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1.
人乳头瘤病毒(human papillomavirus,HPV)58型是宫颈癌的主要诱因之一. HPV58在亚洲地区宫颈癌组织中的检出率仅次于HPV16/18. HPV58中和单克隆抗体可用于 HPV病毒样颗粒(virus-like particle,VLP)疫苗的研究,并为病毒感染入侵机制的 研究提供实验材料. 本研究采用HPV58 L1 VLP免疫BALB/c小鼠,取其脾细胞进行杂交瘤 细胞的制备,通过VLP-ELISA和假病毒中和实验筛选杂交瘤细胞株;经rProtein A纯化 阳性杂交瘤细胞培养上清获得单抗;采用ELISA测定型别特异性中和单抗的亲和力,采用相加实验及变性VLP-ELISA分析单抗识别表位的性质;选取高亲和力单抗建立定量分 析HPV58 L1 VLP的ELISA方法. 获得了2株HPV58特异性中和单抗XM-22和XM-23,亲和常数分别为2.7×107 mol-1·L和1.9×106 mol-1·L,二者识别表位可能不同. 同时获得2株具有交叉中和活性的单抗XM-21和XM-24,除可较高水平中和HPV58外,还可分别交叉 中和亲缘关系较远的HPV18和HPV6. 以XM-22建立的ELISA方法定量分析HPV58 L1 VLP的检测范围为0.05 μg/mL~0.40 μg/mL. 本研究建立的ELISA方法可用于HPV58 L1 VLP疫苗生产的质量控制研究,获得的4株具有不同特点的中和单抗可用于HPV58感染入侵机制 的研究.  相似文献   

2.
人乳头瘤病毒16型假病毒中和实验的建立和初步应用   总被引:4,自引:0,他引:4  
探讨了应用多质粒磷酸钙共转染方法在293FT细胞中生产HPV16(human papillomavirus type 16)假病毒。蛋白印迹检测显示在转染后细胞的裂解上清中具有很好的L1蛋白活性,通过透射电镜可观察到形态与天然病毒粒子相似的假病毒颗粒。对293FT细胞的感染实验显示,该假病毒可有效将EGFP报告质粒导入靶细胞中进行表达,经测定其滴度约为2×107TU/mL。通过与4株HPV16对照单抗的中和实验证明该假病毒可有效应用于中和实验。应用该方法从18株抗HPV16L1的单克隆抗体中鉴定获得了2株中和单抗3D10、PD1。所建立的HPV16假病毒生产和中和实验方法具有快速高效、低成本和易于检测的优点,适于进行较大规模应用,为快速准确鉴定HPV16中和单抗和候选疫苗的免疫保护效果提供了有效手段。  相似文献   

3.
人乳头瘤病毒(Human papillomavirus,HPV)主要衣壳蛋白L1病毒样颗粒(VLP)主要诱发型别特异性中和抗体,增加L1VLP型别虽可扩大保护范围,但疫苗生产成本显著增加。HPV16,HPV52及HPV58是我国的主要高危型别。本文将HPV58次要衣壳蛋白L2aa.16~37多肽(与HPV52L2aa.16~37序列相同)插入HPV16L1的h4-βJ coil区,利用昆虫表达体系构建获得16L1h4-58dEVLP,协同人用佐剂氢氧化铝和单磷酰脂质A(Alum-MPL)免疫小鼠。活性检测结果显示16L1h4-58dE VLP免疫血清可中和17种HPV假病毒中的16种,其中针对HPV16的平均中和抗体滴度最高(滴度,76 800),与HPV16L1VLP对照组的相当(P0.05);重要的是,针对HPV58及HPV52的平均中和抗体滴度均大于10~3(分别为4 050和1 725);另外,还可中等滴度中和HPV45(550),HPV18(506),HPV33(500),HPV39(463),HPV68(431),HPV6(300),HPV57(150),HPV11(125)及较低滴度的中和HPV2/HPV27(40),HPV35(38),HPV5(25),HPV31(13),但对HPV59没有中和活性。因此,以本研究构建16L1h4-58dE VLP进行广谱HPV疫苗的研究,可望降低疫苗成本,具有应用前景。  相似文献   

4.
目的 构建人乳头瘤病毒(human papillomavirus, HPV)16型(HPV16)和18型(HPV18)假病毒,探索优化假病毒制备的条件,并利用制备的假病毒评价HPV疫苗血清抗体的中和活性。方法 将优化后的HPV16和HPV18 L1、L2和EGFP基因片段分别插入pcDNA3.1+载体中,通过多质粒共转染293FT细胞制备假病毒。对转染试剂、多质粒共转染比例、转染时间和细胞裂解时间进行摸索优化,通过测定假病毒的滴度,确定假病毒制备的最佳条件。收获的假病毒用30%的碘克沙醇作为介质进行超速离心纯化,纯化后的假病毒用于电镜观察。利用假病毒中和试验对制备的原核表达复性蛋白HPV16 L1免疫血清以及HPV16和HPV18病毒样颗粒(virus-like particles, VLP)免疫血清进行中和活性评价。结果 成功构建了假病毒,并确定了假病毒制备的最佳条件:pL1∶pL2∶pEGFP等3种质粒共转染比例为1∶0.1∶0.5,总量为4μg;转染时间为72 h,细胞裂解时间为24 h时获得的假病毒滴度最高。透射电镜观察结果显示,HPV16和HPV18假病毒颗粒基本呈规则圆形,形态上与天然病毒颗粒相似。中和试验结果显示,当用原核表达复性蛋白HPV16 L1免疫血清中和HPV16假病毒时,并不能抑制假病毒的感染活性;但HPV16和18 VLP免疫血清能明显的抑制HPV16和HPV18假病毒的感染活性。结论 成功构建并制备了2种高危型HPV假病毒,并可用于中和试验评价HPV疫苗血清抗体的中和活性。  相似文献   

5.
为了制备禽网状内皮组织增殖病病毒(REV)gp90蛋白的单克隆抗体,应用His-gp90融合蛋白免疫BALB/c小鼠,取免疫鼠的脾细胞与骨髓瘤细胞(SP2/0)进行融合,经过筛选、3次亚克隆后获得3株稳定分泌抗REV-gp90蛋白的单克隆抗体杂交瘤细胞株,分别命名为3G5-B8、3G5-A10和1G12。经间接ELISA(Enzyme-linked immunosorbent assay)方法检测,单克隆抗体的亲和力解离常数(Kd)分别为6.483×10–10、4.844×10–10和9.330×10–10,3株单抗的亚型分别为Ig G1、Ig G1和Ig G2b。经Western blotting和间接免疫荧光实验检测,3株单抗均能识别REV感染DF-1细胞后产生的gp90蛋白。以Western blotting方法利用单抗检测不同截短的gp90蛋白,初步确定3G5-B8和3G5-A10 2株单抗抗原识别区均位于gp90蛋白第200-245位氨基酸,而1G12株单抗识别区包含第230-235位氨基酸。这些单抗为REV的诊断和致病机理研究奠定了基础。  相似文献   

6.
目的:采用大肠杆菌表达系统制备人乳头瘤病毒58型(human papillomavirus type 58,HPV58)病毒样颗粒(virus-like particle,VLP)疫苗。方法:合成法获得HPV58 L1大肠杆菌密码子优化基因,构建HPV58 L1重组原核表达质粒mpET22b/HPV58 L1,检测其在BL21(DE3)中表达水平,饱和硫酸铵沉淀加阳离子交换层析法纯化蛋白后进行动态光散射(dynamic light scatter,DLS)分析。小鼠免疫后,检测免疫血清针对HPV58假病毒的中和抗体水平。结果:HPV58 L1蛋白在BL21(DE3)细胞中大部分以可溶形式表达,纯化获得的HPV58 L1蛋白可组装成水动力学直径约为74 nm的VLP。0.5μg的HPV58 L1 VLP可诱发小鼠产生高滴度的HPV58特异性中和抗体,可维持至少20周。结论:原核表达系统制备的HPV58 L1 VLP可诱发高滴度且持久的中和抗体,可用于成本低的HPV58疫苗的研究。  相似文献   

7.
采用杂交瘤法制备单克隆抗体,并用辛酸-硫酸铵法纯化单抗,通过ELISA方法和Western blotting测定抗体的效价与特异性,并进行抗体类型、相对亲和力测定;应用纯化的单抗建立hGH双抗体夹心ELISA检测方法。筛选出两株可以稳定分泌抗hGH单抗的杂交瘤细胞株,分别命名为3E11、2G9,抗体类型均为IgG1,抗体滴度均可达10-10,特异性好,相对亲和力高,以筛选到的两株单抗建立的双抗夹心ELISA法线性范围为0.09~1.5625ng/mL,R2>0.9,灵敏度为0.09ng/mL。筛选出高效抗hGH的单抗,并建立了hGH双抗体夹心ELISA检测方法。  相似文献   

8.
传染性法氏囊病病毒(IBDV)蛋白VP4在抑制宿主免疫应答中起重要作用,为制备IBDV VP4的单克隆抗体,以实验室保存的融合蛋白His-VP4免疫BALB/c小鼠,经过细胞融合、筛选、亚克隆后获得4株能稳定分泌抗VP4的单抗杂交瘤细胞株,分别命名为3B3、3H11、4C8和4G6,经间接ELISA测定4株单抗的亲和力解离常数分别为4.61×10–11、1.71×10–10、4.26×10–11和5.02×10–11,均为高亲和力抗体。4株单抗的重链类型分别为Ig G1、Ig G1、Ig G2b和Ig G1。进一步以Western blotting鉴定,该4株单抗均能特异地识别IBDV的VP4蛋白,间接免疫荧光和Western blotting试验表明4株单抗均能识别IBDV感染DF-1细胞后产生的VP4蛋白。该单抗为检测IBDV以及研究IBDV VP4的生物学作用奠定了基础。  相似文献   

9.
高危型人乳头瘤病毒(human papillomavirus, HPV)慢性持续性感染是诱发宫颈癌的主要病因.体外表达的HPV主要衣壳蛋白(L1)可自组装成病毒样颗粒(virus-like particle, VLP),免疫后可诱导产生型别特异性中和抗体,有效保护机体免受同型病毒的感染,因此可望预防病毒感染及感染相关的宫颈癌等病变.HPV 58是诱发我国妇女宫颈癌的主要高危型病毒之一,目前尚无针对HPV 58的疫苗问世.本研究联合采用多种策略对HPV 58 L1野生型基因进行改造,获得HPV 58 L1改造基因,命名为HPV 58mL1,用杆状病毒 昆虫细胞表达系统进行HPV 58 mL1的表达,CsCl密度梯度离心法纯化获得HPV 58 mL1重组蛋白,电镜分析结果显示,重组蛋白形成直径约55 nm的VLP.皮下免疫新西兰兔和豚鼠,ELISA检测显示,免疫动物产生高滴度针对HPV 58 mL1 VLP的抗血清,免疫斑点印迹检测显示,抗血清是针对VLP表面表位的.本研究表达了均一性好的HPV 58 mL1 VLP,并获得两个种属的HPV 58 mL1 VLP抗血清,为进一步研究有效预防HPV 58感染的疫苗打下基础.  相似文献   

10.
报告了利用淋巴细胞杂交瘤技术制备抗呼吸道合胞病毒蛋白的鼠单克隆抗体。获得 7株分泌抗呼吸道合胞病毒单克隆抗体的杂交瘤细胞株 :IF12 ,4H10 ,1D8,2B2 ,1G8,4G6 ,2D2。其中IF12 ,4H10 ,1D8,2B2 ,4G6分泌的抗体类别为IgG1,1G8为IgG2a ,2D2为IgG2b。经免疫印迹分析证实单抗 1F12 ,2B2识别病毒 4 4ku的蛋白 ,单抗1G8识别 37ku蛋白 ,2D2识别 2 1ku的病毒蛋白 ,单抗4G6识别病毒 90ku蛋白。对单抗的生物学活性进行了分析 ,单抗 4G6对呼吸道合胞病毒有明显的中和作用 ,小鼠腹水的中和滴度为 1∶32 ,其余各单抗中和滴度均小于1∶4。…  相似文献   

11.
The spike (S) protein of severe acute respiratory syndrome associated coronavirus (SARS-CoV) is a major antigenic determinant capable of inducing protective immunity. Recently, a small fragment on the SARS-CoV S protein (residues 318-510) was characterized as a minimal receptor-binding domain (RBD), which mediates virus binding to angiotensin-converting enzyme 2, the functional receptor on susceptible cells. In this study, we demonstrated that a fusion protein containing RBD linked to human IgG1 Fc fragment (designated RBD-Fc) induced high titer of RBD-specific Abs in the immunized mice. The mouse antisera effectively neutralized infection by both SARS-CoV and SARS pseudovirus with mean 50% neutralization titers of 1/15,360 and 1/24,737, respectively. The neutralization determinants on the RBD of S protein were characterized by a panel of 27 mAbs isolated from the immunized mice. Six groups of conformation-dependent epitopes, designated as Conf I-VI, and two adjacent linear epitopes were identified by ELISA and binding competition assays. The Conf IV and Conf V mAbs significantly blocked RBD-Fc binding to angiotensin-converting enzyme 2, suggesting that their epitopes overlap with the receptor-binding sites in the S protein. Most of the mAbs (23 of 25) that recognized the conformational epitopes possessed potent neutralizing activities against SARS pseudovirus with 50% neutralizing dose ranging from 0.005 to 6.569 microg/ml. Therefore, the RBD of SARS S protein contains multiple conformational epitopes capable of inducing potent neutralizing Ab responses, and is an important target site for developing vaccines and immunotherapeutics.  相似文献   

12.
为了检测HPV 58型不同L1基因的DNA疫苗的免疫原性,以pcDNA3.1为载体分别构建含HFV 58型不同L1基因的DNA疫苗,命名为L1h、L1h△c、L1S、L1SM和L1wt.用免疫印迹法检测各DNA疫苗的体外表达情况;各重组质粒与pcDNA3.1-h58L2和pcDNA3.1-GFP共转染293FT细胞,检测其形成假病毒的能力;并将各DNA疫苗肌肉注射免疫小鼠,利用假病毒中和实验检测中和抗体水平,用ELISPOT检测细胞免疫情况.结果显示,本实验成功构建了五种DNA疫苗,L1h△c的体外表达量最高,L1S和L1SM的表达量次之,L1wt没有表达;重组质粒L1S能够形成假病毒,而其他四种重组质粒均不能形成假病毒.L1S和L1h均可在小鼠体内诱导中和抗体,但L1S诱导的中和抗体的平均滴度为1:6 400,明显高于L1h诱导的中和抗体水平(平均滴度为1:48),而其他疫苗在小鼠体内未产生中和抗体.对五种疫苗均未检测出特异性的细胞免疫反应.结果提示,体外能够组装成假病毒的DNA疫苗在免疫动物后可诱导高滴度的中和抗体,为今后DNA疫苗的筛选提供参考.  相似文献   

13.

Background

Human papillomavirus (HPV) vaccines confer protection against the oncogenic genotypes HPV16 and HPV18 through the generation of type-specific neutralizing antibodies raised against virus-like particles (VLP) representing these genotypes. The vaccines also confer a degree of cross-protection against HPV31 and HPV45, which are genetically-related to the vaccine types HPV16 and HPV18, respectively, although the mechanism is less certain. There are a number of humoral immune measures that have been examined in relation to the HPV vaccines, including VLP binding, pseudovirus neutralization and the enumeration of memory B cells. While the specificity of responses generated against the vaccine genotypes are fairly well studied, the relationship between these measures in relation to non-vaccine genotypes is less certain.

Methods

We carried out a comparative study of these immune measures against vaccine and non-vaccine genotypes using samples collected from 12–15 year old girls following immunization with three doses of either Cervarix® or Gardasil® HPV vaccine.

Results

The relationship between neutralizing and binding antibody titers and HPV-specific memory B cell levels for the vaccine genotypes, HPV16 and HPV18, were very good. The proportion of responders approached 100% for both vaccines while the magnitude of these responses induced by Cervarix® were generally higher than those following Gardasil® immunization. A similar pattern was found for the non-vaccine genotype HPV31, albeit at a lower magnitude compared to its genetically-related vaccine genotype, HPV16. However, both the enumeration of memory B cells and VLP binding responses against HPV45 were poorly related to its neutralizing antibody responses. Purified IgG derived from memory B cells demonstrated specificities similar to those found in the serum, including the capacity to neutralize HPV pseudoviruses.

Conclusions

These data suggest that pseudovirus neutralization should be used as the preferred humoral immune measure for studying HPV vaccine responses, particularly for non-vaccine genotypes.  相似文献   

14.

Background

Virus-like Particles (VLPs) display can be used to increase the immunogenicity of heterologous antigens. Here, we report the use of a bacteriophage MS2-based VLP display platform to develop a monovalent vaccine targeting a broadly neutralizing epitope in the minor capsid protein human papillomavirus (HPV) that provides broad protection from diverse HPV types in a mouse pseudovirus infection model.

Methodology/Principal Findings

Peptides spanning a previously described cross-neutralizing epitope from HPV type 16 were genetically inserted at the N-terminus of MS2 bacteriophage coat protein. Three of the four recombinant L2-coat proteins assembled into VLPs. L2-VLPs elicited high-titer anti-L2 antibodies in mice, similar to recombinant VLPs that we had previously made in which the L2 peptide was displayed on a surface-exposed loop on VLPs of a related bacteriophage, PP7. Somewhat surprisingly, L2-MS2 VLPs elicited antibodies that were much more broadly cross-reactive with L2 peptides from diverse HPV isolates than L2-PP7 VLPs. Similarly, mice immunized with L2-MS2 VLPs were protected from genital and cutaneous infection by highly diverse HPV pseudovirus types.

Conclusion/Significance

We show that peptides can be displayed in a highly immunogenic fashion at the N-terminus of MS2 coat protein VLPs. A VLP-based vaccine targeting HPV L2 elicits broadly cross-reactive and cross-protective antibodies to heterologous HPV types. L2-VLPs could serve as the basis of a broadly protective second generation HPV vaccine.  相似文献   

15.
The worldwide outbreak of the swine-origin 2009 H1N1 influenza A virus (IAV) and an increasing number of influenza cases caused by a highly pathogenic avian influenza (HPAI) H5N1 have accelerated the need to develop vaccines and antiviral agents against IAVs. Among various antivirals, neutralizing monoclonal antibodies (mAbs) are considered important passive therapeutics having an immediate effect against viral pathogens. Here we report a pseudovirus neutralization assay for rapid screening of neutralizing mAbs targeting hemagglutinin (HA) of H5N1 and H1N1 IAV. In this study, we generated six pseudoviruses with an HIV-1 backbone, respectively, expressing HA of four clades of H5N1 IAV and the 2009 epidemic H1N1 IAV. The resulting pseudoviruses were able to infect a variety of human and non-human cells, with 293T cells from human kidney as the most susceptible target cells. Using the established pseudovirus neutralization assay, we showed that three of ten selected mAbs specific to HA could potently neutralize infection of a pseudovirus bearing HA from the homologous IAV A/VietNam/1194/2004(H5N1) strain. This was highly consistent with the result of a microneutralization assay testing the same strain of a live IAV. Since the pseudovirus neutralization assay does not involve an infectious virus and can be performed without the requirement of a biosafety-3 laboratory, it may be applied for safe and rapid screening of neutralizing mAbs and antiviral agents targeting HA of IAVs.  相似文献   

16.

Background

Current human papillomavirus (HPV) vaccines that are based on virus-like particles (VLPs) of the major capsid protein L1 largely elicit HPV type-specific antibody responses. In contrast, immunization with the HPV minor capsid protein L2 elicits antibodies that are broadly cross-neutralizing, suggesting that a vaccine targeting L2 could provide more comprehensive protection against infection by diverse HPV types. However, L2-based immunogens typically elicit much lower neutralizing antibody titers than L1 VLPs. We previously showed that a conserved broadly neutralizing epitope near the N-terminus of L2 is highly immunogenic when displayed on the surface of VLPs derived from the bacteriophage PP7. Here, we report the development of a panel of PP7 VLP-based vaccines targeting L2 that protect mice from infection with carcinogenic and non-carcinogenic HPV types that infect the genital tract and skin.

Methodology/Principal Findings

L2 peptides from eight different HPV types were displayed on the surface of PP7 bacteriophage VLPs. These recombinant L2 VLPs, both individually and in combination, elicited high-titer anti-L2 IgG serum antibodies. Immunized mice were protected from high dose infection with HPV pseudovirus (PsV) encapsidating a luciferase reporter. Mice immunized with 16L2 PP7 VLPs or 18L2 PP7 VLPs were nearly completely protected from both PsV16 and PsV18 challenge. Mice immunized with the mixture of eight L2 VLPs were strongly protected from genital challenge with PsVs representing eight diverse HPV types and cutaneous challenge with HPV5 PsV.

Conclusion/Significance

VLP-display of a cross-neutralizing HPV L2 epitope is an effective approach for inducing high-titer protective neutralizing antibodies and is capable of offering protection from a spectrum of HPVs associated with cervical cancer as well as genital and cutaneous warts.  相似文献   

17.
The variable surface loops on human papillomavirus (HPV) virions required for type-specific neutralization by human sera remain poorly defined. To determine which loops are required for neutralization, a series of hybrid virus-like particles (VLPs) were used to adsorb neutralizing activity from HPV type 16 (HPV16)-reactive human sera before being tested in an HPV16 pseudovirion neutralization assay. The hybrid VLPs used were composed of L1 sequences of either HPV16 or HPV31, on which one or two regions were replaced with homologous sequences from the other type. The regions chosen for substitution were the five known loops that form surface epitopes recognized by monoclonal antibodies and two additional variable regions between residues 400 and 450. Pretreatment of human sera, previously found to react to HPV16 VLPs in enzyme-linked immunosorbent assays, with wild-type HPV16 VLPs and hybrid VLPs that retained the neutralizing epitopes reduced or eliminated the ability of sera to inhibit pseudovirus infection in vitro. Surprisingly, substitution of a single loop often ablated the ability of VLPs to adsorb neutralizing antibodies from human sera. However, for all sera tested, multiple surface loops were found to be important for neutralizing activity. Three regions, defined by loops DE, FG, and HI, were most frequently identified as being essential for binding by neutralizing antibodies. These observations are consistent with the existence of multiple neutralizing epitopes on the HPV virion surface.  相似文献   

18.
The four serotypes of dengue virus (DENV1-4) pose a serious threat to global health. Cross-reactive and non-neutralizing antibodies enhance viral infection, thereby exacerbating the disease via antibody-dependent enhancement (ADE). Studying the epitopes targeted by these enhancing antibodies would improve the immune responses against DENV infection. In order to investigate the roles of antibodies in the pathogenesis of dengue, we generated a panel of 16 new monoclonal antibodies (mAbs) against DENV4. Using plaque reduction neutralization test (PRNT), we examined the neutralizing activity of these mAbs. Furthermore, we used the in vitro and in vivo ADE assay to evaluate the enhancement of DENV infection by mAbs. The results indicate that the cross-reactive and poorly neutralizing mAbs, DD11-4 and DD18-5, strongly enhance DENV1-4 infection of K562 cells and increase mortality in AG129 mice. The epitope residues of these enhancing mAbs were identified using virus-like particle (VLP) mutants. W212 and E26 are the epitope residues of DD11-4 and DD18-5, respectively. In conclusion, we generated and characterized 16 new mAbs against DENV4. DD11-4 and D18-5 possessed non-neutralizing activities and enhanced viral infection. Moreover, we identified the epitope residues of enhancing mAbs on envelope protein. These results may provide useful information for development of safe dengue vaccine.  相似文献   

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