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用共价交联介孔二氧化硅纳米粒子增强的细胞外基质模拟超分子水凝胶。

Extracellular matrix mimetic supramolecular hydrogels reinforced with covalent crosslinked mesoporous silica nanoparticles.

作者信息

Zengin Aygül, Hafeez Shahzad, Habibovic Pamela, Baker Matthew, van Rijt Sabine

机构信息

Department of Instructive Biomaterials Engineering, MERLN Institute for Technology-Inspired Regenerative Medicine, Maastricht University, P. O. Box 616, 6200 MD Maastricht, The Netherlands.

出版信息

J Mater Chem B. 2024 Dec 11;12(48):12577-12588. doi: 10.1039/d4tb00499j.

Abstract

The extracellular matrix (ECM) is a dynamic environment that is primarily built up from fibrous proteins (, elastins, fibronectins, collagens, and laminins) and plays a vital role in tissue regeneration processes. Therefore, the development of supramolecular hydrogels that can mimic the ECM's dynamicity and fibrous structure is of great interest in regenerative medicine. However, such hydrogels generally have weak mechanical properties and poor structural stability, which significantly limits their potential applications. To overcome this drawback, we developed a new type of hybrid network composed of supramolecular assemblies with covalent nanoparticle-based crosslinkers. The ECM mimetic hydrogels were created through UV-initiated thiol-ene crosslinking between norbornene functionalized benzene-1,3,5-tri carboxamide (NBTA) macromonomers and thiol functionalized mesoporous silica nanoparticles (MSN). We hypothesized that the MSN would improve the mechanical properties by crosslinking the NBTA supramolecular fibrous hydrogels. Notably, the covalent incorporation of MSNs did not disrupt the fibrous morphology of the resulting NBTA-MSN nanocomposites. Furthermore, these supramolecular nanocomposites demonstrated higher structural stability and elasticity compared to pristine NBTA hydrogels. Rheology studies showed that the mechanical properties of NBTA-MSN hydrogels could be tuned by adjusting MSN wt%. Interestingly, NBTA-MSN nanocomposites exhibited self-healing and injectability despite the covalent crosslinking of MSNs. studies confirmed that NBTA-MSN nanocomposites showed good cytocompatibility and maintained the viability of encapsulated MG63 cells. As a proof of concept, we also demonstrated that MSNs could act as ion reservoirs for calcium and phosphate within the hydrogel networks in addition to being covalent crosslinkers. Taken together, our work offers a promising strategy to create hybrid, biomimetic supramolecular nanocomposite materials for various applications such as injectable materials for bone tissue engineering, and reinforced bioinks for 3D printing applications.

摘要

细胞外基质(ECM)是一个动态环境,主要由纤维蛋白(弹性蛋白、纤连蛋白、胶原蛋白和层粘连蛋白)构成,在组织再生过程中起着至关重要的作用。因此,开发能够模拟ECM动态性和纤维结构的超分子水凝胶在再生医学中备受关注。然而,这类水凝胶通常机械性能较弱且结构稳定性较差,这显著限制了它们的潜在应用。为克服这一缺点,我们开发了一种新型的混合网络,该网络由具有基于共价纳米颗粒交联剂的超分子组装体组成。通过降冰片烯功能化的苯 -1,3,5- 三羧酰胺(NBTA)大分子单体与硫醇功能化的介孔二氧化硅纳米颗粒(MSN)之间的紫外光引发硫醇 - 烯交联反应,制备了ECM模拟水凝胶。我们推测MSN会通过交联NBTA超分子纤维水凝胶来改善机械性能。值得注意的是,MSN的共价掺入并未破坏所得NBTA - MSN纳米复合材料的纤维形态。此外,与原始NBTA水凝胶相比,这些超分子纳米复合材料表现出更高的结构稳定性和弹性。流变学研究表明,NBTA - MSN水凝胶的机械性能可通过调整MSN的重量百分比来调节。有趣的是,尽管MSN进行了共价交联,但NBTA - MSN纳米复合材料仍表现出自愈性和可注射性。 研究证实,NBTA - MSN纳米复合材料表现出良好的细胞相容性,并维持了封装的MG63细胞的活力。作为概念验证,我们还证明了MSN除了作为共价交联剂外,还可作为水凝胶网络中钙和磷酸盐的离子储存库。综上所述,我们的工作为创建用于各种应用的混合、仿生超分子纳米复合材料提供了一种有前景的策略,例如用于骨组织工程的可注射材料以及用于3D打印应用的增强生物墨水。

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