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1.
EGFR基因重组T7噬菌体疫苗抗Lewis肺癌的实验研究   总被引:1,自引:0,他引:1  
本研究中制备了表达表皮生长因子受体(EGFR)部分肽段的基因重组T7噬菌体疫苗,并开展了诱导小鼠产生内源性抗EGFR抗体的实验性抗肿瘤作用研究。由T7噬菌体展示系统将7个经筛选的异种属(人源、鸡源)EGFR膜外区片段展示在其壳体次要头蛋白(P10B)上,用所制备的基因重组噬茵体疫苗免疫小鼠,免疫4W后皮下接种Lewis肺癌细胞,10d后分离瘤体并称重,观察各实验组的抗肿瘤效果。Western Blot检测重组的融合壳蛋白均有EGFR抗原性:高表达EGFR的A431 细胞与免疫3W的小鼠抗血清结合并被荧光二抗标记,流式细胞仪检测法确认有抗EGFR抗体产生;各实验组肿瘤均重统计结果显示,P-CL1-670组、P-cp1-130组、P-cp2-136组、P-cp3-145组、 P-cp4-142组与空白噬菌体组差异性显著。说明表达EGFR的基因重组噬菌体疫苗诱导产生的内源性抗体.在一定程度上抑制了EGFR阳性肿瘤的生长.为诱导型内源性抗EGFR抗体的肿瘤靶向治疗研究开辟了新的途径。  相似文献   

2.
目的:构建以减毒沙门氏菌为载体的小鼠肝炎病毒DNA疫苗,研究该疫苗的免疫原性。方法:以小鼠肝炎病毒S1基因的重组真核表达质粒pVAX1—S1免疫BALB/c小鼠,ELISA检测其诱导抗体产生情况;再将重组质粒pVAX1—S1电转化到减毒鼠伤寒沙门氏菌SL7207中,构建运送S1基因的重组减毒沙门氏菌SL7207(pVAX1—S1),口服免疫BALB/c小鼠,间接免疫荧光试验鉴定减毒沙门氏菌运送的DNA疫苗的免疫原性。结果:与pVAX1空载体对照组相比,重组真核表达质粒pVAX1—S1免疫组二免及三免后抗体水平分别存在显著性差异(P〈0.05)和极显著性差异(P〈0.01)。减毒沙门氏菌运送的DNA疫苗SL7207(pVAX1—S1)诱导小鼠产生了特异性的血清抗体。结论:构建的重组减毒沙门氏菌SL7207(pVAX1—S1)具有良好的免疫原性,可诱导小鼠产生特异性的体液免疫应答。这为进一步研制冠状病毒新型基因疫苗奠定了基础。  相似文献   

3.
利用RT-PCR技术从人A431细胞中克隆表皮生长因子受体(epidermalgrowthfactorreceptor,EGFR)基因N端序列,经测序鉴定正确。将膜外序列不同功能及模拟抗原呈递较佳的亚克隆DNA片段插入T7噬菌体表达载体,从而构建了重组T7噬菌体抗肿瘤疫苗并用于动物免疫注射,用斑点印迹(dotblot)和MTT法分别检测到特异性抗体和细胞毒性T淋巴细胞反应。结果显示,以噬菌体颗粒为载体的疫苗可以诱导体液免疫反应和细胞免疫反应。  相似文献   

4.
构建展示A型禽流感病毒M2e多肽的重组T7噬菌体,检测其对SPF鸡的免疫保护效果。比对GenBank近期发表的A型禽流感病毒M2e基因序列进行人工合成并重复至两拷贝,将其克隆到T7Select 415-1b噬菌体多克隆位点,构建重组噬菌体T7-M2e。经PCR鉴定并序列测定筛选阳性重组噬菌体,SDS-PAGE和Westernblot检测重组噬菌体表面M2e多肽。重组噬菌体以1×1010pfu/只剂量免疫SPF鸡,免疫后不同时间段采血通过ELSIA检测血清中抗M2e抗体,免疫荧光检测血清抗体与H9亚型禽流感病毒的结合能力,并以200个EID50/只剂量进行攻毒保护效率检测。成功构建重组噬菌体T7-M2e,插入两拷贝M2e基因获得表面展示,并与M2e抗体有免疫反应活性。噬菌体疫苗免疫后均产生抗M2e抗体,其抗血清能跟病毒粒子特异性结合,攻毒保护率达4/5(80%)。获得了展示禽流感病毒M2e多肽的重组噬菌体,噬菌体疫苗免疫鸡产生较高血清抗体并提供攻毒保护,为新型通用禽流感疫苗研制提供新思路。  相似文献   

5.
为了筛选出免疫原性最佳的基因Ⅰ型乙型脑炎病毒亚单位疫苗候选抗原,将基因Ⅰ型JEVGS株的prMEIII融合基因、polytope复合表位基因和prMEIII-polytope融合基因分别克隆构建到原核表达载体pET-30a上,经诱导表达纯化获得重组蛋白。将制备的重组蛋白免疫小鼠,通过ELISA监测体液免疫反应、通过噬斑减少中和试验滴定中和抗体滴度、通过细胞因子表达丰度和淋巴细胞增殖实验分析细胞介导的免疫反应,比较分析制备的乙型脑炎病毒亚单位疫苗候选抗原的免疫原性。结果表明:获得的分子量分别为35kDa(prMEIII)、28kDa(polytope复合表位抗原)和57 kDa (prMEIII-polytope)的重组蛋白均能诱导免疫小鼠产生较强的体液免疫和细胞免疫反应。与prMEIII-polytope和polytope重组蛋白免疫组相比,prMEIII蛋白可诱导免疫小鼠产生更高的IL-2和IFN-γ表达丰度和淋巴细胞增殖水平(P0.05)。prMEIII蛋白免疫小鼠诱导产生的中和抗体滴度接近于商品化乙脑减毒疫苗SA14-14-2 (P0.05)。上述研究结果表明,prMEIII重组蛋白可以作为乙型脑炎病毒亚单位疫苗的备选蛋白。  相似文献   

6.
杨韧  张晓光  王娇  朱莹  曹玉玺  曾毅 《病毒学报》2017,33(2):186-191
本实验将基于埃博拉病毒表面糖蛋白抗原GP基因序列,按照哺乳动物密码子使用频率优化,并与人IgG恒定区构建融合蛋白GP-Fc基因序列,重组蛋白序列插入基因疫苗载体pVR中,构建重组蛋白基因疫苗pVRmodGP-Fc。通过基因疫苗导入系统免疫小鼠,用间接ELISA和间接免疫荧光对抗体效价进行评估。实验结果显示,重组蛋白GP-Fc的基因疫苗可以很好的刺激小鼠产生特异性抗体,免疫周期结束后,小鼠血清中结合效价终点达到高剂量组1∶300 000及低剂量组1∶180 000,同时血清中的抗体可以很好地结合表达GP抗原的细胞表面,表现出很强的荧光信号。通过该研究我们验证重组蛋白基因疫苗pVR-modGP-Fc可以很好地诱导BALB/c小鼠产生较高滴度的抗原特异性IgG,具有较好的免疫原性。  相似文献   

7.
本研究利用复制缺陷型人5型腺病毒载体,表达了我国蝙蝠狂犬病毒分离株IRKV-THChina12的G基因,并将重组病毒命名为rAd5-IRKV-G。Western blot和间接免疫荧光试验证明,IRKV-THChina12的G基因在重组腺病毒感染的293AD细胞中得到表达。将rAd5-IRKV-G对小鼠分别进行腹腔和肌肉免疫,同时设立wt-rAd5对照,结果显示两种免疫方式均能诱导小鼠产生抗IRKV中和抗体,且rAd5-IRKV-G组与wt-rAd5组差异显著(P≤0.05),腹腔免疫组与肌肉免疫组无显著差异(P0.05)。结果表明,Irkut病毒糖蛋白可以作为疫苗抗原,而且构建的重组腺病毒具有较好的免疫原性。  相似文献   

8.
为探索以非复制型腺病毒为表达载体的多价轮状病毒(Rotavirus,RV)基因工程疫苗的可行性,在前期工作的基础上,对表达我国G2和G3型RV流行毒株vp7基因的重组腺病毒的免疫效果进行了研究。分别用表达G2和G3型vp7基因的重组腺病毒rvAdG2VP7、rvAdG3VP7经滴鼻和灌胃两种途径免疫Balb/c小鼠,对免疫后小鼠的血清抗体、黏膜抗体和相关的细胞因子水平进行了检测和比较。结果表明,用表达G2和G3型vp7基因的重组腺病毒经滴鼻和灌胃两种途径免疫小鼠后,均可诱导机体产生较强的RV特异性免疫反应,包括体液免疫、细胞免疫和黏膜免疫,并能产生中和抗体。但免疫反应以Th2类为主,Th1类反应也占有相当的比例。本研究为新型RV基因工程疫苗的深入研究奠定了基础。  相似文献   

9.
为了评价基因Ⅰ型乙型脑炎病毒prM-E DNA疫苗与prM和EⅢ融合抗原亚单位疫苗采用DNA初免-蛋白加强免疫策略对小鼠的免疫效果,本研究将prM-E融合基因插入到pVAX1真核表达载体中,构建重组表达载体prM-E-pVAX1作为DNA疫苗进行初免,利用原核表达系统获得的prM和EⅢ融合抗原作为亚单位疫苗进行加强免疫。将32只4−6周龄雌性BALB/c小鼠随机分成4组,设置prM-E-pVAX1 DNA疫苗组、DNA初免-蛋白加强免疫组、prM和EⅢ融合抗原亚单位疫苗组及pVAX1载体对照组,通过ELISA检测血清中特异性抗体水平;通过噬斑减少中和试验滴定中和抗体滴度;通过细胞因子表达丰度和淋巴细胞增殖试验分析不同疫苗免疫组诱导产生的细胞免疫反应。结果表明,用DNA初免-蛋白加强策略免疫的小鼠诱导产生的中和抗体滴度略高于prM和EⅢ融合抗原亚单位疫苗免疫组,显著高于prM-E-pVAX1 DNA疫苗免疫组。DNA初免-蛋白加强策略在小鼠模型中诱导产生了有效的Th1/Th2型免疫反应,特别是显著诱导了Th1型细胞免疫反应。本研究为预防流行性乙型脑炎提供了新的免疫策略和理论参考依据。  相似文献   

10.
为探索利用重组腺病毒表达轮状病毒的结构抗原以制备轮状病毒基因工程疫苗的可行性,构建了一株可表达A组轮状病毒主要中和抗原VP7的重组腺病毒AdEasyCVP7.AdEasyCVP7感染293细胞后,RT-PCR证明VP7基因有转,Western blotting试验可检测到VP7的表达。随后,用AdEasyCVP7通过灌胃和滴鼻两种不同途径免疫小鼠,并对免疫后小鼠的血清抗体和粘膜抗体进行了比较。初次免疫后,两组小鼠均有应答,但血清抗体滴度及阳转率不同。再次免疫后,滴鼻组小鼠显示出明显的加强效果。对肺灌洗液中的sIgA及肺、肠粘膜组织匀浆中的IgA进行检测发现滴鼻组的免疫学效果明显优于灌胃组。对血清中和抗体的检测表明,初次和再次免疫后,两组小鼠血清中均有中和抗体产生。该研究为轮状病毒基因工程疫苗的免疫方案、免疫途径及免疫保护作用等的进一步研究奠定了基础。  相似文献   

11.
The chimeric antibody 806 (Ch806) is a promising antitumor agent that recognizes both the epidermal growth factor receptor variant III (EGFRvIII) and the overexpressed epidermal growth factor receptor (EGFR) in cancer tissues but does not recognize the wild type EGFR in normal tissues. However, passive antibody immunization could not produce effective antitumor titers unless the immunization was administered repeatedly over long periods. To overcome this limitation, we generated epitope mimics that bind to Ch806 and tested whether the peptide mimics could induce the production of similar antibodies when actively immunizing mice with the peptides. We used the PH.D-12 phage display peptide library to identify peptides that bind to the monoclonal antibody (mAb) 12H23, which also recognizes similar epitopes of Ch806. Two mimotopes (WHTEILKSYPHE and LPAFFVTNQTQD) were shown to mimic the mAb 12H23 and Ch806 epitope using immunoassays. The mimotopes were conjugated to immunogenic carrier proteins and used to intraperitoneally immunize BALB/c mice. Interestingly, sera from the mice immunized with the isolated mimotopes not only recognize the recombinant or synthetic 806 eptitope, but can also recognize EGFR that is overexpressed in A431 cells and EGFRvIII expressed in Huh7-EGFRvIII cells, whereas sera from mice immunized with the control peptide-KLH (keyhole limpet hemocyanin) and carrier KLH alone failed to show a similar reactivity. Furthermore, in an antibody-dependent cellular cytotoxicity assay (ADCC), the mimotope-induced antibodies specifically lysed human Huh-7-EGFRvIII cells. Our data indicate that the isolated mimotopes reported here may potentially be used as new alternative agents for treating cancer with EGFRvIII expression or EGFR overexpression.  相似文献   

12.

Background

Tyrosine kinase inhibitor gefitinib is effective against lung cancer cells carrying mutant epidermal growth factor receptor (EGFR); however, it is not effective against lung cancer carrying normal EGFR. The breaking of immune tolerance against self epidermal growth factor receptor with active immunization may be a useful approach for the treatment of EGFR-positive lung tumors. Xenogeneic EGFR gene was demonstrated to induce antigen-specific immune response against EGFR-expressing tumor with intramuscular administration.

Methods

In order to enhance the therapeutic effect of xenogeneic EGFR DNA vaccine, the efficacy of altering routes of administration and formulation of plasmid DNA was evaluated on the mouse lung tumor (LL2) naturally overexpressing endogenous EGFR in C57B6 mice. Three different combination forms were studied, including (1) intramuscular administration of non-coating DNA vaccine, (2) gene gun administration of DNA vaccine coated on gold particles, and (3) gene gun administration of non-coating DNA vaccine. LL2-tumor bearing C57B6 mice were immunized four times at weekly intervals with EGFR DNA vaccine.

Results

The results indicated that gene gun administration of non-coating xenogenic EGFR DNA vaccine generated the strongest cytotoxicty T lymphocyte activity and best antitumor effects. CD8(+) T cells were essential for anti-tumor immunityas indicated by depletion of lymphocytes in vivo.

Conclusion

Thus, our data demonstrate that administration of non-coating xenogenic EGFR DNA vaccine by gene gun may be the preferred method for treating EGFR-positive lung tumor in the future.  相似文献   

13.
Most therapeutic antibodies (Abs) target cell surface proteins on tumor and immune cells. Cloning of Ab gene libraries in E. coli and their display on bacteriophages is commonly used to select novel therapeutic Abs binding target antigens, either purified or expressed on cells. However, the sticky nature of bacteriophages renders phage display selections on cells challenging. We previously reported an E. coli display system for expression of VHHs (i.e., nanobodies, Nbs) on the surface of bacteria and selection of high-affinity clones by magnetic cell sorting (MACS). Here, we demonstrate that E. coli display is also an attractive method for isolation of Nbs against cell surface antigens, such as the epidermal growth factor receptor (EGFR), upon direct selection and screening of Ab libraries on live cells. We employ a whole cell-based strategy using a VHH library obtained by immunization with human tumor cells over-expressing EGFR (i.e., A431), and selection of bacterial clones bound to murine fibroblast NIH-3T3 cells transfected with human EGFR, after depletion of non-specific clones on untransfected cells. This strategy resulted in the isolation of high-affinity Nbs binding distinct epitopes of EGFR, including Nbs competing with the ligand, EGF, as characterized by flow cytometry of bacteria displaying the Nbs and binding assays with purified Nbs using surface plasmon resonance. Hence, our study demonstrates that E. coli display of VHH libraries and selection on cells enables efficient isolation and characterization of high-affinity Nbs against cell surface antigens.  相似文献   

14.
To develop effective anti-lung cancer vaccines, we directly mixed mycobacterial heat shock protein 65 (MHSP65) and tumor cell lysate (TCL) from Lewis lung cancer cells in vitro and tested its efficacy on stimulating anti-tumor immunity. Our results showed that MHSP65–TCL immunization significantly inhibited the growth of lung cancer in mice and prolonged the survival of lung cancer bearing mice. In vivo and in vitro data suggest that MHSP65–TCL could induce specific CTL responses and non-specific immunity, both of which could contribute to the tumor inhibition. Thus, this report provides an easy approach to prepare an efficient TCL based tumor vaccine.  相似文献   

15.
Over‐expression of epidermal growth factor receptor (EGFR) has been reported in a number of human malignancies. Strong expression of this receptor has been associated with poor survival in many such patients. Active immunizations that elicit antibodies of the desired type could be an appealing alternative to conventional passive immunization. In this regard, a novel recombinant peptide vaccine capable of prophylactic and therapeutic effects was constructed. A novel fusion recombinant peptide base vaccine consisting of L2 domain of murine extra‐cellular domain–EGFR and EGFR mimotope (EM‐L2) was constructed and its prophylactic and therapeutic effects in a Lewis lung carcinoma mouse (C57/BL6) model evaluated. Constructed recombinant peptide vaccine is capable of reacting with anti‐EGFR antibodies. Immunization of mice with EM‐L2 peptide resulted in antibody production against EM‐L2. The constructed recombinant peptide vaccine reduced tumor growth and increased the survival rate. Designing effective peptide vaccines could be an encouraging strategy in contemporary cancer immunotherapy. Investigating the efficacy of such cancer immunotherapy approaches may open exciting possibilities concerning hyperimmunization, leading to more promising effects on tumor regression and proliferation.
  相似文献   

16.
Bacteriophage T4 capsid is an elongated icosahedron decorated with 155 copies of Hoc, a nonessential highly antigenic outer capsid protein. One Hoc monomer is present in the center of each major capsid protein (gp23*) hexon. We describe an in vitro assembly system which allows display of HIV antigens, p24-gag, Nef, and an engineered gp41 C-peptide trimer, on phage T4 capsid surface through Hoc-capsid interactions. In-frame fusions were constructed by splicing the human immunodeficiency virus (HIV) genes to the 5' or 3' end of the Hoc gene. The Hoc fusion proteins were expressed, purified, and displayed on hoc(-) phage particles in a defined in vitro system. Single or multiple antigens were efficiently displayed, leading to saturation of all available capsid binding sites. The displayed p24 was highly immunogenic in mice in the absence of any external adjuvant, eliciting strong p24-specific antibodies, as well as Th1 and Th2 cellular responses with a bias toward the Th2 response. The phage T4 system offers new direction and insights for HIV vaccine development with the potential to increase the breadth of both cellular and humoral immune responses.  相似文献   

17.
In order to develop a desirable inexpensive, effective and safe vaccine against the very virulent infectious bursal disease virus (vvIBDV), we tried to take advantage of the emerging T4 bacteriophage surface protein display system. The major immunogen protein VP2 from the vvIBDV strain HK46 was fused to the nonessential T4 phage surface capsid protein, a small outer capsid (SOC) protein, resulting in the 49 kDa SOC-VP2 fusion protein, which was verified by sodium dodecylsulfate polyacrylamide gel electrophoresis and Western blot. Immunoelectromicroscopy showed that the recombinant VP2 protein was successfully displayed on the surface of the T4 phage. The recombinant VP2 protein is antigenic and showed reactivities to various monoclonal antibodies (mAbs) against IBDV, whereas the wild-type phage T4 could not react to any mAb. In addition, the recombinant VP2 protein is immunogenic and elicited specific antibodies in immunized specific pathogen free (SPF) chickens. More significantly, immunization of SPF chickens with the recombinant T4-VP2 phage protected them from infection by the vvIBDV strain HK46. When challenged with the vvIBDV strain HK46 at a dose of 100 of 50% lethaldose (LD50) per chicken 4 weeks after the booster was given, the group vaccinated with the T4-VP2 recombinant phage showed no clinical signs of disease or death, whereas the unvaccinated group and the group vaccinated with the wild-type T4 phage exhibited 100% clinical signs of disease and bursal damages, and 30%-40% mortality. Collectively, the data herein showed that the T4-displayed VP2 protein might be an inexpensive, effective and safe vaccine candidate against vvIBDV.  相似文献   

18.
Several studies have suggested a positive correlation between heat shock protein (hsp) expression and tumor immunogenicity. Independently, many studies have shown that hsp purified from tumors can be used as a tumor-specific vaccine. In this study, we have explored the connection between hsp expression and anti-tumor immunity by transducing murine CT26 colon carcinoma cells with the cDNA of a major hsp, i.e. hsp110. We have shown that over-expression of hsp110 has no effect on CT26 tumor cell growth in vitro, and does not inhibit their anchorage-independent growth capacity. However, in situ, hsp110 over-expressing CT26 tumor (CT26-hsp110) grew at a significantly reduced rate as compared to the wild-type CT26 tumor in immunocompetent mice. Moreover, immunization of mice with inactivated CT26-hsp110 cells significantly inhibited the growth of wild-type CT26 tumor. This immunity was associated with an increased frequency of tumor-specific T cells after vaccination. An in vivo antibody depletion assay demonstrated that inactivated CT26-hsp110 cells elicited anti-tumor responses involving CD8(+) T cells and natural killer (NK) cells, but not CD4(+) T cells. Lastly, the effect of the addition of granulocyte-macrophage colony stimulating factor (GM-CSF) to these vaccine formulations was determined. Mice immunized with irradiated CT26-hsp110 cells combined with GM-CSF-producing bystander cells revealed a complete inhibition of CT26 tumor growth, indicating a synergy between inactivated CT26-hsp110 vaccine activity and GM-CSF. These observations demonstrate that manipulation of hsp110 expression in tumors, specifically when combined with GM-CSF, represents a potentially powerful approach to cancer vaccine formulation.  相似文献   

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