Evaluation of Chondral Defect Repair Using Human Fibronectin Adhesion Assay-Derived Chondroprogenitors Suspended in Lyophilized Fetal Collagen Scaffold: An Ex Vivo Osteochondral Unit Model Study

IF 1.1 4区 医学 Q3 ORTHOPEDICS
Ganesh Parasuraman, Soosai Manickam Amirtham, Deepak Vinod Francis, Abel Livingston, Boopalan Ramasamy, Solomon Sathishkumar, Elizabeth Vinod
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Abstract

Introduction

Chondral defect repair is challenging due to a scarcity of reparative cells and the need to fill a large surface area, compounded by the absence of self-healing mechanisms. Fibronectin adhesion assay-derived chondroprogenitors (FAA-CPs) have emerged as a promising alternative with enhanced chondrogenic ability and reduced hypertrophy. De-cellularized bio-scaffolds are reported to act as extracellular matrix, mimicking the structural and functional characteristics of native tissue, thereby facilitating cell attachment and differentiation. This study primarily assessed the synergistic effect of FAA-CPs suspended in fetal cartilage-derived collagen-containing scaffolds in repairing chondral defects.

Methodology

The de-cellularized and lyophilized fetal collagen was prepared from the tibio-femoral joint of a 36 + 4-week gestational age fetus. FAA-CPs were isolated from osteoarthritic cartilage samples (n = 3) and characterized. In ex vivo analysis, FAA-CPs at a density of 1 × 106 cells were suspended in the lyophilized scaffold and placed into the chondral defects created in the Osteochondral Units and harvested on the 35th day for histological examination.

Results

The lyophilized scaffold of de-cellularized fetal cartilage with FAA-CPs demonstrated effective healing of the critical size chondral defect. This was evidenced by a uniform distribution of cells, a well-organized collagen-fibrillar network, complete filling of the defect with alignment to the surface, and favorable integration with the adjacent cartilage. However, these effects were less pronounced in the plain scaffold control group and no demonstrable repair observed in the empty defect group.

Conclusion

This study suggests the synergistic potential of FAA-CPs and collagen scaffold for chondral repair which needs to be further explored for clinical therapy.

Abstract Image

使用悬浮在冻干胎儿胶原支架中的人类纤连蛋白粘附试验衍生的软骨生成物评估软骨缺陷修复:体内外骨软骨单位模型研究
导言:软骨缺损修复具有挑战性,因为修复细胞稀缺,而且需要填充较大的表面积,再加上缺乏自我修复机制。纤连蛋白粘附试验衍生的软骨原生细胞(FAA-CPs)具有增强软骨原生能力和减少肥大的作用,是一种很有前途的替代方法。据报道,脱细胞生物支架可充当细胞外基质,模拟原生组织的结构和功能特征,从而促进细胞附着和分化。本研究主要评估了悬浮在胎儿软骨源胶原支架中的 FAA-CPs 在修复软骨缺损方面的协同作用。从骨关节炎软骨样本(n = 3)中分离出 FAA-CPs 并对其进行表征。在体外分析中,将密度为 1 × 106 的 FAA-CPs 悬浮于冻干支架中,放入骨软骨单位中形成的软骨缺损中,第 35 天收获进行组织学检查。这表现在细胞分布均匀、胶原纤维网络组织良好、缺损完全填充并与表面对齐、与邻近软骨融合良好。结论:这项研究表明,FAA-CPs 和胶原支架在软骨修复方面具有协同作用的潜力,需要在临床治疗中进一步探索。
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来源期刊
CiteScore
1.80
自引率
0.00%
发文量
185
审稿时长
9 months
期刊介绍: IJO welcomes articles that contribute to Orthopaedic knowledge from India and overseas. We publish articles dealing with clinical orthopaedics and basic research in orthopaedic surgery. Articles are accepted only for exclusive publication in the Indian Journal of Orthopaedics. Previously published articles, articles which are in peer-reviewed electronic publications in other journals, are not accepted by the Journal. Published articles and illustrations become the property of the Journal. The copyright remains with the journal. Studies must be carried out in accordance with World Medical Association Declaration of Helsinki.
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