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丝蛋白复合骨形态发生蛋白2在大鼠炎性牙髓愈合中的作用 被引量:1
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作者 余涛 姜婷 +2 位作者 魏青梅 李宜芬 david l.kaplan 《北京大学学报(医学版)》 CAS CSCD 北大核心 2015年第5期814-819,共6页
目的:探讨将丝蛋白复合骨形态发生蛋白2(bone morphogenetic protein 2,BMP-2)作为盖髓剂,治疗由脂多糖(lipopolysaccharide,LPS)引起的大鼠炎性牙髓的效果。方法:30只雄性Wistar大鼠,随机分为5组:(1)未手术正常对照组;(2)... 目的:探讨将丝蛋白复合骨形态发生蛋白2(bone morphogenetic protein 2,BMP-2)作为盖髓剂,治疗由脂多糖(lipopolysaccharide,LPS)引起的大鼠炎性牙髓的效果。方法:30只雄性Wistar大鼠,随机分为5组:(1)未手术正常对照组;(2)空白对照组(无盖髓剂);(3)氢氧化钙组;(4)静电纺丝丝蛋白组(简称丝蛋白组);(5)静电纺丝丝蛋白复合BMP-2组(简称丝蛋白复合BMP-2组)。将第2∽5组双侧上颌第一磨牙开髓并放置LPS,不使用盖髓剂或使用相应盖髓剂,然后封闭开髓孔。所有组于术后第3、7、14天制作石蜡切片,行HE染色及CD14免疫组织化学染色,采用image-pro plus(IPP)软件测量免疫组织化学染色的光密度(D)值。结果:HE染色结果显示丝蛋白复合BMP-2组在各盖髓组中,术后7及14 d炎性细胞分级最低,其次是氢氧化钙组及丝蛋白组,空白对照组最高;修复性牙本质形成分级的高低顺序则相反。CD14免疫组织化学染色结果显示术后3及7 d,使用盖髓剂的3个组之间D值差异无统计学意义,但均显著低于空白对照组;14 d时丝蛋白复合BMP-2组D值(0.145±0.011)显著低于空白对照(0.287±0.019)、氢氧化钙(0.170±0.017)、丝蛋白(0.175±0.018)3个组(P〈0.05)。结论:丝蛋白复合BMP-2应用于炎性牙髓的盖髓,能减轻炎症,诱导修复性牙本质的形成,提高对炎性牙髓的治疗效果。 展开更多
关键词 骨形态发生蛋白2 脂多糖类 牙髓炎 牙髓覆盖术 丝素蛋白质类
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Study the lipidoid nanoparticle mediated genome editing protein delivery using 3D intestinal tissue model 被引量:1
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作者 Tao Yang Haobo Han +5 位作者 Ying Chen Liu Yang Rachael Parker Yamin Li david l.kaplan Qiaobing Xu 《Bioactive Materials》 SCIE 2021年第11期3671-3677,共7页
Lipid nanoparticles are promising carriers for oral drug delivery.For bioactive cargos with intracellular targets,e.g.gene-editing proteins,it is essential for the cargo and carrier to remain complexed after crossing ... Lipid nanoparticles are promising carriers for oral drug delivery.For bioactive cargos with intracellular targets,e.g.gene-editing proteins,it is essential for the cargo and carrier to remain complexed after crossing the epithelial layer of intestine in order for the delivery system to transport the cargos inside targeted cells.However,limited studies have been conducted to verify the integrity of cargo/carrier nanocomplexes and their capability in facilitating cargo delivery intracellularly after the nanocomplex crossing the epithelial barrier.Herein,we used a traditional 2D transwell system and a recently developed 3D tissue engineered intestine model and demonstrated the synthetic lipid nanoparticle(carrier)and protein(cargo)nanocomplexes are able to cross the epithelial layer and deliver the protein cargo inside the underneath cells.We found that the EC16-63 LNP efficiently encapsulated the GFP-Cre recombinase,penetrated the intestinal monolayer cells in both the 2D cell culture and 3D tissue models through temporarily interrupting the tight junctions between epithelial layer.After transporting across the intestinal epithelia,the EC16-63 and GFP-Cre recombinase nanocomplexes can enter the underneath cells to induce gene recombination.These results suggest that the in vitro 3D intestinal tissue model is useful for identifying effective lipid nanoparticles for potential oral drug delivery. 展开更多
关键词 Lipidoid nanoparticle Protein delivery Oral drug delivery Genome engineering 3D tissue model
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