Division of Polymeric Medical Devices, Biomedical Technology Wing, Sree Chitra Tirunal Institute for Medical Sciences and Technology, Trivandrum, Kerala, India.
Department of Biochemistry, University of Kerala, Kariavattom Campus, Kerala, India.
Carbohydr Polym. 2020 Apr 15;234:115902. doi: 10.1016/j.carbpol.2020.115902. Epub 2020 Jan 26.
Injectable in situ gelling hydrogels are viable treatment options for meniscal injuries occurring in athletes. The present study aims to develop an injectable hydrogel via borax complexation of oxidized alginate, followed by a self-crosslinking reaction with gelatin through a Schiff's base reaction. Gelation kinetics and degree of crosslinking could be controlled by changing the concentration of components and the formation of Schiff ;'s base formation was confirmed by Raman spectroscopy. The injectable alginate dialdehyde-gelatin (15ADA20G) hydrogel showed 423 ± 20 % water uptake, had an average pore size of 48 μm and compressive strength 295 ± 32 kPa. Phase contrast images, scanning electron micrographs and actin staining depicted adhesion, profuse proliferation, and distribution of fibrochondrocytes on the hydrogel demonstrating its cytocompatibility. Application of hydrogel at the pig meniscal tear ex vivo showed good integration with the host meniscal tissue. Further, the histology of 15ADA20G hydrogel filled meniscus showed retention of hydrogel in the close proximity of meniscal tear even after 3days in culture. The self-crosslinking injectable hydrogel offers a niche for the growth of fibrochondrocytes.
可注射原位凝胶是治疗运动员半月板损伤的可行治疗选择。本研究旨在通过硼酸钠络合氧化海藻酸钠,然后通过席夫碱反应与明胶进行自交联反应来开发可注射水凝胶。通过改变成分的浓度和席夫碱形成,可以控制凝胶化动力学和交联程度。通过拉曼光谱证实了可注射海藻酸钠二醛-明胶(15ADA20G)水凝胶的形成。该水凝胶的吸水率为 423±20%,平均孔径为 48μm,压缩强度为 295±32kPa。相差显微镜图像、扫描电子显微镜和肌动蛋白染色显示水凝胶上黏附、大量增殖和纤维软骨细胞的分布,表明其细胞相容性。水凝胶在猪半月板撕裂的体外应用表明其与宿主半月板组织具有良好的整合性。此外,在培养 3 天后,填充有 15ADA20G 水凝胶的半月板的组织学显示水凝胶保留在半月板撕裂的附近。自交联可注射水凝胶为纤维软骨细胞的生长提供了一个小生境。