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基于纳米片的超分子水凝胶分级共递送辛伐他汀和脱矿骨基质促进骨生成。

Co-delivery of simvastatin and demineralized bone matrix hierarchically from nanosheet-based supramolecular hydrogels for osteogenesis.

作者信息

Zhang Xiao, Fan Jiabing, Chen Chen, Aghaloo Tara, Lee Min

机构信息

Department of Pharmacy, Second Clinical Medical College, Shanxi Medical University, Taiyuan, Shanxi 030001, P. R. China.

Division of Advanced Prosthodontics, University of California at Los Angeles, 10833 Le Conte Avenue, Los Angeles, California 90095, USA.

出版信息

J Mater Chem B. 2021 Sep 29;9(37):7741-7750. doi: 10.1039/d1tb01256h.

Abstract

Supramolecular hydrogels are widely used as 3D scaffolds and delivery platforms in tissue engineering applications. However, hydrophobic therapeutic agents exhibit weak compatibility in hydrogel scaffolds along with aggregation and precipitation. Herein, simvastatin drugs used as BMP-2 stimulators are encapsulated into the layer space of LAPONITE® electrostatic interactions and ion exchange efficiently, and supramolecular hydrogels could be fabricated with a self-healing, injectable and sustained drug release nature. Hydrogels encapsulated with 10 μg mL simvastatin drug show good osteogenic differentiation . Moreover, the loading of demineralized bone matrix particles could enhance the capacity for osteogenesis improving the expression of BMP-2 synergistically. The integrated hydrogels could be implanted into cranial defect sites for bone regeneration . This work provides the first demonstration of molecular and supramolecular engineering of hydrogels to load osteoinductive agents hierarchically for bone regeneration, contributing to the development of a brand-new strategy for dealing with compatibility between scaffolds and osteogenic agents.

摘要

超分子水凝胶在组织工程应用中被广泛用作三维支架和递送平台。然而,疏水性治疗剂在水凝胶支架中的相容性较差,同时会发生聚集和沉淀。在此,用作骨形态发生蛋白-2(BMP-2)刺激剂的辛伐他汀药物通过静电相互作用和离子交换有效地封装到锂皂石的层间空间中,并且可以制备具有自愈、可注射和持续药物释放特性的超分子水凝胶。用10μg/mL辛伐他汀药物封装的水凝胶显示出良好的成骨分化。此外,脱矿骨基质颗粒的负载可以增强成骨能力,协同提高BMP-2的表达。这种集成水凝胶可以植入颅骨缺损部位用于骨再生。这项工作首次展示了水凝胶的分子和超分子工程,用于分层负载骨诱导剂以促进骨再生,为解决支架与成骨剂之间的相容性问题提供了全新的策略。

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