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成骨细胞对SDF-1(CXCL12)产生的调控;干细胞归巢的一种可能机制。

Regulation of SDF-1 (CXCL12) production by osteoblasts; a possible mechanism for stem cell homing.

作者信息

Jung Y, Wang J, Schneider A, Sun Y-X, Koh-Paige A J, Osman N I, McCauley L K, Taichman R S

机构信息

Department of Periodontics and Oral Medicine, University of Michigan School of Dentistry, 1011 North University Avenue, Ann Arbor, MI 48109-1078, USA.

出版信息

Bone. 2006 Apr;38(4):497-508. doi: 10.1016/j.bone.2005.10.003. Epub 2005 Dec 5.

Abstract

Stromal derived factor-1 (SDF-1 or CXCL12) controls many aspects of stem cell function including trafficking and proliferation. Previously, it was demonstrated that DNA-damaging agents such as irradiation, cyclophosphamide or 5-fluorouracil increase the expression of SDF-1 by osteoblasts in murine marrow. Here, the production of SDF-1 by osteoblasts in vitro in response to cytokines known to be particularly important in bone physiology was examined using primary human osteoblasts (HOBs), mixed marrow stromal cells (BMSCs), and by, mouse, rat and human osteoblast-like cell lines. From these studies, it was determined that the expression of SDF-1 is an early feature of osteoblastic induction that may be modulated by IL-1beta, PDGF-BB, VEGF, TNF-alpha and PTH. Each of these factors increased SDF-1 synthesis, while TGF-beta1 decreased SDF-1 secretion. Of note, the biodistribution of SDF-1 in culture was equally distributed between the medium and detergent-soluble and -insoluble fractions of the cultures. Immunohistochemistry of developing bones demonstrated that SDF-1 was also a feature of early bone development first beginning in the perichondrium and moving into the marrow cavity of the developing bone analogue. As SDF-1 expression increases in response to PTH in vitro, animals were treated with an anabolic regime of PTH for 21 days. Under these conditions, significant increases in SDF-1 mRNA expression were observed near the growth plate and epiphysis regions of the long bones. Yet, in serum, immunodetectable SDF-1 levels were significantly reduced (24%) in the PTH-treated animals (Vehicle: 408 +/- 25 vs. PTH 308 +/- 20 SDF-1 pg/ml). Together, these data suggest a possible mechanism for localizing stem cells into a developing marrow where increased expression of SDF-1 in the local marrow environment along with decreased SDF-1 in the serum may create a homing gradient.

摘要

基质衍生因子-1(SDF-1或CXCL12)控制干细胞功能的许多方面,包括迁移和增殖。以前的研究表明,诸如辐射、环磷酰胺或5-氟尿嘧啶等DNA损伤剂可增加小鼠骨髓中骨细胞SDF-1的表达。在此,使用原代人成骨细胞(HOB)、混合骨髓基质细胞(BMSC)以及小鼠、大鼠和人成骨样细胞系,检测了体外成骨细胞对已知在骨生理学中特别重要的细胞因子的反应中SDF-1的产生。从这些研究中可以确定,SDF-1的表达是成骨诱导的早期特征,可能受白细胞介素-1β(IL-1β)、血小板衍生生长因子-BB(PDGF-BB)、血管内皮生长因子(VEGF)、肿瘤坏死因子-α(TNF-α)和甲状旁腺激素(PTH)的调节。这些因子均增加SDF-1的合成,而转化生长因子-β1(TGF-β1)则减少SDF-1的分泌。值得注意的是,培养物中SDF-1的生物分布在培养基与培养物的去污剂可溶性和不可溶性部分之间均匀分布。发育中骨骼的免疫组织化学表明,SDF-1也是早期骨骼发育的一个特征,首先始于软骨膜,并进入发育中骨类似物的骨髓腔。由于体外SDF-1表达随PTH增加,对动物进行了为期21天的PTH合成代谢治疗方案。在这些条件下,在长骨的生长板和骨骺区域附近观察到SDF-1 mRNA表达显著增加。然而,在血清中,PTH治疗的动物中可免疫检测到的SDF-1水平显著降低(24%)(载体组:408±25 vs. PTH组:308±20 SDF-1 pg/ml)。这些数据共同提示了一种可能的机制,即将干细胞定位到发育中的骨髓中,其中局部骨髓环境中SDF-1表达增加以及血清中SDF-1减少可能形成归巢梯度。

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