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51.
目的探讨预适应锻炼对新兵急进高原后脑功能的改善作用。方法120名新兵随机分为4组:对照组、面罩组、运动组和面罩复合运动组。在进入高原前,面罩复合运动组佩带低氧呼吸器小步快走10 min,休息5 min后重复进行,上、下午各进行4次,连续进行7 d;面罩组、运动组分别只佩带低氧呼吸器或单纯运动。在空运进入高原后,比较进高原前、后的神经行为核心测试组合系统指标的改变,并对急性高原反应症状进行分析。结果使用低氧呼吸器复合小步快走5 min时动脉血氧饱和度可降到(80.5±5.7)%,达到预缺氧的目的。新兵进入3 658 m高原后,对照组、面罩组和运动组的数字跨度、目标追踪测试分值明显下降(P<0.05),而面罩复合运动组无明显改变(P>0.05);各组进藏前、后的简单反应时、数字译码和视觉保留均无显著性改变(P>0.05),手敏捷度则显著提高(P<0.05)。对照组、面罩组、运动组和面罩复合运动组的急性高原反应发病率分别为13.3%、20.0%、20.0%、3.3%。结论进入高原前,应用低氧呼吸器辅以适当运动,能改善急进高原人群的即时听觉记忆能力和手部运动的速度及准确性,避免部分脑功能的损害,并使急性高原反应发病率呈降低趋势。  相似文献   
52.
Endoneurial hypoxia and a high frequency of closed capillaries have been found in chronic experimental diabetes and human diabetic sural nerve, respectively. These findings have led to the hypothesis that the pathogenesis of diabetic neuropathy is due to endoneurial hypoxia. To evaluate the role of endoneurial hypoxia in experimental diabetic neuropathy, the effects of supplementation and deprivation of oxygen on peripheral nerve lipid biosynthesis were studied in normal control and streptozotocin-induced diabetic rats. Defective lipid biosynthesis in diabetic nerve was partially prevented by oxygen supplementation. When normal rats were placed in a hypoxic chamber, lipid abnormalities similar to those observed in diabetic nerves were demonstrated in the absence of changes in nerve free sugars. These findings suggest that endoneurial hypoxia may underlie some key biochemical abnormalities encountered in experimental diabetic neuropathy.  相似文献   
53.
唐勇  吴燕峰  沈慧勇 《中国医药》2007,2(10):577-578
目的探讨适用于细胞移植的人嗅鞘细胞(OECs)分离与培养的方法。方法无菌条件下取自愿捐献孕5个月流产胎儿的完整嗅球进行嗅鞘细胞提取分离、纯化,并对嗅鞘细胞进行免疫组化染色及纯度检测,观察其形态学特点,检测其免疫组化染色的阳性率。结果本方法分离、培养的嗅鞘细胞大多呈三角形、梭形,有些突起较长,生长活跃,增殖迅速,P75、胶质纤维酸性蛋白(GFAP)免疫组化染色呈阳性,嗅鞘细胞阳性率为95.3%。结论该方法简便易行且不影响细胞功能,适用于细胞移植的研究。  相似文献   
54.
The distribution of elements (e.g. Na, Cl, K) and water in CNS cells is unknown. Therefore, electron probe X-ray microanalysis (EPMA) was used to measure water content and concentrations (mmol/kg dry or wet weight) of Na, Mg, P, S, Cl, K and Ca in morphological compartments of myelinated axons and glial cells from rat optic nerve and cervical spinal cord white matter. Axons in both CNS regions exhibited similar water content ( 90%), and relatively high concentrations (wet and dry weight) of K with low Na and Ca levels. The K content of axons was related to diameter, i.e. small axons in spinal cord and optic nerve had significantly less (25–50%) K than larger diameter axons from the same CNS region. The elemental composition of spinal cord mitochondria was similar to corresponding axoplasm, whereas the water content (75%) of these organelles was substantially lower than that of axoplasm. In glial cell cytoplasm of both CNS areas, P and K (wet and dry weight) were the most abundant elements and water content was approximately 75%. CNS myelin had predominantly high P levels and the lowest water content (33–55%) of any compartment measured. The results of this study demonstrate that each morphological compartment of CNS axons and glia exhibits a characteristic elemental composition and water content which might be related to the structure and function of that neuronal region.  相似文献   
55.
自体表皮细胞培养与异体真皮组合应用研究   总被引:13,自引:0,他引:13  
严重烧伤病人皮肤修复中主要未解决的问题是真皮的替代。动物实验结果表明,异体皮移植后5天,用自体培养表皮细胞膜片覆盖真皮床,14天后复合皮成活率是84.6%±2.4%。组织学检查证实表皮已形成了复层结构,可见基底层、颗粒层和角质层。临床应用中,异体皮移植后10天,去除异体表皮覆盖病人的自体培养表皮,35天后未见排斥征象,异体真皮促进了培养表皮的分层、成熟和完整,组织学检查证实表皮细胞的边缘清楚,已分化形成颗粒层和角质层,真皮多细胞,已血管化,但表皮嵴缺乏。  相似文献   
56.
57.
安吉复口服液的耐缺氧,耐低温和抗疲劳作用   总被引:2,自引:0,他引:2  
采用缺氧、寒冷和负重游泳等方法,观察了安吉复口服液(0.025、0.1和0.4mg·kg~(-1),ig,qd×14d)对小鼠的耐缺氧、耐低温及抗疲劳作用.结果表明,安吉复口服液0.1、0.4mg·kg~(-1)可延长KCN中毒小鼠的存活时间及延长小鼠在寒冷环境中存活时间,而0.4mg·kg~(-1)可延长常压缺氧条件下小鼠存活时间及延长小鼠负重游泳时间.  相似文献   
58.
采用模拟在人体中使用的实测超声剂量,对体外培养的L-929株细胞进行辐照,通过细胞回复能力试验,观察回复前后的细胞增殖与抑制。对体外培养的人胚肺纤维细胞经1次及5次辐照,观察了DNA及细胞核面积的影响。并通过电镜观察了细胞超微结构的变化。上述实验结果,均提示经辐照后细胞有增殖趋向  相似文献   
59.
The cellular and regional distribution of glutathione (GSH) and GSH-related enzyme systems involved in cellular defense against reactive oxygen species and electrophilic xenobiotics in the nervous system has been extensively studied. However, little is known about the subcellular distribution of GSH systems in brain tissue and cultured neural cells. The present study investigates the distribution of mitochondrial and cytosolic GSH and GSH-related enzymes in cultured cerebellar astrocytes and granule cells, and compares them with levels in the adult rat cerebellum. Cytosolic GSH levels and cytosolic activities of glutathione reductase (GR), glutathione peroxidase (GPx) and glutathione-S-transferase (GST) in astrocytes were 57, 153, 245, and 92% higher than those found in granule cells, respectively. In contrast, granule cells contained significantly higher mitochondrial GSH levels than astrocytes. Granule cells also demonstrated comparable mitochondria/cytosolic concentrations of GSH and GR, GPX and GST activities to those observed in the cerebellar tissue, whereas ratios in astrocytes were markedly lower. Although in vitro treatments with 100 μM ethacrynic acid depleted both cytosolic and mitochondrial GSH in cultured astrocytes and granule cells in a time-dependent fashion, cellular GSH in granule cells was more resistant to the GSH-depleting agent than astrocytes. These results suggest that although GSH and GSH-related enzymes are abundant in cytosolic compartments of astrocytes, mitochondrial pools are relatively small. Since brain mitochondria are sites of significant hydrogen peroxide generation, the mitochondrial localization of GSH and its associated enzymes in neural cells provide important defenses against toxic oxygen species in the nervous system. Differences in subcellular distribution of GSH systems in individual neural cell types may provide a basis for selective cellular and/or subcellular expression of neurotoxicity.  相似文献   
60.
Conclusion The mechanisms that regulate regeneration of kidney epithelial cells after acute tubular necrosis are poorly understood. Repair of the nephron can take place in the adverse systemic metabolic setting caused by failure of renal function. This clinical observation suggests that factors released at the site of the tubular insult can mediate repair. Studies carried out in this and other laboratories show that kidney epithelial cells can release and respond to polypeptide growth factors which may thereby contribute to renal regeneration by autocrine and paracrine mechanisms. Specific growth factors secreted by cells and deposited in the tubular basement membrane prior to injury may subsequently participate in nephron repair. In addition, adenine nucleotides released from injured or dying cells at the injury site or provided exogenously could stimulate surviving renal epithelial cells at the edges of the wound to migrate along the basement membrane to rapidly reepithelialize the nephron and subsequently initiate mitogenesis to replace cells lost by necrosis.The nephrotoxic effect of many agents used in cancer chemotherapy and the older age of patients undergoing complicated surgical procedures has increased the incidence of ARF, whereas the mortality rate has not changed since the early 1950s [22]. Thus there is considerable need for innovative therapeutic strategies. An important goal of future research efforts is to identify new growth factors that facilitate migration, differentiation, and proliferation of renal epithelial cells at sites of tubular necrosis. Isolation and use of these agents in combination with dialysis and nutritional support could speed renal regeneration and thereby improve the outcome in patients with this condition.Abbreviations ARF acute renal failure - ECM extracellular matrix - EGF epidermal growth factor - FGF fibroblast growth factor - IGF insulin-like growth factor - MGSA melanocyte growth-stimulating activity - PDGF platelet-derived growth factor - IGF transforming growth factor  相似文献   
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