Qi Ying, Shao Jiaxing, Luo Zhen, Zhang Qian, Tian Xu, Yang Rong, Sun Yage, Chen Danyang, Cui Chunyan, Liu Wenguang
School of Materials Science and Engineering, Tianjin Key Laboratory of Composite and Functional Materials, Tianjin University, Tianjin, 300350, China.
State Key Laboratory of Precious Metal Functional Materials, China.
Bioact Mater. 2025 Jun 16;52:460-473. doi: 10.1016/j.bioactmat.2025.06.023. eCollection 2025 Oct.
Bioadhesives have potential advantages over sutures and staples for wound closure, hemostasis, and in vivo dressing applications. However, the tissue adhesives reported so far typically fail to integrate an in vivo adhesion fault-tolerant mechanism with autonomous therapeutic activity. Here, we present the unprecedented development of a bioadhesive based on the coenzyme factor lipoic acid (LA), featuring an upper critical solution temperature and adhesion fault-tolerance. The in-situ ring-opening polymerization of LA triggered by aggregation in the naturally occurring sodium queen bee acid (SQBA) nanomicelles, leads to nanomicelle self-crosslinking via strong ionic hydrogen bonds, resulting in the formation of a thermoresponsive bioadhesive (PolyLA-SQBA). PolyLA-SQBA exhibits thermally switchable and reusable adhesion, forming rapid and robust adhesion on oral mucosa at physiological temperature, and detaching from the adhered tissue without residue upon cooling. Leveraging the natural bioactivity of LA and SQBA, PolyLA-SQBA demonstrates excellent biocompatibility, potent antioxidant activity, and exhibits significant inhibitory effects against common oral pathogens. With its intelligent responsiveness, efficient adhesion, and sustained release of bioactive molecules, PolyLA-SQBA effectively delivers both LA and SQBA to oral ulcer sites, reducing inflammatory cytokine levels and significantly accelerating the healing of oral ulcers.
在伤口闭合、止血及体内敷料应用方面,生物粘合剂相较于缝线和吻合钉具有潜在优势。然而,迄今为止报道的组织粘合剂通常未能将体内粘附容错机制与自主治疗活性相结合。在此,我们展示了一种基于辅酶因子硫辛酸(LA)的生物粘合剂的前所未有的进展,其具有上临界溶液温度和粘附容错性。由天然存在的蜂王酸(SQBA)纳米胶束中的聚集引发的LA原位开环聚合,通过强离子氢键导致纳米胶束自交联,从而形成热响应性生物粘合剂(PolyLA-SQBA)。PolyLA-SQBA表现出热可切换和可重复使用的粘附性,在生理温度下在口腔粘膜上形成快速且牢固的粘附,并在冷却时从粘附组织上分离且无残留。利用LA和SQBA的天然生物活性,PolyLA-SQBA表现出优异的生物相容性、强大的抗氧化活性,并对常见口腔病原体具有显著抑制作用。凭借其智能响应性、高效粘附性和生物活性分子的持续释放,PolyLA-SQBA有效地将LA和SQBA输送到口腔溃疡部位,降低炎症细胞因子水平并显著加速口腔溃疡的愈合。