La Gatta Annalisa, Tirino Virginia, Cammarota Marcella, La Noce Marcella, Stellavato Antonietta, Pirozzi Anna Virginia Adriana, Portaccio Marianna, Diano Nadia, Laino Luigi, Papaccio Gianpaolo, Schiraldi Chiara
Dipartimento di Medicina Sperimentale, Università della Campania "Luigi Vanvitelli", via L. De Crecchio 7, Naples 80138, Italy.
Dipartimento Multidisciplinare di Specialita' Medico-Chirurgiche e Odontoiatriche, via Luigi De Crecchio, 6, Napoli 80138, Italy.
Regen Biomater. 2021 Jun 12;8(3):rbaa052. doi: 10.1093/rb/rbaa052. eCollection 2021 Jun.
Gelatin hydrogels by microbial-transglutaminase crosslinking are being increasingly exploited for tissue engineering, and proved high potential in bone regeneration. This study aimed to evaluate, for the first time, the combination of enzymatically crosslinked gelatin with hyaluronan and the newly developed biotechnological chondroitin in enhancing osteogenic potential. Gelatin enzymatic crosslinking was carried out in the presence of hyaluronan or of a hyaluronan-chondroitin mixture, obtaining semi-interpenetrating gels. The latter proved lower swelling extent and improved stiffness compared to the gelatin matrix alone, whilst maintaining high stability. The heteropolysaccharides were retained for 30 days in the hydrogels, thus influencing cell response over this period. To evaluate the effect of hydrogel composition on bone regeneration, materials were seeded with human dental pulp stem cells and osteogenic differentiation was assessed. The expression of osteocalcin (OC) and osteopontin (OPN), both at gene and protein level, was evaluated at 7, 15 and 30 days of culture. Scanning electron microscopy (SEM) and two-photon microscope observations were performed to assess bone-like extracellular matrix (ECM) deposition and to observe the cell penetration depth. In the presence of the heteropolysaccharides, OC and OPN expression was upregulated and a higher degree of calcified matrix formation was observed. Combination with hyaluronan and chondroitin improved both the biophysical properties and the biological response of enzymatically crosslinked gelatin, fastening bone deposition.
通过微生物转谷氨酰胺酶交联制备的明胶水凝胶在组织工程中的应用越来越广泛,并在骨再生方面显示出巨大潜力。本研究首次旨在评估酶交联明胶与透明质酸以及新开发的生物技术硫酸软骨素组合对增强成骨潜力的影响。在透明质酸或透明质酸 - 硫酸软骨素混合物存在下进行明胶酶交联,得到半互穿凝胶。与单独的明胶基质相比,后者显示出较低的溶胀程度和更高的硬度,同时保持高稳定性。杂多糖在水凝胶中保留30天,从而在此期间影响细胞反应。为了评估水凝胶组成对骨再生的影响,将材料接种人牙髓干细胞并评估成骨分化。在培养的第7、15和30天评估骨钙素(OC)和骨桥蛋白(OPN)在基因和蛋白质水平的表达。进行扫描电子显微镜(SEM)和双光子显微镜观察以评估类骨细胞外基质(ECM)沉积并观察细胞穿透深度。在存在杂多糖的情况下,OC和OPN表达上调,并且观察到更高程度的钙化基质形成。与透明质酸和硫酸软骨素的组合改善了酶交联明胶的生物物理性质和生物学反应,加速了骨沉积。