CIRIMAT Carnot Institute, Université de Toulouse,CNRS/INPT/UPS, ENSIACET, 4 Allée Emile Monso, BP 44362, 31030 Toulouse Cedex 04, France.
Biomed Mater. 2012 Oct;7(5):054108. doi: 10.1088/1748-6041/7/5/054108. Epub 2012 Sep 12.
Nanocrystalline apatites (NCA) are the inorganic components of mineralized tissues and they have been recently proposed as biomaterials for drug delivery systems. Bisphosphonates (BPs) are currently the reference drugs used to treat diseases involving bone disorders such as osteoporosis. Nevertheless, the interaction phenomena between BP molecules and apatite nanocrystals of bone are not well understood. Therefore, the adsorption characteristics have been examined and cellular activity of tiludronate molecules on NCA as models of bone mineral has been investigated. Adsorption experiments of tiludronate onto NCA were carried out and revealed a Langmuir-type adsorption isotherm. The uptake of tiludronate molecules is associated with a release of phosphate ions, indicating that the main reaction is an ion exchange process involving surface anions. The results evidence the strong affinity of BP molecules for the apatitic surface. The interactions of NCA-tiludronate associations with human osteoprogenitor cells and human bone marrow stromal cells do not reveal any cytotoxicity and evidence the activity of adsorbed tiludronate molecules. Moreover, an evolution of the physico-chemical characteristics of the apatitic substrate during biological study was observed, highlighting the existence of dynamic interactions. This work contributes to clarifying the reaction mechanisms between BPs and biomimetic apatites.
纳米晶磷灰石(NCA)是矿化组织的无机成分,最近它们被提议作为药物输送系统的生物材料。双膦酸盐(BPs)是目前用于治疗涉及骨疾病(如骨质疏松症)的参考药物。然而,BP 分子与骨的磷灰石纳米晶体之间的相互作用现象尚未得到很好的理解。因此,研究了替鲁膦酸分子在 NCA 上的吸附特性和细胞活性,以 NCA 作为骨矿物质模型。进行了替鲁膦酸在 NCA 上的吸附实验,结果表明吸附等温线呈 Langmuir 型。替鲁膦酸分子的摄取与磷酸根离子的释放有关,表明主要反应是涉及表面阴离子的离子交换过程。结果表明 BP 分子对磷灰石表面具有很强的亲和力。NCA-替鲁膦酸盐与人类成骨前体细胞和人骨髓基质细胞的相互作用没有显示出任何细胞毒性,并证明了吸附的替鲁膦酸分子的活性。此外,在生物学研究过程中观察到磷灰石基质的物理化学特性的演变,突出了动态相互作用的存在。这项工作有助于澄清 BPs 与仿生磷灰石之间的反应机制。