Faculty of Chemistry, Jagiellonian University, Gronostajowa 2, 30-387 Kraków, Poland.
Faculty of Physics and Applied Computer Science, AGH University of Science and Technology, Mickiewicza 30, 30-059 Kraków, Poland.
ACS Appl Mater Interfaces. 2021 Oct 27;13(42):49762-49779. doi: 10.1021/acsami.1c17472. Epub 2021 Oct 13.
Novel multifunctional biomimetic injectable hybrid systems were synthesized. The physicochemical as well as biological in vitro and in vivo tests demonstrated that they are promising candidates for bone tissue regeneration. The hybrids are composed of a biopolymeric collagen/chitosan/hyaluronic acid matrix and amine group-functionalized silica particles decorated with apatite to which the alendronate molecules were coordinated. The components of these systems were integrated and stabilized by cross-linking with genipin, a compound of natural origin. They can be precisely injected into the diseased tissue in the form of a viscous sol or a partially cross-linked hydrogel, where they can serve as scaffolds for locally controlled bone tissue regeneration/remodeling by supporting the osteoblast formation/proliferation and maintaining the optimal osteoclast level. These materials lack systemic toxicity. They can be particularly useful for the repair of small osteoporotic bone defects.
新型多功能仿生可注射混合系统被合成。物理化学以及体外和体内生物测试表明,它们是骨组织再生的有前途的候选物。这些混合系统由具有生物功能性的聚合物胶原/壳聚糖/透明质酸基质和用磷灰石修饰的胺基功能化的硅颗粒组成,其中配位了阿仑膦酸钠分子。这些系统的成分通过与栀子苷(一种天然来源的化合物)交联而被整合和稳定。它们可以以粘性溶胶或部分交联水凝胶的形式精确地注射到患病组织中,在那里它们可以作为局部控制骨组织再生/重塑的支架,通过支持成骨细胞的形成/增殖和保持最佳的破骨细胞水平。这些材料没有全身毒性。它们对于修复小的骨质疏松性骨缺损特别有用。