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用于组织工程应用的可注射透明质酸/纤维素纳米晶体生物纳米复合水凝胶的研制

Development of Injectable Hyaluronic Acid/Cellulose Nanocrystals Bionanocomposite Hydrogels for Tissue Engineering Applications.

作者信息

Domingues Rui M A, Silva Marta, Gershovich Pavel, Betta Sefano, Babo Pedro, Caridade Sofia G, Mano João F, Motta Antonella, Reis Rui L, Gomes Manuela E

机构信息

†3B's Research Group - Biomaterials, Biodegradables and Biomimetics, Department of Polymer Engineering, 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 Associated Laboratory, 4805-017 Braga/Guimarães, Portugal.

出版信息

Bioconjug Chem. 2015 Aug 19;26(8):1571-81. doi: 10.1021/acs.bioconjchem.5b00209. Epub 2015 Jul 20.

Abstract

Injectable hyaluronic acid (HA)-based hydrogels compose a promising class of materials for tissue engineering and regenerative medicine applications. However, their limited mechanical properties restrict the potential range of application. In this study, cellulose nanocrystals (CNCs) were employed as nanofillers in a fully biobased strategy for the production of reinforced HA nanocomposite hydrogels. Herein we report the development of a new class of injectable hydrogels composed of adipic acid dihydrazide-modified HA (ADH-HA) and aldehyde-modified HA (a-HA) reinforced with varying contents of aldehyde-modified CNCs (a-CNCs). The obtained hydrogels were characterized in terms of internal morphology, mechanical properties, swelling, and degradation behavior in the presence of hyaluronidase. Our findings suggest that the incorporation of a-CNCs in the hydrogel resulted in a more organized and compact network structure and led to stiffer hydrogels (maximum storage modulus, E', of 152.4 kPa for 0.25 wt % a-CNCs content) with improvements of E' up to 135% in comparison to unfilled hydrogels. In general, increased amounts of a-CNCs led to lower equilibrium swelling ratios and higher resistance to degradation. The biological performance of the developed nanocomposites was assessed toward human adipose derived stem cells (hASCs). HA-CNCs nanocomposite hydrogels exhibited preferential cell supportive properties in in vitro culture conditions due to higher structural integrity and potential interaction of microenvironmental cues with CNC's sulfate groups. hASCs encapsulated in HA-CNCs hydrogels demonstrated the ability to spread within the volume of gels and exhibited pronounced proliferative activity. Together, these results demonstrate that the proposed strategy is a valuable toolbox for fine-tuning the structural, biomechanical, and biochemical properties of injectable HA hydrogels, expanding their potential range of application in the biomedical field.

摘要

可注射的基于透明质酸(HA)的水凝胶是用于组织工程和再生医学应用的一类很有前景的材料。然而,它们有限的机械性能限制了潜在的应用范围。在本研究中,纤维素纳米晶体(CNCs)被用作纳米填料,采用完全生物基策略制备增强型HA纳米复合水凝胶。在此,我们报告了一类新型可注射水凝胶的开发,该水凝胶由己二酸二酰肼改性的HA(ADH-HA)和醛改性的HA(a-HA)组成,并由不同含量的醛改性CNCs(a-CNCs)增强。对所得水凝胶的内部形态、机械性能、溶胀以及在透明质酸酶存在下的降解行为进行了表征。我们的研究结果表明,在水凝胶中加入a-CNCs会导致更有序和致密的网络结构,并产生更硬的水凝胶(对于0.25 wt%的a-CNCs含量,最大储能模量E'为152.4 kPa),与未填充的水凝胶相比,E'提高了135%。一般来说,a-CNCs含量的增加会导致平衡溶胀率降低和更高的抗降解性。对所开发的纳米复合材料对人脂肪来源干细胞(hASCs)的生物学性能进行了评估。HA-CNCs纳米复合水凝胶由于具有更高的结构完整性以及微环境线索与CNC的硫酸基团之间的潜在相互作用,在体外培养条件下表现出优先的细胞支持特性。封装在HA-CNCs水凝胶中的hASCs表现出在凝胶体积内扩散的能力,并表现出明显的增殖活性。总之,这些结果表明,所提出的策略是一个有价值的工具箱,可用于微调可注射HA水凝胶的结构、生物力学和生化特性,扩大其在生物医学领域的潜在应用范围。

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