Chongqing Key Laboratory of Oral Disease and Biomedical Sciences and Chongqing Municipal Key Laboratory of Oral Biomedical Engineering of Higher Education and Stomatological Hospital of Chongqing Medical University, Chongqing, 401174, P. R. China.
Interdisciplinary Research Centre in Polymer Science and Technology (Polymer IRC), University of Bradford, Bradford, BD7 1DP, UK.
Small. 2022 Sep;18(36):e2105255. doi: 10.1002/smll.202105255. Epub 2022 Mar 18.
Tendon regeneration and reduction of peritendinous adhesion remain major clinical challenges. This study addresses these challenges by adopting a unique hydrogel derived from the skin secretion of Andrias davidianus (SSAD) and taking advantage of its biological effects, adhesiveness, and controllable microstructures. The SSAD-derived hydrogel contains many cytokines, which could promote tendon healing. In vitro, leach liquid of SSAD powder could promote tendon stem/progenitor cells migration. In vivo, the SSAD-derived hydrogel featuring double layers possesses strong adhesiveness and could reconnect ruptured Achilles tendons of Sprague-Dawley rats without suturing. The intimal SSAD-derived hydrogel, with a pore size of 241.7 ± 21.0 µm, forms the first layer of the hydrogel to promote tendon healing, and the outer layer SSAD-derived hydrogel, with a pore size of 3.3 ± 1.4 µm, reducing peritendinous adhesion by serving as a dense barrier. Additionally, the SSAD-derived hydrogel exhibits antioxidant and antibacterial characteristics, which further contribute to the reduction of peritendinous adhesion. In vivo studies suggest that the SSAD-derived hydrogel reduces peritendinous adhesion, increases collagen fiber deposition, promotes cell proliferation, and improves the biomechanical properties of the regenerated tendons, indicating better functional restoration. The SSAD-derived bilayer hydrogel may be a feasible biomaterial for tendon repair in the future.
肌腱再生和减少腱周粘连仍然是主要的临床挑战。本研究通过采用一种独特的源自大鲵(Andrias davidianus)皮肤分泌物的水凝胶(SSAD)来应对这些挑战,并利用其生物效应、粘附性和可控制的微观结构。SSAD 衍生的水凝胶含有许多细胞因子,可促进肌腱愈合。在体外,SSAD 粉末的浸提液可促进肌腱干/祖细胞迁移。在体内,具有双层结构的 SSAD 衍生水凝胶具有很强的粘附性,可以在不缝合的情况下重新连接断裂的 SD 大鼠的跟腱。内层 SSAD 衍生水凝胶的孔径为 241.7±21.0μm,形成水凝胶的第一层以促进肌腱愈合,而外层 SSAD 衍生水凝胶的孔径为 3.3±1.4μm,作为致密屏障减少腱周粘连。此外,SSAD 衍生水凝胶具有抗氧化和抗菌特性,这进一步有助于减少腱周粘连。体内研究表明,SSAD 衍生水凝胶减少腱周粘连,增加胶原纤维沉积,促进细胞增殖,改善再生肌腱的生物力学性能,表明功能恢复更好。SSAD 衍生双层水凝胶可能是未来肌腱修复的一种可行生物材料。