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PEGT/PBT支架结构对组织工程软骨构建物中氧梯度的影响。

The effect of PEGT/PBT scaffold architecture on oxygen gradients in tissue engineered cartilaginous constructs.

作者信息

Malda J, Woodfield T B F, van der Vloodt F, Kooy F K, Martens D E, Tramper J, van Blitterswijk C A, Riesle J

机构信息

Food and Bioprocess Engineering Group, Wageningen University, Wageningen, The Netherlands.

出版信息

Biomaterials. 2004 Nov;25(26):5773-80. doi: 10.1016/j.biomaterials.2004.01.028.

Abstract

Repair of articular cartilage defects using tissue engineered constructs composed of a scaffold and cultured autologous cells holds promise for future treatments. However, nutrient limitation (e.g. oxygen) has been suggested as a cause of the onset of chondrogenesis solely within the peripheral boundaries of larger constructs. In the present study, oxygen gradients were evaluated by microelectrode measurements in two porous polyethylene glycol terephthalate/polybutylene terephthalate (PEGT/PBT) scaffold architectures, a compression-molded and particle-leached sponge (CM) and a 3D-deposited fiber (3DF) scaffold. During the first 14 days in vitro, gradients intensified, after which a gradual decrease of the gradients was observed in vitro. In vivo, however, gradients changed instantly and became less pronounced. Although similar gradients were observed regardless of scaffold type, significantly more cells were present in the center of 3DF constructs after 2 weeks of in vivo culture. Our results stress the importance of a rationally designed scaffold for tissue-engineering applications. Organized structures, such as the 3DF PEGT/PBT polymer scaffolds, offer possibilities for regulation of nutrient supply and, therefore, hold promise for clinical approaches for cartilage repair.

摘要

使用由支架和培养的自体细胞组成的组织工程构建体修复关节软骨缺损为未来的治疗带来了希望。然而,营养限制(如氧气)被认为是仅在较大构建体的周边边界内发生软骨形成的原因。在本研究中,通过微电极测量评估了两种多孔聚对苯二甲酸乙二酯/聚对苯二甲酸丁二酯(PEGT/PBT)支架结构中的氧梯度,一种是压缩成型和颗粒沥滤海绵(CM),另一种是3D沉积纤维(3DF)支架。在体外培养的前14天,梯度增强,之后在体外观察到梯度逐渐降低。然而,在体内,梯度立即发生变化且变得不那么明显。尽管无论支架类型如何都观察到了相似的梯度,但在体内培养2周后,3DF构建体的中心存在明显更多的细胞。我们的结果强调了合理设计的支架在组织工程应用中的重要性。有组织的结构,如3DF PEGT/PBT聚合物支架,为调节营养供应提供了可能性,因此有望用于软骨修复的临床方法。

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