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用于4D生物打印的具有按需溶胀-收缩特性的生物相容性复合水凝胶。

Biocompatible composite hydrogel with on-demand swelling-shrinking properties for 4D bioprinting.

作者信息

Jensen Peter J, Graham Josh P, Busch Trevor K, Fitz Owen, Jayanadh Sivani, Pashuck Thomas E, Gonzalez-Fernandez Tomas

机构信息

Department of Bioengineering, Lehigh University, Bethlehem, PA, USA.

Department of Biomedical Engineering, SRM Institute of Science and Technology, Kattankulathur, Tamil Nadu, India.

出版信息

Biomater Sci. 2025 Jun 10;13(12):3264-3279. doi: 10.1039/d5bm00551e.

Abstract

Hydrogels with tunable swelling and shrinking properties are of great interest in biomedical applications, particularly in wound healing, tissue regeneration, and drug delivery. Traditional hydrogels often fail to achieve high swelling without mechanical failure. In contrast, high-swelling hydrogels can absorb large amounts of liquid, expanding their volume by 10-1000 times, due to low crosslink density and the presence of hydrophilic groups. Additionally, some high-swelling hydrogels can also shrink in response to external stimuli, making them promising candidates for applications like on-demand drug delivery and biosensing. An emerging application of high-swelling hydrogels is four-dimensional (4D) printing, where controlled swelling induces structural transformations in a 3D printed construct. However, current hydrogel systems show limited swelling capacity, restricting their ability to undergo significant shape changes. To address these limitations, we developed a high-swelling composite hydrogel, termed SwellMA, by combining gelatin methacryloyl (GelMA) and sodium polyacrylate (SPA). SwellMA exhibits a swelling capacity over 500% of its original area and can increase its original water weight by 100-fold, outperforming existing materials in 4D bioprinting. Furthermore, SwellMA constructs can cyclically swell and shrink on-demand upon changing the ionic strength of the aqueous solution. Additionally, SwellMA demonstrates superior cytocompatibility and cell culture properties than SPA, along with enhanced 3D printing fidelity. These findings demonstrate SwellMA's potential for advanced 4D printing and a broad range of biomedical applications requiring precise and dynamic control over hydrogel swelling and shrinking.

摘要

具有可调节溶胀和收缩特性的水凝胶在生物医学应用中备受关注,尤其是在伤口愈合、组织再生和药物递送方面。传统水凝胶往往在不发生机械故障的情况下无法实现高溶胀。相比之下,高溶胀水凝胶由于交联密度低和亲水基团的存在,可以吸收大量液体,使其体积膨胀10至1000倍。此外,一些高溶胀水凝胶还能响应外部刺激而收缩,使其成为按需药物递送和生物传感等应用的有前景候选材料。高溶胀水凝胶的一个新兴应用是四维(4D)打印,其中可控溶胀会在3D打印结构中引发结构转变。然而,目前的水凝胶系统溶胀能力有限,限制了它们发生显著形状变化的能力。为了解决这些限制,我们通过将甲基丙烯酰化明胶(GelMA)和聚丙烯酸钠(SPA)结合,开发了一种名为SwellMA的高溶胀复合水凝胶。SwellMA的溶胀能力超过其原始面积的500%,并且可以使其原始水重量增加100倍,在4D生物打印方面优于现有材料。此外,SwellMA结构在改变水溶液离子强度时可以按需周期性地溶胀和收缩。此外,SwellMA表现出比SPA更好的细胞相容性和细胞培养特性,以及更高的3D打印保真度。这些发现证明了SwellMA在先进4D打印以及需要对水凝胶溶胀和收缩进行精确动态控制的广泛生物医学应用中的潜力。

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