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1.
瞬时基因表达可溶性的VEGFR2: I-IV   总被引:1,自引:0,他引:1  
通过RT-PCR的方法从三个月的流产绒毛组织中克隆目的基因VEGFR2 (Vascular endothelial growth factor receptor 2, 血管内皮细胞生长因子受体2) 胞外I-IV区, 连接到真核表达载体上构建了重组表达载体。首先在无血清悬浮培养的HEK293细胞中, 使用报告基因GFP(Green fluorescence protein, 绿色荧光蛋白)优化转染条件, 发现在转染时DNA: PEI=1:2 (W/W)、1.5 mg DNA/106 cells及开始转染4 h内使用无血清、摇床(120 r/min)时可以达到最佳的转染效率和细胞数量。在确定转染条件之后, 将构建的表达载体分别在HEK293细胞、COS-7细胞和CHO-K1细胞中进行瞬时转染表达, 结果发现仅在CHO-K1细胞的培养上清中检测到目的蛋白的表达。瞬时转染CHO-K1细胞至总体积约为1.5 L, 由于目的蛋白的羧基端有8-His标签, 通过Ni2+-IDA柱纯化得到5 mg左右的目的蛋白。  相似文献   

2.
目的:优化重组抗体在悬浮无血清培养的HEK293 EBNA1瞬时表达,提高重组抗体表达量。方法:将HEK293 EBNA1细胞适应于无血清悬浮培养,筛选适宜的无血清培养基。使用PEI转染质粒进入细胞,瞬时表达重组抗体;使用Modde软件进行实验设计(DOE),优化转染质粒量、轻重链比例、PEI量等影响瞬时表达的条件。培养上清经亲和纯化,获得目标抗体,用快速免疫荧光灶抑制试验(RFFIT)测定抗体活性,用BCA法测定纯化抗体浓度。结果:293SFMII为适宜的HEK293 EBNA1细胞无血清悬浮培养基。对抗体表达影响最大的因素是轻重链比例(P=0.00000),其次为质粒浓度(P=0.00086),最后为PEI(P=0.00257)。优化的转染条件为:质粒用量0.61μg/106细胞,轻重链比例2:1,PEI 2.67μg/106细胞,优化后抗体表达量有显著提高(P=0.007)。结论:通过DOE优化获得了重组抗狂犬病病毒抗体的高水平表达,抗体表达量提高了至少50倍。  相似文献   

3.
基于聚乙烯亚胺(polyethyleneimine, PEI)的悬浮人胚胎肾细胞(human embryonic kidney 293 cells, HEK293)转染技术前景广阔,但培养基组分会影响转染效率。简单的离心换液存在污染风险,且影响细胞状态。探究抑制转染效率的关键组分对转染过程的影响机制,有利于从根本上解决该问题。首先通过探究培养基中对转染效率具有潜在影响的组分确定关键组分柠檬酸铁铵(ferric ammonium citrate, FAC)的抑制作用,然后通过考察柠檬酸铁铵添加对细胞状态、PEI与DNA形成的复合物(PEI-DNA complex, PEI-DNA复合物)结合情况、目的基因表达情况的影响,分析其抑制转染效率的机制。结果表明,高浓度的柠檬酸铁铵对细胞转染存在明显抑制作用,且该抑制作用随着柠檬酸铁铵浓度的升高而逐渐增强。当柠檬酸根和铁离子同时存在时才会抑制细胞转染过程。过高浓度的柠檬酸铁铵使PEI-DNA复合物的粒径显著增加,复合物进入细胞更加困难,导致进入细胞的复合物数量减少,最终引起细胞转染效率的大幅下降。柠檬酸铁铵通过影响PEI-DNA复合物的大小限制D...  相似文献   

4.
肿瘤细胞通过刺激新生血管生成来满足对营养及供氧的不断增长的需求,因此,肿瘤组织生长对于新生血管形成的依赖性使得抗血肿瘤管生成已经成为肿瘤学基础研究与临床治疗领域中最吸引人的策略之一.在众多的促血管生成因子中,血管内皮生长因子(VEGF)及其受体VEGFR2(鼠和人中也分别称为Flk-1和KDR)对于与肿瘤生长、转移及复发相关的血管生成是至关重要的.此外,通过打破肿瘤组织自身介导的免疫耐受与逃避,主动免疫治疗已成为一种崭新的抗肿瘤治疗方法.通过将这两种策略联合应用,抗血管生成主动免疫治疗使得更加有效地抑制肿瘤血管生成成为可能.这种免疫治疗与抗血管生成的联合应用有望成为一种有良好前景的研究方案.本文总结了通过打破VEGF/VEGFR2信号通路实现的抗肿瘤血管生成主动免疫治疗方面最新研究进展.本文讨论了旨在抑制血管生成的三种不同形式的抗肿瘤疫苗-细胞疫苗、蛋白质/多肽疫苗及基因/DNA疫苗,以及这一领域未来的研究方向.  相似文献   

5.
PEI介导的大规模基因瞬时转染研究进展   总被引:1,自引:0,他引:1  
基因重组蛋白具有巨大的商业和科研价值。近年来,大规模基因瞬时表达(large scale transient gene expression,TGE)技术的出现提供了一种相较于传统筛选稳定细胞株重组蛋白生产工艺而言更加高效(high efficient)和更加节约人力(labor consuming)、物力(cost effective)和时间(time consuming)的解决方案。通过基因瞬时表达技术,可以在短时间内获得毫克至克级别的在分子结构、理化特性和生物学功能等方面都接近于原始存在的蛋白质分子,可以满足细胞信号转导、新药筛选和临床前研究等药物研发前期的阶段对重组蛋白的巨大需求。因此,该技术成为当前研究的热点。阳离子聚合物-聚乙烯亚胺(PEI)是目前报道的工业化、大规模瞬时转染表达重组蛋白领域最广泛使用的基因载体和转染试剂。本文就近年来PEI介导的大规模瞬时转染的转染机理、宿主细胞选择以及转染优化措施等各方面的最新研究进展作一综述。  相似文献   

6.
谷氧还蛋白1(glutaredoxin1,Grx1)是细胞内一种重要的巯基 二硫键氧化还原酶,在细胞内氧化还原状态的调控及抵抗氧化应激损伤过程中发挥重要作用.为进一步探讨Grx1的抗氧化机制,本实验将重组质粒pcDNA3.1(+)-hGrx1瞬时转染HEK293T细胞,经RT-PCR和Western印迹验证,细胞转染后实现了Grx1的过表达;以不同浓度H2O2为损伤因素,建立细胞氧化应激模型,检测过表达Grx1后细胞存活率,丙二醛(MDA)含量,超氧化物歧化酶(SOD)活力和乳酸脱氢酶(LDH)漏出率的变化,观察过表达Grx1后细胞的抗氧化能力;用终浓度100 μmol/LH2O2作用于细胞,利用Western 印迹检测120 min内HEK293T细胞中p38MAPK磷酸化水平.实验结果表明,HEK293T细胞过表达Grx1后,缓解了细胞的氧化应激损伤;转染空载体组细胞p38MAPK磷酸化水平在H2O2刺激后5 min开始升高,15 min达到最高值,并可维持至120 min左右;而过表达Grx1组细胞p38MAPK磷酸化水平在H2O2刺激后各时间段没有明显改变,提示Grx1通过抑制H2O2诱导的p38MAPK信号通路激活发挥其抗氧化作用.  相似文献   

7.
马莉  苗乃周  艾庆燕 《四川动物》2012,31(3):369-372
目的研究血管内皮生长因子(VEGF)及其受体2(VEGFR2)在实验性左侧精索静脉曲张大鼠睾丸中的表达和定位,探讨精索静脉曲张中VEGF和VEGFR2的可能作用。方法通过部分结扎左肾静脉建立大鼠实验性左侧精索静脉曲张模型,于术后2周和4周取材,采用免疫组化法检测VEGF、VEGFR2在睾丸上的表达变化。结果 ELV2周与4周组大鼠两侧睾丸中VEGF蛋白表达均上调,但ELV组间VEGF蛋白表达没有明显变化;ELV2周组大鼠睾丸中VEGFR2蛋白的表达与对照组比较增强,而4周组比对照组和2周组均显著增强。结论实验性左侧精索静脉曲张对VEGF、VEGFR2蛋白的表达有影响,说明它们与男性不育可能有一定的关系。  相似文献   

8.
衰老和凋亡是细胞的两个重要生理过程,一直以来都是细胞生物学领域研究的热点。Peroxiredoxin 2(Prdx2)蛋白是过氧化物酶的其中一个亚型,分布于细胞质中。为了研究它在高氧条件诱导的细胞衰老及凋亡中的保护作用,我们分别将大鼠来源的Prdx2基因转染进人间充质干细胞(Human mesenchymal stem cells,hMSCs)和HEK293T细胞中,并建立了稳定表达Prdx2蛋白的HEK293T细胞系,利用SA-β-gal染色(Senescence-Associated β-Galactosidase Assay)、TUNEL染色及磷酸化p53蛋白的免疫印迹来检测高氧处理后细胞的衰老和凋亡情况。实验结果表明,高氧处理细胞后,转染了Prdx2的hMSCs和HEK293T细胞其衰老和凋亡率与对照组相比都有较为明显的减少,暗示Prdx2蛋白在细胞抵抗氧化损伤中发挥了重要作用。  相似文献   

9.
目的:构建人P2X7基因的真核表达载体,并通过转染获得稳定表达P2X7分子的HEK293细胞株。方法:以人脑组织P2X7cDNA为模板扩增出P2X7基因,插入到真核表达载体pEGFP-N1中,构建重组质粒pEGFP-N1/P2X7。用X-fect试剂盒将重组质粒转染HEK293细胞,通过G418辅助荧光筛选建立稳定表达P2X7-EGFP细胞株。经流式细胞仪、Western blot和激光共聚焦显微镜检测,了解人P2X7在HEK293细胞中的表达水平及细胞内定位。结果:重组质粒pEGFP-N1/P2X7构建正确,建立了稳定表达人P2X7的HEK293细胞系。Western blot和流式细胞仪检测证实,P2X7在HEK293细胞系中成功表达,激光共聚焦显微镜检测显示P2X7-EGFP定位在细胞膜上。结论:重组载体pEGFP-N1/P2X7构建成功并建立了稳定表达人P2X7的HEK293细胞系,为进一步研究P2X7离子通道结构和功能奠定基础。  相似文献   

10.
提取大鼠脑组织总RNA,通过逆转录巢式PCR,扩增μ型阿片受体全长cDNA,克隆至pMD20-T载体中,测序鉴定,纠正点突变后,经酶切连接克隆入pIRES2-EGFP中,测序及酶切结果表明μ基因正确,μ-pIRES2-EGFP质粒构建成功.用脂质体法将μ-pIRES2-EGFP转染入HEK293细胞中,在荧光显微镜下,转染细胞可以观察到绿色荧光,应用免疫组化荧光可以观察到μ基因的高强度表达.  相似文献   

11.
以HEK293T细胞为宿主对抗体基因的转染和表达条件进行优化。以GFP(green fluorescence protein)和人源性抗b FGF抗体1A2为报告基因,考察了3种转染试剂磷酸钙,PEI,FuGene HD的转染效率,确定FuGene HD的转染效率最高后,对DNA∶FuGene HD的比例,加入氯喹的浓度,转染后的孵育时间,最佳的低温培养温度以及加入组蛋白抑制剂的浓度进行了优化。结果显示,FuGene HD的转染效率最高,达到56.7%。当转染的DNA=2μg/4×106细胞时,DNA∶FuGene HD的最佳比例为1∶4(W/V);加入氯喹能够增强FuGene HD的转染效率,最佳浓度为100μmol/L,转染后的最佳孵育时间为6h;低温诱导能够提高293T细胞表达抗体的能力,最佳的温度为33℃;加入组蛋白抑制剂丁酸钠或丙戊酸能够明显提高抗体的表达量,丙戊酸的效果优于丁酸钠。通过对转染试剂,转染方法,培养温度,组蛋白抑制剂的加入等条件进行优化使人源性抗bFGF抗体的表达量从1.5mg/L提高到了15.1mg/L。  相似文献   

12.
In order to establish a simple and scaleable transfection system we have used the cationic polymer polyethylenimine (PEI) to study transient transfection in HEK293 and 293(EBNA) cells grown in serum-free suspension culture. The transfection complexes were made directly within the cell culture by consecutively adding plasmid and PEI (direct method). Alternatively, the DNA-PEI transfection complexes were prepared in fresh medium (1/10 culture volume) and then added to the cells (indirect method). The results of this study clearly show that the ratio of PEI nitrogen to DNA phosphate is very important for high expression levels. The precise ratio is dependent on the DNA concentration. For example, using 1 μg/ml DNA by the indirect method, the ratio of optimal PEI:DNA was about 10–13:1. However, the ratio increases to 33:1 for 0.1–0.2 μg/ml DNA. By testing several different molecular weights of the polycationic polymer we could show that the highest transfection efficiency was obtained with the PEI 25 kDa. Using PEI 25 kDa the indirect method is superior to the direct addition because significantly lower DNA concentrations are needed. The expression levels of the soluble human TNF receptor p55 are even higher at low DNA compared to 1 μg/ml plasmid. The EBV-based pREP vectors gave better transient gene expression when used in 293(EBNA) cells compared to HEK293 cells in suspension culture. No differences in expression levels in the two cell lines were observed when the pC1 (CMV)-TNFR was used. In conclusion, PEI is a low-toxic transfection agent which provides high levels of transient gene expression in 293(EBNA) cells grown in serum-free suspension culture. This system allows highly reproducible, cost-effective production of milligram amounts of recombinant proteins in 2–5 l spinner culture scale within 3–5 days. Fermentor scale experiments, however, are less efficient because the PEI-mediated transient tranfection is inhibited by conditioned medium. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

13.
犬细小病毒VP2基因在大肠杆菌中的高效可溶性表达   总被引:2,自引:0,他引:2  
目的:犬细小病毒VP2基因在大肠杆菌中高效可溶性表达,进而为其特异单克隆抗体的制备奠定基础。方法:以犬细小病毒VP2基因重组质粒为模板,通过蛋白质分析软件PROSPECT分析,根据VP2基因所编码的氨基酸的亲水性和抗原性,把VP2基因分成不同区段,设计相应引物并扩增出相应片段。按常规方法克隆入pGEX-4T-2载体谷光甘肽-S-转移酶(GST)基因的下游,获得的重组质粒转化大肠杆菌BL21,用IPTG诱导目的基因片段的表达,经超声处理后SDS-PAGE电泳。所得可溶性蛋白再经间接ELISA、western Blotting鉴定。结果:K2和K4片段获得了良好的可溶性表达,其表达的GST融合蛋白的分子质量分别为38.3 KD和41 KD,ELISA、Western Blotting结果表明所表达的融合蛋白具有与CPV阳性抗体特异结合的良好抗原性。结论:犬细小病毒VP2基因在大肠杆菌中的获得了高效可溶性表达。  相似文献   

14.
赵华  邵广达  高文鑫  顾彪 《植物学报》2020,55(2):182-191
基因瞬时表达是植物中研究目标基因功能的常用手段。在模式植物拟南芥(Arabidopsis thaliana)中, 相比原生质体和农杆菌介导的基因异源表达技术, 利用粒子轰击进行基因瞬时表达一直鲜有报道。其主要原因是拟南芥叶型相对较小、基因枪操作相对烦琐以及基因表达效率差异较大。该研究通过优化双管基因枪系统, 在营养生长旺盛的拟南芥莲座叶中实现GFPGUS基因高效表达。同时, 通过GUS报告基因明确了坏死诱导因子BAX、Avh238和ATR13/Rpp13激发拟南芥细胞坏死的表型。但在本氏烟(Nicotiana benthamiana)中明显诱导细胞坏死的Avrblb1/RB基因对, 在拟南芥中却丧失了诱导细胞坏死的活性。由于双管基因枪系统每次轰击时设置平行对照, 可有效降低转化实验中的样本变异度, 为拟南芥及其突变体研究中准确评价基因功能和高通量筛选目标基因提供新的技术参考。  相似文献   

15.
In an attempt to determine the relationship between the Epstein–Barr virus nuclear antigen-1 (EBNA-1) expression level and specific foreign protein productivity (qp), EBNA-1-amplifed HEK293 cells, which achieved a higher EBNA-1 expression level than that achieved by HEK293E cells, were established using dihydrofolate reductase (dhfr)-mediated gene amplification. Compared with a control culture in a null pool, Fc-fusion protein production by transient transfection in the EBNA-1-amplified pool showed a significant improvement. qp was linearly correlated with the EBNA-1 expression level in the transient transfection of EBNA-1-amplified clones, as indicated by the correlation coefficient (R2 = 0.7407). The Fc-fusion protein production and qp in a transient gene expression-based culture with EBNA-1-amplified HEK293 cells, E-amp-68, were approximately 2.0 and 3.2 times, respectively, higher than those in a culture with HEK293E cells. The increase in qp by EBNA-1 amplification mainly resulted from an enhancement in the amount of replicated DNA and level of mRNA expression but not an improved transfection efficiency. Taken together, it was found that EBNA-1 amplification could improve the therapeutic protein production in an HEK293 cell-based transient gene expression system.  相似文献   

16.
Transient gene expression (TGE) in mammalian cells at the reactor scale is becoming increasingly important for the rapid production of recombinant proteins. We improved a process for transient calcium phosphate-based transfection of HEK293-EBNA cells in a 1-3 L bioreactor volume. Cells were adapted to suspension culture using a commercially available medium (BioWhittaker, Walkersville, MD). Process parameters were optimized using a plasmid reporter vector encoding the enhanced green fluorescent protein (EGFP/CLONTECH, Palo Alto, CA, USA). Using GFP as a marker-protein, we observed by microscopic examination transfection efficiencies between 70-100%. Three different recombinant proteins were synthesized within a timeframe of 7 days from time of transfection to harvest. The first, a human recombinant IgG(1)-type antibody, was secreted into the supernatant of the cell culture and achieved a final concentration of >20 mg/L. An E. coli-derived DNA-binding protein remained intracellular, as expected, but accumulated to such a concentration that the lysate of cells, taken up into the entire culture volume, gave a concentration of 18 mg/L. The third protein, a transmembrane receptor, was expressed at 3-6 x 10(6) molecules/cell.  相似文献   

17.
Transient gene expression (TGE) in HEK293 cells was optimized by Vink et al. by co-expression of human cell cycle inhibitors p21CIP/p27KIP and Simian virus 40 large T antigen (SVLT). In this study, we investigated the effect of this enhancer protein complex on the TGE experiments in a cell-cycle arrested condition of HEK293F cells induced by valproic acid. Growth profiles, consumptions of nutrients, formations of waste products, and product titers of recombinant human antibodies (huAb) were monitored during the 7-day cultivation time. Our results showed that the use of enhancer proteins increased the product yields in a growth arrest condition as well. During the growth phase, no differences were detected regarding viable cell densities (VCDs), viabilities, growth rates, and cell diameters between the TGE experiments with and without enhancer proteins. However, during the declining phase VCD and viability showed slightly higher values at day 6 and 7 in the presence of enhancers. Furthermore, we could not detect any differences in glucose and glutamine metabolism during batch cultivations with co-expression of enhancer proteins. Taken together, the special complex of enhancer proteins did not contribute to further enhancement of growth arrest and shift in the main cell metabolisms, but resulted in higher cell viability during the decline phase. Our observations suggest that the human cell cycle inhibitors p21CIP/p27KIP together with very low amount of SVLT antigen may induce alternative functional activities than growth arrest to further improve the yield of recombinant proteins.  相似文献   

18.
Abstract

Background: Vascular endothelial growth factor (VEGF) A and B are endothelial cell mitogens whose ligation to VEGFR1/VEGFR2 drives tumor angiogenesis and metastasis, and epithelial-mesenchymal transition (EMT). Blockade of these signaling axes could be obtained by disturbing the interactions between VEGFA and/or VEGFB with VEGFR1 and/or VEGFR2.

Methods: A 14-mer peptide (VGB) that recognizes both VEGFR1 and VEGFR2 were investigated for its inhibitory effects on the VEGF‐induced proliferation and migration using MTT and scratch assay, respectively. Downstream signaling pathways were also assessed by quantitative estimation of gene and protein expression using real-time PCR and immunohistochemistry (IHC).

Results: We investigated the inhibitory effects of VGB on downstream mediators of metastasis, including epithelial-cadherin (E-cadherin), matrix metalloprotease-9 (MMP-9), cancer myelocytomatosis (c-Myc), and nuclear factor-κβ (NF-κβ), and migration, comprising focal adhesion kinase (FAK) and its substrate Paxilin. VGB inhibited the VEGF‐induced proliferation of human umbilical vein endothelial cells (HUVECs), 4T1 and U87 cells in a time- and dose-dependent manner and migration of HUVECs. Based on IHC analyses, treatment of 4T1 mammary carcinoma tumor with VGB led to the suppression of p-AKT, p-ERK1/2, MMP-9, NF-κβ, and activation of E-cadherin compared with PBS-treated controls. Moreover, quantitative real-time PCR analyses of VGB-treated tumors revealed the reduced expression level of FAK, Paxilin, NF-κβ, MMP-9, c-Myc, and increased expression level of E-cadherin compared to PBS-treated controls.

Conclusions: Our results demonstrated that simultaneous blockade of VEGFR1/VEGFR2 is an effective strategy to fight solid tumors by targeting a wider range of mediators involved in tumor angiogenesis, growth, and metastasis.  相似文献   

19.
Recombinant proteins are of great commercial and scientific interest. Yet, most production methods in mammalian cells involve the time- and labor-consuming step of creating stable cell lines. Production methods based on transient gene expression are advantageous in terms of speed and versatility; yet, depending on the transfection protocol, transient transfection faces some bottlenecks such as a priori complex formation, limitations in terms of transfection and production media used and the need for medium exchange prior to and/or after transfection. Published protocols for transfection of suspension-adapted HEK-293 cells with polyethyleneimine have shown great promise in overcoming some of these bottlenecks, but still require a priori complex formation for optimal yields and limit the choice of transfection and production media. Here, we report successful in situ transfection of suspension-adapted HEK-293 cells with 25-kDa linear polyethyleneimine at densities up to 20 x 10(6) cells/mL in complex media followed by production at lower cell densities (1 x 10(6) cells/mL). After concentrating cells to such high densities, transfection of HEK-293 cells becomes possible in most commonly used media and is not restricted to a specific medium. Furthermore, there is no need to make transfection complexes a priori, a step that prevents inline sterile filtration of the DNA bulk for transfection, an important consideration when scaling processes up to 100 or 1,000 L. Finally, transfecting HEK-293 cells at high density in complex media is superior to existing transfection protocols and doubles yields of recombinant protein obtainable by transient gene expression.  相似文献   

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