Biomaterials in Medicinal Chemistry Laboratory, Department of Natural Products Chemistry, School of Chemistry, Madurai Kamaraj University, Madurai, India.
Biomaterials in Medicinal Chemistry Laboratory, Department of Natural Products Chemistry, School of Chemistry, Madurai Kamaraj University, Madurai, India.
Nanomedicine. 2017 Nov;13(8):2661-2669. doi: 10.1016/j.nano.2017.07.017. Epub 2017 Aug 8.
Minerals substituted apatite (M-HA) nanoparticles were prepared by the precipitation of minerals and phosphate reactants in choline chloride-Thiourea (ChCl-TU) deep eutectic solvent (DESs) as a facile and green way approach. After preparation of nanoparticles (F-M-HA (F=Fresh solvent)), the DESs was recovered productively and reprocess for the preparation of R-M-HA nanoparticles (R=Recycle solvent).The functional groups, phase, surface texture and the elemental composition of the M-HA nanoparticles were evaluated by advance characterization methods. The physicochemical results of the current work authoritative the successful uses of the novel (ChCl-TU) DESs as eco-friendly recuperate and give the medium for the preparation of M-HA nanoparticles. Moreover, the as-synthesized both M-HA nanoparticles exhibit excellent biocompatibility, consisting of cell co-cultivation and cell adhesion, in vivo according to surgical implantation of Wistar rats.
采用矿物取代磷灰石(M-HA)纳米粒子的方法是在胆碱氯化物-硫脲(ChCl-TU)深共熔溶剂(DESs)中通过沉淀矿物和磷酸盐反应物来制备的,这是一种简便且绿色的方法。纳米粒子制备完成后(F-M-HA(F=新鲜溶剂)),DESs 可以被回收并重新处理以制备 R-M-HA 纳米粒子(R=循环溶剂)。采用先进的表征方法对 M-HA 纳米粒子的官能团、相、表面结构和元素组成进行了评估。本工作的物理化学结果证实了新型(ChCl-TU)DESs 可作为环保回收溶剂的成功应用,并为 M-HA 纳米粒子的制备提供了介质。此外,根据 Wistar 大鼠的手术植入,所合成的两种 M-HA 纳米粒子均表现出良好的生物相容性,包括细胞共培养和细胞黏附。