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聚醚砜支架上自体和同种异体软骨细胞移植在软骨再生中的对比研究。

Comparative Study of Autogenic and Allogenic Chondrocyte Transplants on Polyethersulfone Scaffolds for Cartilage Regeneration.

机构信息

Paediatric Orthopaedics and Traumatology Department, Children's Hospital, Medical University of Warsaw, 02-091 Warsaw, Poland.

Nałęcz Institute of Biocybernetics and Biomedical Engineering Polish Academy of Sciences, 02-109 Warsaw, Poland.

出版信息

Int J Mol Sci. 2024 Aug 21;25(16):9075. doi: 10.3390/ijms25169075.

Abstract

The aim of this study was to evaluate the chondrogenic potential of chondrocyte transplants cultured in vitro on polyethersulfone (PES) membranes. Forty-eight rabbits (96 knee joints) were used in the project. The synthetic, macro-porous PES membranes were used as scaffolds. Fragments of articular cartilage were harvested from non-weight-bearing areas of the joints of the animals. Chondrocytes were isolated and then cultivated on PES scaffolds for 3 weeks. The animals were divided into four groups. All the lesions in the articular cartilage were full thickness defects. In Group I, autogenic chondrocytes on PES membranes were transplanted into the defect area; in Group II, allogenic chondrocytes on PES membranes were transplanted into the defect area; in Group III, pure PES membranes were transplanted into the defect area; and in Group IV, lesions were left untreated. Half of the animals from each group were terminated after 8 weeks, and the remaining half were terminated 12 weeks postoperatively. The samples underwent macroscopic evaluation using the Brittberg scale and microscopic evaluation using the O'Driscoll scale. The best regeneration was observed in Groups II and I. In Group I, the results were achieved with two surgeries, while in Group II, only one operation was needed. This indicates that allogenic chondrocytes do not require two surgeries, highlighting the importance of further in vivo studies to better understand this advantage. The success of the study and the desired properties of PES scaffolds are attributed mainly to the presence of sulfonic groups in the structure of the material. These groups, similar to chondroitin sulfate, which naturally occurs in hyaline cartilage, likely enable mutual affinity between the scaffold and cells and promote scaffold colonization by the cells.

摘要

本研究旨在评估体外培养于聚醚砜(PES)膜上的软骨细胞的软骨生成潜力。该项目使用了 48 只兔子(96 个膝关节)。合成的、大孔的 PES 膜被用作支架。关节软骨的碎片从动物的非承重区域采集。软骨细胞被分离出来,然后在 PES 支架上培养 3 周。动物被分为四组。所有关节软骨的病变都是全层缺损。在第 I 组中,将 PES 膜上的自体软骨细胞移植到缺损区域;在第 II 组中,将 PES 膜上的同种异体软骨细胞移植到缺损区域;在第 III 组中,将纯 PES 膜移植到缺损区域;在第 IV 组中,不进行任何处理。每组的一半动物在 8 周后终止,另一半在术后 12 周终止。样本分别用 Brittberg 评分法进行宏观评估和用 O'Driscoll 评分法进行微观评估。第 II 组和第 I 组观察到了最佳的再生。在第 I 组,通过两次手术获得了结果,而在第 II 组,只需要一次手术。这表明同种异体软骨细胞不需要两次手术,这突出了进一步进行体内研究以更好地理解这一优势的重要性。研究的成功和 PES 支架的理想特性主要归因于材料结构中存在磺酸基团。这些基团类似于天然存在于透明软骨中的硫酸软骨素,可能使支架和细胞之间具有相互亲和力,并促进细胞对支架的定植。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ac2/11354243/7caff88addb7/ijms-25-09075-g001.jpg

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