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1.
目的:从大容量噬菌体抗体库中筛选人源性抗呼吸道合胞病毒F蛋白的单链抗体。方法:以RSV F蛋白为靶抗原,通过“吸附-洗涤-洗脱-扩增”过程从天然人源性噬菌体抗体库中筛选特异性抗F蛋白单链抗体。5轮筛选后,单克隆经ELISA检测,阳性克隆进行核酸序列分析,并将阳性克隆噬菌体感染E.coli HB2151,经IPTG诱导,制备抗RSV F蛋白的可溶性单链抗体,并进行Western及Dot blot分析。结果:经过筛选,获得了18株能与F蛋白特异性结合的阳性克隆,取OD值最高的克隆E4经测序并检索Kabat数据库分析,显示其基因与人免疫球蛋白可变区基因具有高度同源性,Western及Dot blot分析表明为单链抗体。结论:利用天然人源性噬菌体抗体库技术制备出高特异性的人源性抗RSV F蛋白单链抗体。  相似文献   

2.
采用噬菌体抗体库技术,从未经免疫的混合人噬菌体抗体库直接筛选抗TNFα的人源单克隆抗体,3种不同的检测手段表明,经过5轮的筛选,能够与TNFα结合的噬菌体抗体得到了有效的富集。对所获得的噬菌体抗体克隆进行的初步鉴定表明,7个噬菌体抗体克隆能有效地与人重组TNFα结合,并且这种结合具有特异性,由这7个噬菌体抗体克隆制备的抗体Fab片段也能有效地与TNFα结合。由此,我们通过噬菌体抗体技术直接获得了TNFα的人源单克隆抗体,这为进一步制备具有临床应用前景的人源抗TNFα单克隆抗体打下了基础。  相似文献   

3.
噬菌体抗体库技术是获得治疗性抗体的一条重要途径。以20份健康人外周血为样本,通过提取淋巴细胞、逆转录-PCR(RT PCR)、抗体可变区基因的扩增、重叠PCR获得单链抗体(ScFv)基因,将ScFv克隆入噬粒载体,通过近300次的电转化获得了库容量为1.3×109的全人源天然ScFv噬菌体抗体库。通过随机挑克隆测序和用5种不同抗原筛选对抗体库进行了初步验证。随机测序表明抗体库具有较好的多样性,用5种不同抗原对其进行筛选,均获得了特异性噬菌体抗体的不同富集,表明成功构建了一个多样性良好的人源天然ScFv噬菌体抗体库。  相似文献   

4.
大容量人天然抗体库的构建、鉴定及初步应用   总被引:1,自引:0,他引:1  
从未经主动免疫的健康志愿者的外周血淋巴细胞中提取总RNA,用RT-PCR扩增人抗体重链(VH)和轻链(VL)可变区基因,得到了6种VH家族基因,11种VL家族基因,这些抗体基因家族覆盖了人抗体基因多样性的95%以上。采用改进的SOEPCR法将VH基因和VL基因连接成人单链抗体(scFv)基因,并克隆到噬菌粒载体pCANTAB5E中,将连接产物电转化大肠杆菌TG1,经辅助噬菌体M13KO7超感染,构建了库容为5.58×109的噬菌体单链抗体库。采用BstNI酶切法证明,构建的噬菌体单链抗体库具有良好的多样性。以TNF-α为靶,从该抗体库中筛选到了抗TNF-α抗体,这说明该抗体库可用于人源抗体的筛选。  相似文献   

5.
噬菌体抗体库技术是继噬菌体展示技术发展而来的一项基因抗体工程新技术。它可将含不同物种全部抗体可变区基因的基因库转化成展示在噬菌体表面的蛋白库,不仅使单克隆抗体的生产更方便、快速、高效地在体外进行,还开辟了单克隆抗体人源化的新途径,促进了人类单克隆抗体生产的发展。就近年来噬菌体抗体库技术的基因来源、发展关键及抗体应用的研究作一综述。  相似文献   

6.
噬菌体抗体库技术   总被引:1,自引:0,他引:1  
噬菌体抗体库技术是指从人外周血、脾或骨髓淋巴细胞提取总RNA,利用逆转录-多聚酶链反应(RT-PCR)方法扩增抗体的全套可变区基因,通过噬菌体表面展示技术,把抗体Fab段或单链抗体表达在噬菌体表面,构建人源抗体库.噬菌体抗体将基因型(genotype)和表型(phenotype)统一于一体,将选择能力和扩增能力偶联起来,具有强大的筛选能力,能够在体外模拟体内的抗体生成过程,使抗体工程技术进入了一个新的时代.  相似文献   

7.
抗体可变区的重键基因及轻链基因与线性噬菌体的包膜蛋白蛋白基因重组后,可以在噬菌体表面表达形成具有活性的抗体片段。通过抗原的直接筛选,可以分离得到特异性强,亲和力高的抗体分子,包括人抗体。本文就噬菌体抗体文库的构建,噬菌体抗体的分离及其应用作了简要介绍。  相似文献   

8.
构建人源T7噬菌体单链抗体(scFv)库筛选抗汉坦病毒核衣壳蛋白(NP)抗体。从肾综合征出血热恢复期患者外周血淋巴细胞中提取总RNA,反转录合成cDNA第一条链,PCR分别扩增抗体重链可变区基因(VH)和轻链可变区基因(VL),经重叠延伸拼接(SOE)PCR组成scFv基因,并将其与T7噬菌体载体的2个臂相连接。体外包装后,在宿主菌BLT5403中,扩增重组噬菌体抗体库。以基因工程表达NP进行4轮“吸附-洗脱-扩增”的筛选,酶免疫实验检测抗体活性。所建抗体库库容为1.35×107,扩增后初级库滴度为2.12×1010pfu/mL。以NP抗原筛选后抗体出现特异性富集,经酶免疫实验鉴定,得到2株与NP抗原特异结合的噬菌体抗体。结果表明,研究成功构建了人源抗NP蛋白T7噬菌体抗体库。  相似文献   

9.
噬菌体抗体库技术是获得人源抗体的重要方法,此文探讨大容量天然噬菌体抗体库在筛选人源抗体中的实际应用价值。从正常人外周血分离淋巴细胞,通过基因工程方法获得抗体基因并且构建到含有重组位点的载体pDF中获得初级噬菌体抗体库,初级库在重组系统中重组之后获得了容量为9×1010的天然Fab噬菌体抗体库,通过序列测定和重组蛋白筛选来对抗体库的质量进行初步鉴定。对随机挑取的96个克隆测序序列分析表明各种型别比例基本合适;用四种抗原筛选有明显的富集,并且获得了针对其中一种抗原的阳性抗体克隆。  相似文献   

10.
噬菌体抗体库技术研究进展   总被引:1,自引:0,他引:1  
阚劲松 《生物技术》2003,13(1):43-44
抗体研究可分多克隆抗体、单克隆抗体和基因工程抗体三个阶段。特别是噬菌体抗体库 (phageantibodylibrary)技术[1 ]可达到不经免疫制备人源性小型化基因工程抗体。这一技术将抗体基因的克隆与表达融为一体 ,是一种新的基因操作技术 ;同时将识别抗原与再扩增能力结合在一起 ,是一种高效的表达和筛选抗体的新一代技术。1 噬菌体抗体库技术的基本原理[2 ,3 ]噬菌体抗体库技术是将抗体VH和VL基因与噬菌体的外壳蛋白Ⅲ (cpⅢ )或Ⅷ (cpⅧ )基因随机重组 ,继而感染大肠杆菌 ,经增殖并在噬菌体表面以抗体片段Fab…  相似文献   

11.
噬菌体抗体是继多克隆抗体、单克隆抗体之后兴起的第3代基因工程抗体.噬菌体抗体库技术是抗体基因文库技术和噬菌体表面展示技术相结合形成的一项新技术与方法,在生物科学领域极具潜力.现主要就近年来该技术在抗体基因扩增、抗体库的构建、筛选方法等方面的进展进行综述.  相似文献   

12.
鼠源性抗雄性特异性抗原噬菌体Fab抗体的制备及分析   总被引:1,自引:0,他引:1  
利用噬菌体抗体库筛选技术获得抗雄性特异性抗原的噬菌体Fab抗体,首次采用雄鼠脾细胞对鼠源性抗雄性特异性抗原噬菌体Fab抗体库进行3轮亲和富集和2轮雌鼠脾细胞吸附,对筛选后特异性噬菌体Fab抗体进行ELISA分析,重组率鉴定及基因测序分析。结果显示,5次筛选后的15个菌落中有9个能产生抗雄性特异性抗原特异性噬菌体抗体,噬菌体Fab抗体的基因重组率为60%,E5克隆的重链、轻链可变区序列分别属于VH1和VκⅣ基因家族,这为挑选出高亲和力的抗雄性特异性抗原噬菌体Fab抗体奠定了实验基础,将推进雄性特异性抗原及其抗体的研究进程,并为性别控制研究开创新途径。  相似文献   

13.
《MABS-AUSTIN》2013,5(1):26-31
One of the limitations of the use of phage antibody libraries in high throughput selections is the production of sufficient phage antibody library at the appropriate quality. Here, we successfully adapt a bioreactor-based protocol for the production of phage peptide libraries to the production of phage antibody libraries. The titers obtained in the stirred-tank bioreactor are 4 to 5 times higher than in a standard shake flask procedure, and the quality of the phage antibody library produced is indistinguishable to that produced using standard procedures as assessed by Western blotting and functional selections. Availability of this protocol will facilitate the use of phage antibody libraries in high-throughput scale selections.  相似文献   

14.
One of the limitations of the use of phage antibody libraries in high throughput selections is the production of sufficient phage antibody library at the appropriate quality. Here, we successfully adapt a bioreactor-based protocol for the production of phage peptide libraries to the production of phage antibody libraries. The titers obtained in the stirred-tank bioreactor are 4 to 5 times higher than in a standard shake flask procedure, and the quality of the phage antibody library produced is indistinguishable to that produced using standard procedures as assessed by Western blotting and functional selections. Availability of this protocol will facilitate the use of phage antibody libraries in high-throughput scale selections.  相似文献   

15.
Phage display of combinatorial antibody libraries is a versatile tool in the field of antibody engineering, with diverse applications including monoclonal antibody (mAb) discovery, affinity maturation, and humanization. To improve the selection efficiency of antibody libraries, we developed a new phagemid display system that addresses the complication of bald phage propagation. The phagemid facilitates the biotinylation of fragment of antigen binding (Fab) antibody fragments displayed on phage via Sortase A catalysis and the subsequent enrichment of Fab-displaying phage during selections. In multiple contexts, this selection approach improved the enrichment of target-reactive mAbs by depleting background phage. Panels of cancer cell line-reactive mAbs with high diversity and specificity were isolated from a naïve chimeric rabbit/human Fab library using this approach, highlighting its potential to accelerate antibody engineering efforts and to empower concerted antibody drug and target discovery.  相似文献   

16.
17.
To isolate phages displaying a practical and useful antibody with a high kon value and/or a low koff value from phage display antibody libraries, we developed a rational strategy based on a kinetic model. In the model, the recovery of a phage displaying an antibody after a round of biopanning is expressed as a function of five parameters, the apparent association rate constant of the phage antibody to the immobilized antigen (kon′), the apparent dissociation rate constant of the phage antibody from the immobilized antigen (koff′), the effective antigen concentration (C), the time for the binding process (tb) and the time for the washing process (tw). An optimum set of operating parameters (C, tb and tw) for isolating phages displaying an antibody with a high kon value was designed based on the model. Three rounds of biopanning were carried out under the designed conditions, against a phage library in which the hypervariable regions of an original antibody were randomized. All isolated phages displayed an antibody with a higher kon value and one displayed an antibody with a 30-fold greater kon value than that of the original antibody. Experimental conditions which improve the efficiency of conventional off-rate selections are also described.  相似文献   

18.
A therapeutic antibody candidate (AT-19) isolated using multivalent phage display binds native tomoregulin (TR) as a mul-timer not as a monomer. This report raises the importance of screening and selecting phage antibodies on native antigen and reemphasizes the possibility that potentially valuable antibodies are discarded when a monomeric phage display system is used for screening. A detailed live cell panning selection and screening method to isolate multivalently active antibodies is described. AT-19 is a fully human antibody recognizing the cell surface protein TR, a proposed prostate cancer target for therapeutic antibody internalization. AT-19 was isolated from a multivalent single-chain variable fragment (scFv) antibody library rescued with hyperphage. The required multivalency for isolation of AT-19 is supported by fluorescence activated cell sorting data demonstrating binding of the multivalent AT-19 phage particles at high phage concentrations and failure of monovalent particles to bind. Pure monomeric scFv AT-19 does not bind native receptor on cells, whereas dimeric scFv or immunoglobulin G binds with nanomolar affinity. The isolation of AT-19 antibody with obligate bivalent binding activity to native TR is attributed to the use of a multivalent display of scFv on phage and the method for selecting and screening by alternate use of 2 recombinant cell lines.  相似文献   

19.
目的:综述噬菌体抗体库技术的研究进展,介绍该技术的原理,构建,筛选和应用,为抗肿瘤抗体药物研发提供参考。方法:采用文献综述的方法,筛选近5年来噬菌体抗体库技术试验论文,对噬菌体抗体库技术的原理,构建,筛选和应用进行总结。结果:噬菌体抗体库主要分为免疫抗体库和非免疫抗体库两大类;噬菌体抗体库筛选技术包括亲和筛选、细胞筛选和生物体内筛选三种;噬菌体抗体库技术主要应用于肿瘤标志物的识别和肿瘤诊断,抗肿瘤抗体药物的筛选和制备。结论:噬菌体抗体库技术方便、快速、高效,可以在体外环境下培养,这些特点决定了其在肿瘤标志物的发现和肿瘤抗体药物研发中的广泛应用。目前噬菌体抗体库技术还存在一定缺陷,但技术的不断发展和革新必然使噬菌体抗体库技术成为研制抗体药物的新思路,极大促进了肿瘤抗体药物的研发。  相似文献   

20.
A helper phage to improve single-chain antibody presentation in phage display   总被引:11,自引:0,他引:11  
We show here that the number of single-chain antibody fragments (scFv) presented on filamentous phage particles generated with antibody display phagemids can be increased by more than two orders of magnitude by using a newly developed helper phage (hyperphage). Hyperphage have a wild-type pIII phenotype and are therefore able to infect F(+) Escherichia coli cells with high efficiency; however, their lack of a functional pIII gene means that the phagemid-encoded pIII-antibody fusion is the sole source of pIII in phage assembly. This results in an considerable increase in the fraction of phage particles carrying an antibody fragment on their surface. Antigen-binding activity was increased about 400-fold by enforced oligovalent antibody display on every phage particle. When used for packaging a universal human scFv library, hyperphage improved the specific enrichment factor obtained when panning on tetanus toxin. After two panning rounds, more than 50% of the phage were found to bind to the antigen, compared to 3% when conventional M13KO7 helper phage was used. Thus, hyperphage is particularly useful in stoichiometric situations, when there is little chance that a single phage will locate the desired antigen.  相似文献   

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