Department of Research & Development, Progenitec Inc., Arlington, Texas, USA.
Department of Bioengineering, University of Texas at Arlington, Arlington, Texas, USA.
J Orthop Res. 2022 Nov;40(11):2646-2655. doi: 10.1002/jor.25290. Epub 2022 Feb 13.
Currently, there are no effective clinical or experimental treatments to fully restore the function of the torn acetabular labrum. To fill the gap, here, we report the finding of progenitor cells in labral tissue, which can be recruited and stimulated to repair torn acetabular labral tissue. This study aimed to develop a biomolecule releasing bioadhesive which can speed up labral tissue healing by eliciting autologous labral progenitor cellular responses. A click chemistry-based bioadhesive, capable of releasing biomolecules, was synthesized to exert ~3× adhesion strength compared with fibrin glue. Via the release of platelet-derived growth factor (PDGF), the adhesive was shown to actively recruit and stimulate the proliferation of labral progenitor cells to the tear sites and within the adhesive. Finally, the ability of this biomolecules-releasing adhesive designed to promote labral tissue regeneration was evaluated using discarded human acetabular labrum tissue compared with surgical suture ex vivo. Histological analysis shows that PDGF-releasing bioadhesive yielded significantly more labrum cell responses and extracellular matrix protein (proteoglycan and collagen) production at the tear tissue site than surgical suture controls. The results confirm that the new PDGF-releasing bioadhesive can activate the responses of autologous labral progenitor cells to significantly improve labral tissue regeneration. Clinical significance: These PDGF-releasing bioadhesives may serve as a new and effective tool for repairing and regenerating acetabular labrum tears.
目前,尚无有效的临床或实验治疗方法可以完全恢复撕裂的髋臼唇的功能。为了填补这一空白,我们在此报告了在唇组织中发现祖细胞的研究结果,这些祖细胞可以被招募并受到刺激来修复撕裂的髋臼唇组织。本研究旨在开发一种生物分子释放型生物粘合剂,通过引发自体唇祖细胞反应来加速唇组织愈合。合成了一种基于点击化学的生物粘合剂,能够释放生物分子,其黏附强度比纤维蛋白胶高约 3 倍。通过释放血小板衍生生长因子(PDGF),该粘合剂被证明能够主动招募和刺激唇祖细胞向撕裂部位和粘合剂内增殖。最后,与外科缝线的体外实验相比,使用废弃的人类髋臼唇组织评估了这种设计用于促进唇组织再生的生物分子释放型粘合剂的能力。组织学分析表明,与外科缝线对照组相比,PDGF 释放型生物粘合剂在撕裂组织部位产生了更多的唇细胞反应和细胞外基质蛋白(蛋白聚糖和胶原)。结果证实,新型 PDGF 释放型生物粘合剂可以激活自体唇祖细胞的反应,从而显著改善唇组织再生。临床意义:这些 PDGF 释放型生物粘合剂可能成为修复和再生髋臼唇撕裂的新的有效工具。