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生产针对i血型抗原(一种间充质干细胞标志物)的重组抗体。

Production of a recombinant antibody specific for i blood group antigen, a mesenchymal stem cell marker.

作者信息

Hirvonen Tia, Suila Heli, Tiitinen Sari, Natunen Suvi, Laukkanen Marja-Leena, Kotovuori Annika, Reinman Mirka, Satomaa Tero, Alfthan Kaija, Laitinen Saara, Takkinen Kristiina, Räbinä Jarkko, Valmu Leena

机构信息

Finnish Red Cross Blood Service , Helsinki, Finland .

出版信息

Biores Open Access. 2013 Oct;2(5):336-45. doi: 10.1089/biores.2013.0026.

Abstract

Multipotent mesenchymal stem/stromal cells (MSCs) offer great promise for future regenerative and anti-inflammatory therapies. Panels of functional and phenotypical markers are currently used in characterization of different therapeutic stem cell populations from various sources. The i antigen (linear poly-N-acetyllactosamine) from the Ii blood group system has been suggested as a marker for MSCs derived from umbilical cord blood (UCB). However, there are currently no commercially available antibodies recognizing the i antigen. In the present study, we describe the use of antibody phage display technology to produce recombinant antibodies recognizing a structure from the surface of mesenchymal stem cells. We constructed IgM phage display libraries from the lymphocytes of a donor with an elevated serum anti-i titer. Antibody phage display technology is not dependent on immunization and thus allows the generation of antibodies against poorly immunogenic molecules, such as carbohydrates. Agglutination assays utilizing i antigen-positive red blood cells (RBCs) from UCB revealed six promising single-chain variable fragment (scFv) antibodies, three of which recognized epitopes from the surface of UCB-MSCs in flow cytometric assays. The amino acid sequence of the VH gene segment of B12.2 scFv was highly similar to the VH4.21 gene segment required to encode anti-i specificities. Further characterization of binding properties revealed that the binding of B12.2 hyperphage was inhibited by soluble linear lactosamine oligosaccharide. Based on these findings, we suggest that the B12.2 scFv we have generated is a prominent anti-i antibody that recognizes i antigen on the surface of both UCB-MSCs and RBCs. This binder can thus be utilized in UCB-MSC detection and isolation as well as in blood group serology.

摘要

多能间充质干细胞(MSCs)为未来的再生和抗炎治疗带来了巨大希望。目前,功能和表型标志物面板被用于表征来自各种来源的不同治疗性干细胞群体。Ii血型系统中的i抗原(线性多聚N-乙酰乳糖胺)已被提议作为脐带血(UCB)来源的MSCs的标志物。然而,目前尚无市售的识别i抗原的抗体。在本研究中,我们描述了使用抗体噬菌体展示技术来生产识别间充质干细胞表面结构的重组抗体。我们从血清抗i效价升高的供体淋巴细胞构建了IgM噬菌体展示文库。抗体噬菌体展示技术不依赖于免疫,因此能够产生针对免疫原性较差的分子(如碳水化合物)的抗体。利用来自UCB的i抗原阳性红细胞(RBCs)进行的凝集试验揭示了六种有前景的单链可变片段(scFv)抗体,其中三种在流式细胞术分析中识别UCB-MSCs表面的表位。B12.2 scFv的VH基因片段的氨基酸序列与编码抗i特异性所需的VH4.21基因片段高度相似。结合特性的进一步表征表明,可溶性线性乳糖胺寡糖可抑制B12.2超噬菌体的结合。基于这些发现,我们认为我们产生的B12.2 scFv是一种突出的抗i抗体,可识别UCB-MSCs和RBCs表面的i抗原。因此,这种结合物可用于UCB-MSC的检测和分离以及血型血清学研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aaa5/3777189/4332f3b72da7/fig-1.jpg

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