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使用新开发的免疫磁珠提高从粪便中回收脱落结肠细胞的效率。

Improved recovery of exfoliated colonocytes from feces using newly developed immunomagnetic beads.

作者信息

Koga Yoshikatsu, Yasunaga Masahiro, Katayose Satoshi, Moriya Yoshihiro, Akasu Takayuki, Fujita Shin, Yamamoto Seiichiro, Baba Hideo, Matsumura Yasuhiro

机构信息

Investigative Treatment Division, Research Center for Innovative Oncology, National Cancer Center Hospital East, 6-5-1 Kashiwanoha, Kashiwa 277-8577, Japan.

出版信息

Gastroenterol Res Pract. 2008;2008:605273. doi: 10.1155/2008/605273. Epub 2008 Dec 22.

Abstract

We demonstrated the feasibility of a new methodology for isolating colonocytes from feces. To reduce costs and improve the recovery rate of colonocytes from feces, we attempted to develop new immunomagnetic beads. Several sizes of magnetic beads were prepared and tagged with a monoclonal antibody against EpCAM. We made several new monoclonal antibodies against EpCAM, and each monoclonal antibody was tagged to the magnetic beads. In the simulation, the most efficient recovery of HT-29 cells was obtained using the smallest size of beads. Also, beads tagged with a monoclonal antibody with a higher affinity against EpCAM had a higher recovery rate. Similar results were obtained when the smallest size of beads with the highest-affinity monoclonal antibody was applied to clinical samples. The newly developed immunomagnetic beads may be useful for isolating colorectal cancer cells from feces, enabling the cytological or molecular biological diagnosis of CRC.

摘要

我们证明了一种从粪便中分离结肠细胞的新方法的可行性。为了降低成本并提高从粪便中回收结肠细胞的比率,我们尝试开发新的免疫磁珠。制备了几种尺寸的磁珠,并用抗EpCAM单克隆抗体进行标记。我们制备了几种抗EpCAM的新单克隆抗体,并将每种单克隆抗体标记到磁珠上。在模拟实验中,使用最小尺寸的磁珠获得了最高效的HT-29细胞回收率。此外,标记有对EpCAM具有更高亲和力的单克隆抗体的磁珠回收率更高。当将具有最高亲和力单克隆抗体的最小尺寸磁珠应用于临床样本时,也获得了类似的结果。新开发的免疫磁珠可能有助于从粪便中分离结肠癌细胞,从而实现结直肠癌的细胞学或分子生物学诊断。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38e8/2606972/c0273591f92e/GRP2008-605273.001.jpg

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