Instituto De Cerámica y Vidrio, CSIC, c/Kelsen 5, 28049, Madrid, Spain; Department of Life Science Engineering, Faculty of New Sciences and Technologies, University of Tehran, Tehran, Iran.
Department of Life Science Engineering, Faculty of New Sciences and Technologies, University of Tehran, Tehran, Iran.
Colloids Surf B Biointerfaces. 2020 Jun;190:110944. doi: 10.1016/j.colsurfb.2020.110944. Epub 2020 Mar 4.
Among strontium-based drugs, the Strontium ranelate (SrR) is a divalent strontium salt of ranelic acid which has an overall effect over the bone microarchitecture improvement. However, some findings reveal that the SrR affects in an opposite manner to the cell proliferation and osteoblastic differentiation, based on its concentration. Consequently, its release should be controlled. The incorporation of Halloysite nanotubes (HNT) as nanocarriers of SrR, into gelatine (GN) coatings, tailors the release of this anabolic bone-forming and anti-catabolic agent to stimulate bone growth. In fact, as-prepared GN/HNT-SrR coatings release 100 % SrR in phosphate buffered saline (PBS) within 21 days, and cellular studies of the nanocomposite coatings (MTT, Alkaline Phosphatase activity (ALP) and Calcium deposition assay) confirm the valuable bio-performance of these composite coatings to enhanced bone regeneration. In the present manuscript, suspensions with HNT/GN weight ratio of 0.5 are formulated to coat AISI 316 L stainless steel foils by Electrophoretic Deposition (EPD). Zeta potential determination is used to stablish the drug loading (HNT-SrR) by electrostatic interaction, as well as to optimize the dispersion of bare HNT and HNT SrR-loaded in a GN aqueous solution. Polyethilenimnine (PEI) is used as stabilizer to buffer the suspension media, assure cargo-drug dispersion and sequential release, while the thermal gelling of the suspension controls and step up the coating formation during EPD.
在锶类药物中,雷尼酸锶(SrR)是雷尼酸的二价锶盐,对改善骨微观结构有整体作用。然而,一些研究结果表明,根据其浓度,SrR 会对细胞增殖和成骨细胞分化产生相反的影响。因此,应该控制其释放。将埃洛石纳米管(HNT)作为 SrR 的纳米载体掺入明胶(GN)涂层中,可以控制这种促骨形成和抗分解代谢的药物的释放,以刺激骨生长。实际上,在 21 天内,制备的 GN/HNT-SrR 涂层在磷酸盐缓冲盐水(PBS)中释放了 100%的 SrR,而对纳米复合涂层(MTT、碱性磷酸酶活性(ALP)和钙沉积测定)的细胞研究证实了这些复合涂层在增强骨再生方面的有价值的生物性能。在本手稿中,通过电泳沉积(EPD)将 HNT/GN 重量比为 0.5 的悬浮液涂覆在 AISI 316L 不锈钢箔上。通过静电相互作用确定 Zeta 电位来确定药物负载(HNT-SrR),并优化裸 HNT 和负载 SrR 的 HNT 在 GN 水溶液中的分散。聚乙稀亚胺(PEI)用作稳定剂来缓冲悬浮液介质,确保货物药物的分散和顺序释放,而悬浮液的热凝胶化控制并促进 EPD 期间的涂层形成。