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质谱和动力学技术研究胰岛素-多糖纳米粒稳定性和释放胰岛素速率
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作者 黄河宁 谢麟 +2 位作者 易瑞灶 方雪萍 黄河清 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2007年第5期697-701,共5页
以海藻酸钠(sodium alginate,SA)和壳聚糖(chitosan,CS)为纳米粒包被材料,构建胰岛素(insulin,INS)多糖纳米粒.采用基质辅助激光解吸电离飞行时间(Matrix-assisted laser desorption ionization/time of flight,MALDI-TOF)质谱技术研究... 以海藻酸钠(sodium alginate,SA)和壳聚糖(chitosan,CS)为纳米粒包被材料,构建胰岛素(insulin,INS)多糖纳米粒.采用基质辅助激光解吸电离飞行时间(Matrix-assisted laser desorption ionization/time of flight,MALDI-TOF)质谱技术研究若干化学因素影响INS-多糖纳米粒的稳定性.选用电子光谱技术研究INS-多糖纳米粒控释INS速率及动力学特性.实验结果表明,INS-SA纳米粒在Tris-HCl缓冲液(pH7.2)和醋酸介质中均呈不稳定状态,易释放INS;而INS-CS纳米粒在Tris-HCl缓冲液中呈较为稳定状态,其释放INS速率明显慢于INS-SA纳米粒,并遵循一级反应动力学过程.INS-SA和INS-CS纳米粒均能有控制INS释放速率能力,但两者释放速率明显不同,其速率可分为快速与慢速释放方式.CS比SA更适合于作为包被材料研制INS-多糖纳米粒口服制剂. 展开更多
关键词 质谱 释放胰岛素动力学 稳定性 多糖纳米粒 传输
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山药多糖纳米粒的体外抗氧化活性 被引量:6
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作者 于莲 卢珊珊 +3 位作者 马淑霞 张涛 孟德欣 郭宇 《中国实验方剂学杂志》 CAS 北大核心 2014年第9期147-151,共5页
目的:湿磨法制备山药多糖纳米粒,星点设计优化最优处方。研究山药多糖纳米粒的体外抗氧化活性。方法:通过星点设计优化湿磨法制备的山药多糖纳米粒最优处方,SALD-2201激光粒度分布仪检测其平均粒径及粒度分布。通过化学实验法和试剂盒... 目的:湿磨法制备山药多糖纳米粒,星点设计优化最优处方。研究山药多糖纳米粒的体外抗氧化活性。方法:通过星点设计优化湿磨法制备的山药多糖纳米粒最优处方,SALD-2201激光粒度分布仪检测其平均粒径及粒度分布。通过化学实验法和试剂盒法研究过氧化氢、羟自由基、超氧阴离子自由基、DPPH的抗氧化能力,并测定其还原力与金属螯合力。结果:星点设计得最优工艺料液比1∶24、球磨转速360 r·mim-1、球磨时间36 h。SALD-2201激光粒度分布仪测定1.0%粒径在186 nm,80.0%粒径575 nm。经体外抗氧化实验证实,过氧化氢、DPPH、还原潜力与金属螯合力的自由基清除率随多糖浓度的增加而成增长趋势。其中山药多糖与其纳米粒对DPPH清除能力在0.5,4,6,8 g·L-1质量浓度下均有极显著差异。超氧阴离子自由基与羟自由基的抗氧化能力亦与多糖浓度成正相关。结论:山药多糖及其纳米粒体外抗氧化活性良好,且山药多糖纳米粒的体外抗氧化活性优于山药多糖。 展开更多
关键词 湿磨法 山药多糖纳米粒 星点设计 体外抗氧化
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Assessment of the immune responses to Treponema pallidum Gpd DNA vaccine adjuvanted with IL-2 and chitosan nanoparticles before and after Treponema pallidum challenge in rabbits 被引量:10
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作者 ZHAO FeiJun ZHANG XiaoHong +6 位作者 LIU ShuangQuan ZENG TieBing YU Jian GU WeiMing ZHANG YueJun CHEN Xi WU YiMou 《Science China(Life Sciences)》 SCIE CAS 2013年第2期174-180,共7页
Syphilis is a multistage,sexually transmitted disease caused by the spirochete,Treponema pallidum(Tp).A significantly high incidence of syphilis has been reported in several countries,including China,and there is an u... Syphilis is a multistage,sexually transmitted disease caused by the spirochete,Treponema pallidum(Tp).A significantly high incidence of syphilis has been reported in several countries,including China,and there is an urgent need for the development of efficacious vaccines against syphilis.DNA vaccines are a major breakthrough in the field of vaccination with several advantages over traditional vaccines.Animal model studies of Tp DNA vaccines have not been reported elsewhere but our previous reports describe the development of a single-gene Tp DNA vaccine and preclinical immunization study.In this study,chitosan(CS) nanoparticles were used as a vector and an interleukin-2 expression plasmid(pIL-2) as an adjuvant to enhance a TpGpd DNA vaccine candidate(pTpGpd) in a rabbit Tp skin challenge model.At week 8 after the first immunization,three rabbits from each group were used to determine cytokine measurements and spleen lymphocyte proliferation assay.pTpGpd in combination with pIL-2 wrapped with CS led to the greatest enhancement of anti-TpGpd antibodies and T-cell proliferation.During infection,levels of anti-TpGpd antibodies and T-cell proliferation were measured.Both the serum special IgG and IL-2,interferon-γ were significantly increased by the co-injection of the IL-2 plasmid compared with the injection of TpGpd DNA alone(P<0.05).Furthermore,IL-2 plasmid coinjection efficiently enhanced the antigen-specific lymphocyte proliferation response.Additionally,the ratios of positive skin lesions and ulcer lesions in groups immunized with pTpGpd were significantly lower than those of the pIL-2,CS or pIL-2 mixed with CS control groups(P<0.001).CS vectored and pIL-2 adjuvanted pTpGpd immunized animals exhibited the lowest rates of positive skin tests(8.33%) and ulcer lesions(4.17%) and the fastest recovery(42 d).These experiments indicate that co-injection of a pIL-2 plasmid with pTpGpd DNA vaccine wrapped with CS can significantly strengthen the long-term stability of immune response during infection,efficiently improve the protective effect against T.pallidum spirochetes infection and attenuate syphilitic lesion development. 展开更多
关键词 Treponema pailidum (Tp) membrane protein GPD CS IL-2 nucleic acid vaccine
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