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21.
目的:探讨CPAP(Continuous Positive Airway Pressure)联合肺表面活性物质治疗新生儿呼吸窘迫综合征(NRDS)临床疗效及对血气指标的影响。方法:选择2014年8月至2018年8月本院收治的新生儿呼吸窘迫综合征患者200例,将其随机分为2组,每组100例。A组给予CPAP(持续正压通气)联合肺表面活性物质治疗,B组给予CPAP(持续正压通气)治疗,分析和比较两组的临床疗效及治疗前后血气指标的变化。结果:治疗后,两组新生儿患者PaO_2均较治疗前均显著升高,PaCO_2较治疗前明显降低,且A组PaO_2显著高于B组(P0.05),PaCO_2显著低于B组(P0.05);A组住院时间显著短于B组(P0.05),临床总有效率显著高于B组(P0.05);两组新生儿患者的胸部X线评分均较治疗前显著降低(P0.05),A组12 h和24 h胸部X线评分均显著性低于B组(P0.05);A组PEEP/cmH_2O水平显著低于B组(P0.05),Fi O_2水平显著高于B组(P0.05);两组生儿患者的的OI指数均较治疗前显著升高,且A组明显高于B组(P0.05)。结论:CPAP联合肺表面活性物质治疗NRDS的临床效果显著优于单用CPAP(持续正压通气)治疗,且且可显著改善患儿血气指标。  相似文献   
22.
摘要 目的:探讨高频振荡通气(HFOV)联合肺表面活性物质(PS)对治疗新生儿急性肺损伤/急性呼吸窘迫综合征(ALI/ARDS)的疗效及对肺动态顺应性的影响。方法:选择2018年1月至2020年12月我院新生儿科收治的160例ALI/ARDS患儿进行研究,按照随机数表法分为观察组和对照组,每组80例。对照组患儿给予常频通气(CMV)模式联合PS治疗,观察组患儿给予HFOV模式联合PS治疗。比较两组患儿一般治疗情况、治疗前后肺动态顺应性、动脉血氧分压(PaO2)、动脉二氧化氮分压(PaCO2)、氧合指数(OI)、血清肿瘤坏死因子-α(TNF-α)、白细胞介素(IL)-6、IL-10的变化,以及治疗期间并发症发生情况。结果:观察组胸片恢复正常时间、机械通气时间、氧暴露时间、ICU停留时间、住院时间结果均明显短于对照组(P<0.05),两组患儿病死率相比较,无统计学意义(P>0.05);治疗后12 h、24 h、48 h时,观察组肺动态顺应性及PaO2、OI结果明显高于对照组,PaCO2明显比对照组低,差异有统计学意义(P<0.05);治疗后48 h时,观察组血清TNF-α、IL-6水平均明显低于对照组,IL-10明显比对照组高,差异有统计学意义(P<0.05);两组治疗期间,呼吸机相关性肺损伤、颅内出血、气漏、呼吸道感染的总发生率比较,无统计学意义(P>0.05)。结论:HFOV联合PS治疗新生儿ALI/ARDS疗效明显,可有效改善患儿肺动态顺应性,促进血气分析指标恢复,且可降低炎症因子的表达,值得推广应用。  相似文献   
23.
Surfactant protein-A (SP-A) belongs to a family of collagen-containing C-type lectins called collectins. SP-A is expressed by renal tubule epithelial cells. We investigated the distribution of SP-A in renal cell carcinomas (RCC) using immunohistochemical techniques and western blotting. We used 35 formalin fixed, paraffin embedded (FFPE) RCC tissue samples. We compared results with clinico-pathological parameters of RCC including age, sex, Fuhrman grade, tumor volume, tumor node metastasis (TNM) and clinical stage. SP-A was localized in the glomerulus and renal tubule epithelium in nontumor tissue and strong SP-A immunoreactivity was observed in tumor tissue. SP-A was expressed in the RCC tumor cells (64%) and nontumor cells (34%) in males and RCC tumor cells (90%) and nontumor cells (30%) in females. There was a significant correlation between SP-A immunoreactivity in tumor cells and gender, age, tumor diameter, Fuhrman grade and tumor diameter. Western blot analysis supported the immunohistochemical findings. We present evidence for involvement of SP-A in RCC and suggest that increased SP-A expression in RCC is associated with favorable prognosis.  相似文献   
24.
The stability of a cationic peroxidase isolated and purified from a cell suspension of Vaccinium myrtillus, microencapsulated in reverse micelles of sodium dioctylsulfosuccinate (AOT) was evaluated. By using a central composite design (CCD), some relevant parameters for the enzymatic activity, such as surfactant and water concentration, pH and buffer molarity, were analysed. The response surface curves showed that 50 mM AOT, 500 mM water, 80 mM buffer and pH 7.6 were the best conditions for enzyme stability. The effect of carbohydrates and polyols on enzyme stability was also evaluated. At 20 mM, carbohydrates like arabinose, and trehalose increased the enzymatic stability by a factor of 4.4 and 2.3, respectively, but melezitose had no effect. From the three polyols tested, inositol and sorbitol increased the peroxidase stability by a factor of 3.8 and 1.8, respectively, while mannitol had no effect.  相似文献   
25.
Self‐assembly of natural or designed peptides into fibrillar structures based on β‐sheet conformation is a ubiquitous and important phenomenon. Recently, organic solvents have been reported to play inductive roles in the process of conformational change and fibrillization of some proteins and peptides. In this study, we report the change of secondary structure and self‐assembling behavior of the surfactant‐like peptide A6K at different ethanol concentrations in water. Circular dichroism indicated that ethanol could induce a gradual conformational change of A6K from unordered secondary structure to β‐sheet depending upon the ethanol concentration. Dynamic light scattering and atomic force microscopy revealed that with an increase of ethanol concentration the nanostructure formed by A6K was transformed from nanosphere/string‐of‐beads to long and smooth fibrils. Furthermore, Congo red staining/binding and thioflavin‐T binding experiments showed that with increased ethanol concentration, the fibrils formed by A6K exhibited stronger amyloid fibril features. These results reveal the ability of ethanol to promote β‐sheet conformation and fibrillization of the surfactant‐like peptide, a fact that may be useful for both designing self‐assembling peptide nanomaterials and clarifying the molecular mechanism behind the formation of amyloid fibrils. Copyright © 2013 European Peptide Society and John Wiley & Sons, Ltd.  相似文献   
26.
Methylene blue (MB) biosorption properties of Rhizopus arrhizus were investigated in the presence of surfactants. The effects of cationic and anionic surfactants on MB removal by dead biomass (1 g L?1) were determined. MB removal was tested as a function of initial pH (2–12), contact time (5–1440 min), and dye (37.4–944.7 mg L?1) and surfactant (0–10 mM) concentrations. The opposite charged anionic surfactant dodecylbenzenesulfonic acid sodium salt (DBS) enhanced sorption of cationic MB by biomass dramatically. Maximum biosorption capacity was 471.5 mg g?1 at pH 8 with 0.5 mM DBS at 944.7 mg L?1 MB concentration. The surfactant-stimulated fungal decolorization method may provide a highly efficient, inexpensive, and time-saving procedure in biological wastewater treatment technologies.  相似文献   
27.
This study assessed the potential abilities of Scirpus triqueter for phytoremediation of soils contaminated with Pb-PAHs, amended with environment-friendly surfactant alkyl polyglucoside (APG). The effects of APG on the removal of PAHs from soil and the plant uptake and translocation of Pb were tested with plant growth and soil enzymatic activities. Experiments demonstrated that APG has an ability to facilitate PAH degradation and Pb uptake in the plant body at appropriate concentrations (20–40mg L?1). The highest PAH removal rate was observed in 30 mg L?1 APG treatment, and the highest accumulation of Pb was detected as 40 mg L?1 APG. Experiments documented the effects of APG on plant growth, soil enzymatic activity, bioaccumulation and translocation of Pb in Scirpus triqueter. Results indicated that the addition of appropriate APG enhanced PAH removal rate and increased plant uptake and translocation of Pb.  相似文献   
28.
Lysophosphatidylcholine (LPC) and lysophosphatidic acid (LPA), the most prominent lysoglycerophospholipids, are emerging as a novel class of inflammatory lipids, joining thromboxanes, leukotrienes and prostaglandins with which they share metabolic pathways and regulatory mechanisms. Enzymes that participate in LPC and LPA metabolism, such as the phospholipase A2 superfamily (PLA2) and autotaxin (ATX, ENPP2), play central roles in regulating LPC and LPA levels and consequently their actions. LPC/LPA biosynthetic pathways will be briefly presented and LPC/LPA signaling properties and their possible functions in the regulation of the immune system and chronic inflammation will be reviewed. Furthermore, implications of exacerbated LPC and/or LPA signaling in the context of chronic inflammatory diseases, namely rheumatoid arthritis, multiple sclerosis, pulmonary fibrosis and hepatitis, will be discussed. This article is part of a Special Issue entitled Advances in Lysophospholipid Research.  相似文献   
29.
Pulmonary surfactant is essential for life and is composed of a complex lipoprotein-like mixture that lines the inner surface of the lung to prevent alveolar collapse at the end of expiration. The molecular composition of surfactant depends on highly integrated and regulated processes involving its biosynthesis, remodeling, degradation, and intracellular trafficking. Despite its multicomponent composition, the study of surfactant phospholipid metabolism has focused on two predominant components, disaturated phosphatidylcholine that confers surface-tension lowering activities, and phosphatidylglycerol, recently implicated in innate immune defense. Future studies providing a better understanding of the molecular control and physiological relevance of minor surfactant lipid components are needed. This article is part of a Special Issue entitled Phospholipids and Phospholipid Metabolism.  相似文献   
30.
Enzyme immobilization on magnetic nanoparticles (MNPs) has been a field of intense studies in biotechnology during the past decade. The present study suggests MNPs negatively charged by docusate sodium salt (AOT) as a support for pectinase immobilization. AOT is a biocompatible anionic surfactant which can stabilize MNPs. Electrostatic adsorption can occur between enzyme with positive charge and oppositely charged surface of MNPs (ca. 100 nm). The effect of three factors, i.e. initial enzyme concentration, aqueous pH and AOT concentration in different levels was investigated on pectinase immobilization. Maximum specific activity (1.98 U/mg enzyme) of immobilized pectinase and maximum enzyme loading of 610.5 mg enzyme/g support was attained through the experiments. Initial enzyme concentration is significantly important on both loading and activity of immobilized enzyme, while pH and AOT concentration only affect the amount of immobilized enzyme. Immobilized enzyme on MNPs was recovered easily through magnetic separation. At near pH of immobilization, protein leakage in reusability of immobilized enzyme was low and activity loss was only 10–20% after six cycles. Since pH is associated with immobilization by electrostatic adsorption, the medium pH was changed to improve the release of protein from the support, as well. MNPs properties were investigated using Scanning Electron Microscopy (SEM), Fourier Transform Infrared (FT-IR) spectroscopy, and Dynamic Light Scattering (DLS) analysis.  相似文献   
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