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91.
目的:通过动物实验探讨传输靶向COX-2 siRNA联合化疗药物对大鼠胃癌细胞生长的抑制作用。方法:24 只健康SD 大鼠 平分为三组,治疗组用COX-2-siRNA转染的胃癌SGC7901 细胞接种,同时进行环磷酰胺、丝裂霉素C 化疗治疗;阴性对照组,用 阴性对照siRNA 转染的胃癌SGC7901 细胞接种,同时进行环磷酰胺、丝裂霉素C 化疗治疗;对照组(n=8),用未经转染的胃癌 SGC7901 细胞接种,不进行化疗治疗;三组转染后都接种了裸鼠。结果:治疗组、阴性对照组及对照组胃癌细胞凋亡率分别为 (22.28± 0.12)%、(1.23± 0.17)%和(1.03± 0.14)%,治疗组与阴性对照组和对照组比较差异都有统计学意义(t=18.152,17.555, P<0.05)。治疗组的抑瘤率为76.7%,阴性对照组和对照组分别为12.8%和6.89%,治疗组的抑瘤率明显高于其他两组(x2=15. 211,13.899,P<0.05)。Western blotting检测结果显示治疗组的COX-2 蛋白表达含量得到了明显抑制。结论:传输靶向COX-2 siRNA和化疗药物的配合应用可有效抑制COX-2 蛋白的表达,从而抑制胃癌细胞的生长,从而起到更好的治疗效果。  相似文献   
92.
Sinomanglietia glauca is a critically endangered species described from Jiangxi Province in the 1990s. Recently two populations were discovered from Yongshun County of west Hunan Province, about 450 km away from those in Jiangxi. Because of the new findings and the poor reproducibility inherent to RAPD and ISSR markers of previous studies, the population structure of this rare species was reanalyzed with chloroplast PCR‐SSCP (single‐stranded conformation polymorphism), including all of four recorded populations. The results showed that two distinct haplotypes characterized Jiangxi and Hunan populations separately, with no genetic variation occurring within regions. We postulated that this surprising pattern might result from habitat fragmentation and demographic bottlenecks during and/or after the Quaternary glaciation. On the basis of the pronounced genetic structure, two evolutionarily significant units (ESUs) were recommended for effective conservation of S. glauca.  相似文献   
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目的:探讨尿动力学检查在了解慢性非细菌性前列腺炎/慢性骨盆疼痛综合征(Chronicabacterialprostatitis/chronicpelvicpain syndrome,CPPS)患者中下尿路症状(LUTS)产生原因的作用。方法:对36例难治性慢性前列腺炎/盆腔疼痛综合征患者行尿流动力学压力-流率测定,同步测定膀胱压、逼尿肌压、同步肌电图测定,了解其症状产生的原因。结果:36例患者中,尿动力学证实膀胱出口梗阻14例(39%);逼尿肌过度活动者8例,其中有7例与BOO同时存在;假性逼尿肌尿道外括约肌协同失调6例(16.7%);逼尿肌收缩力低下者5例(13.9%)。结论:对难治性CPPS患者进行尿动力学检查有助于对此类患者LUTS产生的原因进行鉴别,从而可以采取有针对性的治疗。  相似文献   
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97.
The sox family is assumed to be responsible for a number of developmental systems. Genome sequencing technology makes it possible to scan sox genes and conduct characteristic analyses of different species. In fish, full characterisation of sox genes at the genome-wide level has been reported for pufferfish Takifugu rubripes, medaka Oryzias latipes, tilapia Oreochromis niloticus and channel catfish Ictalurus punctatus. However, no systematic investigation of the sox family in sturgeons (Acipenseridae) has been reported to date. This study conducted genome-wide identification of the sox genes in the Chinese sturgeon Acipenser sinensis and profiled their tissue distribution between male and female individuals. In total, 19 sox genes were identified, including soxb1, b2, c, d, e, f and h, in the Chinese sturgeon. Genomic structure analysis indicated relatively conserved exon–intron structures in each sox group and phylogenetic analysis supported the previous classification of the sox family. Most of the sox genes showed a tissue-specific expression pattern, indicating the possible involvement of Chinese sturgeon sox genes at different developmental processes such as cardiac and gonadal development. This study provides a comprehensive resource of Chinese sturgeon sox genes and enables a better understanding of the evolution and function of the sox family.  相似文献   
98.
This paper aimed to analyze antibody responses to SARS-CoV-2 in various populations. Two hundred and six COVID-19 patients, 46 convalescent patients, and 270 healthy population were enrolled. Antibodies against nucleocapsid protein (N) and spike protein's receptor-binding domain (RBD), and neutralizing antibody were detected. The results demonstrated both anti-N and anti-RBD antibodies could be detected in about 80% of COVID-19 patients and 90% of convalescent patients, while no antibodies could be detected in some convalescents and patients even after 14 days post-onset of symptoms. The level of anti-RBD antibody strongly correlated with the neutralizing activity of sera from these two cohorts. The titer of neutralizing antibody was lower in convalescents than that in active COVID-19 patients. In addition, the titer of neutralizing antibody was less than 1:80 in none of the severe COVID-19 patients, 18.8% in non-severe COVID-19 patients, and 32.6% in convalescents. The study suggests that the level of anti-RBD antibody is closely related to neutralization activity in COVID-19 patients and convalescents. Some SARS-CoV-2-infected cases trigger a weak antiviral immune response, and the level of neutralizing antibody may have a faster decay rate.  相似文献   
99.
Using the fluorescent dyes calcein and alcian blue, we stained the F3 generation of chemically (ENU) mutagenized zebrafish embryos and larvae, and screened for mutants with defects in bone development. We identified a mutant line, bone calcification slow (bcs), which showed delayed axial vertebra calcification during development. Before 4–5 days post-fertilization (dpf), the bcs embryos did not display obvious abnormalities in bone development (i.e., normal number, size and shape of cartilage and vertebrae). At 5–6 dpf, when vertebrae calcification starts, bcs embryos began to show defects. At 7 dpf, for example, in most of the bcs embryos examined, calcein staining revealed no signals of vertebrae mineralization, whereas during the same developmental stages, 2–14 mineralized vertebrae were observed in wild-type animals. Decreases in the number of calcified vertebrae were also observed in bcs mutants when examined at 9 and 11 dpf, respectively. Interestingly, by 13 dpf the defects in bcs mutants were no longer evident. There were no significant differences in the number of calcified vertebrae between wild-type and mutant animals. We examined the expression of bone development marker genes (e.g., Sox9b, Bmp2b, and Cyp26b1, which play important roles in bone formation and calcification). In mutant fish, we observed slight increases in Sox9b expression, no alterations in Bmp2b expression, but significant increases in Cyp26b1 expression. Together, the data suggest that bcs delays axial skeletal calcification, but does not affect bone formation and maturation.  相似文献   
100.
The hypothalamus is a critical integrator of several homeostatic processes that are required for the survival of vertebrates. Disruption of the development of the hypothalamus thus has the potential of perturbing important physiological processes with lifelong consequences. We review current knowledge about how cell types are specified and circuits are formed within the developing hypothalamus. We emphasize the potential clinical impact of the perturbations of these pathways using the regulation of energy balance as a model. We predict that disruption of hypothalamic development is a common, previously unsuspected cause of disorders of homeostatic processes such as obesity and high blood pressure.  相似文献   
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