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51.
52.
目的: 在完成吸入室内空气状态下症状限制性最大极限心肺运动试验(CPET)和动脉血气指标动态变化规律的基础上,进一步探讨体液酸碱度和CO2含量对呼吸调控的影响。方法: 选正常志愿者5名,给予5%NaHCO3(总量0.3 g/kg)分次口服,每5 min口服75 ml(3.75g )。总量服完1 h后,重复CPET。于静息、热身、运动及恢复期,连续测定肺通气指标及每分钟动脉取样的血气指标变化,并与本人在非碱化血液条件下对照数据进行配对t检验比较。结果: 碱化血液之后,CPET期间随着运动功率逐步递增,气体交换和血气指标的反应模式与非碱化血液对照相似(P>0.05);即与静息状态比较,每分通气量、潮气量、呼吸频率、VO2、VCO2均呈现近于线性渐进性递增(P<0.05~0.001)。与碱化血液前吸入室内空气的对照比较:在碱化血液条件下,所有时间点血红蛋白浓度,PaCO2与pH均显著提高(P<0.05);除无氧阈PaCO2减低外,只有热身状态呈增高态势,统计学有显著差异(P<0.05);而PaO2无差异(P>0.05),各状态均较对照状态减低,除恢复期外均有统计学差异(P<0.05)。与非碱化血液对照比较,除静息每分通气量低于对照(P<0.05)外,所有通气指标均无统计学差异(P>0.05)。结论: 碱化血液条件下, 尽管有更高的CaCO2, PaCO2 和 pHa平均水平及更低的Hba和[H+]a平均水平,机体对CPET的呼吸反应模式基本相似。 相似文献
53.
Rooney B O'Donovan H Gaffney A Browne M Faherty N Curran SP Sadlier D Godson C Brazil DP Crean J 《FEBS letters》2011,(3):2967-538
We describe the activation of Wnt signalling in mesangial cells by CCN2. CCN2 stimulates phosphorylation of LRP6 and GSK-3β resulting in accumulation and nuclear localisation of β-catenin, TCF/LEF activity and expression of Wnt targets. This is coincident with decreased phosphorylation of β-catenin on Ser 33/37 and increased phosphorylation on Tyr142. DKK-1 and LRP6 siRNA reversed CCN2’s effects. Microarray analyses of diabetic patients identified differentially expressed Wnt components. β-Catenin is increased in type 1 diabetic and UUO mice and in in vitro models of hyperglycaemia and hypertension. These findings suggest that Wnt/CCN2 signalling plays a role in the pathogenesis of diabetic nephropathy. 相似文献
54.
Deirdre C. Rooney Elena Hutchens Nicholas Clipson James Baldini Frank McDermott 《Microbial ecology》2010,60(4):753-761
Caves are extreme and specialised habitats for terrestrial life that sometimes contain moonmilk, a fine-grained paste-like secondary mineral deposit that is found in subterranean systems worldwide. While previous studies have investigated the possible role of microorganisms in moonmilk precipitation, the microbial community ecology of moonmilk deposits is poorly understood. Bacterial and fungal community structure associated with four spatially isolated microcrystalline, acicular calcite moonmilk deposits at Ballynamintra Cave (S. Ireland) was investigated during this study. Statistical analyses revealed significant differences in microbial activity, number of bacterial species, bacterial richness and diversity, and fungal diversity (Shannon's diversity) among the moonmilk sites over an area of approximately 2.5 m2. However, the number of fungal species and fungal community richness were unaffected by sampling location. SIMPER analysis revealed significant differences in bacterial and fungal community composition among the sampling sites. These data suggest that a rich assemblage of microorganisms exists associated with moonmilk, with some spatial diversity, which may reflect small-scale spatial differences in cave biogeochemistry. 相似文献
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56.
The process by which fibronectin (FN), a soluble multidomain protein found in tissue fluids, forms insoluble fibrillar networks in the extracellular matrix is poorly understood. Cryptic sites found in FN type III domains have been hypothesized to function as nucleation points, thereby initiating fibrillogenesis. Exposure of these sites could occur upon tension-mediated mechanical rearrangement of type III domains. Here, we present the solution structures of the second type III domain of human FN ((2)FNIII), and that of an interaction complex between the first two type III domains ((1-2)FNIII). The two domains are connected through a long linker, flexible in solution. A weak but specific interdomain interaction maintains (1-2)FNIII in a closed conformation that associates weakly with the FN N-terminal 30 kDa fragment (FN30 kDa). Disruption of the interdomain interaction by amino-acid substitutions dramatically enhances association with FN30 kDa. Truncation analysis of (1-2)FNIII reveals that the interdomain linker is necessary for robust (1-2)FNIII-FN30 kDa interaction. We speculate on the importance of this interaction for FN function and present a possible mechanism by which tension could initiate fibrillogenesis. 相似文献
57.
Begley U Dyavaiah M Patil A Rooney JP DiRenzo D Young CM Conklin DS Zitomer RS Begley TJ 《Molecular cell》2007,28(5):860-870
58.
Sunandan Saha Lauren E. Woodard Elizabeth M. Charron Richard C. Welch Cliona M. Rooney Matthew H. Wilson 《Nucleic acids research》2015,43(3):1770-1782
Non-viral transposons have been used successfully for genetic modification of clinically relevant cells including embryonic stem, induced pluripotent stem, hematopoietic stem and primary human T cell types. However, there has been limited evaluation of undesired genomic effects when using transposons for human genome modification. The prevalence of piggyBac(PB)-like terminal repeat (TR) elements in the human genome raises concerns. We evaluated if there were undesired genomic effects of the PB transposon system to modify human cells. Expression of the transposase alone revealed no mobilization of endogenous PB-like sequences in the human genome and no increase in DNA double-strand breaks. The use of PB in a plasmid containing both transposase and transposon greatly increased the probability of transposase integration; however, using transposon and transposase from separate vectors circumvented this. Placing a eGFP transgene within transposon vector backbone allowed isolation of cells free from vector backbone DNA. We confirmed observable directional promoter activity within the 5′TR element of PB but found no significant enhancer effects from the transposon DNA sequence. Long-term culture of primary human cells modified with eGFP-transposons revealed no selective growth advantage of transposon-harboring cells. PB represents a promising vector system for genetic modification of human cells with limited undesired genomic effects. 相似文献
59.
The efficiency with which a plant intercepts solar radiation is determined primarily by its architecture. Understanding the genetic regulation of plant architecture and how changes in architecture affect performance can be used to improve plant productivity. Leaf inclination angle, the angle at which a leaf emerges with respect to the stem, is a feature of plant architecture that influences how a plant canopy intercepts solar radiation. Here we identify extensive genetic variation for leaf inclination angle in the crop plant Sorghum bicolor, a C4 grass species used for the production of grain, forage, and bioenergy. Multiple genetic loci that regulate leaf inclination angle were identified in recombinant inbred line populations of grain and bioenergy sorghum. Alleles of sorghum dwarf-3, a gene encoding a P-glycoprotein involved in polar auxin transport, are shown to change leaf inclination angle by up to 34° (0.59 rad). The impact of heritable variation in leaf inclination angle on light interception in sorghum canopies was assessed using functional-structural plant models and field experiments. Smaller leaf inclination angles caused solar radiation to penetrate deeper into the canopy, and the resulting redistribution of light is predicted to increase the biomass yield potential of bioenergy sorghum by at least 3%. These results show that sorghum leaf angle is a heritable trait regulated by multiple loci and that genetic variation in leaf angle can be used to modify plant architecture to improve sorghum crop performance. 相似文献
60.
Orozco AM Al-Muhtaseb AH Albadarin AB Rooney D Walker GM Ahmad MN 《Bioresource technology》2011,102(19):9076-9082
The visibility of using municipal bio-waste, wood shavings, as a potential feedstock for ethanol production was investigated. Dilute acid hydrolysis of wood shavings with H?PO? was undertaken in autoclave parr reactor. A combined severity factor (CSF) was used to integrate the effects of hydrolysis times, temperature and acid concentration into a single variable. Xylose concentration reached a maximum value of 17 g/100 g dry mass corresponding to a yield of 100% at the best identified conditions of 2.5 wt.% H?PO?, 175 °C and 10 min reaction time corresponding to a CSF of 1.9. However, for glucose, an average yield of 30% was obtained at 5 wt.% H?PO?, 200 °C and 10 min. Xylose production increased with increasing temperature and acid concentration, but its transformation to the degradation product furfural was also catalysed by those factors. The maximum furfural formed was 3 g/100 g dry mass, corresponding to the 24% yield. 相似文献