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肝胆相照论坛 论坛 学术讨论& HBV English 存档 1 港大研发纳米银粒医乙肝 一个小时后杀毒九成 ...
楼主: willright

港大研发纳米银粒医乙肝 一个小时后杀毒九成 [复制链接]

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发表于 2008-6-22 09:12
期待
顶一下,期待中

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发表于 2008-6-22 13:51
加油加油,会有那么一天的,大家不要放弃

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发表于 2008-6-22 19:57
期待,,,,

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发表于 2008-6-22 21:08

真的吗

不要象吴玉章的那样两年都没有消息石沉大海

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发表于 2008-6-25 09:27

关于纳米银的原始文献摘要

从摘要上看,试验还处在体外细胞学水平,还没做动物和人体试验,和新闻报道的有出入。未知因素还很多。而且顺利的话,估计开发出来也在15年后了。15年=5年临床前动物试验+10年临床试验。

Silver nanoparticles inhibit hepatitis B virus replication
Lei Lu, Raymond Wai-Yin Sun, Rong Chen, Chee-Kin Hui, Chi-Ming Ho, John M Luk, George KK Lau and Chi-Ming Che
Antiviral Therapy 2008; 13: 253-262

Background: Silver nanoparticles have been shown to exhibit promising cytoprotective activities towards HIV-infected T-cells; however, the effects of these nanoparticles towards other kinds of viruses remain largely unexplored. The aim of the present study was to investigate the effects of silver nanoparticles on hepatitis B virus (HBV).
Methods: Monodisperse silver nanoparticles with mean particle diameters of ~10 nm (Ag10Ns) and ~50 nm (Ag50Ns) were prepared from AgNO3 in HEPES buffer. The in vitro anti-HBV activities of these particles were determined using the HepAD38 cell line as infection model.
Results: Ag10Ns and Ag50Ns were able to reduce the extracellular HBV DNA formation of HepAD38 cells by >50% compared with the vehicle control (that is, HepAD38 cells in the absence of silver nanoparticles). Silver nanoparticles had little effect on the amount of HBV covalently closed circular DNA (cccDNA), but could inhibit the formation of intracellular HBV RNA. Gel mobility shift assays indicated that Ag10Ns bound HBV double-stranded DNA at a DNA:silver molar ratio of 1:50; an absorption titration assay showed that the nanoparticles have good binding affinity for HBV DNA with a binding constant (Kb) of (8.8 ±1.0)×105 dm3mol–1. As both the viral and Ag10Ns systems are in the nanometer size range, we found that Ag10Ns could directly interact with the HBV viral particles as revealed by transmission electronic microscopy.
Conclusions: Silver nanoparticles could inhibit the in vitro production of HBV RNA and extracellular virions. We hypothesize that the direct interaction between these nanoparticles and HBV double-stranded DNA or viral particles is responsible for their antiviral mechanism.
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发表于 2008-6-25 18:25
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发表于 2008-6-25 21:06
但愿所有的乙人都能坚持到那一天

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发表于 2008-6-25 21:58
值得关注!

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神仙眷侣 如鱼得水 翡翠丝带 健康之翼

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发表于 2008-6-26 10:03
who is 第一个获得诺贝尔奖的香港人?/
温故中知新
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发表于 2008-6-27 15:21
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