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小鼠植入一周后新的AB聚合物网络周围的血管生成。

Angiogenesis around new AB-polymer networks after one week of implantation in mice.

作者信息

Binzen E, Rickert D, Kelch S, Fuhrmann R

机构信息

Central Institute of Biomedical Engineering, Department for Biomaterials, University of Ulm, Albert-Einstein-Allee 47, 89069 Ulm, Germany.

出版信息

Clin Hemorheol Microcirc. 2003;28(3):183-8.

Abstract

Biomaterials research is expected to forward new materials to be used as, e.g., implant materials or as scaffolds for tissue engineering. It is central for such a scaffold material to create the track on which those cells can inhabit the scaffold needed to rebuild functional tissue substitutes. The tissue engineering concept expects a gradual gain in functionality of the newly created tissues while the scaffold materials are degraded and subsequently eliminated. Not only for the elimination of the degradation products the angiogenesis of new blood vessels is thought to play an important role. In the present study, a new biomaterial, a non-porous polymeric AB-network based on oligo (epsilon-hydroxycaproate) and oligobutylacrylate, was implanted in animals. Male NMRI mice were implanted subcutaneously for one week. Immediately after the explantation, the probes were examined histologically. Already one week after implantation, there was a strong tissue-integration of the polymer. Importantly, blood vessels occurred at the polymer surface. There were also clusters of cells around the vessels, which were phenotypically similar to fat cells. The mechanism of the early integration of the polymer is not clear. The relationship between the new periimplant vessels and the integration of the polymer has to be studied.

摘要

生物材料研究有望开发出可用于例如植入材料或组织工程支架的新型材料。对于这样一种支架材料而言,关键在于创建细胞能够在支架上栖息的轨迹,以重建功能性组织替代物。组织工程概念期望在支架材料降解并随后被清除的过程中,新创建组织的功能能逐步提升。新血管的生成不仅对于降解产物的清除被认为起着重要作用。在本研究中,一种新型生物材料,即基于聚(ε-羟基己酸酯)和聚丙烯酸丁酯的无孔聚合物AB网络,被植入动物体内。雄性NMRI小鼠皮下植入一周。取出后立即对样本进行组织学检查。植入仅一周后,聚合物就与组织紧密整合。重要的是,聚合物表面出现了血管。血管周围还有细胞簇,其表型与脂肪细胞相似。聚合物早期整合的机制尚不清楚。必须研究植入物周围新血管与聚合物整合之间的关系。

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