodelling analysis, in this in vivo mouse model should be performed at the zone of highest mechanical stimulus to maximise the measured effects. Accordingly, it is proposed that quantification of bone remodelling should be performed at the tibial crest and at the distal diaphysis. The numerical model could also be used to furnish a more subtle analysis as a precise correlation between local strain and local biological response can be obtained with the experimentally validated numerical model.  相似文献   
107.
Actin filaments are a major component of the cytoskeleton and play a crucial role in cell mechanotransduction. F-actin networks can be reconstituted in vitro and their mechanical behaviour has been studied experimentally. Constitutive models that assume an idealised network structure, in combination with a non-affine network deformation, have been successful in capturing the elastic response of the network. In this study, an affine network deformation is assumed, in which we propose an alternative 3D finite strain constitutive model. The model makes use of a micro-sphere to calculate the strain energy density of the network, which is represented as a continuous distribution of filament orientations in space. By incorporating a simplified sliding mechanism at the filament-to-filament junctions, premature filament locking, inherent to affine network deformation, could be avoided. The model could successfully fit experimental shear data for a specific cross-linked F-actin network, demonstrating the potential of the novel model.  相似文献   
108.
Soft tissues are anisotropic materials yet a majority of mechanical property tests have been uniaxial, which often failed to recapitulate the tensile response in other directions. This paper aims to study the feasibility of determining material parameters of anisotropic tissues by uniaxial extension with a minimal loss of anisotropic information. We assumed that by preselecting a certain constitutive model, we could give the constitutive parameters based on uniaxial extension data from orthogonal strip samples. In our study, the Holzapfel–Weizsäcker type strain energy density function (H–W model) was used to determine the material parameters of arterial walls from two fresh donation bodies. The key points we applied were the relationships between strain components in uniaxial tensile tests and the methods of stochastic optimisation. Further numerical experiments were taken. The estimate–effect ratio, defined by the number of data with the precision of estimation less than 0.5% over whole size of data, was calculated to demonstrate the feasibility of our method. The material parameters for Chinese aorta and pulmonary artery were given with the maximum root mean square (RMS) errors 0.042, and the minimal estimate–effect ratio in numerical experiments was 90.79%. Our results suggest that the constitutive parameters of arterial walls can be determined from uniaxial extension data, given the passive mechanical behaviour governed by H–W model. This method may apply to other tissues using different constitutive models.  相似文献   
109.
110.
It is always recommended to use more implants for supporting a prosthesis in the immediate loading condition than in the classical two-stage treatment procedure. By means of the finite element (FE) method, the influence of the number of implants used in immediately loaded fixed partial prosthesis (FPP) on the load distribution was investigated, considering the abutment geometry. Two 3D FE models were studied employing four implants to support a FPP in the premaxilla. One model was designed with straight abutments and the other with 20°-angled abutments. The results concerning implant displacements, stresses and strains were compared with those of two implant-supported FPPs, obtained in a previous study. A noticeable reduction in the determined biomechanical bone loading was observed with the use of more implants in supporting an immediately loaded prosthesis. This study confirms that the use of additional numbers of implants in an immediately loaded prosthesis is highly recommended.  相似文献   
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