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Preparation and Characterization of an Optimized Meniscal Extracellular Matrix Scaffold for Meniscus Transplantation

Yong He, Yunbin Chen, Xinyu Wan, Chenchen Zhao, Pengcheng Qiu, Xianfeng Lin, Jianfeng Zhang, Yue Huang

2020Frontiers in Bioengineering and Biotechnology28 citationsDOIOpen Access PDF

Abstract

Many studies have sought to construct a substitute to partially replace irreparably damaged meniscus. Only the meniscus allograft has been used in clinical practice as a useful substitute, and there are concerns about its longevity and inherent limitations, including availability of donor tissue and possibility of disease transmission. To overcome these limitations, we developed an acellular xenograft from whole porcine meniscus. Samples were treated with 2% Triton X-100 for 10 days and 2% sodium dodecyl sulphate for 6 days. The DNA content of extracellular matrix (ECM) scaffolds was significantly decreased compared with that of normal porcine menisci (p < 0.001). Histological analysis confirmed the maintenance of ECM integrity and anisotropic architecture in the absence of nuclei. Biochemical and biomechanical assays of the scaffolds indicated the preservation of collagen (p = 0.806), glycosaminoglycan (p = 0.188), and biomechanical properties (elastic modulus and transition stress). The scaffolds possessed good biocompatibility and supported bone marrow mesenchymal stem cells proliferation for 2 weeks in vitro, with excellent region-specific recellularization in vivo. The novel scaffold has potential values for application in recellularization and transplantation strategies.

Topics & Concepts

Extracellular matrixMeniscusScaffoldTransplantationChemistryTissue engineeringBiomedical engineeringRegeneration (biology)Mesenchymal stem cellMatrix (chemical analysis)In vivoCell biologySurgeryPathologyMedicineBiochemistryBiologyBiotechnologyOpticsPhysicsChromatographyIncidence (geometry)Tissue Engineering and Regenerative MedicineKnee injuries and reconstruction techniquesElectrospun Nanofibers in Biomedical Applications
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