Liu Fei, Guttikonda S, Suresh M R
Faculty of Pharmacy and Pharmaceutical Sciences, University of Alberta, #3118, DP Building, T6G 2N8, Edmonton, AB, Canada.
J Immunol Methods. 2003 Mar 1;274(1-2):115-27. doi: 10.1016/s0022-1759(02)00511-2.
A quadroma (hybrid-hybridoma) secreting bispecific antibodies with one paratope specific for M13 bacteriophage coat protein and another paratope specific for alkaline phosphatase (AP) was developed by electro-fusion of the two parental hybridomas and selected by a fluorescence activated cell sorter (FACS). The anti-phage M13/anti-AP bsMAbs were purified from anti-phage M13 monospecific MAb by a novel affinity method using Mimetic Blue A6XL as immune complexes with AP. The purified bsMAbs with potentially every molecule uniformly bound with AP generated an immuno-probe with the theoretical highest specificity. An ultrasensitive sandwich ELISA for detecting viruses was developed by using this bsMAb coupled with an amplified ELISA procedure. The sensitivity of the assay was increased 1000 times compared with conventional ELISA to achieve detection of 100 phage particles which is approximately 2.3 fg of phage coat protein. This type of bsMAb probe and ELISA format can be used to design new body fluid assays for viral load of HIV, hepatitis and other human pathogens as rapid and inexpensive alternatives to the PCR based method. This unique bispecific probe also allowed rapid and sensitive detection of bound M13/fd phage clones while panning for specific phages displaying peptide mimics against an antigen from a phage display peptide library. Furthermore, we demonstrate the principle virus purification using bsMAb as affinity ligand with a mild phosphate buffer elution. The results indicate that bsMAb could be used to develop affinity chromatography for purifying highly contagious and pathogenic viruses avoiding procedures employing prolonged high-speed centrifugation.
通过将两种亲本杂交瘤进行电融合,并利用荧光激活细胞分选仪(FACS)筛选,获得了一种四瘤体(杂交 - 杂交瘤),其分泌的双特异性抗体具有一个对M13噬菌体外壳蛋白特异的互补决定区和另一个对碱性磷酸酶(AP)特异的互补决定区。利用新型亲和方法,以模拟蓝A6XL作为与AP的免疫复合物,从抗噬菌体M13单特异性单克隆抗体中纯化出抗噬菌体M13/抗AP双特异性单克隆抗体(bsMAbs)。纯化后的bsMAbs理论上每个分子都能均匀地与AP结合,从而产生了具有最高特异性的免疫探针。利用这种bsMAb结合放大酶联免疫吸附测定(ELISA)程序,开发了一种用于检测病毒的超灵敏夹心ELISA。与传统ELISA相比,该检测方法的灵敏度提高了1000倍,能够检测到100个噬菌体颗粒,约为2.3 fg的噬菌体外壳蛋白。这种类型的bsMAb探针和ELISA形式可用于设计针对HIV、肝炎和其他人类病原体病毒载量的新型体液检测方法,作为基于PCR方法的快速且廉价的替代方法。这种独特的双特异性探针还能在从噬菌体展示肽库中淘选针对抗原的展示肽模拟物的特异性噬菌体时,快速灵敏地检测结合的M13/fd噬菌体克隆。此外,我们展示了使用bsMAb作为亲和配体,通过温和的磷酸盐缓冲液洗脱进行病毒纯化的原理。结果表明,bsMAb可用于开发亲和色谱法,以纯化高传染性和致病性病毒,避免采用长时间高速离心的方法。