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微球递药系统的开发及其疾病治疗应用
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作者 杨心远 聂卫敏 +4 位作者 张倬豪 王翀 汪巧 方仲林 商珞然 《科学通报》 EI CAS CSCD 北大核心 2024年第13期1777-1793,共17页
微球作为功能载体,能够用于药物的递送.随着材料科学和技术的发展,微球递药系统的研究逐渐得到了广泛关注.作为一种新兴的药物递送方式,微球递药系统有望克服传统给药方式的诸多局限性.此外,微球具有优异的生物相容性和可控性,可以实现... 微球作为功能载体,能够用于药物的递送.随着材料科学和技术的发展,微球递药系统的研究逐渐得到了广泛关注.作为一种新兴的药物递送方式,微球递药系统有望克服传统给药方式的诸多局限性.此外,微球具有优异的生物相容性和可控性,可以实现对药物的精准递送和控制释放,从而提高药物的疗效并降低其副作用.基于此,本文首先总结了微球的多种制备方法及常用材料,然后系统总结了具有不同功能的微球递药系统,并概述了其主要疾病治疗应用,最后针对微球递药系统领域面临的挑战和未来发展趋势进行了展望. 展开更多
关键词 微粒 药物载体材料 药物递送 疾病治疗
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Functional PEGylated bacteria reinforce the intestinal mucosal barrier by effective mucus-penetration
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作者 xinyuan yang Zhonglin Fang Luoran Shang 《Science Bulletin》 SCIE EI CAS CSCD 2024年第19期2964-2966,共3页
Recently,the intestinal mucosal barrier has attracted considerable attention from the scientific community.With the in-depth exploration of this barrier,it has become increasingly clear that the mucosal barrier is a c... Recently,the intestinal mucosal barrier has attracted considerable attention from the scientific community.With the in-depth exploration of this barrier,it has become increasingly clear that the mucosal barrier is a complicated system consisting of multiple components.In general,the intestinal mucosal barrier mainly consists of intestinal epithelial cells covered with a highly viscous gellike layer containing symbiotic microorganisms and rich antimicrobial agents that can effectively protect the human body from the invasion of harmful microorganisms and toxins. 展开更多
关键词 MUCOSAL INVASION barrier
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N-Acetyl-D-glucosamine improves the intestinal development and nutrient absorption of weaned piglets via regulating the activity of intestinal stem cells 被引量:7
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作者 Zhaobin Wang Jie Hu +6 位作者 xinyuan yang Lanmei Yin Min Wang Yuebang Yin Jianzhong Li Huansheng yang Yulong Yin 《Animal Nutrition》 SCIE CSCD 2022年第1期10-17,共8页
Early weaning in piglets can cause a series of negative effects.This causes serious losses to the livestock industry.N-Acetyl-D-glucosamine(D-GlcNAc)plays an important role in regulating the homeostasis of the intesti... Early weaning in piglets can cause a series of negative effects.This causes serious losses to the livestock industry.N-Acetyl-D-glucosamine(D-GlcNAc)plays an important role in regulating the homeostasis of the intestine.This study aimed to investigate the effects of D-GlcNAc on the growth performance and intestinal function of weaned piglets.Twenty-four weaned piglets([Yorkshire×Landrace]Duroc,6.58±0.15 kg,n=8)at 21 d old were fed 3 diets supplemented with 0(control),1 and 3 g/kg D-GlcNAc.The intestinal organoid model was used to verify the regulatory mechanism of D-GlcNAc on intestinal epithelial cells.On the whole,supplementation of D-GlcNAc in the piglet diet has no significant effect on the growth performance and diarrhoea of weaned piglets(P>0.05).The apparent digestibility of nutrients and mRNA abundance of nutrient transporters in the 1 g/kg D-GlcNAc group were increased significantly(P<0.05).D-GlcNAc did not affect villus height(VH)and crypt depth(CD)but resulted in a numerically shorter VH and shallower CD,which lead to an increase in ileal VH:CD ratio(P<0.05).Cell shedding rates in the ileum villi increased(P<0.05).The relative length and weight of the small intestine of weaned piglets increased(P<0.05).In vitro studies found that the budding rates of organoids treated with 0.1 mmol/L D-GlcNAc increased on the d 3 and 5(P<0.05).The average budding numbers per budding organoid treated with 0.1 and 10 mmol/L D-GlcNAc increased on d 3(P<0.05).D-GlcNAc upregulated leucine rich repeat containing G protein-coupled receptor 5(Lgr5^(+))and Chromogranin A mRNA abundance in organoids(P<0.05).Mucin 2(Muc2)expression increased when treated with 1 and 10 mmol/L D-GlcNAc(P<0.05).In conclusion,dietary D-GlcNAc cannot improve the growth performance of weaned piglets.However,it can promote the growth and development of the intestinal tract and improve the digestion and absorption capacity of the intestine,which is achieved by affecting the activity of intestinal stem cells. 展开更多
关键词 N-ACETYL-D-GLUCOSAMINE Weaned piglet Growth performance Intestinal organoid Intestinal stem cell
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