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P60PLAD蛋白对超高分子量聚乙烯(UHMWPE)颗粒诱导的小鼠颅盖骨骨溶解模型以及小鼠卵巢切除骨质疏松模型的影响 被引量:1
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作者 闫昭 朱锦宇 +3 位作者 吴海宁 孙孟帅 朱庆生 曹晓瑞 《现代生物医学进展》 CAS 2017年第5期839-843,855,共6页
目的:构建UHMWPE颗粒诱导的小鼠颅盖骨骨溶解模型以及小鼠卵巢切除骨质疏松模型,通过动物模型证实P60PLAD蛋白在体内具有破骨细胞抑制特性和骨保护作用。方法:用8周C57BL/6雄性小鼠实验。在小鼠颅盖骨沿正中线做一矢状切口,暴露0.5 cm&#... 目的:构建UHMWPE颗粒诱导的小鼠颅盖骨骨溶解模型以及小鼠卵巢切除骨质疏松模型,通过动物模型证实P60PLAD蛋白在体内具有破骨细胞抑制特性和骨保护作用。方法:用8周C57BL/6雄性小鼠实验。在小鼠颅盖骨沿正中线做一矢状切口,暴露0.5 cm×0.5 cm范围,保证骨膜完整性,将直径在0.1-10μm的超高分子量聚乙烯(Ultra High Molecular Weight Polyethylene)颗粒20μg均匀撒在骨膜,构建小鼠颅盖骨骨溶解模型,在局部注射PBS或者P60PLAD蛋白溶液。2周后处死,将颅骨分离进行Micro-CT检查比较骨溶解区域变化。手术切除10周雌性小鼠卵巢构建小鼠去卵巢骨质疏松模型,腹腔注射PBS或P60PLAD蛋白溶液。12周后处死后分离股骨,经4%多聚甲醛固定后行Micro-CT检查比较骨密度等参数。结果:超高分子量聚乙烯(Ultra High Molecular Weight Polyethylene)颗粒诱导的骨溶解模型中,加入P60PLAD蛋白后,颅骨局部骨溶解区域较对照组减少,骨量相关参数与对照组相比有统计学意义。在小鼠卵巢切除骨质疏松模型中,注射了P60PLAD蛋白的实验组,其骨密度(BMD)等与骨量相关参数较对照组有明显增加。结论:P60PLAD蛋白可有效抑制UHMWPE颗粒诱导的小鼠颅盖骨骨吸收模型局部的骨吸收,抑制局部破骨细胞的骨吸收作用,并可以部分逆转小鼠卵巢切除骨质疏松模型的骨质疏松,提高骨密度,在破骨细胞抑制活性和骨保护方面具有良好临床应用前景。 展开更多
关键词 P60plad蛋白 破骨细胞 骨吸收 骨溶解
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PlaD: A Transcriptomics Database for Plant Defense Responses to Pathogens, Providing New Insights into Plant Immune System 被引量:2
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作者 Huan Qi Zhenhong Jiang +3 位作者 Kang Zhang Shiping Yang Fei He Ziding Zhang 《Genomics, Proteomics & Bioinformatics》 SCIE CAS CSCD 2018年第4期283-293,共11页
High-throughput transcriptomics technologies have been widely used to study plant transcriptional reprogramming during the process of plant defense responses, and a large quantity of gene expression data have been acc... High-throughput transcriptomics technologies have been widely used to study plant transcriptional reprogramming during the process of plant defense responses, and a large quantity of gene expression data have been accumulated in public repositories. However, utilization of these data is often hampered by the lack of standard metadata annotation. In this study, we curated2444 public pathogenesis-related gene expression samples from the model plant Arabidopsis and three major crops (maize, rice, and wheat). We organized the data into a user-friendly database termed as PlaD. Currently, PlaD contains three key features. First, it provides large-scale curated data related to plant defense responses, including gene expression and gene functional annotation data.Second, it provides the visualization of condition-specific expression profiles. Third, it allows users to search co-regulated genes under the infections of various pathogens. Using PlaD, we conducted a large-scale transcriptome analysis to explore the global landscape of gene expression in the curated data. We found that only a small fraction of genes were differentially expressed under multiple conditions, which might be explained by their tendency of having more network connections and shorter network distances in gene networks. Collectively, we hope that PlaD can serve as an important and comprehensive knowledgebase to the community of plant sciences, providing insightful clues to better understand the molecular mechanisms underlying plant immune responses. PlaD is freely available at http://systbio.cau.edu.cn/plad/index.php or http://zzdlab.com/plad/index.php. 展开更多
关键词 plad PLANT Defense response Transcriptomics databaseGene expression analysis
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