Sun Siqin, Chen Chaoxian, Zhang Jianghong, Hu Jianshe
Department of Chemistry, College of Science, Northeastern University Shenyang 110819 P. R. China
Department of Material Science and Engineering, Key Laboratory of Polymer Chemistry and Physics of Ministry of Education, Peking University Beijing 100871 P. R. China
RSC Adv. 2023 Jan 23;13(5):3155-3163. doi: 10.1039/d2ra07493a. eCollection 2023 Jan 18.
Notwithstanding the rapid development of suture elastomers to meet the needs of practical surgery, utilizing the elastomers' self-healing function as a surgical suture to facilitate the healing of wounds has not been addressed. Here, a biodegradable aliphatic polycarbonate smart elastomer, mPEG--PMBC , was synthesized from aliphatic polycarbonate monomer with methoxy polyethylene glycol (mPEG, 5.0 kDa) as initiator, which exhibited excellent mechanical properties, highly efficient self-repairing, and remarkable shape memory behavior. The polymers possess outstanding self-healing ability for 150 min. Meanwhile, after 46.33 ± 1.18 s, the temporary shape of the obtained polymer had been recovered. The results of biocompatibility tests reveal that the polymers have excellent biocompatibility and can be regarded as good biomedical materials. Then, experiments were used to prove the self-healing knotting ability of the polymers and quickly close a wound surface using a programmed shape at physiological temperature. The results demonstrated that the injury wound can be effectively healed compared with traditional sutures, which will offer new study suggestions for subsequent healing areas.
尽管用于满足实际手术需求的缝合弹性体发展迅速,但利用弹性体的自愈功能作为手术缝合线以促进伤口愈合的研究尚未得到解决。在此,以甲氧基聚乙二醇(mPEG,5.0 kDa)为引发剂,由脂肪族聚碳酸酯单体制备了一种可生物降解的脂肪族聚碳酸酯智能弹性体mPEG-PMBC,其具有优异的力学性能、高效的自修复性能和显著的形状记忆行为。该聚合物在150分钟内具有出色的自愈能力。同时,在46.33±1.18秒后,所得聚合物的临时形状得以恢复。生物相容性测试结果表明,该聚合物具有优异的生物相容性,可被视为良好的生物医学材料。然后,通过实验证明了该聚合物的自愈合打结能力,并在生理温度下使用程序化形状快速闭合伤口表面。结果表明,与传统缝合线相比,损伤伤口能够得到有效愈合,这将为后续的愈合领域提供新的研究思路。