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1.
昆虫杆状病毒表达载体系统已广泛应用于表达重组蛋白。近年来研究显示,含有哺乳动物细胞启动子元件的重组杆状病毒可有效地转导多种哺乳动物原代和传代细胞。借助于杆状病毒载体,已成功实现了外源基因在哺乳动物细胞内的瞬时或稳定表达;而在体内,杆状病毒可被血清中的补体成份所灭活,从而抑制了转导效率,但是通过对杆状病毒进行修饰(如伪型杆状病毒),可以抵抗补体的灭活作用。研究人员对杆状病毒转导机制进行了探索,但是至今尚未完全弄清。杆状病毒基因转移系统最大特点是,杆状病毒能在昆虫细胞内大量繁殖,而不能在哺乳动物细胞内复制,因而具有很高的生物安全性;同时,此系统还具有操作简便、插入外源基因容量大等优点,使得杆状病毒作为哺乳动物细胞的基因传递载体,具有广泛的应用前景。  相似文献   

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杆状病毒作为优良的哺乳动物细胞基因转移载体已在基因治疗、疫苗开发、药物筛选以及基因调控研究等方面发挥巨大作用。但杆状病毒对哺乳动物细胞的嗜性不够广泛、转导效率和转基因表达水平偏低,以及表达持续时间短暂等问题制约其进一步发展,因此如何突破这个制约的瓶颈成为学者们新的关注焦点。针对以上问题,围绕杆状病毒介导哺乳动物细胞基因转移的各种影响因素进行综述。  相似文献   

4.
利用分子克隆的方法,将CVS-11株狂犬病毒N基因片段克隆入杆状病毒穿梭载体Bacmid中,构建出含CVS-11 NP基因重组杆状病毒表达质粒Bacmid-N;脂质体介导Bacmid-N转染Sf9昆虫细胞获得表达CVS-11 NP的重组杆状病毒(AcMNPV-N)。用ELISA、FA、SDS-PAGE和Western-blot法对表达产物进行鉴定和分析,证实CVS-11 NP为胞内表达,且具有天然核蛋白良好的免疫反应性,为进一步研制高效、敏感的狂犬病病毒检测试剂和建立实验室检测方法奠定基础。  相似文献   

5.
目的研究蛇毒金属蛋白酶抑制剂BJ46a在杆状病毒表达系统的表达及宿主细胞Sf9超微结构的变化。方法将构建的杆状病毒重组穿梭载体Bacmid BJ46a,经Cellfectin脂质体介导转染Sf9昆虫细胞,获重组杆状病毒颗粒;以高滴度病毒感染Sf9昆虫细胞,行Western blot观察BJ46a融合蛋白的表达。在病毒扩增、蛋白表达过程应用透射电镜和超薄切片技术观察Sf9细胞超微结构的变化。结果Western blot分析表明:在转染病毒的Sf9细胞出现BJ46a融合蛋白表达条带。电镜观察表明:Sf9细胞在病毒扩增过程,细胞核增大,病毒发生基质形成,杆状病毒在其周围装配。蛋白表达期间,杆状病毒量剧增,细胞核内外存在大量丝状纤维。结论BJ46a基因可在杆状病毒表达系统成功表达,并伴随着宿主细胞超微结构的显著变化,其结果为杆状病毒表达系统的研究奠定坚实的基础。  相似文献   

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利用Bac-to-Bac系统,在大肠细菌中复制增殖杆状病毒质粒bacmid,并通过RecA介导法、ET-recombination法在bacmid DNA上缺失或插入功能基因,构建功能基因缺陷型或补回型的杆状病毒质粒.该质粒转染到昆虫细胞中产生重组病毒,进而在细胞甚至虫体水平上研究基因的功能,极大改善了传统上用空斑实验筛选重组病毒的不足.  相似文献   

7.
李俪  王鑫  尹隽  钟江 《生物工程学报》2009,25(10):1558-1563
为了提高昆虫杆状病毒在哺乳动物细胞中转导基因的效率,构建了重组杆状病毒AcRed-tat和AcRed。两者都能在哺乳动物细胞内表达红色荧光蛋白作为报告基因。同时,AcRed-tat带有HIV-1Tat转导肽、病毒主要衣壳蛋白基因vp39及增强型绿色荧光蛋白(egfp)三者的融合基因,并由杆状病毒多角体启动子表达,能够在昆虫细胞中表达该Tat融合蛋白,并掺入子代病毒粒子。而AcRed作为相应的对照病毒,带有多角体启动子表达vp39和egfp的融合基因。2株病毒分别转导哺乳动物细胞后,利用流式细胞仪检测报告基因的表达水平,发现在CHO和Vero细胞中AcRed-Tat介导的报告基因表达水平明显高于AcRed,而在HEK293细胞中2株病毒介导的报告基因表达水平差异不显著。结果表明Tat转导肽可以提高杆状病毒对一部分哺乳动物细胞的转导效率,为改进杆状病毒-哺乳动物细胞转导载体提供了新的思路。  相似文献   

8.
昆虫杆状病毒应用于哺乳动物基因治疗的研究进展   总被引:5,自引:0,他引:5  
杆状病毒是一类宿主特异性的昆虫病毒。昆虫杆状病毒表达系统是一个高效的真核表达系统,被广泛用于在昆虫细胞或昆虫幼虫中生产外源蛋白质。杆状病毒不能感染哺乳动物,却可以进入不同物种和组织来源的多种哺乳动物细胞,并在合适的哺乳动物启动子控制下表达外源基因。杆状病毒在哺乳动物细胞中不能复制,对细胞没有毒性,加上杆状病毒本身具有基因组大、可操作性好等优点,作为哺乳动物基因治疗的载体,将治疗基因传递给哺乳动物细胞已受到了广泛关注。在此就杆状病毒作为基因治疗载体的最新研究进展进行了阐述并探讨其发展趋势。  相似文献   

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目的获得在昆虫细胞中有效表达脊髓灰质炎病毒P1基因和3CD基因的重组杆状病毒,为制备脊髓灰质炎病毒样颗粒疫苗提供了科学依据。方法将I型脊髓灰质炎病毒(Mahoney株)的P1基因和3CD基因构建到供体质粒中,通过flash BAC ULTRATM系统制备重组杆状病毒;将Mahoney株的P1基因与Sabin株Ⅲ型的3CD基因组合,用同样方法构建重组杆状病毒。通过接种昆虫细胞草地贪夜蛾细胞(sf-9细胞)对两种病毒进行扩增,再接种昆虫细胞粉纹夜蛾细胞(High five细胞)扩大培养,并通过定量PCR对P1和3CD基因的表达进行验证,利用Western blot检测P1蛋白的表达及被3CD蛋白酶剪切的情况。结果获得了两株稳定表达脊髓灰质炎病毒P1和3CD基因的重组杆状病毒。其中,重组杆状病毒(Bac U-Mahoney-P1-3CD)在感染细胞后,3CD蛋白酶表达量较低,不能有效剪切P1前体蛋白;而重组杆状病毒(Bac U-Mahoney-P1-Sabin PV3 3CD)感染细胞后,3CD蛋白酶的表达量和对P1前体蛋白的剪切效力都有明显提高(P<0.05)。结论将Mahoney株P1基因和Sabin株Ⅲ型的3CD基因的组合构建重组杆状病毒,可有效地在昆虫细胞中表达P1和3CD基因,并且Sabin株Ⅲ型的3CD蛋白酶可有效地剪切Mahoney株的P1前体蛋白。  相似文献   

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目的:构建针对Sp1基因siRNA真核表达载体,转染前列腺癌细胞PC-3,研究反式作用因子Sp1时CD59表达的影响.方法:应用siRNA表达载体介导的RNAi技术,构建含特异性sp1基因的重组载体pSUPER-siSp1,脂质体法转染前列腺癌细胞,G418筛选建立稳定表达转染基因的细胞株,Western blotting检测转染细胞中sp1和CD59基因的表达,MTT和染料释放试验判断CD59基因抑制后对补体溶破的抵抗作用.结果:成功构建了Sp1基因siRNA真核表达载体,转染PC-3细胞可表达荧光蛋白,稳定转染的Pc-3细胞Sp1及CD59基因蛋白水平降低,MTT和染料释放实验表明CD59基因受抑制后对补体溶破的抵抗作用降低.结论:siRNA-Sp1重组载体有效地抑制了CD59的表达,降低CD59的抗补体活性,结果证明反式作用因子Sp1是CD59表达调控中重要的转录因子,为探讨CD59在肿瘤细胞中高表达的研究奠定了基础.  相似文献   

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BACKGROUND: Nuclease degradation of plasmid DNA (pDNA) vectors after delivery and during trafficking to the nucleus is a barrier to gene expression. This barrier may be circumvented by shielding the pDNA from the nuclease-rich cell environment with adjuvants or by using nuclease inhibitors. A different alternative that is explored in this work is to make pDNA vectors more nuclease-resistant a priori. METHODS AND RESULTS: The hypothesis that a significant part of nuclease attack is directed towards certain labile sequences in a pDNA model (pVAX1/lacZ) was first tested. Homopurine-rich tracts in the bovine growth hormone polyadenylation signal (BGH poly A) were identified as labile sequences using S1 nuclease as a probe. Two pDNA variants were then created by replacing the BGH poly A region with the SV40 or a synthetic poly A signal. A study of plasmid degradation in eukaryotic cell lysates and mice plasma showed that the half-life of the supercoiled isoforms of the new vectors was always higher when compared with the control plasmid. An in vitro assay of the reporter beta-galactosidase in transfected CHO cells further showed that gene expression with the new pDNA variants was not affected negatively by the plasmid modifications. CONCLUSIONS: The replacement of labile sequences in plasmid DNA vectors improves resistance towards nuclease attack as shown by the increased half-lives of supercoiled plasmid isoforms incubated with endo/lysosomal, cytoplasmatic and blood plasma enzymes.  相似文献   

12.
Effective genetic therapy requires both a fragment of genetic material to be used therapeutically and a means to deliver it. We began to study simian virus-40 (SV40) as a vector for gene transfer because available gene delivery vehicles did not provide for the full range of therapeutic uses. Other vectors are variably limited by immunogenicity, difficulties in production, restricted specificity, low titers, poor transduction efficiency, etc. In theory recombinant viral vectors based on SV40 (rSV40) should not, on the other hand, be similarly constrained. rSV40 vectors are easily manipulated and produced at very high titer, stable, lacking in immunogenicity, and capable of providing sustained high levels of transgene expression in both resting and dividing cells. The principle limitation of SV40-derived vectors is the size of the packageable insert (相似文献   

13.
Effective gene therapy is dependent on safe gene delivery vehicles that can achieve efficient transduction and sustained transgene expression. We are developing a hybrid viral vector system that combines in a single particle the large cloning capacity and efficient cell cycle-independent nuclear gene delivery of adenovirus (Ad) vectors with the long-term transgene expression and lack of viral genes of adeno-associated virus (AAV) vectors. The strategy being pursued relies on coupling the AAV DNA replication mechanism to the Ad encapsidation process through packaging of AAV-dependent replicative intermediates provided with Ad packaging elements into Ad capsids. The generation of these high-capacity AAV/Ad hybrid vectors takes place in Ad early region 1 (E1)-expressing cells and requires an Ad vector with E1 deleted to complement in trans both AAV helper functions and Ad structural proteins. The dependence on a replicating helper Ad vector leads to the contamination of AAV/Ad hybrid vector preparations with a large excess of helper Ad particles. This renders the further propagation and ultimate use of these gene delivery vehicles very difficult. Here, we show that Cre/loxP-mediated genetic selection against the packaging of helper Ad DNA can reduce helper Ad vector contamination by 99.98% without compromising hybrid vector rescue. This allowed amplification of high-capacity AAV/Ad hybrid vectors to high titers in a single round of propagation.  相似文献   

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Gene therapy has emerged as one of the most promising therapeutic methods to treat various diseases. However, inadequate gene transfection efficacy during gene therapy demands further development of more efficient gene delivery strategies. Targeting genetic material to specific sites of action endows numerous advantages over non-targeted delivery. An ample variety of non-viral gene delivery vectors have been developed in recent years owing to the safety issues raised by viral vectors. Non-viral gene delivery vectors containing specific targeting ligands on their surfaces have been reported to enhance the gene transfection efficiency via receptor-mediated endocytosis for gene delivery. Among various targeting moieties investigated, carbohydrates and lectins (carbohydrate-binding proteins) played an essential role in gene delivery via either direct or reverse lectin targeting strategies. Lectins have a specific carbohydrate binding domain that can bind specifically to the carbohydrates. This review sheds light on various gene delivery nanovectors conjugated with either lectins or carbohydrates for enhanced gene transfection.  相似文献   

15.
无机纳米粒子作为基因载体的研究进展   总被引:2,自引:0,他引:2  
李新新  侯森  冯喜增 《生命科学》2008,20(3):402-407
转染是将具生物功能的核酸转移、运送到细胞内,并使其在细胞内维持生物功能的过程。作为现代生物化学和分子生物学中的一种主要技术手段,转染对于基因治疗有重要的意义。无机纳米粒子作为基因载体受到人们日益广泛的关注,其具有易于制备,可进行多样化的表面修饰等多种优势。本文将概述无机纳米粒子作为基因载体的现状及其对基因表达的影响。  相似文献   

16.
Baculovirus vectors are an efficient means to deliver genes into hepatocytes in vitro. In experiments that exclude components of the complement system, gene transfer is facilitated. Therefore, the complement system has been defined to represent a potent primary barrier to direct application of baculoviruses in vivo. Here we have genetically manipulated baculoviruses so that the complement-regulatory protein human decay- accelerating factor (DAF) is incorporated into the viral envelope. We found that this modification protected baculovirus vectors against complement-mediated inactivation. Complement-resistant baculovirus vectors were additionally analyzed by immunoblotting and electron microscopy, showing the extent of envelope-incorporated DAF and shape of complement-resistant baculoviruses after exposure to complement. This modified baculovirus vector allowed for an enhanced gene transfer into complement-sufficient neonatal rats in vivo, and thus represents a step in the development of improved alternative viral vectors for gene therapy.  相似文献   

17.
Gene therapy has provided great potential to revolutionize the treatment of many diseases. This therapy is strongly relied on whether a delivery vector efficiently and safely directs the therapeutic genes into the target tissue/cells. Nonviral gene delivery vectors have been emerging as a realistic alternative to the use of viral analogs with the potential of a clinically relevant output. Dendritic polymers were employed as nonviral vectors due to their branched and layered architectures, globular shape and multivalent groups on their surface, showing promise in gene delivery. In the present review, we try to bring out the recent trend of studies on functional and biodegradable dendritic polymers as nontoxic and efficient gene delivery vectors. By regulating dendritic polymer design and preparation, together with recent progress in the design of biodegradable polymers, it is possible to precisely manipulate their architectures, molecular weight and chemical composition, resulting in predictable tuning of their biocompatibility as well as gene transfection activities. The multifunctional and biodegradable dendritic polymers possessing the desirable characteristics are expected to overcome extra- and intracellular obstacles, and as efficient and nontoxic gene delivery vectors to move into the clinical arena.  相似文献   

18.
BACKGROUND: The baculovirus Autographa californica nucleo-polyhedrosis virus (AcNPV) is an alternative to other viral vectors for hepatic gene delivery. A barrier to AcNPV being used in vivo is its susceptibility to inactivation by serum complement 1. In vivo utility has only been demonstrated using methods that avoid contact with serum 2-5. We have studied the complement pathways involved in baculovirus inactivation in vitro and the systemic administration of baculovirus vectors in vivo, with the co-administration of the complement inhibitor, soluble complement inhibitor 1 (sCR1). RESULTS: EDTA increased baculovirus survival in human serum more than EGTA showing that both the alternative and classical pathways of complement are activated. Depleting serum of IgM increased survival, whereas reconstitution with pooled IgM restored activity against baculovirus, suggesting naturally occurring IgM antibodies with affinity for baculovirus may be partially responsible for complement activation. Intraportal administration of baculovirus led to hepatic expression when the complement inhibitor sCR1 (soluble complement receptor type 1) was co-administered by tail vein injection; however, liver histology showed hepatic necrosis. Without co-administration of sCR1, intraportal infusion of baculovirus was fatal within 24 h. Histology demonstrated massive hepatic necrosis. Yolk sac vein injection of baculovirus was associated with fetal death. CONCLUSIONS: Transgene expression was demonstrated following intraportal infusion of recombinant baculovirus vectors in combination with sCR1; however, our experiments suggest a significant associated toxicity.  相似文献   

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In vitro and in vivo gene delivery by recombinant baculoviruses   总被引:20,自引:0,他引:20       下载免费PDF全文
Although recombinant baculovirus vectors can be an efficient tool for gene transfer into mammalian cells in vitro, gene transduction in vivo has been hampered by the inactivation of baculoviruses by serum complement. Recombinant baculoviruses possessing excess envelope protein gp64 or other viral envelope proteins on the virion surface deliver foreign genes into a variety of mammalian cell lines more efficiently than the unmodified baculovirus. In this study, we examined the efficiency of gene transfer both in vitro and in vivo by recombinant baculoviruses possessing envelope proteins derived from either vesicular stomatitis virus (VSVG) or rabies virus. These recombinant viruses efficiently transferred reporter genes into neural cell lines, primary rat neural cells, and primary mouse osteal cells in vitro. The VSVG-modified baculovirus exhibited greater resistance to inactivation by animal sera than the unmodified baculovirus. A synthetic inhibitor of the complement activation pathway circumvented the serum inactivation of the unmodified baculovirus. Furthermore, the VSVG-modified baculovirus could transduce a reporter gene into the cerebral cortex and testis of mice by direct inoculation in vivo. These results suggest the possible use of the recombinant baculovirus vectors in combination with the administration of complement inhibitors for in vivo gene therapy.  相似文献   

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