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由功能化壳聚糖和圣约翰草提取物组成的高压缩性、高吸水性和生物相容性混合冷冻凝胶构建体。

Highly Compressible, Superabsorbent, and Biocompatible Hybrid Cryogel Constructs Comprising Functionalized Chitosan and St. John's Wort Extract.

作者信息

Platon Ioana-Victoria, Ghiorghita Claudiu-Augustin, Lazar Maria Marinela, Aprotosoaie Ana Clara, Gradinaru Adina Catinca, Nacu Isabella, Verestiuc Liliana, Nicolescu Alina, Ciocarlan Nina, Dinu Maria Valentina

机构信息

"Petru Poni" Institute of Macromolecular Chemistry, Grigore Ghica Voda Alley 41A, Iasi 700487, Romania.

Faculty of Pharmacy, "Grigore T. Popa" University of Medicine and Pharmacy, Universitatii Street 16, Iasi 700115, Romania.

出版信息

Biomacromolecules. 2024 Aug 12;25(8):5081-5097. doi: 10.1021/acs.biomac.4c00496. Epub 2024 Jul 11.

Abstract

Biobased porous hydrogels enriched with phytocompounds-rich herbal extracts have aroused great interest in recent years, especially in healthcare. In this study, new macroporous hybrid cryogel constructs comprising thiourea-containing chitosan (CSTU) derivative and a L. extract (HYP), commonly known as St John's wort, were prepared by a facile one-pot ice-templating strategy. Benefiting from the strong interactions between the functional groups of the CSTU matrix and those of polyphenols in HYP, the hybrid cryogels possess excellent liquid absorption capacity, mechanical resilience, antioxidant performance, and a broad spectrum of antibacterial activity simultaneously. Thus, owing to their design, the hybrid constructs exhibit an interconnected porous architecture with the ability to absorb over 33 and 136 times their dry weight, respectively, when contacted with a phosphate buffer solution (pH 7.4) and an acidic aqueous solution (pH 2). These cryogel constructs have extremely high compressive strengths ranging from 839 to 1045 kPa and withstand elevated strains of over 70% without developing fractures. Moreover, the water-swollen hybrid cryogels with the highest HYP content revealed a complete and instant shape recovery after uniaxial compression. The incorporation of HYP into CSTU cryogels enabled substantial improvement in scavenging reactive oxygen species and an expanded antibacterial spectrum toward multiple pathogens, including Gram-positive bacteria ( and ), Gram-negative bacteria ( and ), and fungi (). Cell viability experiments demonstrated the cytocompatibility of the 3D cryogel constructs, which did not induce changes in the fibroblast morphology. This work showcases a simple and effective strategy to immobilize HYP extracts on CSTU 3D networks, allowing the development of novel multifunctional platforms with promising potential in hemostasis, wound dressing, and dermal regeneration scaffolds.

摘要

富含植物化合物的草药提取物的生物基多孔水凝胶近年来引起了极大的关注,尤其是在医疗保健领域。在本研究中,通过简便的一锅法冰模板策略制备了包含含硫脲壳聚糖(CSTU)衍生物和贯叶连翘提取物(HYP,俗称圣约翰草)的新型大孔杂化冷冻凝胶结构。受益于CSTU基质的官能团与HYP中多酚的官能团之间的强相互作用,杂化冷冻凝胶同时具有优异的液体吸收能力、机械弹性、抗氧化性能和广谱抗菌活性。因此,由于其设计,杂化结构呈现出相互连接的多孔结构,当与磷酸盐缓冲溶液(pH 7.4)和酸性水溶液(pH 2)接触时,分别能够吸收超过其干重33倍和136倍的液体。这些冷冻凝胶结构具有极高的抗压强度,范围从839至1045 kPa,并且能够承受超过70%的高应变而不产生裂缝。此外,具有最高HYP含量的水溶胀杂化冷冻凝胶在单轴压缩后显示出完全且即时的形状恢复。将HYP掺入CSTU冷冻凝胶中能够显著提高清除活性氧的能力,并扩大对多种病原体的抗菌谱,包括革兰氏阳性菌(和)、革兰氏阴性菌(和)以及真菌()。细胞活力实验证明了3D冷冻凝胶结构的细胞相容性,其不会诱导成纤维细胞形态的变化。这项工作展示了一种简单有效的策略,将HYP提取物固定在CSTU 3D网络上,从而开发出在止血、伤口敷料和皮肤再生支架方面具有广阔前景的新型多功能平台。

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