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OVER-EXPRESSION OF A TRUNCATED TYPE I TGF-P RECEPTOR IN NORMAL DERMAL FIBROBLASTS DECREASES TGF-β1 AUTOPRODUCTION
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作者 刘伟 曹谊林 +2 位作者 蔡泽浩 商庆新 钱云良 《Journal of Shanghai Second Medical University(Foreign Language Edition)》 2003年第1期21-24,共4页
Objective To determine over-expression of a truncated type ⅡTGF-β receptor in down-regulating TGF-β1 auto production in normal dermal fibroblasts. Methods In vitro cultured dermal fibroblasts were treated with rhT... Objective To determine over-expression of a truncated type ⅡTGF-β receptor in down-regulating TGF-β1 auto production in normal dermal fibroblasts. Methods In vitro cultured dermal fibroblasts were treated with rhTGF-β1 (5ng/ml) or recombinant adenovirus containing α truncated type Ⅱ TGF-β receptor gene (50 pfu/cell). Their effects on regulating gene expression of TGF-β1 were observed with Northern Blot. Results rh TGF-β1 up-regulated the gene expression of TGF-β1, (34 %-150%) and type Ⅰ pro-collagen( 13 %- 190%). Overexpression of a truncated receptor Ⅱ decreased the gene expression of TGF-β1 (53%-66%). Conclusion Over-expression of the truncated TGF-β receptor Ⅱdown-regulated TGF-β1 autoproduction via blocking signal transduction of TGF-β. This study may provide a new strategy for scar gene therapy. 展开更多
关键词 tgf-β1 auto production signal transduction gene therapy
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Impact of Different Rates of Nitrogen Supplementation on Soil PhysicochemicalProperties and Microbial Diversity in Goji Berry
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作者 Xiaojie Liang Wei An +4 位作者 Yuekun Li Yajun Wang Xiaoya Qin Yanhong Cui Shuchai Su 《Phyton-International Journal of Experimental Botany》 SCIE 2024年第3期467-486,共20页
Goji berry(Lycium barbarum L.)is substantially dependent on nitrogen fertilizer application,which can signifi-cantly enhance fruit yield and Goji berry industrial development in Ningxia,China.This study aimed to analyz... Goji berry(Lycium barbarum L.)is substantially dependent on nitrogen fertilizer application,which can signifi-cantly enhance fruit yield and Goji berry industrial development in Ningxia,China.This study aimed to analyze the functions of differential nitrogen application rates including low(N1),medium(N2),and high(N3)levels in soil microbial community structure(bacterial and fungal)at 2 diverse soil depths(0-20,20-40 cm)through high-throughput sequencing technology by targeting 16S RNA gene and ITS1&ITS2 regions.All the observed physicochemical parameters exhibited significant improvement(p<0.05)with increased levels of nitrogen and the highest values for most parameters were observed at N2.However,pH decreased(p<0.05)gradually.The alpha and beta diversity analyses for bacterial and fungal communities’metagenome displayed more similarities than differences among all groups.The top bacterial and fungal phyla and genera suggested no obvious(p>0.05)differences among three group treatments(N1,N2,and N3).Furthermore,the functional enrichment analysis demonstrated significant(p<0.05)enrichment of quorum sensing,cysteine and methionine metabolism,and transcriptional machinery for bacterial communities,while various saprotrophic functional roles for fungal communities.Conclusively,moderately reducing the use of N-supplemented fertilizers is conducive to increasing soil nitrogen utilization rate,which can contribute to sustainable agriculture practices through improved soil quality,and microbial community structure and functions. 展开更多
关键词 Goji berry production Ningxia China differential nitrogen supplementation rates 16s RNA gene and IT1&IT2 region sequencing soil physicochemical properties
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叶酸诱导人肝癌细胞凋亡及其机制的研究 被引量:5
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作者 袁淑兰 王艳萍 +3 位作者 李良平 陈晓禾 宋毅 杨燕 《肿瘤》 CAS CSCD 北大核心 2001年第4期242-245,共4页
目的 研究叶酸诱导人肝癌细胞凋亡的作用及其机制。方法 应用叶酸连续处理体外培养的人肝癌细胞(SMMC 772 1) ,4天后光镜及电镜观察细胞形态改变 ,细胞计数测定细胞生长及增殖情况 ,DNA凝胶电泳分析DNA改变 ,流式细胞仪检测细胞周期... 目的 研究叶酸诱导人肝癌细胞凋亡的作用及其机制。方法 应用叶酸连续处理体外培养的人肝癌细胞(SMMC 772 1) ,4天后光镜及电镜观察细胞形态改变 ,细胞计数测定细胞生长及增殖情况 ,DNA凝胶电泳分析DNA改变 ,流式细胞仪检测细胞周期分布、细胞凋亡指数及凋亡相关基因及其表达的改变。结果  10 μg/ml叶酸可诱导SMMC 772 1细胞出现凋亡特征性形态改变 ,其细胞DNA电泳呈现“梯状”断裂现象 ,细胞凋亡指数为 16 8% (空白对照组为6 9% ) ,S期细胞减少 ,细胞生长和增殖被明显抑制 ,且凋亡相关基因fas和p5 3表达增加 ,而bcl 2和TGF β1表达降低。结论 叶酸具有诱导人肝癌细胞凋亡的作用 。 展开更多
关键词 叶酸 肿瘤细胞 p53 BCL-2 FAs tgf-β1 基因产物 凋亡 肝癌
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