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71.
Fibroblast growth factors (FGFs) exhibit widespread mitogenic and neurotrophic activities. Nine members of the family are currently known, and FGF-1 and FGF-2 are present in relatively high levels in CNS. FGF-1 is expressed by a subset of neuronal populations, while FGF-2 is expressed by astrocytes. FGF-1 and FGF-2 lack signal peptides and appear to be present mainly in inracellular compartmens. This suggests that the factors may act as initiators of a repair response after injury. Support for this notion comes from observations that FGF-1 and FGF-2 levels are low during critical phases of development, but high in the adult CNS. A family of transmembrane tyrosine kinase receptors (FGFRs) mediates the effects of FGFs. Four different genes coding for FGF receptors are currently known, three of which are expressed in cell type-specific patterns in the CNS The main receptor variants present in this tissue, however, can by themselves not distinguish between FGF-1 and FGF-2. Additional selectivity may be established by interaction of the FGFs and their receptors with select heparan proteoglycans (HSPGs). Therefore, the precise physiological role of FGFs is determined by the combination of cell type-specific patterns of expression of FGFs, FGFRs and HSPGs together with the mechanisms that regulate the extracellular availability of FGFs. 1994 John Wiley & Sons, Inc.  相似文献   
72.
采用放射性配基结合分析法,现察内毒大致大鼠急性肺损伤时肺β-肾上腺素能受体(β-AR)的变化。分别用荧光偏振法和高效液相色谱测定肺组织细胞膜脂流动性和磷脂含量。结果显示:(1)静脉注射内毒素后4h,大鼠肺β-AR的最大结合容量明显降低,较对照组减少47%;(2)内毒素组肺膜脂流动性和磷脂含量均明显降低,同时伴有肺组织磷脂酶A2(PLA2)活性升高。提示:(1)β-AR下调导致其介导的功能减弱,在内毒素诱导的大鼠急性肺损伤发病机理中起一定作用;(2)PLA2激活是膜磷脂减少的重要原因,后者可导致膜脂流动性降低,结果引起β-AR的侧向扩散和旋转运劝减弱,从而减少β-AR与配基结合的机率,出现β-AK下调。  相似文献   
73.
人肝刺激因子对大鼠实验性慢性肝损伤的保护作用   总被引:3,自引:0,他引:3  
从健康孕妇水囊引产4─6个月龄的胎儿取肝,采用LaBrecque方法提取人肝刺激因子(hHSS)。经3H-胸腺嘧啶核苷参入肝DNA法测定其生物活性。表明此hHSS可刺激肝细胞DNA合成。采用皮下注射CCl4和饮用10%乙醇来制备慢性肝损伤动物模型,观察了hHSS的保护肝脏作用。结果表明:hHSS可使CCl4-乙醇所致慢性肝损伤大鼠的死亡率、血清谷丙转氨酶水平、肝组织中羟脯氨酸含量的升高以及肝组织中丙二醛的含量降低。肝组织切片表明:hHSS能减轻肝组织的损伤程度,促进肝细胞再生,并能明显防止肝纤维化的形成和发展。可见,hHSS对CCl4-乙醇所致的慢性肝损伤大鼠有明显的保护作用,其机制可能与促进肝细胞再生及抑制肝细胞膜的脂质过氧化有关。  相似文献   
74.
重组BCG口服免疫诱导的细胞和体液免疫应答最近研究证明,外源基因能在牛分枝杆菌BCG中表达,用这些重组分枝杆菌免疫小鼠可诱导抗外来蛋白的细胞和抗体免疫应答。近年来的许多研究也证实了肠道和呼吸道粘膜淋巴系统在防御感染方面的贡献,因此,迫切需要能够刺激粘...  相似文献   
75.
Summary This study investigates the characteristics of two human cell lines—1PT and 1PT VARIANT A—both derived from the same histologically undifferentiated, neuroendocrine positive, non-small cell lung carcinoma (NSCLC) and capable of growth in unsupplemented serum-free minimum essential medium. In stationary culture, the cells of both lines grew both attached to a plastic substratum and in suspension; the 1PT VARIANT A line formed three-dimensional clusters of loosely adherent cells. The cell lines differed in their DNA content, the 1PT having 1.44 times and the 1PT VARIANT A having 2.39 times the normal human diploid DNA content. Chromosome counts supported this observation, the ploidy of the 1PT and VARIANT A lines being 1.11 and 1.64, respectively. On transmission electron microscopy the cells of both lines had dense core granules and immature desmosomes, whereas only the 1PT VARIANT A line had mucin granules. Both lines formed, in nude mice, tumors that, like the original tumor from which they were derived, were histologically undifferentiated and showed local invasion. The original tumor and both lines had demonstrable neuroendocrine markers. Cytokeratins were apparent in the tumor but not the cell lines, and neurofilaments were present in the cell lines only. Staining for epithelial membrane antigen, neural cell adhesion molecule, and desmoplakin differentiated between the two lines. These lines provide a useful model for the investigation of the biology of the neuroendocrine positive subgroup of NSCLC, which is clinically important because of the possible responsiveness of these tumors to chemotherapy.  相似文献   
76.
Catalase plays a major role in the protection of tissues from toxic effects of H2O2 and partially reduced oxygen species. In the present study catalase was extracted and purified 330-fold from goat lung by acetone fractionation and successive chromatographies on DEAE-cellulose, Sephadex G-200, Blue Sepharose CL-6B and Ultrogel AcA-34. The purified enzyme was almost homogeneous as judged by polyacrylamide gel electrophoresis and FPLC. The molecular weight and Stokes' radius of the purified enzyme were 339 kDa and 127±2 Å. The enzyme had 11 sulfhydryl groups and 15 tryptophan groups per mol of the enzyme. A broad pH optimum in the range 5.2 to 7.8 was obtained. Sulfhydryl group binding agents, thiol reagents and N-Bromosuccinimide inhibited the enzyme activity. The kinetic data show no cooperativity between the substrate binding sites. Tryptophan, indole acetic acid, cysteine, formaldehyde and sodium azide inhibited the enzyme non-competitively with Ki values of 1.5, 1.6, 6.7, 0.55 and 0.0017 mM, respectively.  相似文献   
77.
采用SDS聚丙烯酰胺凝胶电泳银染色的方法,对58例肺癌患者和32例肺结核患者的血清蛋白进行比较分析,发现有五种特异蛋白,分别存在于A区、C区、F区和G区。肺癌组和肺结核组比较,存在极显著性差异(P<0.01),提示有早期诊断肺癌的价值,有可能成为临床诊断肺癌的一个重要参考指标。  相似文献   
78.
Small cell lung carcinoma (SCLC) is a highly aggressive cancer with low survival rate. Although initial response to chemotherapy in SCLC patients is well-rated, the treatments applied after the disease relapses are not successful. Drug resistance is accepted to be one of the main reasons for this failure. Therefore, there is an urgent need for new treatment strategies for SCLC. Meclofenamic acid, a nonsteroidal anti-inflammatory drug, has been shown to have anticancer effects on various types of cancers via different mechanisms. The aim of this study was to investigate the alterations that meclofenamic acid caused on a SCLC cell line, DMS114 using the tools of proteomics namely two-dimensional gel electrophoresis coupled to MALDI-TOF/TOF and nHPLC coupled to LC-MS/MS. Among the proteins identified by both methods, those showing significantly altered expression levels were evaluated using bioinformatics databases, PANTHER and STRING. The key altered metabolism upon meclofenamic acid treatment appeared to the cellular energy metabolism. Glycolysis was suppressed, whereas mitochondrial activity and oxidative phosphorylation were boosted. The cells underwent metabolic reprogramming to adapt into their new environment for survival. Metabolic reprogramming is known to cause drug resistance in several cancer types including SCLC. The identified differentially regulated proteins in here associated with energy metabolism hold value as the potential targets to overcome drug resistance in SCLC treatment.  相似文献   
79.
棉花耐害补偿临界指标及其应用的探讨   总被引:2,自引:0,他引:2  
棉花耐害补偿反应可归纳为三种动态类型:1)不足补偿动态反应型;2)完全——不足补偿动态反应型;3)超越——完全——不足补偿动态反应型。其临界指标的建立及其应用可优化棉花病虫害综防决策.以研究害虫防治决策为例,剖析了利用害虫自然种群,人为改变害虫自然种群、人为地接放一定虫量与人工损害模拟等不同测定棉花耐害补偿能力方法的利弊。并探讨改进措施.分析论述了不同量化棉花耐害补偿能力的方法,并就棉花耐害补偿临界指标的建立及其意义作了探讨.棉花耐害补偿临界描标在棉田生态系统有害生物综合治理中可用于指导防治决策或直接用于防治决策,有着十分广阔的应用前景.最后就棉花耐害补偿临界指标及其应用的研究方向及有关问题作了讨论。  相似文献   
80.
Drug-induced liver injury (DILI) is an adverse outcome of the currently used tuberculosis treatment regimen, which results in patient noncompliance, poor treatment outcomes, and the emergence of drug-resistant tuberculosis. DILI is primarily caused by the toxicity of the drugs and their metabolites, which affect liver cells, biliary epithelial cells, and liver vasculature. However, the precise mechanism behind the cellular damage attributable to first-line antitubercular drugs (ATDs), as well as the effect of toxicity on the cell survival strategies, is yet to be elucidated. In the current study, HepG2 cells upon treatment with a high concentration of ATDs showed increased perforation within the cell, cuboidal shape, and membrane blebbing as compared with control/untreated cells. It was observed that ATD-induced toxicity in HepG2 cells leads to altered mitochondrial membrane permeability, which was depicted by the decreased fluorescence intensity of the MitoRed tracker dye at higher drug concentrations. In addition, high doses of ATDs caused cell damage through an increase in reactive oxygen species production in HepG2 cells and a simultaneous reduction in glutathione levels. Further, high dose of isoniazid (50–200 mM), pyrazinamide (50–200 mM), and rifampicin (20–100 µM) causes cell apoptosis and affects cell survival during toxic conditions by decreasing the expression of potent autophagy markers Atg5, Atg7, and LC3B. Thus, ATD-mediated toxicity contributes to the reduced ability of hepatocytes to tolerate cellular damage caused by altered mitochondrial membrane permeability, increased apoptosis, and decreased autophagy. These findings further emphasize the need to develop adjuvant therapies that can mitigate ATD-induced toxicity for the effective treatment of tuberculosis.  相似文献   
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