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锂是人体内的一种微量元素且以化合物的形式广泛存在于自然界。作为一种古老的治疗精神疾病方面的药物,锂盐被用来治疗双相情感障碍已超过60年,而现在锂盐在临床上表现出来的新应用已经越来越引起医学界的广泛重视。现代研究表明,锂盐是一种强大的糖原合成酶激酶-3(GSK-3β)抑制剂,锂盐除对脑细胞过度活动起抑制作用外,还具有营养神经和保护神经、抗炎、抗氧化、抗癌、免疫调节以及对甲状腺功能亢进的治疗作用。锂盐化学结构相对简单,而且目前人们对锂盐的使用经验及对锂离子的血药浓度监测手段已日趋成熟,所以锂盐具有相当好的临床应用前景,未来更进一步加大对锂盐的临床应用及作用机制的研究力度。现就锂盐新发现的作用机制及临床应用作一综述。  相似文献   
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休克是由于有效循环血量不足引发的微循环障碍而表现一系列症候群,作为一种系统性疾病,病因十分复杂多样,诊疗过程中的临床决策应全面而富有针对性,并充分考虑到救治措施的协调一致和互相配合。系统论主张整体大于部分之和强调的就是措施之间的整体化效果,充分考虑到患者个体间差异,辩证分析不同类型休克、不同个体间不同表现,在系统理论指导下的富有针对性措施间协调一致的决策模式才是较为完整的休克救治临床决策模式。  相似文献   
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目的:探讨宫腹腔镜联合治疗输卵管阻塞性不孕症的临床治疗效果及在不同年龄及阻塞类型中的疗效差异。方法:选取2013年2月至2015年2月间我院收治的70例输卵管性不孕症患者,按照随机数字表法分为两组,对照组(n=35例)行宫腔镜引导下的输卵管疏通术,观察组(n=35例)在对照组治疗方案上联合腹腔镜治疗,比较两组的临床治疗效果,同时比较宫腹腔镜联合对不同年龄段以及不同阻塞类型患者的临床治疗效果。结果:观察组输卵管通畅情况优于对照组(Z=-2.207,P=0.027);观察组输卵管再通率高于对照组[82.86%vs 60.00%],差异有统计学意义(x2=4.480,P=0.034)。两组治疗后并发症发生率无差异(P0.05)。观察组治疗后1年总妊娠率高于对照组[82.86%vs 57.14%],差异有统计学意义(P0.05);宫内妊娠率高于对照组[80.00%vs51.43%],差异有统计学意义(P0.05)。年龄≤30岁组与年龄30岁组患者输卵管再通率、总妊娠率、宫内妊娠率无差异(P0.05)。壶腹部或伞部阻塞患者输卵管再通率、总妊娠率、宫内妊娠率均高于间质部阻塞患者和峡部阻塞患者,差异有统计学意义(P0.05)。结论:宫腹腔镜联合治疗输卵管阻塞性不孕症具有较好的疗效,且输卵管再通率和妊娠率得到明显提高,术后并发症也较少,并且对输卵管壶腹部或伞部阻塞的术后再通率效果最好。  相似文献   
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Arundo donax L. (Poaceae) is native to Mediterranean Europe and invasive in the Rio Grande Basin of North America. Rhizomes from nine sites in France and Spain infested with a candidate control agent, the armoured scale Rhizaspidiotus donacis (Hemiptera: Diaspididae) weighed 50% less than those from nine sites without scale.  相似文献   
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《Fungal biology》2020,124(2):83-90
Latterly, the upsurge in use of antifungal drugs has brought about the emergence of several drug-resistance strains, making it skeptical to continue relying on current therapeutic regime. In the necessity of resistance-free antifungal agent, flavonoids presented possibilities of replacing existing drugs, displaying antifungal activity against pathogenic fungi. Among them, quercetin, one of the most representative flavonoids, exhibited antifungal activity against Candida albicans. To inspect the further understanding regarding quercetin, the antifungal mode of action of quercetin was investigated. In the initial step, the apoptosis was monitored after quercetin treatment. Moreover, intracellular levels of Mg2+ was assessed and was determined that Mg2+ increase occurred under the influence of quercetin. In addition, several features of mitochondrial dysfunction were monitored. Mitochondrial dysfunction triggers decrease in mitochondrial redox levels and leads to disruption in mitochondrial antioxidant system. Increased intracellular ROS and decreased intracellular redox levels were also displayed, indicating the occurrence of overall disruption in antioxidant systems. Sequentially, DNA fragmentation was observed and this DNA damage in turn induces apoptosis. In analyses, hexaamminecobalt(III) chloride (Cohex) was applied to inhibit Mg2+ transport between cytosol and mitochondria. Cohex attenuated the effects induced by quercetin, which demonstrates that the presence of Mg2+ is essential in quercetin-induced apoptosis.  相似文献   
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Plant-herbivore chemical signals and behavioral plasticity may enhance parasitoid host-foraging efficacy in the field; however, no studies have quantified the potential benefits from these factors under field-type conditions. The effect of plant-herbivore signals and learning on the foraging efficacy of Microplitis croceipes was quantified by directly observing and recording total and sequential duration of various foraging behaviors relative to 5 randomly placed herbivore-damaged and host-infested cotton plants and 20 undamaged and non-host-infested plants. Microplitis croceipes spent significantly more time searching (flying and antennation) on host infested versus uninfested plants. Antennation time was significantly and negatively correlated with successive host stings. Contrary to expectations of increased duration, flight time remained constant throughout the foraging bout, which may indicate that there was some learning associated with flight. These results suggest that plant-herbivore chemical signals and learning enhances the foraging efficacy of M. croceipes.  相似文献   
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Metabolism is recognized as an important driver of cancer progression and other complex diseases, but global metabolite profiling remains a challenge. Protein expression profiling is often a poor proxy since existing pathway enrichment models provide an incomplete mapping between the proteome and metabolism. To overcome these gaps, we introduce multiomic metabolic enrichment network analysis (MOMENTA), an integrative multiomic data analysis framework for more accurately deducing metabolic pathway changes from proteomics data alone in a gene set analysis context by leveraging protein interaction networks to extend annotated metabolic models. We apply MOMENTA to proteomic data from diverse cancer cell lines and human tumors to demonstrate its utility at revealing variation in metabolic pathway activity across cancer types, which we verify using independent metabolomics measurements. The novel metabolic networks we uncover in breast cancer and other tumors are linked to clinical outcomes, underscoring the pathophysiological relevance of the findings.  相似文献   
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