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通过中和转化生长因子-β实现德克斯特型培养物中的生长加速和干细胞扩增。

Growth acceleration and stem cell expansion in Dexter-type cultures by neutralization of TGF-beta.

作者信息

Waegell W O, Higley H R, Kincade P W, Dasch J R

机构信息

Celtrix Pharmaceuticals, Inc., Santa Clara, CA 95054.

出版信息

Exp Hematol. 1994 Oct;22(11):1051-7.

PMID:7925771
Abstract

Hematopoietic lineage-restricted stem cell growth has been shown to be significantly inhibited by the addition of exogenous transforming growth factor-beta (TGF-beta) to Dexter-type long-term murine bone-marrow cultures. In order to examine whether TGF-beta produced by these cells has a role in hematopoietic growth regulation, Dexter cultures have been treated with either 1D11.16, a monoclonal antibody that neutralizes the biological activity of TGF-beta types 1, 2, and 3, or with a control antibody. The composition and cellularity of the nonadherent cell populations in these cultures were assessed weekly. Treatment with anti-TGF-beta antibody resulted in a five- to 20-fold increase in nonadherent cells in the cultures when compared to either the control or untreated cultures by week 4. The majority of these cells were granulocyte/macrophage-lineage cells as assessed by histologic and flow-cytometric analysis. There was also a significant increase of megakaryocytes in cultures treated with anti-TGF-beta antibody. Stem-cell analysis, using a colony-forming unit-spleen (CFU-S) assay that combined both the adherent and nonadherent populations from either 4- or 6-week cultures, showed that there are an equivalent number of hematopoietic stem cells per 10(6) cells regardless of antibody treatment. Therefore, cultures treated with anti-TGF-beta antibody contained at least three times as many stem cells as the control cultures. Finally, kinetics studies show that the presence of anti-TGF-beta antibody is required from the onset of culture to produce these effects. These results suggest that TGF-beta is involved in normal growth regulation of bone-marrow hematopoietic cells. By addition of a neutralizing antibody, the normal TGF-beta negative growth signal is disrupted, allowing for expanded growth of several cell populations.

摘要

在德克斯特式长期小鼠骨髓培养中,添加外源性转化生长因子-β(TGF-β)已显示可显著抑制造血谱系受限干细胞的生长。为了研究这些细胞产生的TGF-β是否在造血生长调节中发挥作用,德克斯特培养物用1D11.16(一种可中和1、2和3型TGF-β生物活性的单克隆抗体)或对照抗体进行处理。每周评估这些培养物中非贴壁细胞群体的组成和细胞数量。与对照或未处理的培养物相比,到第4周时,用抗TGF-β抗体处理的培养物中非贴壁细胞增加了5至20倍。通过组织学和流式细胞术分析评估,这些细胞中的大多数是粒细胞/巨噬细胞谱系细胞。在用抗TGF-β抗体处理的培养物中巨核细胞也显著增加。使用集落形成单位-脾(CFU-S)测定法对干细胞进行分析,该测定法结合了来自4周或6周培养物的贴壁和非贴壁群体,结果显示,无论抗体处理如何,每10⁶个细胞中造血干细胞的数量相等。因此,用抗TGF-β抗体处理的培养物中干细胞的数量至少是对照培养物的三倍。最后,动力学研究表明,从培养开始就需要存在抗TGF-β抗体才能产生这些效应。这些结果表明,TGF-β参与骨髓造血细胞的正常生长调节。通过添加中和抗体,正常的TGF-β负生长信号被破坏,从而使几个细胞群体得以扩大生长。

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