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BACKGROUND: The potential of lentiviral vectors for clinical gene therapy has not yet been evaluated. One of the reasons is the cytotoxicity of lentiviral packaging genes which makes the generation of stable producer cell lines difficult. Therefore, a novel packaging system for lentiviral vectors based on transient expression of packaging genes by recombinant adenoviruses was developed. METHODS: Adenoviral vectors expressing VSV-G, codon-optimized HIV-1 gag-pol, and codon-optimized SIV gag-pol under the control of a tetracycline-regulatable promoter (adenoviral lenti-pack vectors) were constructed and the production levels of this vector system were evaluated. RESULTS: The generated adenoviral lenti-pack vectors could be grown to high titers when transgene expression was suppressed and no evidence for instabilities was obtained. Cells stably transfected with a SIV-based vector construct were converted into lentiviral vector producer cells by infection with the adenoviral lenti-pack vectors. Lentiviral vector titers obtained were as high as vector titers obtained by transient cotransfection experiments. A protocol was developed that allowed preparation of lentiviral vector stocks with undetectable levels of contaminating adenoviral lenti-pack vectors. CONCLUSIONS: The adenoviral lenti-pack vectors described should provide a convenient alternative approach to inducible packaging cell lines for large-scale lentiviral vector production. Transient expression of cytotoxic lentiviral packaging genes by the adenoviral lenti-pack vectors circumvents loss of titers during prolonged culture of packaging cell lines. The design of the adenoviral lenti-pack vectors should reduce the risk of transfer of packaging genes to target cells and at the same time provide flexibility with respect to the lentiviral vector constructs that can be packaged.  相似文献   

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BACKGROUND: A stable packaging cell line facilitates large-scale lentivirus vector manufacture. However, it has been difficult to produce clinical-scale HIV-1-based lentiviral vectors using a packaging cell line, in part due to toxicity of packaging genes, and gene silencing that occurs during the long culture period necessary for sequential addition of packaging constructs. METHODS: To avoid these problems, we developed a three-level cascade gene regulation system designed to remove tetracycline transactivator (tTA) from cytomegalovirus immediate early promoter (CMV)-controlled expression to reduce cytotoxicity from constitutive expression of tTA and leaky expression of packaging genes. We also performed a one-step integration of the three packaging plasmids to shorten the culture time for clonal selection. RESULTS: Although leaky expression of p24 and vector production still occurred despite the three-level regulation system, little cytotoxicity was observed and producer cells could be expanded for large-scale production. Producer cells yielded remarkably stable vector production over a period greater than 11 days with the highest titer 3.5 x 10(7) transducing units (TU)/ml and p24 300 ng/ml, yielding 2.2 x 10(11) TU and 1.8 milligram (mg) p24 from one cell factory. No replication-competent lentivirus (RCL) was detected. Long-term analysis demonstrated that, although the cells are genetically stable, partial gene silencing occurs after 2-3 months in culture; however, the one-step construct integration allowed prolonged vector production before significant gene silencing. Concentrated vector resulted in 90% transduction in CD4+ lymphocytes at 20 TU per cell. CD34+ progenitor cells were transduced at 41-46% efficiency, and long-term initiating culture (LTC-IC) was transduced at 45-51%. CONCLUSIONS: These results demonstrate for the first time HIV-1-based lentiviral vector production on the large scale using a packaging cell line.  相似文献   

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We constructed an avian leukosis virus-based packaging cell line, pHF-g, containing Rous-associated virus DNA with several alterations to abolish RNA packaging. One of them is a 52-base-pair deletion encompassing the putative encapsidation signal in the leader region. The 3' long terminal repeat was also removed and replaced by the polyadenylation sequence from the herpes simplex virus thymidine kinase gene. When pHF-g cells were transfected by an avian leukosis virus-based vector, they produced replication-defective virus at high titer but they did not release any replication-competent particles. Proviral DNA was shown to be correctly integrated as well as correctly expressed. Viral RNAs were shown to be correctly translated into gag-related polypeptides.  相似文献   

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BACKGROUND: We have previously reported long-term expression of lacZ in myocytes after in utero intramuscular injection of Mokola and Ebola pseudotyped lentiviral vectors. In further experiments, we have noted that these vectors also transduce small cells at the periphery of the muscle fibers that have the morphology of satellite cells, or muscle stem cells. In this study we performed experiments to further define the morphology and function of these cells. METHODS: Balb/c mice at 14-15 days gestation were injected intramuscularly with Ebola or Mokola pseudotyped lentiviral vectors carrying CMV-lacZ. Animals were harvested at various time points, muscles were stained with X-gal, and processed for electron microscopy (EM) and immunofluorescence. To determine whether transduced satellite cells were functionally capable of regenerating injured muscles, animals were injected with notexin in the same area 8 weeks after the in utero injection of viral vector. RESULTS: Transmission EM of transduced cells confirmed the ultrastructural appearance of satellite cells. Double immunofluorescence for beta-galactosidase and satellite cell markers demonstrated co-localization of these markers in transduced cells. In the notexin-injured animals, small blue cells were seen at the areas of regeneration that co-localized beta-galactosidase with markers of regenerating satellite cells. Central nucleated blue fibers were seen at late time points, indicating regenerated muscle fibers arising from a transduced satellite cell. CONCLUSIONS: This study demonstrates transduction of muscle satellite cells following prenatal viral vector mediated gene transfer. These findings may have important implications for gene therapy strategies directed toward muscular dystrophy.  相似文献   

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目的利用慢病毒载体建立fractalkine(FKN)基因敲低的HK-2稳定细胞株,为探讨FKN基因在肾脏组织肾小管上皮细胞转分化(EMT)重构中的作用奠定实验基础。方法通过双酶切将FKN目的基因连接到GV248载体(hU6-MCS-Ubiquitin-EGFP-IRES-puromycin),经扩增、转化、验证、测序、质粒抽提,将携带目的基因的工具GV248载体质粒及病毒包装辅助质粒Helper1.0、Helper2.0转染293T细胞,完成慢病毒包装及质量检测后获取慢病毒工具载体LV-FKN-RNAi,病毒感染HK-2细胞72h后筛选稳定表达的细胞株HK-2/LV-FKN-RNAi,采用Western blot测定FKN的表达水平,CCK-8检测细胞活力,流式细胞术检测细胞凋亡率。结果经对比,构建LV-FKN-RNAi阳性克隆序列与目的基因FKN相符;HK-2细胞达到80%感染效率的最佳感染条件为:在Enhanced Infection Solution(ENi.S)培养基中进行感染,设定感染复数(MOI)为10,感染时间为72h。Western Blot结果显示,经筛选的HK-2/LV-FKN-RNAi细胞中FKN基因表达水平降低;细胞形态成梭形,多有伪足出现。CCK-8检测显示,FKN基因敲低组细胞活力降低;流式细胞术检测显示,FKN基因敲低组细胞凋亡率增加。结论本研究成功构建一种低表达FKN基因的慢病毒载体;LV-FKN-RNAi感染HK-2细胞后可实现目的基因的低表达,并且FKN基因敲低后HK-2细胞活力下降,凋亡率增加。经筛选的HK-2/LV-FKN-RNAi细胞株可用于后续实验研究。  相似文献   

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RNAi-based gene therapy is a powerful approach to treat viral infections because of its high efficiency and sequence specificity. The HIV-1-based lentiviral vector system is suitable for the delivery of RNAi inducers to HIV-1 susceptible cells due to its ability to transduce nondividing cells, including hematopoietic stem cells, and its ability for stable transgene delivery into the host cell genome. However, the presence of anti-HIV short hairpin RNA (shRNA) and microRNA (miRNA) cassettes can negatively affect the lentiviral vector titers. We show that shRNAs, which target the vector genomic RNA, strongly reduced lentiviral vector titers but inhibition of the RNAi pathway via saturation could rescue vector production. The presence of miRNAs in the vector RNA genome (sense orientation) results in a minor titer reduction due to Drosha processing. A major cause for titer reduction of miRNA vectors is due to incompatibility of the cytomegalovirus promoter with the lentiviral vector system. Replacement of this promoter with an inducible promoter resulted in an almost complete restoration of the vector titer. We also showed that antisense poly(A) signal sequences can have a dramatic effect on the vector titer. These results show that not all sequences are compatible with the lentiviral vector system and that care should be taken in the design of lentiviral vectors encoding RNAi inducers.  相似文献   

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Lentiviral vectors (LVs) enveloped with an engineered Sindbis virus glycoprotein can specifically bind to dendritic cells (DCs) through the surface receptor DC-SIGN and induce antigen expression, thus providing an efficient method for delivering DC-directed vaccines. In this study, we constructed a stable producer line (LV-MGFP) for synthesizing DC-SIGN-targeted HIV-1-based LVs (DC-LVs) encoding green fluorescent protein (GFP) by a concatemeric array transfection technique. We demonstrated that the established stable clones could routinely produce vector supernatants with titers above 10(7) transduction units per milliliter (TU/mL) during a continuous 3-month cell passage. The producer cells were also capable of generating similar titers of DC-LVs in serum-free medium. Moreover, the addition of 1-deoxymannojirimycin (DMJ) enabled the producer cells to manufacture DC-LVs with both improved titers and enhanced potency to evoke antigen-specific CD8(+) T cell responses in mice. The stable lines could accommodate the replacement of the internal murine stem cell virus (MSCV) promoter with the human ubiquitin-C (Ubi) promoter in the lentiviral backbone. The resulting DC-LVs bearing Ubi exhibited the enhanced potency to elicit vaccine-specific immunity. Based on accumulated evidence, our studies support the application of this production method in manufacturing DC-LVs for preclinical and clinical testing of novel DC-based immunization.  相似文献   

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A chimeric provirus in which the 5'LTR of a complete biologically active Mouse Mammary Tumour Virus (MMTV) proviral DNA has been replaced with the Rous Sarcoma Virus LTR has been constructed. Upon transfection into permissive cells, this provirus directs the synthesis of the MMTV gag and env structural proteins, but is impaired in packaging of the RNAs that encode these proteins. Supertransfection of these cells with MMTV based vector constructs results in the production of infectious recombinant virus at a higher efficiency than with previously described helper cell lines. Such a retroviral vector system based on MMTV will allow the study of the effects of conditional expression of inserted genes upon infected cells.  相似文献   

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Heterologous lentiviral vectors (LVs) represent a way to address safety concerns in the field of gene therapy by decreasing the possibility of genetic recombination between vector and packaging constructs and the generation of replication-competent viruses. Using described LVs based on human immunodeficiency virus type 1 (HIV-1) and simian immunodeficiency virus MAC251 (SIV(MAC251)), we asked whether heterologous virion particles in which trans-acting factors belonged to HIV-1 and cis elements belonged to SIV(MAC251) (HIV-siv) would behave as parental homologous vectors in all cell types. To our surprise, we found that although the heterologous HIV-siv vector was as infectious as its homologous counterpart in most human cells, it was defective in the transduction of dendritic cells (DCs) and, to a lesser extent, macrophages. In DCs, the main postentry defect was observed in the formation of two-long-terminal-repeat circles, despite the fact that full-length proviral DNA was being synthesized and was associated with the nucleus. Taken together, our data suggest that heterologous HIV-siv vectors display a cell-dependent infectivity defect, most probably at a post-nuclear entry migration step. As homologous HIV and SIV vectors do transduce DCs, we believe that these results underscore the importance of a conserved interaction between cis elements and trans-acting viral factors that is lost or suboptimal in heterologous vectors and essential only in the transduction of certain cell types. For gene therapy purposes, these findings indicate that the cellular tropism of LVs can be modulated not only through the use of distinct envelope proteins or tissue-specific promoters but also through the specific combinatorial use of packaging and transfer vector constructs.  相似文献   

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为构建表达人神经元素3基因(neurogenin 3,ngn3)的重组逆转录病毒载体,建立稳定表达ngn3的包装细胞株,本研究以流产人胎儿胰腺组织为材料,通过RT-PCR方法克隆出人ngn3基因,将其连接到pMD18-T载体上并测序,结果表明,测序得到的基因序列与发表的人ngn3基因序列(GenBank Accession No.BC126468)完全一致。将EcoRI和HpaI双酶切后的基因片段构建到pMSCV-neo逆转录病毒载体中,酶切鉴定结果表明,pMSCV-ngn3重组逆转录病毒载体构建成功。脂质体法将pMSCV-ngn3重组载体导入PT67包装细胞,G418筛选后,对得到的细胞株进行RT-PCR和免疫组化检测,结果显示,该细胞株在mRNA水平和蛋白水平均稳定表达Ngn3;收集该细胞株的培养上清液,进行RT-PCR检测及电镜观察,结果表明,该细胞株将导入的重组逆转录病毒载体pMSCV-ngn3包装成了具有感染性的病毒颗粒,并将其释放到了培养上清液中。以上结果表明PT67-ngn3包装细胞株建立成功。该细胞株的成功建立,为下一步将ngn3基因应用于提高人胎儿胰腺祖细胞诱导分化效率方面的研究奠定了基础。  相似文献   

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Upscaling of lentiviral vector production by tangential flow filtration   总被引:1,自引:0,他引:1  
BACKGROUND: HIV-1-derived vectors are promising tools for gene transfer into the brain. Application of these vectors for gene therapy or for the creation of animal models for neurodegenerative diseases requires standardization and upscaling of lentiviral vector production methods. METHODS: In this study, serum-free HIV-1 vector production was efficiently upscaled by use of cell factories and the introduction of tangential flow filtration (TFF) prior to centrifugation. RESULTS: Vector titers (TU/ml) and p24 values (pg p24/ml) for a serum-free HIV-1 vector produced in cell factories and using TFF prior to centrifugation were comparable to those of small-scale productions. TFF allowed a 66-fold concentration of the vectors with complete vector recovery. Further concentration of the vector (30-fold) was achieved either by low-speed centrifugation or by ultracentrifugation. Combination of TFF and ultracentrifugation resulted in a vector recovery of 90-100% and titers that increased 1800-fold and 900-fold for transducing units and p24 concentration, respectively. CONCLUSIONS: With this new standardized method for lentiviral vector production and concentration, 1 ml of concentrated vector is routinely produced with titers of 10(9)-10(10) TU/ml starting from 2 l of cell-culture medium. Moreover, stereotactic injection of this vector in mouse striatum resulted in a large transduced brain volume in the absence of any immune response.  相似文献   

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慢病毒载体作为一种有效的生物研究和基因治疗载体,近年来正受到广泛关注,而转录通读现象则是限制其被使用的主要生物安全性瓶颈之一.为了评估慢病毒载体在整合入染色体后的转录通读的实际情况,需要建立一种有效的检测转录通读率的方法.文中运用分子生物学等手段,将相关质粒瞬时转染入293T细胞,模拟野生型和自灭活型慢病毒载体整合入染色体后的情况,利用实时荧光定量PCR分别定量转录通读和总转录本在慢病毒载体上的特征序列,并计算出转录通读率;同时使用流式细胞计数等技术,检测转录通读后的GFP蛋白产物.两种检测结果均与理论相符,即自灭活型载体具有更高的转录通读率.说明文中所建立的方法有效可靠,为进一步评估和降低慢病毒载体的转录通读率,提高慢病毒载体的生物安全性的研究提供技术支持.  相似文献   

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