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基于明胶、聚多巴胺和纳米粘土协同作用的坚韧且粘性水凝胶的 Janus 黏膜敷料。

Janus mucosal dressing with a tough and adhesive hydrogel based on synergistic effects of gelatin, polydopamine, and nano-clay.

机构信息

Beijing Key Laboratory for Bioengineering and Sensing Technology, Daxing Research Institute, School of Chemistry and Biological Engineering University of Science and Technology Beijing; Beijing 100083, China.

Beijing Key Laboratory for Bioengineering and Sensing Technology, Daxing Research Institute, School of Chemistry and Biological Engineering University of Science and Technology Beijing; Beijing 100083, China.

出版信息

Acta Biomater. 2022 Sep 1;149:126-138. doi: 10.1016/j.actbio.2022.07.016. Epub 2022 Jul 12.

Abstract

There are many problems and challenges related to the treatment of highly prevalent oral mucosal diseases and oral drug delivery because of a large amount of saliva present in the oral cavity, the accompanying oral movements, and unconscious swallowing in the mouth. Therefore, an ideal oral dressing should possess stable adhesion and superior tough strength in the oral cavity. However, this fundamental requirement greatly limits the use of synthetic adhesive dressings for oral dressings. Here, we developed a mussel-inspired Janus gelatin-polydopamine-nano-clay (GPC) hydrogel with controlled adhesion and toughness through the synergistic physical and chemical interaction of gelatin (Gel), nano-clay, and dopamine (DA). The hydrogel not only exhibits strong wet adhesion force (63 kPa) but also has high toughness (1026 ± 100 J m). Interfacial adhesion of hydrogels is achieved by modulating the interaction of catechol groups of the hydrogel with specific functional groups (e.g., NH, SH, OH, and COOH) on the tissue surface. The matrix dissipation of the hydrogel is regulated by physical crosslinking of gelatin, chemical crosslinking of gelatin with polydopamine (Michael addition and Schiff base formation), and nano-clay-induced constraint of the molecular chain. In addition, the GPC hydrogel shows high cell affinity and favors cell adhesion and proliferation. The hydrogel's instant and strong mucoadhesive properties provide a long-lasting therapeutic effect of the drug, thereby enhancing the healing of oral ulcers. Therefore, mussel-inspired wet-adhesion Janus GPC hydrogels can be used as a platform for mucosal dressing and drug delivery systems. STATEMENT OF SIGNIFICANCE: It is a great challenge to treat oral mucosal diseases due to the large amount of saliva present in the oral cavity, the accompanying oral movements, unconscious swallowing, and flushing of drugs in the mouth. To overcome the significant limitations of clinical bioadhesives, such as weakness, toxicity, and poor usage, in the present study, we developed a simple method through the synergistic effects of gelatin, polydopamine, and nano-clay to prepare an optimal mucosal dressing (Janus GPC) that integrates Janus, adhesion, toughness, and drug release property. It fits effectively in the mouth, resists saliva flushing and oral movements, provides oral drug delivery, and reduces patient discomfort. The Janus GPC adhesive hydrogels have great commercial potential to support further the development of innovative therapies for oral mucosal diseases.

摘要

由于口腔中存在大量的唾液、伴随的口腔运动以及无意识的吞咽,治疗高发性口腔黏膜疾病和口腔药物输送存在许多问题和挑战。因此,理想的口腔敷料应具有在口腔中稳定的黏附性和优异的韧性。然而,这种基本要求极大地限制了合成黏附性敷料在口腔敷料中的应用。在这里,我们通过明胶(Gel)、纳米粘土和多巴胺(DA)的协同物理和化学相互作用,开发了一种受贻贝启发的具有可控黏附性和韧性的 Janus 明胶-聚多巴胺-纳米粘土(GPC)水凝胶。该水凝胶不仅表现出强大的湿黏附力(63kPa),而且具有高韧性(1026±100J m)。水凝胶的界面黏附力是通过调节水凝胶中儿茶酚基团与组织表面特定功能基团(如 NH、SH、OH 和 COOH)的相互作用来实现的。水凝胶的基质耗散是通过明胶的物理交联、明胶与聚多巴胺的化学交联(迈克尔加成和席夫碱形成)以及纳米粘土对分子链的约束来调节的。此外,GPC 水凝胶具有高细胞亲和力,有利于细胞黏附和增殖。水凝胶的即时强黏膜黏附特性为药物提供了持久的治疗效果,从而促进了口腔溃疡的愈合。因此,受贻贝启发的湿黏附性 Janus GPC 水凝胶可用作黏膜敷料和药物输送系统的平台。

意义声明

由于口腔中存在大量的唾液、伴随的口腔运动、无意识的吞咽以及药物在口腔中的冲洗,治疗口腔黏膜疾病是一个巨大的挑战。为了克服临床生物黏附剂的显著局限性,如强度低、毒性大、使用效果差等,在本研究中,我们通过明胶、聚多巴胺和纳米粘土的协同作用,开发了一种简单的方法来制备一种最佳的黏膜敷料(Janus GPC),该敷料集 Janus、黏附性、韧性和药物释放性能于一体。它能有效地贴合在口腔中,抵抗唾液冲洗和口腔运动,提供口腔药物输送,并减少患者的不适。Janus GPC 黏附性水凝胶具有巨大的商业潜力,支持进一步开发用于口腔黏膜疾病的创新疗法。

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