Silingardi Francesca, Pagani Stefania, Gambardella Alessandro, Giavaresi Gianluca, Bigi Adriana, Boanini Elisa
Department of Chemistry ''Giacomo Ciamician", University of Bologna, Via Selmi 2, 40126 Bologna, Italy.
Complex Structure Surgical Sciences and Technologies, IRCCS Istituto Ortopedico Rizzoli, Bologna, Via di Barbiano 1/10, 40136 Bologna, Italy.
Pharmaceutics. 2023 Apr 27;15(5):1344. doi: 10.3390/pharmaceutics15051344.
Curcumin has numerous biological activities and pharmaceutical applications related to its ability to inhibit reactive oxygen species. Herein, strontium-substituted monetite (SrDCPA) and strontium-substituted brushite (SrDCPD) were synthesized and further functionalized with curcumin with the aim to develop materials that combine the anti-oxidant properties of the polyphenol, the beneficial role of strontium toward bone tissue, and the bioactivity of calcium phosphates. Adsorption from hydroalcoholic solution increases with time and curcumin concentration, up to about 5-6 wt%, without affecting the crystal structure, morphology, and mechanical response of the substrates. The multi-functionalized substrates exhibit a relevant radical scavenging activity and a sustained release in phosphate buffer. Cell viability, morphology, and expression of the most representative genes were tested for osteoclast seeded in direct contact with the materials and for osteoblast/osteoclast co-cultures. The materials at relatively low curcumin content (2-3 wt%) maintain inhibitory effects on osteoclasts and support the colonization and viability of osteoblasts. The expressions of Alkaline Phosphatase (), collagen type I alpha 1 chain (), and osteocalcin () suggest that curcumin reduces the osteoblast differentiation state but yields encouraging osteoprotegerin/receptor activator for the NFkB factor ligand () ratio.
姜黄素具有多种与抑制活性氧能力相关的生物活性和药物应用。在此,合成了锶取代的磷酸一钙(SrDCPA)和锶取代的透钙磷石(SrDCPD),并用姜黄素进一步功能化,目的是开发出结合了多酚抗氧化特性、锶对骨组织的有益作用以及磷酸钙生物活性的材料。从水醇溶液中的吸附量随时间和姜黄素浓度增加,最高可达约5 - 6 wt%,且不影响底物的晶体结构、形态和力学响应。多功能化底物表现出相关的自由基清除活性以及在磷酸盐缓冲液中的缓释性能。测试了与材料直接接触接种的破骨细胞以及成骨细胞/破骨细胞共培养物的细胞活力、形态和最具代表性基因的表达。姜黄素含量相对较低(2 - 3 wt%)的材料对破骨细胞保持抑制作用,并支持成骨细胞的定植和活力。碱性磷酸酶()、I型胶原蛋白α1链()和骨钙素()的表达表明,姜黄素降低了成骨细胞的分化状态,但产生了令人鼓舞的骨保护素/核因子κB受体活化因子配体()比值。