Multiresponsive 4D Printable Hydrogels with Anti-Inflammatory Properties.

IF 5.2 Q1 POLYMER SCIENCE
ACS Macro Letters Pub Date : 2024-09-17 Epub Date: 2024-08-14 DOI:10.1021/acsmacrolett.4c00404
Maria Regato-Herbella, Daniele Mantione, Agustín Blachman, Antonela Gallastegui, Graciela C Calabrese, Sergio E Moya, David Mecerreyes, Miryam Criado-Gonzalez
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引用次数: 0

Abstract

Multiresponsive hydrogels are valuable as biomaterials due to their ability to respond to multiple biologically relevant stimuli, i.e., temperature, pH, or reactive oxygen species (ROS), which can be present simultaneously in the body. In this work, we synthesize triple-responsive hydrogels through UV light photopolymerization of selected monomer compositions that encompass thermoresponsive N-isopropylacrylamide (NIPAM), pH-responsive methacrylic acid (MAA), and a tailor-made ROS-responsive diacrylate thioether monomer (EG3SA). As a result, smart P[NIPAMx-co-MAAy-co-(EG3SA)z] hydrogels capable of being manufactured by digital light processing (DLP) 4D printing are obtained. The thermo-, pH-, and ROS-response of the hydrogels are studied by swelling tests and rheological measurements at different temperatures (25 and 37 °C), pHs (3, 5, 7.4, and 11), and in the absence or presence of ROS (H2O2). The hydrogels are employed as matrixes for the encapsulation of ketoprofen (KET), an anti-inflammatory drug that shows a tunable release, depending on the hydrogel composition and stimuli applied. The cytotoxicity properties of the hydrogels are tested in vitro with mouse embryonic fibroblasts (NIH 3T3) and RAW 264.7 murine macrophage (RAW) cells. Finally, the anti-inflammatory properties are assessed, and the results exhibit a ≈70% nitric oxide reduction up to base values of pro-inflammatory RAW cells, which highlights the anti-inflammatory capacity of P[NIPAM80-co-MAA15-co-(EG3SA)5] hydrogels, per se, without being necessary to encapsulate an anti-inflammatory drug within their network. It opens the route for the fabrication of customizable 4D printable scaffolds for the effective treatment of inflammatory pathologies.

Abstract Image

具有抗炎特性的多反应 4D 可打印水凝胶
多反应水凝胶能够对多种生物相关刺激(如温度、pH 值或活性氧 (ROS))做出反应,是一种非常有价值的生物材料。在这项研究中,我们通过紫外光光聚合精选的单体成分合成了三重响应水凝胶,这些单体包括热响应型 N-异丙基丙烯酰胺 (NIPAM)、pH 响应型甲基丙烯酸 (MAA) 和定制的 ROS 响应型二丙烯酸酯硫醚单体 (EG3SA)。结果,获得了能够通过数字光处理(DLP)4D 打印制造的智能 P[NIPAMx-co-MAAy-co-(EG3SA)z]水凝胶。通过在不同温度(25 和 37 °C)、pH 值(3、5、7.4 和 11)以及有无 ROS(H2O2)条件下进行溶胀试验和流变测量,研究了水凝胶的热响应、pH 值响应和 ROS 响应。这种水凝胶被用作封装酮洛芬(KET)的基质,酮洛芬是一种抗炎药物,其释放量可调,这取决于水凝胶的成分和应用的刺激因素。在体外用小鼠胚胎成纤维细胞(NIH 3T3)和 RAW 264.7 小鼠巨噬细胞(RAW)测试了水凝胶的细胞毒性特性。最后,对其抗炎特性进行了评估,结果表明一氧化氮的减少量≈70%,达到了促炎 RAW 细胞的基准值,这凸显了 P[NIPAM80-co-MAA15-co-(EG3SA)5]水凝胶本身的抗炎能力,而无需在其网络中封装抗炎药物。这为制造可定制的四维可打印支架,有效治疗炎症性病变开辟了道路。
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来源期刊
CiteScore
10.40
自引率
3.40%
发文量
209
审稿时长
1 months
期刊介绍: ACS Macro Letters publishes research in all areas of contemporary soft matter science in which macromolecules play a key role, including nanotechnology, self-assembly, supramolecular chemistry, biomaterials, energy generation and storage, and renewable/sustainable materials. Submissions to ACS Macro Letters should justify clearly the rapid disclosure of the key elements of the study. The scope of the journal includes high-impact research of broad interest in all areas of polymer science and engineering, including cross-disciplinary research that interfaces with polymer science. With the launch of ACS Macro Letters, all Communications that were formerly published in Macromolecules and Biomacromolecules will be published as Letters in ACS Macro Letters.
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