Chondrogenic potential of manganese-loaded composite scaffold combined with chondrocytes for articular cartilage defect
Wei Li, Qin Shuai, Ye Yulin, Hu Jiawei, Luo Danyang, Li Yusi, Gao Yiming, Jiang Liting, Zhou Qi, Xie Xianfei, Li Ning
Journal:JOURNAL OF MATERIALS SCIENCE-MATERIALS IN MEDICINE
IF:4.73
DOI:10.1007/s10856-022-06695-y
PMID:36219265
Published:2022-10-11
research field:细胞生物学呼吸生物学生物化学
Abstract
Cartilage is an alymphatic, avascular and non-innervated tissue. Lack of potential regenerative capacity to reconstruct chondral defect has accelerated investigation and development of new strategy for cartilage repair. We prepared a manganese ion-incorporated natupolymer-based scaffold with chitosan-gelatin by freeze-drying procedure. The scaffold was characterized by Fourier transform infrared spectroscopy, thermogravimetric analysis, scanning electron microscopy, energy dispersive spectroscopy, compressive testing, and analysis of porosity and flexibility. Live/dead assay confirmed the good cytocompatibility of prepared scaffold on rat articular chondrocytes after 10 days and 4 weeks of culture. The manganese-loaded composite scaffold upregulated the expression of chondrogenic-related markers (Sox9, integrin, and Col II) in chondrocytes. Western blot analysis of proteins extracted from chondrocytes grown on scaffolds indicated the signaling pathways of p-Akt and p-ERK1/2 played a key role. Histological analysis following implantation of current composite scaffold loaded with chondrocytes into a rat articular cartilage defect model showed that the scaffolds promoted the formation of collagen II and cartilage repair. These findings suggested the potential of manganese-loaded scaffold to promote new cartilage formation and a promising strategy for articular cartilage engineering application.
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