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1.
目的:探讨椎弓根内固定联合植骨融合术治疗胸腰椎结核的临床效果。方法:回顾性分析2013年5月至2014年5月在我院接受治疗的50例胸腰椎结核患者的临床资料,结合影像资料评价患者手术前后的红细胞沉降率、后凸畸形矫正情况、Frankel分级及术后并发症的发生情况等。结果:所有患者术后病理均证实为脊柱结核,术中27例植入大块自体髂骨,23例植入自体肋骨捆绑植骨。24例采用椎体侧前方钉棒内固定,26例采用后路椎弓根螺钉系统内固定。术中未出现脊髓、神经、血管损伤及血气胸等并发症。患者术后红细胞沉降率获得改善,差异具有统计学意义(P0.05)。术后Cobb角明显获得矫正,差异具有统计学意义(P0.05)。患者术后脊柱损伤程度明显改善,差异具有统计学意义(P0.05)。结论:椎弓根内固定联合椎体间植骨融合术治疗胸腰椎结核具有良好的临床效果,不仅可以改善红细胞沉降率,而且可以矫正患者脊柱后凸畸形,值得临床推广应用。  相似文献   
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Mycobacterium tuberculosis complex (MTBC) is notorious for causing diseases, such as tuberculosis. Tuberculosis caused by M. tuberculosis remains a global public health concern. Two prophages, phiRv1 and phiRv2, can be found among most MTBC genomes. However, no precise functions have been assigned for the two prophages. In this paper, to find out the function of these two prophages, the distribution and function of phiRv1 and phiRv2 in MTBC genomes were analyzed from multiple omics data. We found that complex insertion, deletion, and reorganization appeared on the locus of two prophages in MTBC genomes; some genes of the two prophages can be translated and are functional from proteomic data; the expression of other prophage genes, such as Rv1577c, Rv2650c, Rv2652c, Rv2659c, and Rv2658c, can vary with environmental stresses and might enhance the fitness of MTBC. These data will facilitate our in-depth understanding of their function.  相似文献   
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During mycobacterial infection, macroautophagy/autophagy, a process modulated by cytokines, is essential for mounting successful host responses. Autophagy collaborates with human immune responses against Mycobacterium tuberculosis (Mt) in association with specific IFNG secreted against the pathogen. However, IFNG alone is not sufficient to the complete bacterial eradication, and other cytokines might be required. Actually, induction of Th1 and Th17 immune responses are required for protection against Mt. Accordingly, we showed that IL17A and IFNG expression in lymphocytes from tuberculosis patients correlates with disease severity. Here we investigate the role of IFNG and IL17A during autophagy in monocytes infected with Mt H37Rv or the mutant MtΔRD1. Patients with active disease were classified as high responder (HR) or low responder (LR) according to their T cell responses against Mt. IL17A augmented autophagy in infected monocytes from HR patients through a mechanism that activated MAPK1/ERK2-MAPK3/ERK1 but, during infection of monocytes from LR patients, IL17A had no effect on the autophagic response. In contrast, addition of IFNG to infected monocytes, increased autophagy by activating MAPK14/p38 α both in HR and LR patients. Interestingly, proteins codified in the RD1 region did not interfere with IFNG and IL17A autophagy induction. Therefore, in severe tuberculosis patients' monocytes, IL17A was unable to augment autophagy because of a defect in the MAPK1/3 signaling pathway. In contrast, both IFNG and IL17A increased autophagy levels in patients with strong immunity to Mt, promoting mycobacterial killing. Our findings might contribute to recognize new targets for the development of novel therapeutic tools to fight the pathogen.  相似文献   
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目的探讨结核分枝杆菌eis基因对巨噬细胞自噬的影响。方法将鼠巨噬细胞Raw264.7以自噬体荧光表达质粒GFP-LC3转染,将含eis基因的重组耻垢分枝杆菌MS—pmv261-eis与不含eis基因的耻垢分枝杆菌MS—pmv261分别感染宿主巨噬细胞,透射电镜下观察自噬小体形成情况,荧光显微镜下观察自噬荧光并计数,Westernblot检测如基因表达的蛋白及自噬蛋白LC3-Ⅱ的表达水平。结果结核分枝杆菌eis基因可抑制感染宿主细胞自噬小体的形成,并显著抑制自噬荧光小点形成(P〈0.05),显著降低了自噬蛋白LC3-Ⅱ表达水平。结论结核分枝杆菌e曲基因对Raw264.7细胞自噬有抑制作用。  相似文献   
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European badgers (Meles meles) are group‐living mustelids implicated in the spread of bovine tuberculosis (TB) to cattle and act as a wildlife reservoir for the disease. In badgers, only a minority of individuals disperse from their natal social group. However, dispersal may be extremely important for the spread of TB, as dispersers could act as hubs for disease transmission. We monitored a population of 139 wild badgers over 7 years in a medium‐density population (1.8 individuals/km2). GPS tracking collars were applied to 80 different individuals. Of these, we identified 25 dispersers, 14 of which were wearing collars as they dispersed. This allowed us to record the process of dispersal in much greater detail than ever before. We show that dispersal is an extremely complex process, and measurements of straight‐line distance between old and new social groups can severely underestimate how far dispersers travel. Assumptions of straight‐line travel can also underestimate direct and indirect interactions and the potential for disease transmission. For example, one female disperser which eventually settled 1.5 km from her natal territory traveled 308 km and passed through 22 different territories during dispersal. Knowledge of badgers' ranging behavior during dispersal is crucial to understanding the dynamics of TB transmission, and for designing appropriate interventions, such as vaccination.  相似文献   
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目的:提取纯化结核分枝杆菌(MTB)脂阿拉伯甘露聚糖(LAM)。方法:MTB菌体彻底破碎后,去脂,去蛋白,上清液经苯酚萃取,酒精沉淀,得到LAM;以提取的LAM作为包被抗原检测血清中的LAM抗体。结果和结论:提取到LAM抗原,免疫印迹表明,LAM迁移范围相对分子质量为25×103~40×103,主要集中在35×103处。在64例肺结核患者中,有43例LAM-ELISA检测阳性(敏感性为67.19%);在67例健康志愿者中,有64例LAM-ELISA检测阴性(特异性为95.52%)。  相似文献   
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《Developmental cell》2023,58(10):866-884.e8
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