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基于海洋生物多聚物的功能因子递送系统
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作者 陈西广 郎需谦 毕世超 《食品科学技术学报》 CAS CSCD 北大核心 2019年第4期14-17,共4页
基于海洋多聚物的纳米材料是一种新型的功能因子负载体系,临床应用中药物与功能因子的递送方式主要有3种,分别是口服、经皮和注射,但由于体感差、药物递送量低、副作用和有效成分活性丧失等诸多问题的困扰,人们更加希望选择既能提高医... 基于海洋多聚物的纳米材料是一种新型的功能因子负载体系,临床应用中药物与功能因子的递送方式主要有3种,分别是口服、经皮和注射,但由于体感差、药物递送量低、副作用和有效成分活性丧失等诸多问题的困扰,人们更加希望选择既能提高医疗效果和健康水准,又能满足良好舒适性的传输递送方式。研究发现基于海洋多聚物的纳米材料与传统口服递送体系的系统结合可以实现抗癌药物、营养物质、益生菌、疫苗等功能成分的高效递送,大大提高了上述成分的整体生物利用度。通过阐述纳米载体的制备、功能因子的负载及其吸收机制为基于海洋多聚物功能因子递送体系的发展提供参考和借鉴。 展开更多
关键词 功能因子递送 口服 海洋生物多聚物 壳聚糖 纳米颗粒
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Researches on the Internal Molecular Weight Uniformity of Chitosan Biomaterials 被引量:1
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作者 lang xuqian LI Yang +7 位作者 SUN Guohui ZHOU Zhongzheng LI Jing FENG Chao KONG Ming LIU Ya CHENG Xiaojie CHEN Xiguang 《Journal of Ocean University of China》 SCIE CAS CSCD 2020年第2期459-465,共7页
Uniform molecular weight(Mw)chitosan(CS)is highly demanded in medical biomaterial industry.This present article described heterogeneous degradation of CS in aqueous HCl/ethanol solution,in which progress uniform Mw CS... Uniform molecular weight(Mw)chitosan(CS)is highly demanded in medical biomaterial industry.This present article described heterogeneous degradation of CS in aqueous HCl/ethanol solution,in which progress uniform Mw CS was successfully prepared.The Mw distribution of CS was measured by gel permeation chromatography(GPC)analysis.Moreover,the structure and properties of degraded CS were characterized by Fourier transform infrared spectroscopy(FT-IR),nuclear magnetic resonance spectroscopy(^1H NMR),X-ray diffraction(XRD)and thermogravimetric(TG)analysis.In addition,the biocompatibility of degraded CS was also assessed by hemolysis rate(HR)measurement.The Mw of CS dramatically decreased from 246 KDa to 76 k Da at the initial 30 min,and stabilized at 18 kDa after 24 h.GPC analysis results showed that the degraded CS molecular become homogenization.FT-IR and 1 H NMR analysis confirmed the basic structure of CS molecular backbone was not destroyed during this progress.Besides,the water solubility of CS was not significantly influenced by this reaction.Moreover,the XRD analysis revealed that crystallinity of degraded CS increased from 70.32% to 99.25%with time.The TG analysis showed improved thermal stability of degraded CS.HR measurement demonstrated the degraded CS possessed excellent biocompatibility.This simple and efficient heterogeneous degradation would open up a new route to produce uniform Mw CS. 展开更多
关键词 CHITOSAN heterogeneous degradation uniform molecular weight medical biomaterial
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