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自矿化的富钙甲基丙烯酰化凝胶多糖珠用于骨组织工程。

Self-mineralizing Ca-enriched methacrylated gellan gum beads for bone tissue engineering.

机构信息

3B's Research Group, I3Bs - Research Institute on Biomaterials, Biodegradables and Biomimetics, University of Minho, Headquarters of the European Institute of Excellence on Tissue Engineering and Regenerative Medicine, AvePark, Parque de Ciência e Tecnologia, Zona Industrial da Gandra, 4805-017 Barco, Guimarães, Portugal; ICVS/3B's - PT Government Associate Laboratory, Braga/Guimarães, Portugal.

Immunology, Centro de Investigaciones Biomédicas (CINBIO) (Centro Singular de Investigación de Galicia 2016-2019) & Galicia-Sur Health Research Institute (IIS-GS), University Campus, Vigo, Pontevedra 36310, Spain.

出版信息

Acta Biomater. 2019 Jul 15;93:74-85. doi: 10.1016/j.actbio.2019.01.053. Epub 2019 Jan 29.

Abstract

In this study, methacrylated gellan-gum (GG-MA) heteropolysaccharide is proposed as a hydrogel for drug delivery and bone tissue engineering applications. Calcium-enriched beads obtained from the crosslinking of 1% (w/v) GG-MA solutions with 0.1 MCaCl were investigated, considering their intrinsic capacity to promote self-mineralization by ion binding and deposition. Indeed, when immersed in a physiological environment, the Ca-enriched beads promoted the development of a bone-like apatite layer, as confirmed by EDS and XRD chemical analysis. Additionally, the mild production process is compatible with drugs incorporation and release. After encapsulation, Dextran with different molecular weights as well as Dexamethasone 21-phosphate were efficiently released to the surrounding environment. The engineered system was also evaluated considering its biocompatibility, by means of qualitative determination of total complement activation, macrophage proliferation, cytokine release and in vitro cell culture. These experiments showed that the developed hydrogels may not stimulate a disproportionate pro-inflammatory reaction once transplanted. At last, when implanted subcutaneously in CD1 male mice up to 8 weeks, the beads were completely calcified, and no inflammatory reaction was observed. Summing up, these results show that calcium-enriched GG-MA hydrogel beads hold great potential as news tools for bone tissue regeneration and local drug delivery applications. STATEMENT OF SIGNIFICANCE: This work describes a low-cost and straightforward strategy to prepare bioactive methacrylated gellan gum (GG-MA) hydrogels, which can be used as drug delivery systems. GG-MA is a highly anionic polymer, that can be crosslinked with divalent ions, as calcium. Taking advantage of this feature, it was possible to prepare Ca-enriched GG-MA hydrogel beads. These beads display a bioactive behavior, since they promote apatite deposition when placed in physiological conditions. Studies on the immune response suggest that the developed beads do not trigger severe immune responses. Importantly, the mild processing method render these beads compliant with drug delivery strategies, paving the way for the application of dual-functional materials on bone tissue engineering.

摘要

在这项研究中,提议将甲基丙烯酰化的结冷胶(GG-MA)杂多糖用作药物输送和骨组织工程应用的水凝胶。考虑到其通过离子结合和沉积促进自矿化的固有能力,研究了用 0.1 M CaCl 交联 1%(w/v) GG-MA 溶液获得的富含钙的珠。实际上,当浸入生理环境中时,富含钙的珠促进了类骨质磷灰石层的形成,这一点通过 EDS 和 XRD 化学分析得到了证实。此外,温和的生产工艺与药物的掺入和释放兼容。封装后,不同分子量的葡聚糖和地塞米松 21-磷酸有效地释放到周围环境中。通过定性测定总补体激活、巨噬细胞增殖、细胞因子释放和体外细胞培养,还评估了工程系统的生物相容性。这些实验表明,一旦移植,所开发的水凝胶可能不会引起不成比例的促炎反应。最后,当将珠状物皮下植入 CD1 雄性小鼠中长达 8 周时,珠完全钙化,并且未观察到炎症反应。总而言之,这些结果表明,富含钙的 GG-MA 水凝胶珠作为骨组织再生和局部药物输送应用的新型工具具有巨大潜力。

意义声明

本工作描述了一种低成本且简单的策略来制备生物活性甲基丙烯酰化结冷胶(GG-MA)水凝胶,可将其用作药物输送系统。GG-MA 是一种高度阴离子聚合物,可与二价离子交联,如钙。利用这一特性,有可能制备富含钙的 GG-MA 水凝胶珠。这些珠表现出生物活性行为,因为它们在放置在生理条件下时会促进磷灰石沉积。关于免疫反应的研究表明,所开发的珠不会引发严重的免疫反应。重要的是,温和的处理方法使这些珠符合药物输送策略,为在骨组织工程中应用双功能材料铺平了道路。

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