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从涂有氧化石墨烯的基底递送来促进骨再生的治疗性蛋白质。

Delivery of a therapeutic protein for bone regeneration from a substrate coated with graphene oxide.

机构信息

School of Chemical & Biological Engineering, Seoul National University, Seoul 151-744, Republic of Korea.

出版信息

Small. 2013 Dec 9;9(23):4051-60. doi: 10.1002/smll.201300571. Epub 2013 Jul 10.

Abstract

The therapeutic efficacy of drugs often depends on the drug delivery carrier. For efficient delivery of therapeutic proteins, delivery carriers should enable the loading of large doses, sustained release, and retention of the bioactivity of the therapeutic proteins. Here, it is demonstrated that graphene oxide (GO) is an efficient carrier for delivery of therapeutic proteins. Titanium (Ti) substrates are coated with GO through layer-by-layer assembly of positively (GO-NH₃⁺) and negatively (GO-COO⁻) charged GO sheets. Subsequently, a therapeutic protein (bone morphogenetic protein-2, BMP-2) is loaded on the GO-coated Ti substrate with the outermost coating layer of GO-COO⁻ (Ti/GO⁻). The GO coating on Ti substrate enables loading of large doses and the sustained release of BMP-2 with preservation of the structure and bioactivity of the drug. The extent of in vitro osteogenic differentiation of human bone marrow-derived mesenchymal stem cells is higher when they are cultured on Ti/GO- carrying BMP-2 than when they are cultured on Ti with BMP-2. Eight weeks after implantation in mouse models of calvarial defects, the Ti/GO-/BMP-2 implants show more robust new bone formation compared with Ti, Ti/GO-, or Ti/BMP-2 implants. Therefore, GO is an effective carrier for the controlled delivery of therapeutic proteins, such as BMP-2, which promotes osteointegration of orthopedic or dental Ti implants.

摘要

药物的治疗效果通常取决于药物输送载体。为了高效输送治疗性蛋白,输送载体应能够实现大剂量装载、持续释放并保持治疗性蛋白的生物活性。在这里,证明了氧化石墨烯(GO)是一种有效的治疗性蛋白输送载体。Ti 基底通过带正电荷(GO-NH₃⁺)和带负电荷(GO-COO⁻)的 GO 片层层组装被 GO 覆盖。随后,治疗性蛋白(骨形态发生蛋白-2,BMP-2)通过最外层的 GO-COO⁻(Ti/GO⁻)涂层装载到 GO 覆盖的 Ti 基底上。Ti 基底上的 GO 涂层能够实现大剂量装载和 BMP-2 的持续释放,同时保持药物的结构和生物活性。当人骨髓间充质干细胞在携带 BMP-2 的 Ti/GO-上培养时,其体外成骨分化程度高于在携带 BMP-2 的 Ti 上培养时。在颅骨缺损小鼠模型中植入 8 周后,与 Ti、Ti/GO-或 Ti/BMP-2 植入物相比,Ti/GO-/BMP-2 植入物显示出更强的新骨形成。因此,GO 是一种有效的治疗性蛋白(如 BMP-2)的控释载体,可促进骨科或牙科 Ti 植入物的骨整合。

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