Li Chenyang, Qian Yang, Zhang Xueping, Wang Rongwu
Key Laboratory of Textile Science & Technology, Ministry of Education, College of Textiles, Donghua University, Shanghai, 201620, China.
J Mater Chem B. 2025 Feb 12;13(7):2469-2479. doi: 10.1039/d4tb02357a.
Bioadhesive hydrogels show great promise in wound closure due to their minimally invasive nature and ease of use. However, they typically exhibit poor wet adhesion and mechanical properties on wet tissues. Herein, a ready-to-use bioadhesive hydrogel (denoted as PAA-NHS/C-CS) with rapidly robust adhesion and high mechanical strength is developed a simple one-pot UV crosslinking polymerization of acrylic acid (AA), catechol-functionalized chitosan (C-CS), and acrylic acid -hydroxysuccinimide ester (AA-NHS ester). Benefitting from the hydrogen bonds and electrostatic attractions formed between PAA-NHS and C-CS, the as-prepared hydrogel exhibits high tensile strength (∼630 kPa), fracture strain (∼1950%), and toughness (∼4250 kJ m) in the fully swollen state. Besides, the noncovalent interactions and covalent crosslinking formed between the dual adhesive moieties (the NHS ester and catechol groups) and the tissue surface endow the hydrogel with high shear strength (∼160 kPa), interfacial toughness (∼630 J m), and burst pressure (∼447 mmHg) on wet porcine skin. By integrating the high mechanical properties, rapid robust adhesion, and operational convenience, the as-prepared PAA-NHS/C-CS hydrogel shows great promise in wound closure.
生物粘附水凝胶因其微创性质和易用性在伤口闭合方面显示出巨大潜力。然而,它们通常在湿组织上表现出较差的湿粘附性和机械性能。在此,通过丙烯酸(AA)、儿茶酚功能化壳聚糖(C-CS)和丙烯酸-羟基琥珀酰亚胺酯(AA-NHS酯)的简单一锅法紫外光交联聚合,开发出一种即用型生物粘附水凝胶(记为PAA-NHS/C-CS),其具有快速牢固的粘附力和高机械强度。得益于PAA-NHS和C-CS之间形成的氢键和静电引力,所制备的水凝胶在完全溶胀状态下表现出高拉伸强度(约630 kPa)、断裂应变(约1950%)和韧性(约4250 kJ/m)。此外,双粘附基团(NHS酯和儿茶酚基团)与组织表面之间形成的非共价相互作用和共价交联赋予水凝胶在湿猪皮上高剪切强度(约160 kPa)、界面韧性(约630 J/m)和破裂压力(约447 mmHg)。通过整合高机械性能、快速牢固的粘附力和操作便利性,所制备的PAA-NHS/C-CS水凝胶在伤口闭合方面显示出巨大潜力。