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如何将小胶质细胞向有益功能重编程 被引量:11
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作者 Fumagalli M Lombardi M +2 位作者 Gressens P Verderio C 聂昊 《神经损伤与功能重建》 2018年第10期541-541,共1页
小胶质细胞是一种非神经起源的脑细胞,它可以协调对各种损伤的炎症反应,包括围产期脑中的缺氧/缺血或母体/胎儿感染。实验研究已经证明小胶质细胞能够识别病原体或受损细胞,从而激活细胞毒性反应,从而加剧脑损伤。然而,小胶质细胞在对... 小胶质细胞是一种非神经起源的脑细胞,它可以协调对各种损伤的炎症反应,包括围产期脑中的缺氧/缺血或母体/胎儿感染。实验研究已经证明小胶质细胞能够识别病原体或受损细胞,从而激活细胞毒性反应,从而加剧脑损伤。然而,小胶质细胞在对损伤的反应中显示出巨大的可塑性,并且还可以促进炎症和组织再生的消退。尽管小胶质细胞在脑病理学中起着关键作用,对于控制小胶质细胞不同表型的细胞机制的研究却才刚刚崭露头角。这篇文章回顾了推动小胶质细胞向有益功能发展的新兴策略,总结了涉及表型转换潜在的分子机制的研究。这些方法包括使用药理学试剂,细胞因子,脂质信使或微小RNA,以及免疫调节细胞的营养方法或疗法来处理小胶质细胞。对小胶质细胞向促再生功能重编程相关的分子机制的分析指出,能量代谢在塑造小胶质细胞功能中起到核心作用。因此,可以通过调控代谢途径,来预防炎性小胶质细胞的有害作用并控制脑病症中的过度炎症反应。 展开更多
关键词 优势表型 代谢 微小RNA 小胶质细胞 重编程
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Relationship Between Differential Gene Expression and Heterosis During Ear Development in Maize (Zea mays L.) 被引量:5
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作者 王新军 曹海河 +4 位作者 张登峰 李波 贺岩 李建生 王守才 《Journal of Genetics and Genomics》 SCIE CAS CSCD 北大核心 2007年第2期160-170,共11页
Maize (Zea raays L.) is one of the most important crops because of the remarkable properties of its hybrid, which is responsible for the high commercial value of hybrid maize. The genetic basis of heterosis (hybrid... Maize (Zea raays L.) is one of the most important crops because of the remarkable properties of its hybrid, which is responsible for the high commercial value of hybrid maize. The genetic basis of heterosis (hybrid vigor) is not well understood. A differential display technique was performed to identify genes with differential expression across twelve maize inbred lines and thirty-three hybrids during ear development. An incomplete diallel design was used to investigate the relationship between the global framework of differential gene expression and heterosis. It was found that the genes belonging to MONO pattern (i.e., genes expressed in both parental lines and in hybrid) was the highest in percentage among the total five patterns and illustrated that the properties of differentially expressed genes are not entirely responsible for heterosis. Furthermore,a larger number of differentially expressed genes in hybrid, which serves as a major reservoir for generating novel phenotypes that exhibit heterosis of certain agronomic traits during early development and differentiation of maize ear. Moreover, there were some silent genesin hybrids that are responsible for the arrest or abortion of spikelets and for the increase in kernels weight. 展开更多
关键词 EAR HETEROSIS performance of hybrid differential gene expression pattern differential display
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