965 resultados para ELISA Kits


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对分离筛选得到的产河豚毒素(TTX)的梭形芽孢杆菌(Bacillus fusiforms)N141菌株,在10L发酵罐中进行发酵产TTX的试验。发酵产物经提取和精制后,用高效薄层色谱、小鼠生物试验,以及河豚毒素单抗ELISA检测试剂盒,检测出发酵液中含有TTX。研究了菌体生长、pH、溶氧、以及产物TTX的变化规律。结果表明TTX是在菌体生长进入稳定期后才产生的,说明TTX是微生物产生的次级代谢产物。10L罐发酵产TTX的工艺技术,在500L发酵罐进行了验证,重现性良好。这为微生物源河豚毒素的发酵中试提供了科学依据。

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在分析鸭瘟病毒(Duck plague virus,DPV)gB蛋白抗原性的基础上,设计1对引物克隆gB蛋白N端抗原性较好的抗原域编码基因,克隆到表达载体pET32a中,构建了原核表达质粒pET-gB1。将pET-gB1转化到感受态大肠杆菌(Escherichia coli)BL21(DE3)中,经IPTG诱导和SDS-PAGE分析,可见约42.4kD的目的蛋白以包涵体形式表达。Western blot分析发现,表达产物与抗鸭瘟的鼠阳性血清发生特异性反应。将包涵体溶解于8mol/L的尿素中,利用His·Bind试剂盒获得纯化的蛋白,将纯化的蛋白皮下注射免疫小鼠,间接ELISA法测得抗体的效价,MTT法检测免疫小鼠的T淋巴细胞增殖反应能力。结果说明,该融合蛋白能够诱导机体产生较强的体液免疫和细胞免疫。

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以水曲柳成熟种子为外植体材料,在不同增殖培养基中培养,应用间接酶联免疫法(ELISA)测定脱落酸(ABA)、吲哚乙酸(IAA)和玉米素核苷(ZR)3种内源激素,探讨不同细胞分裂素质量浓度和配比对水曲柳组培苗生长及内源激素的影响。研究结果表明:当年采收的水曲柳种子,消毒、浸泡处理后,播出种胚,可以解除水曲柳种子的休眠。增殖培养基中添加不同细胞分裂素都抑制了组培苗的高生长和生物量,但却可以解除组培苗顶端优势,诱导腋芽生长。与此同时,腋芽发生率与内源激素ABA、IAA和ZR质量分数不存在相关性,而与IAA/ZR比值存在负相关,但相关性并不显著。IAA/ZR比值的减少有可能有利于腋芽的诱导。

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依据虎眼万年青组分中多糖对小鼠巨噬细胞吞噬功能的影响,筛选并优化出60%醇浓度中性多糖活性组分S3,进而研究其对体液免疫、细胞免疫及细胞因子变化的影响,并从细胞和分子水平探讨其作用的机理.方法:采用溶血素测定方法,测定S3对小鼠脾细胞溶血素抗体的诱导作用;采用3H-TdR渗入法,测定S3对ConA诱导小鼠脾淋巴细胞的增殖作用;采用3H-TdR后标记法,测定S3对NK细胞细胞毒活性的影响;以ELISA法测定S3对小鼠脾细胞IL-2产生的影响;利用流式细胞术,检测S3对T淋巴细胞亚群CD3、CD4、CD8、CD4/CD8阳性细胞百分率的影响;采用RT-PCR方法检测IL-2 mBNA的表达水平.结果:S3高、中剂量组能明显增强小鼠脾细胞溶血素抗体的形成(P<0.05);各剂量组均能明显增强ConA诱导的淋巴细胞增殖能力(P<0.001);各剂量组均能增强NK细胞的细胞毒活性并促进IL-2的产生(P<0.001,P<0.01);高、中剂量组CD8阳性细胞百分率明显降低(P<0.001),各剂量组均能显著地提高CD4/CD8阳性细胞百分率(P<0.001);高剂量组可明显促进脾细胞中细胞因子IL-2的mRNA表达,使表达量增加(P<0.05).结论:S3具有较强的增强机体多种免疫功能的作用,可利用开发为一种免疫增强药物.

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本研究以时间分辨激发荧光光谱分析技术为基础,进行稀土离子标记的激光激发的时间分辨荧光免疫分析(TRFIA)研究.实验以自行合成的二乙三胺五醋酸酐(DTPAA)为双功能螯合剂.用Eu3+标记兔抗人(RAH)IgG抗体,依据解离增强原理(DELFIA),研究了Eu3+-β萘甲酰三氟丙酮(β-NTA)的荧光分辨体系,测定了荧光光谱和荧光寿命,建立了铕离子分析检出方法,其工作曲线范围为1×10-7~1×10-11 g·mL-1,检测限为1×10-13 g·mL-1,相对标准偏差为6.4%.结合TRFIA方法学研究,进行了人血清丙型肝炎病毒抗体(Anti-HCV)检测.并同酶联免疫法(ELISA)对比.取得TRFIA法阳性检测率明显高于ELISA法的结果.

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We evaluated the effects of high molecular-weight phlorotannins from Sargassum thunbergii (STP) on ADP-induced platelet aggregation and arachidonic acid (AA) metabolism in New Zealand white rabbits and Wistar rats. The inhibition of STP on platelet aggregation was investigated using a turbidimetric method, and the levels of the terminal products of AA metabolism were measured using the corresponding kits for maleic dialdehyde (MDA), thromboxane B-2 (TXB2) and 6-keto-prostaglandin F-1 alpha (6-keto-PGF(1 alpha)) by colorimetry and radioimmunoassay, as appropriate. We found that STP could inhibit ADP-induced platelet aggregation, and the inhibitory ratio was 91.50% at the STP concentration of 4.0 mg/mL. Furthermore, STP markedly affected AA metabolism by decreasing the synthesis of MDA (P < 0.01) and increasing the synthesis of 6-keto-PGF(1 alpha), thus changing the plasma TXB2/6-keto-PGF(1 alpha) balance when the platelets were activated (P < 0.01). Therefore, STP altered AA metabolism and these findings

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The enhancing effect of lanthanum on gene expression of recombinant allophycocyanin (rAPC), a potential antitumor medicine, in Pichia pastoris was studied. PCR and sequence analysis were used in order to prove whether the APC gene had integrated into the yeast genome. The expression level of the recombinant allophycocyanin (rAPC) in BMMY medium containing LaCl3 was detected by ELISA method. The recombinant allophycocyanin was determined by Western blot. The results show that the recombinant Pichia pastoris chromosome contained allophycocyanin gene. Expression efficiency of rAPC gene in Pichia pastoris was promoted by proper LaCl3 concentration like 2, 5, 10 mmol (.) L-1, among which 5 mmol (.) L-1 was the most effective. The highest expression yield of rAPC in the BMMY medium containing 5 mmol (.) L-1 LaCl3 was 4.4 mg (.) L-1 at 48 h, that was increased by 110% compared with 2.1 mg (.) L-1 of control, in the meantime, the optimum culture time is shortened from 72 to 48 h. The result of western blot analysis indicates that the rAPC consisted of two kinds of subunits with molecular weight of 19 and 21 kDa respectively.

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Dot enzyme-linked immunosorbent assay (dot-ELISA), indirect ELISA and Western blot were performed to detect the virulent protease secreted by Vibrio anguillarum which was isolated from the diseased left-eyed flounder, Paralichthys olivaceous. Sensitivity results showed that dot-ELISA is a more sensitive, rapid and simple technique for the protease detection. The minimal detectable amount of protease is about 7 pg in the dot-ELISA test, while 7.8 ng in the indirect ELISA and 6.25 ng in the Western blot respectively. Protease could be detected 2 h after incubation of V. anguillarum in the 2216E liquid medium but enzyme activity was very low at that period. From 6 to 12 h, the amount and enzyme activity of protease increased markedly and reached maximum at stationary phase. Analysis of serum samples periodically collected from the infected flounders showed that after 2 h of infection by V. anguillarum, the pathogenic bacteria could be detected in the blood of the infected flounders but no protease was found. It was 5 similar to 6 h after infection that the protease was detected in blood and then the amount increased as infection advanced. Quantitative detection of protease either incubation in the medium or from the blood of infected flounders could be accomplished in virtue of positive controls of quantificational protease standards ("marker") so that the alterations of protease secretion both in vitro and in vivo could be understood generally. In addition, the indirect ELISA and dot-ELISA were also performed to detect V. anguillarum cells. Results indicated that the sensitivity of indirect ELISA to bacteria cells is higher than that of the dot-ELISA, and that the minimal detectable amount is approximately 10(4) cell/mL in the indirect ELISA, while 10(5) cell/mL in the dot-ELISA.

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A transformation model for Laminaria japonica was established from 1993 to 1998, on the basis of which the transgenic kelp with heterologous gene encoding hepatitis B surface antigen (HBsAg) was obtained by using the micro-particle bombardment transformation method. Results of quantitative ELISA showed that HBsAg in transgenic kelp was 0.529 mug/mg soluble proteins on average and the highest value was 2.497 mug/mg, implying that recombinant HBsAg had natural epitope. Further support for the integration of HBsAg gene into kelp genome was obtained by PCR-Southern and total DNA hybridization. Prospect of kelp bio-reactor producing high value materials such as edible HBV vaccine was discussed as well.

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The life cycle of seaweed Laminaria japonica involves a generation alternation between diploid sporophyte and haploid gametophte. The expression of foreign genes in sporophte has been proved. In this research, the recombinant expression in gametophyte was investigated by particle bombardment with the rt-PA gene encoding the recombinant human tissue-type plasminogen activator (Reteplase), which is a thrombolytic agent for acute myocardial infarction (AMI). Transgenic gametophytes were selected by their resistance to herbicide phosphiothricin (PPT), and proliferated in an established bubble column photo-bioreactor. According to the results from quantitative ELISA, Southern blotting, and fibrin agarose plate assay (FAPA) for bioactivity, it was showed that the rt-PA gene had been integrated into the genome of gametophytes of L. japonica, and the expression product showed the expected bioactivity, implying the proper post-transcript modification in haploid gametophyte.

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A Chlamydomonas reinhardtii (C. reinhardtii) chloroplast expression vector, papc-B, containing the apc-B gene that encodes the beta subunit of the light-harvesting antenna protein allophycocyanin (APC) of cyanobacteria, was constructed and transferred to the chloroplast genome of C. reinhardtii by the biolistic method. The transformants were identified by Southern blot, Western blot and ELISA assays after selection on resistant medium. The recombinant APC beta subunit was expressed in the C. reinhardtii chloroplast and accounted for up to 2-3% (w/w) of the total soluble protein (TSP), suggesting a promising prospect of using C. reinhardtii chloroplasts to produce functional plant-derived proteins.

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近几十年来,国内沿海地区频繁发生食用织纹螺中毒事件,并导致数十人死亡,这一问题得到了政府相关部门的高度重视。但是,由于织纹螺毒性变化很大,毒素来源不清楚,因此很难预测食用织纹螺中毒事件的发生,这在很大程度上限制了对食用织纹螺中毒事件的有效监测和管理。目前,对于中国沿海有毒织纹螺体内河豚毒素(tetrodotoxin, TTX)的来源还未见过系统研究。本文选取中国沿海常见的半褶织纹螺(Nassarius semiplicatus)、纵肋织纹螺(N. variciferus)和拟半褶织纹螺(N. semiplicatoides sp. nov.)作为实验对象,从毒素的微生物来源与食物链来源这两个角度分别展开研究,以探讨织纹螺体内 TTX 的可能来源,为提出相应的预防管理措施提供科学依据。 首先,我们先后从曾发生过中毒事件的江苏盐城和连云港采集了织纹螺样品,通过小鼠生物测试法和液-质联用分析技术(LC-MS),对织纹螺的毒性和毒素组成进行了测试和分析,分离培养了织纹螺体内及其生活环境中的细菌,应用河豚毒素单克隆抗体酶联免疫检测方法(ELISA)对细菌的产毒情况进行了测试,并通过 16S 核糖体(rRNA)部分基因序列测定对细菌种类进行了初步的分析。研究发现,采自江苏盐城和连云港的半褶织纹螺的毒性分别约为 2 MU/g 和 200 MU/g 组织,体内的毒素成分是河豚毒素及其同系物。从盐城的半褶织纹螺及其生活环境分离的菌株中随机挑出 14 个菌株中,9 个菌株河豚毒素检测结果呈现阳性。从连云港高毒性半褶织纹螺消化腺中分离到的 45 个菌株中,阳性菌株有 21 个。但是,有毒菌株毒素含量较低,毒素含量范围是 15-184ng/g。通过 16S rDNA 部分序列的测序结果发现,大部分有毒菌株与弧菌属(Vibrio)的细菌在遗传序列信息上比较相近。其余有毒菌株分别与希瓦氏菌属(Shewanella)、海单胞菌属(Marinomonas)、黄杆菌属(Tenacibaculum)、动性菌属(Planococcus)、发光杆菌属 (Photobacterium)和气单胞菌属(Aeromonas)的遗传序列比较相近。其中与海单胞菌属、动性菌属和发光杆菌属亲缘关系较近的产毒细菌是首次报道。这一研究表明织纹螺体内及其生活环境中的存在产河豚毒素的细菌,但由于产毒素的量较低,因此可能在织纹螺体内河豚毒素的产生和累积过程并不发挥主要作用。 织纹螺作为一类腐食性的海洋动物,也有可能通过进食含有河豚毒素的生物而累积河豚毒素。对此,我们开展了高毒性半褶织纹螺的室内培养实验,以及河豚毒素在不同种类织纹螺体内的累积和排出的模拟实验,并定期采样,通过液相色谱与串联质谱联用技术(LC-MS/MS)对织纹螺体内河豚毒素及其同系物的含量变化情况进行了分析。室内培养实验发现,从连云港赣榆县采集的高毒性半褶织纹螺,在实验初期,体内毒素含量呈下降的趋势,但从 7月上旬开始,毒素含量突然快速上升,与连云港赣榆县野外采集的织纹螺的毒素含量表现出相似的变化趋势。河豚毒素在不同种织纹螺体内的累积和排出的模拟实验发现,通过投喂高毒性的河豚鱼肝脏(毒性为5×103 MU/g),纵肋织纹螺在一段时间内能够快速累积少量的河豚毒素。当停止投喂有毒河豚鱼肝脏后,毒素含量会快速下降。而在曾导致中毒事件的拟半褶织纹螺中,投喂有毒河豚鱼的肝脏后,其体内毒素含量只有缓慢增加。但在投喂无毒的河豚鱼肝脏后,其毒性却出现了快速增加的现象,这与该地区野外样品的毒性变动状况类似。这些发现显示高毒性半褶、拟半褶织纹螺体内的河豚毒素应当不是食物链累积的结果,而可能是由其自身产生。并且,毒素含量的变化具有一定的生物节律,有可能与产卵、繁殖等自然节律相关。 通过对半褶、纵肋和拟半褶织纹螺的研究工作可以认为,产河豚毒素的细菌不是织纹螺体内河豚毒素的主要来源,并且毒素也不是来自其摄食的食物,推测可能主要是由织纹螺自身产生。织纹螺所表现出的河豚毒素含量的季节性变化,极有可能与产卵、繁殖等自然节律相关,这些发现为预防和管理食用织纹螺中毒事件提供了科学依据。但是,本研究并未完全阐明织纹螺体内河豚毒素的来源,对于织纹螺体内河豚毒素的确切来源以及河豚毒素的代谢和转化机制,还有待于更加深入地研究工作。

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SNARE蛋白家族是所有真核细胞胞吐及分泌作用中的关键因子,由其介导的运输囊泡膜与靶膜的锚靠、融合为胞内蛋白的运出提供了一条重要途径。体外试验表明,Syntaxin6-Syntaxin7-Vti1b,SNAP-23-Syntaxin4等SNARE核心蛋白之间精确的相互作用是哺乳动物巨噬细胞肿瘤坏死因子α (TNF-α)运输和分泌的必备条件,在机体非特异性免疫应答反应过程中起重要作用。 本研究受上述启示,旨在揭示SNARE蛋白在海洋鱼类免疫细胞内重要细胞因子白细胞介素1β (IL-1β)的分泌过程中的作用。参照Percoll密度梯度离心技术,从鲈鱼头肾组织分离纯化巨噬细胞进行稳定培养;利用RT-PCR方法克隆出鲈鱼t-SNARE蛋白SNAP-23和Syntaxin3的部分cDNA序列,再结合先前克隆的VAMP2和已知的鲈鱼IL-1β,TNF-α和IL-8的基因序列,设计特异性引物。利用Real-time PCR技术在mRNA水平上精确测定鲈鱼巨噬细胞中上述6种基因在革兰氏阴性菌脂多糖(LPS)分子刺激下的表达变化,发现SNAP-23基因与三种细胞因子基因的表达正相关;通过免疫印迹检测SNAP-23蛋白表达变化,利用酶联免疫吸附试验(ELISA)检测IL-1β的分泌水平,在蛋白水平上验证了SNAP-23表达与IL-1β分泌的正相关性;利用5`RACE和3`RACE技术克隆出鲈鱼SNAP-23全长基因,结合定点突变策略和靶向PCR克隆手段,构建鲈鱼SNAP-23野生型融合质粒pEGFP-SNAP-23wt,Cys缺失突变融合质粒pEGFP-SNAP-23ΔCys和模拟E型肉毒神经毒素(BoNT/E)切割突变融合质粒pEGFP-SNAP-23ΔBoNT/E,以及鲈鱼IL-1β野生型融合表达质粒IL-1β-pEGFP和IL-1β-pEYFP。所有融合蛋白均在鲈鱼巨噬细胞内成功表达,结合ELISA实验结果发现,SNAP-23野生型的表达对IL-1β的分泌有促进作用,而Cys缺失突变体的表达则抑制IL-1β向胞外分泌。首次证实了鱼类巨噬细胞内SNAP-23蛋白在IL-1β分泌过程中的重要作用。此外通过与GFP共表达,定位了IL-1β分子在巨噬细胞内的分布,发现新合成的IL-1β分子很可能像TNFα一样经“内质网-胞质-伪足-胞外” 的分泌路径运出胞外。

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迟缓爱德华氏菌是危害水产养殖业发展的重要病原菌之一,因而其免疫防治研究具有重要意义。论文分析了9种具有保护潜能的迟缓爱德华氏菌蛋白,经过牙鲆免疫保护实验,筛选出EseD和Et18两种有显著性保护效应的抗原。为了提高其保护效应,论文使用基因工程技术将这两种抗原融合到一起,构建重组融合蛋白EEH。结果表明,融合蛋白EEH保护效应较EseD和Et18分别免疫时有所提高。ELISA和Western blotting 结果显示,三种蛋白都能诱导牙鲆产生特异抗体。这些研究为开发迟缓爱德华氏菌疫苗提供了理论基础。 论文克隆分析了迟缓爱德华氏菌AcrAB耐药系统,采用定点突变确定了acrAB、acrR的启动子序列和AcrR在acrAB启动子的结合位点。启动子分析显示,AcrR对acrAB启动子有300倍抑制效应, 对acrR启动子有3倍抑制效应。定点突变显示,K39和R45对AcrR功能具重要性;缺失突变表明,N端205个氨基酸残基是其功能必需。实验筛选出Acriflavine、Ethidium Bromide、Methyl Viologen、Sodium Dodecyl Sulfate等四种AcrR诱导物。分析AcrR过量表达菌株结果显示,其耐药性、生长状况和毒力水平较阴性对照组降低。这些研究加深了我们对迟缓爱德华氏菌耐药机制及其与毒力关系的了解。