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载雷洛昔芬/雷洛昔芬-聚乙二醇轭合物的微球:一种向成骨细胞递药的新策略。

Raloxifene-/raloxifene-poly(ethylene glycol) conjugate-loaded microspheres: A novel strategy for drug delivery to bone forming cells.

机构信息

Department of Engineering Sciences, Middle East Technical University, Ankara 06800, Turkey.

Department of Engineering Sciences, Middle East Technical University, Ankara 06800, Turkey; BIOMATEN, Center of Excellence in Biomaterials and Tissue Engineering, Middle East Technical University, Ankara 06800, Turkey.

出版信息

Int J Pharm. 2016 Aug 20;510(1):168-83. doi: 10.1016/j.ijpharm.2016.06.053. Epub 2016 Jun 23.

Abstract

Raloxifene (Ral)- or Ral-poly(ethylene glycol) (PEG) conjugate-loaded microspheres were prepared with poly(ε-caprolactone) (PCL) alone or with the blend of PCL and poly(D,L-lactide-co-glycolide) (PLGA) to provide controlled and sustained Ral release systems. Benefits of these formulations were evaluated on bone regeneration. Ral-loaded PCL microspheres had the highest encapsulation efficiency (70.7±5.0%) among all groups owing to high hydrophobic natures of both Ral and PCL. Cumulative amount of Ral released from Ral-PEG (1:2) conjugate-loaded PCL:PLGA (1:1) microspheres (26.9±8.8%) after 60days was significantly higher relative to other microsphere groups. This finding can be ascribed to two factors: i) Ral-PEG conjugation, resulting in increased water-solubility of Ral and increased degradation rates of PCL and PLGA with enhanced water penetration into the polymer matrix, and ii) usage of PLGA besides PCL in the carrier composition to benefit from less hydrophobic and faster degradable nature of PLGA in comparison to PCL. In vitro cytotoxicity studies performed using adipose-derived mesenchymal stem cells (ASCs) demonstrated that all microspheres were non-toxic. Evaluation of intensities of Alizarin red S staining conducted after 7 and 14days of incubation of ASCs in the release media of the different microsphere groups was performed with Image J analysis software. At day 7, it was observed that the matrix deposited by the cells cultivated in the release medium of Ral-PEG (1:2) conjugate-loaded PCL:PLGA (1:1) microspheres had significantly higher mineral content (26.78±6.23%) than that of the matrix deposited by the cells cultivated in the release media of the other microsphere groups except Ral-loaded PCL:PLGA (1:1) microsphere group. At day 14, Ral release from Ral-PEG (1:2) conjugate-loaded PCL:PLGA (1:1) microsphere group resulted with significantly higher mineralization of the matrix (32.31±1.85%) deposited by ASCs in comparison to all other microsphere groups. Alizarin red S staining results eventuated in parallel with the release results. Thus, it can be suggested that Ral-PEG (1:2) conjugate-loaded PCL:PLGA (1:1) microsphere formulation has a potential as an effective controlled drug delivery system for bone regeneration.

摘要

用聚己内酯 (PCL) 单独或与聚 (D,L-乳酸-共-乙醇酸) (PLGA) 的混合物制备了雷洛昔芬 (Ral)-或 Ral-聚乙二醇 (PEG) 缀合物负载的微球,以提供控制和持续释放 Ral 的系统。这些配方的益处已在骨再生方面得到评估。由于 Ral 和 PCL 都具有较高的疏水性,因此 Ral 负载的 PCL 微球具有所有组中最高的包封效率 (70.7±5.0%)。在 60 天后,Ral-PEG(1:2)缀合物负载的 PCL:PLGA(1:1)微球中释放的 Ral 的累积量 (26.9±8.8%)明显高于其他微球组。这一发现可以归因于两个因素:i) Ral-PEG 缀合,导致 Ral 的水溶性增加和 PCL 和 PLGA 的降解速率增加,从而增强了水渗透到聚合物基质中,ii) 在载体组成中使用 PLGA 除了 PCL 之外,以受益于与 PCL 相比,PLGA 较低的疏水性和更快的降解性。使用脂肪间充质干细胞 (ASCs) 进行的体外细胞毒性研究表明,所有微球均无毒性。使用 Image J 分析软件对在不同微球组的释放介质中孵育 7 天和 14 天后 ASCs 的茜素红 S 染色强度进行评估。在第 7 天,观察到在 Ral-PEG(1:2)缀合物负载的 PCL:PLGA(1:1)微球的释放介质中培养的细胞所形成的基质的矿物质含量 (26.78±6.23%)明显高于其他微球组的释放介质中培养的细胞所形成的基质的矿物质含量,除了 Ral 负载的 PCL:PLGA(1:1)微球组。在第 14 天,与所有其他微球组相比,Ral-PEG(1:2)缀合物负载的 PCL:PLGA(1:1)微球组中 Ral 的释放导致 ASCs 形成的基质的矿化程度 (32.31±1.85%)显著更高。茜素红 S 染色结果与释放结果平行。因此,可以认为 Ral-PEG(1:2)缀合物负载的 PCL:PLGA(1:1)微球制剂具有作为骨再生有效控制药物递送系统的潜力。

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