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骨形态发生蛋白通过成骨细胞衍生的血管内皮生长因子A刺激血管生成。

Bone morphogenetic proteins stimulate angiogenesis through osteoblast-derived vascular endothelial growth factor A.

作者信息

Deckers Martine M L, van Bezooijen Rutger L, van der Horst Geertje, Hoogendam Jakomijn, van Der Bent Chris, Papapoulos Socrates E, Löwik Clemens W G M

机构信息

Department of Endocrinology and Metabolic Diseases, Leiden University Medical Center, 2333 ZA Leiden, The Netherlands.

出版信息

Endocrinology. 2002 Apr;143(4):1545-53. doi: 10.1210/endo.143.4.8719.

Abstract

During bone formation and fracture healing there is a cross-talk between endothelial cells and osteoblasts. We previously showed that vascular endothelial growth factor A (VEGF-A) might be an important factor in this cross-talk, as osteoblast-like cells produce this angiogenic factor in a differentiation-dependent manner. Moreover, exogenously added VEGF-A enhances osteoblast differentiation. In the present study we investigated, given the coupling between angiogenesis and bone formation, whether bone morphogenetic proteins (BMPs) stimulate osteoblastogenesis and angiogenesis through the production of VEGF-A. For this we used the murine preosteoblast-like cell line KS483, which forms mineralized nodules in vitro, and an angiogenesis assay comprising 17-d-old fetal mouse bone explants that have the ability to form tube-like structures in vitro. Treatment of KS483 cells with BMP-2, -4, and -6 enhanced nodule formation, osteocalcin mRNA expression, and subsequent mineralization after 18 d of culture. This was accompanied by a dose-dependent increase in VEGF-A protein levels throughout the culture period. BMP-induced osteoblast differentiation, however, was independent of VEGF-A, as blocking VEGF-A activity by a VEGF-A antibody or a VEGF receptor 2 tyrosine kinase inhibitor did not affect BMP-induced mineralization. To investigate whether BMPs stimulate angiogenesis through VEGF-A, BMPs were assayed for their angiogenic activity. Treatment of bone explants with BMPs enhanced angiogenesis. This was inhibited by soluble BMP receptor 1A or noggin. In the presence of a VEGF-A antibody, both unstimulated and BMP-stimulated angiogenesis were arrested. Conditioned media of KS483 cells treated with BMPs also induced a strong angiogenic response, which was blocked by antimouse VEGF-A but not by noggin. These effects were specific for BMPs, as TGF beta inhibited osteoblast differentiation and angiogenesis while stimulating VEGF-A production. These findings indicate that BMPs stimulate angiogenesis through the production of VEGF-A by osteoblasts. In conclusion, VEGF-A produced by osteoblasts in response to BMPs is not involved in osteoblast differentiation, but couples angiogenesis to bone formation.

摘要

在骨形成和骨折愈合过程中,内皮细胞和成骨细胞之间存在相互作用。我们之前表明,血管内皮生长因子A(VEGF-A)可能是这种相互作用中的一个重要因素,因为成骨样细胞以分化依赖的方式产生这种血管生成因子。此外,外源性添加的VEGF-A可增强成骨细胞分化。在本研究中,考虑到血管生成与骨形成之间的关联,我们研究了骨形态发生蛋白(BMPs)是否通过VEGF-A的产生来刺激成骨细胞生成和血管生成。为此,我们使用了小鼠前成骨样细胞系KS483,其在体外形成矿化结节,以及一种血管生成检测方法,该方法使用17日龄胎鼠骨外植体,其在体外具有形成管状结构的能力。用BMP-2、-4和-6处理KS483细胞可增强结节形成、骨钙素mRNA表达以及培养18天后的后续矿化。这伴随着整个培养期间VEGF-A蛋白水平的剂量依赖性增加。然而,BMP诱导的成骨细胞分化不依赖于VEGF-A,因为用VEGF-A抗体或VEGF受体2酪氨酸激酶抑制剂阻断VEGF-A活性并不影响BMP诱导的矿化。为了研究BMPs是否通过VEGF-A刺激血管生成,检测了BMPs的血管生成活性。用BMPs处理骨外植体可增强血管生成。这被可溶性BMP受体1A或头蛋白抑制。在存在VEGF-A抗体的情况下,未刺激的和BMP刺激的血管生成均被阻断。用BMPs处理的KS483细胞的条件培养基也诱导了强烈的血管生成反应,这被抗小鼠VEGF-A阻断,但未被头蛋白阻断。这些效应是BMPs特有的,因为转化生长因子β抑制成骨细胞分化和血管生成,同时刺激VEGF-A产生。这些发现表明,BMPs通过成骨细胞产生VEGF-A来刺激血管生成。总之,成骨细胞响应BMPs产生的VEGF-A不参与成骨细胞分化,但将血管生成与骨形成联系起来。

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