期刊简介
本刊刊登与工程学相关的国内外医学技术、临床应用及其基础、新技术、新理论和高新技术开发成果,新药研制、成药二次开发,数学、物理在医学中的应用、新产品研制过程,国内外医用仪器设备的质量、性能评价和购置参考。文稿须具科学性、原创性、逻辑性及有效性、文字力求准确、精练、通顺。
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首页>中国医学工程杂志

- 杂志名称:中国医学工程杂志
- 主管单位:中华人民共和国卫生部
- 主办单位:中国医药生物技术协会 卫生部肝胆肠外科研究中心
- 国际刊号:1672-2019
- 国内刊号:11-4983/R
- 出版周期:月刊
期刊荣誉:中国期刊全文数据库(CJFD)期刊收录:国家图书馆馆藏, 哥白尼索引(波兰), 上海图书馆馆藏, 知网收录(中), 维普收录(中), 万方收录(中)
乳糖化修饰纳米基因载体的肝靶向性研究
张阳德;王光锁;潘一峰;龚连生;刘金波
关键词:Lactosaminated Nanoparticle, Alginate Nanoparticle, Hydroxyapatite- PLL Nanoparticle, pEGFPC1 Plasmid, Active Liver Targeting, Radioisotope Tracing Assay
摘要:Objective:To compare the targeting effects of lactosarninated alginate(AlgNP)、polyethylene glycol - coated hydroxyapatite- poly- L- lysine nanoparticles (PLL- PCHNP)and relative nonlactosaminated ones load ed with exogenous gene on liver via peripheral intravenous route. Methods:Preparation of AlgNP based on control of gelification phenomenon of algiante by calcium ions and HA- PLLNP with collosol - gel method, both further modified with lactosaminated - poly- L - lysine synthesized by reductive lactosamination . We used pEGFPCl as the reporter gene to establish receptor- mediated and positive liver targeting nanoparticles- gene model. The potential of adsorbing DNA on nanoparticles was analysed by electrophoresis and spectrophotometer. Then different complexes were transferred into the rat's body by peripheral intravenous route and their targeting characteristics in liver were investigated by using radioisotope tracing assay. Results: PCHNP presented as needle - like particles with a diameter of 20nm by TEM and could be effectively combined with PLL. The diameter of AlgNP was 280nm. Agarpse gel electrophoresis showed both nanoparticles could effectively combine with DNA and the optimal proportion of PLLPCHNP and DNA was 30:1 (w/w); DNA mixed ratio of AlgPLL was 68.3 % by spectrophotometer. The radioactivities in liver for the two lactosaminated nanoparticles were higher than the nonlactosaminated ones. No statistic difference between AlgNP and AlgLacNP could be found . Conclusions: Lactosaminated naroparticles can target to liver more effectively by peripheral intravenous route than nonlactosaminated ones, which is closely concerned with the characteritics of the nanopartide complex.
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