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克隆的多能干细胞系在脾脏和腹膜中的归巢。

Homing of a cloned multipotential stem cell line in spleen and intraperitoneal membrane.

作者信息

Hardy C L, Kishimoto T, Harjes K, Tavassoli M, Greenberger J S

出版信息

Exp Hematol. 1986 Aug;14(7):636-42.

PMID:3732419
Abstract

B6SUT is a murine cell line cloned from nonadherent cells of viral-infected long-term marrow cultures. In soft agar it can form colonies of three different hemopoietic lineages and is considered to be a hemopoietic stem cell line. We studied its ability to "home" in the spleen of lethally irradiated mice. These cells formed large surface colonies on days 8 and 12, the colonies on day 12 being greater than 3 mm in diameter. Microscopically, these colonies consisted of undifferentiated cells, suggesting that B6SUT cells are capable of homing and proliferation in hemopoietic tissues, but not differentiation. To confirm this, cells were labeled with 51Cr and infused into the peritoneum of mice bearing cellulose ester membranes (CEM). We noted significant uptake of radioactivity that could be inhibited in the presence of excess unlabeled B6SUT cells. Electron-microscopic studies showed binding and migration of these cells into the CEM coat. The membrane of B6SUT cells was mapped for lectin and sugar-recognizing receptors and found to possess receptors for PHA, Con A, WGA, and RCA, but not UEA, fucosyl, galactosyl, or mannosyl residues. We conclude that cell line B6SUT is capable of homing into hemopoietic tissues, and that surface glycoproteins may be responsible for this phenomenon. This cell line permits the study of the "homing" phenomenon apart from proliferation and differentiation.

摘要

B6SUT是一种从小鼠病毒感染的长期骨髓培养的非贴壁细胞中克隆出来的细胞系。在软琼脂中,它能形成三种不同造血谱系的集落,被认为是一种造血干细胞系。我们研究了它在致死性照射小鼠脾脏中“归巢”的能力。这些细胞在第8天和第12天形成大的表面集落,第12天的集落直径大于3毫米。显微镜下,这些集落由未分化细胞组成,这表明B6SUT细胞能够在造血组织中归巢和增殖,但不能分化。为了证实这一点,用51Cr标记细胞并注入带有纤维素酯膜(CEM)的小鼠腹腔。我们注意到有明显的放射性摄取,在存在过量未标记的B6SUT细胞时这种摄取会受到抑制。电子显微镜研究显示这些细胞与CEM膜结合并迁移进入其中。对B6SUT细胞的膜进行了凝集素和糖识别受体图谱分析,发现其具有PHA、Con A、WGA和RCA的受体,但没有UEA、岩藻糖基、半乳糖基或甘露糖基残基的受体。我们得出结论,B6SUT细胞系能够归巢到造血组织中,并且表面糖蛋白可能是造成这种现象的原因。该细胞系允许在不涉及增殖和分化的情况下研究“归巢”现象。

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