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一种用于再生应用的可快速交联的马来酰亚胺修饰透明质酸和明胶水凝胶递送系统。

A Rapid Crosslinkable Maleimide-Modified Hyaluronic Acid and Gelatin Hydrogel Delivery System for Regenerative Applications.

作者信息

Yoo Kyung Min, Murphy Sean V, Skardal Aleksander

机构信息

Wake Forest Institute for Regenerative Medicine, Wake Forest School of Medicine, 391 Technology Way, Winston-Salem, NC 27101, USA.

Department of Biomedical Engineering, The Ohio State University, Fontana Labs., 140 W. 19th Ave, Columbus, OH 43210, USA.

出版信息

Gels. 2021 Feb 1;7(1):13. doi: 10.3390/gels7010013.

Abstract

Hydrogels have played a significant role in many applications of regenerative medicine and tissue engineering due to their versatile properties in realizing design and functional requirements. However, as bioengineered solutions are translated towards clinical application, new hurdles and subsequent material requirements can arise. For example, in applications such as cell encapsulation, drug delivery, and biofabrication, in a clinical setting, hydrogels benefit from being comprised of natural extracellular matrix-based materials, but with defined, controllable, and modular properties. Advantages for these clinical applications include ultraviolet light-free and rapid polymerization crosslinking kinetics, and a cell-friendly crosslinking environment that supports cell encapsulation or in situ crosslinking in the presence of cells and tissue. Here we describe the synthesis and characterization of maleimide-modified hyaluronic acid (HA) and gelatin, which are crosslinked using a bifunctional thiolated polyethylene glycol (PEG) crosslinker. Synthesized products were evaluated by proton nuclear magnetic resonance (NMR), ultraviolet visibility spectrometry, size exclusion chromatography, and pH sensitivity, which confirmed successful HA and gelatin modification, molecular weights, and readiness for crosslinking. Gelation testing both by visual and NMR confirmed successful and rapid crosslinking, after which the hydrogels were characterized by rheology, swelling assays, protein release, and barrier function against dextran diffusion. Lastly, biocompatibility was assessed in the presence of human dermal fibroblasts and keratinocytes, showing continued proliferation with or without the hydrogel. These initial studies present a defined, and well-characterized extracellular matrix (ECM)-based hydrogel platform with versatile properties suitable for a variety of applications in regenerative medicine and tissue engineering.

摘要

水凝胶因其在实现设计和功能要求方面具有多种特性,在再生医学和组织工程的许多应用中发挥了重要作用。然而,随着生物工程解决方案向临床应用转化,可能会出现新的障碍和随之而来的材料要求。例如,在细胞封装、药物递送和生物制造等应用中,在临床环境中,水凝胶受益于由基于天然细胞外基质的材料组成,但具有明确、可控和模块化的特性。这些临床应用的优点包括无紫外光且快速的聚合交联动力学,以及在细胞和组织存在的情况下支持细胞封装或原位交联的细胞友好交联环境。在此,我们描述了马来酰亚胺修饰的透明质酸(HA)和明胶的合成与表征,它们使用双功能硫醇化聚乙二醇(PEG)交联剂进行交联。通过质子核磁共振(NMR)、紫外可见光谱、尺寸排阻色谱和pH敏感性对合成产物进行了评估,证实了HA和明胶的成功修饰、分子量以及交联的就绪状态。通过视觉和NMR进行的凝胶化测试证实了成功且快速的交联,之后通过流变学、溶胀测定、蛋白质释放以及对葡聚糖扩散的屏障功能对水凝胶进行了表征。最后,在人真皮成纤维细胞和角质形成细胞存在的情况下评估了生物相容性,结果表明无论有无水凝胶,细胞都能持续增殖。这些初步研究展示了一个明确且特征良好的基于细胞外基质(ECM)的水凝胶平台,其具有多种特性,适用于再生医学和组织工程中的各种应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf50/7931058/a41bd3ff89a6/gels-07-00013-g001.jpg

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