Faculty of Chemistry, Jagiellonian University, Gronostajowa 2, 30-387 Kraków, Poland; Doctoral School of Exact and Natural Sciences, Jagiellonian University, Kraków, Poland.
Faculty of Chemistry, Jagiellonian University, Gronostajowa 2, 30-387 Kraków, Poland.
Int J Biol Macromol. 2024 Jun;271(Pt 2):132675. doi: 10.1016/j.ijbiomac.2024.132675. Epub 2024 Jun 6.
Novel hydrogel-based multifunctional systems prepared utilizing photocrosslinking and freeze-drying processes (PhotoCross/Freeze-dried) dedicated for bone tissue regeneration are presented. Fabricated materials, composed of methacrylated gelatin, chitosan, and chondroitin sulfate, possess interesting features including bioactivity, biocompatibility, as well as antibacterial activity. Importantly, their degradation and swellability might be easily tuned by playing with the biopolymeric content in the photocrosllinked systems. To broaden the potential application and deliver the therapeutic features, mesoporous silica particles functionalized with methacrylate moieties decorated with hydroxyapatite and loaded with the antiosteoporotic drug, alendronate, (MSP-MA-HAp-ALN) were dispersed within the biopolymeric sol and photocrosslinked. It was demonstrated that the obtained composites are characterized by a significantly extended degradation time, ensuring optimal conditions for balancing hybrids removal with the deposition of fresh bone. We have shown that attachment of MSP-MA-HAp-ALN to the polymeric matrix minimizes the initial burst effect and provides a prolonged release of ALN (up to 22 days). Moreover, the biological evaluation in vitro suggested the capability of the resulted systems to promote bone remodeling. Developed materials might potentially serve as scaffolds that after implantation will fill up bone defects of various origin (osteoporosis, tumour resection, accidents) providing the favourable conditions for bone regeneration and supporting the infections' treatment.
介绍了一种利用光交联和冷冻干燥工艺制备的新型水凝胶基多功能系统(PhotoCross/Freeze-dried),专门用于骨组织再生。所制备的材料由甲基丙烯酰化明胶、壳聚糖和硫酸软骨素组成,具有生物活性、生物相容性和抗菌活性等有趣的特性。重要的是,通过调整光交联系统中生物聚合物的含量,可以轻松调节它们的降解和溶胀性能。为了拓宽潜在的应用范围并提供治疗特性,将功能化有甲基丙烯酰基的介孔硅粒子用羟基磷灰石修饰并负载抗骨质疏松药物阿仑膦酸钠(MSP-MA-HAp-ALN)分散在生物聚合物溶胶中并进行光交联。结果表明,所得到的复合材料具有明显延长的降解时间,确保了在平衡杂交体去除与新骨沉积之间的最佳条件。我们已经证明,将 MSP-MA-HAp-ALN 附着到聚合物基质上可以最小化初始突释效应,并提供长达 22 天的 ALN 缓释。此外,体外生物学评估表明,所得到的系统具有促进骨重塑的能力。开发的材料可能潜在地用作支架,在植入后将填充各种来源的骨缺损(骨质疏松症、肿瘤切除、事故),为骨再生提供有利条件,并支持感染的治疗。