分子生物学
IVD分子诊断
细胞培养与分析
蛋白研究
细胞因子
重组蛋白
抗体
高通量测序建库
病原检测UCF系列
生物医药
工具酶
抑制剂激活剂与常用试剂
仪器
耗材

α-Linolenic Acid-Modified Collagen for Surgical Sutures: Water-Resistant, Anti-inflammatory, and Antibacterial

Haihang Tang, Juan Zhou, Lichao Han, Hao Li, Jinghua Chen

Journal:ACS Biomaterials Science & Engineering

IF:6

DOI:10.1021/acsbiomaterials.6c00656

PMID:

Published:2026-06-25

research field:毒理学药物递送系统生物材料学呼吸生物学微生物学炎症生物学医用缝合材料环境生物学遗传学与基因组学组织工程

Abstract

To address the limitations of pure collagen wet-spun sutures, including poor water resistance and the absence of biological functions such as anti-inflammatory and antibacterial properties, this study introduced α-linolenic acid (ALA), an unsaturated fatty acid, to modify collagen-based sutures prepared via wet spinning, thereby developing a novel absorbable α‑linolenic acid‑modified collagen suture (Col-ALA). The microtopography, mechanical properties, anti-inflammatory and antibacterial activities, and absorbability of the suture were systematically evaluated using scanning electron microscopy, energy-dispersive spectroscopy, mechanical property testing, bacterial coculture assays, inflammatory factor detection, and in vitro degradation experiments. The results demonstrated that α-linolenic acid was successfully grafted onto collagen molecules, without compromising the mechanical properties of the collagen suture. The modification dramatically enhanced water resistance, reducing swelling to 1/10 and preserving near‑full wet strength, whereas unmodified sutures (Col) retained only 20% of their dry strength in the wet state. The Col-ALA suture exhibited an inhibition rate exceeding 90% against Staphylococcus aureus and possessed certain anti-inflammatory effects. The levels of tumor necrosis factor-α (TNF-α) and interleukin-6 (IL-6) were decreased by 20% and 38%, respectively, compared with the unmodified sutures. Under the condition of 1 U/mL collagenase, the suture achieved 90% degradation within 10 days, showing excellent absorbability. Overall, the unsaturated fatty acid-modified collagen-based absorbable suture prepared in this study exhibits excellent comprehensive performance, offering new insights and an experimental basis for the research, development, and clinical application of absorbable sutures.

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