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富硒乳酸菌抗肝损伤小鼠红细胞脂质过氧化作用 被引量:4
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作者 朱善良 陈龙 +1 位作者 高伟 赵洁明 《南京师大学报(自然科学版)》 CAS CSCD 2004年第1期74-77,共4页
选择 60只健康雌雄对半成年小鼠 ,随机分成对照组 (C组 ) ,富硒乳酸菌组 (Se组 ) ,CCl4 -富硒乳酸菌组 (CCl4 -Se组 ) ,CCl4 注射组 (CCl4 组 ) ,通过腹腔注射CCl4 诱发肝损伤 ,分别在第 2、4、6周采集血样并测定红细胞溶血液中GSH -Px... 选择 60只健康雌雄对半成年小鼠 ,随机分成对照组 (C组 ) ,富硒乳酸菌组 (Se组 ) ,CCl4 -富硒乳酸菌组 (CCl4 -Se组 ) ,CCl4 注射组 (CCl4 组 ) ,通过腹腔注射CCl4 诱发肝损伤 ,分别在第 2、4、6周采集血样并测定红细胞溶血液中GSH -Px、GST和SOD活性及MDA含量 .研究富硒乳酸菌对CCl4 诱发肝损伤小鼠红细胞脂质过氧化损伤的保护作用 .结果显示 ,在整个实验期内 ,SOD各组间未见明显差异 ;GST表现为Se组最高 ,呈上升趋势 ,且在第 6周高于或明显高于其他各组 ,CCl4 组低于或明显低于C组和CCl4 -Se组 ,C组和CCl4 -Se组相近 ;C组、Se组和CCl4 -Se组GSH -Px活性无明显差异 ,而CCl4 组随负荷时间呈下降趋势 ,第 4周后明显低于其余三组 .C组和CCl4 -Se组的MDA无明显差异 ,Se组整体水平低于或明显低于其它三组 ,CCl4 组高于或显著高于其它三组 .提示CCl4 诱发肝损伤小鼠红细胞脂质过氧化变化剧烈 ,富硒乳酸菌制剂能通过抗损伤保护以及增强抗氧化酶活性发挥有效作用 . 展开更多
关键词 富硒乳酸菌 肝损伤 红细胞 脂质过氧化 功能性调节剂 免疫缺陷
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Three-dimensional porous graphene sponges assembled with the combination of surfactant and freeze-drying 被引量:12
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作者 Rujing Zhang Yachang Cao +8 位作者 Peixu Li Xiaobei Zang Pengzhan Sun Kunlin wang Minlin Zhong Jinquan Wei Dehai Wu Feiyu Kang Hongwei Zhu 《Nano Research》 SCIE EI CAS CSCD 2014年第10期1477-1487,共11页
With the combination of surfactant and freeze-drying, we have developed two kinds of graphene spongy structures. On the one hand, using foams of soap bubbles as templates, three-dimensional porous graphene sponges wit... With the combination of surfactant and freeze-drying, we have developed two kinds of graphene spongy structures. On the one hand, using foams of soap bubbles as templates, three-dimensional porous graphene sponges with rich hierarchical pores have been synthesized. Pores of the material contain three levels of length scales, including millimeter, micrometer and nanometer. The structure can be tuned by changing the freezing media, adjusting the stirring rate or adding functional additives. On the other hand, by direct freeze-drying of a graphene oxide/surfactant suspension, a porous framework with directionally aligned pores is prepared. The surfactant gives a better dispersion of graphene oxide sheets, resulting in a high specific surface area. Both of the obtained materials exhibit excellent absorption capacity and good compression performance, providing a broad range of possible applications, such as absorbents, storage media, and carriers. 展开更多
关键词 graphene sponge hierarchical freezing media POROUS FOAMS
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