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贻贝启发型粘合剂与自愈合水凝胶用作可注射伤口敷料

Mussel-Inspired Adhesive and Self-Healing Hydrogel as an Injectable Wound Dressing.

作者信息

Chang Kai-Yi, Chou Ying-Nien, Chen Wei-Yu, Chen Chuh-Yean, Lin Hong-Ru

机构信息

Department of Chemical and Materials Engineering, Southern Taiwan University of Science and Technology, Tainan 71005, Taiwan.

出版信息

Polymers (Basel). 2022 Aug 17;14(16):3346. doi: 10.3390/polym14163346.

Abstract

This study develops a multi-functional hydrogel with a dual injection system based on the adhesive and self-healing properties of the byssus excretion found in mussels. Through precisely controlling the composite cross-linking hydrophobic association (HA) structure composed of A and B solutions, a high-strength, temperature-sensitive injectable hydrogel can be obtained, and it has good self-healing properties. The main composition of A solution contains the surfactant SDS, which can form amphiphilic micelles, the strength increasing component stearyl methacrylate (C18), and NIPAAm, which provides thermo-sensitivity. Solution B contains dopamine acrylate (DAA), which has self-healing properties, and ferric chloride (FeCl), which is a connecting agent. The rheological behavior shows that when the temperature is increased from 25 °C to 32 °C, the gel can be completed in seven minutes to form a composite hydrogel of NIPAAm-DAA-HA. When NMR identification was conducted on composite DAA, it was found that when comparing DAA and dopamine hydrochloride there were new peaks with specific characteristics, which confirm that this study successfully prepared DAA; swelling tests found that swelling could surpass a rate of 100%, and a higher ratio of crosslinking agent decreased the amount of moisture absorbed; the results of the compression test showed that the addition of hydrophobic micelles C18 effectively enhanced the mechanical properties of hydrogel, allowing it to withstand increased external stress; the adhesiveness results show that an increase in the catechol-Fe concentration of the NIPAAm-DAA-HA hydrogel results in an increased adhesiveness of 0.0081 kg/cm on pig skin; the self-healing tests show that after taking damage, NIPAAm-DAA-HA hydrogel can be reactivated with catechol-Fe and self-heal at a rate of up to 70% after 24 h; antibacterial tests show that hydrogel has good bacterial resistance to against , staphylococcus epidermidis, and bacillus cereus; through in vitro transdermal absorption, it can be seen that the release ability of drugs within the hydrogel can reach up to 8.87 μg/cm. The NIPAAm-DAA-HA hydrogel prepared by this study performed excellently in both adhesion and self-healing tests. The thermo-sensitive and antibacterial properties can be applied to the treatment of deep wounds and address some of the flaws of traditional wound dressings.

摘要

本研究基于贻贝足丝分泌液的粘附和自愈特性,开发了一种具有双注射系统的多功能水凝胶。通过精确控制由A溶液和B溶液组成的复合交联疏水缔合(HA)结构,可获得高强度、温度敏感的可注射水凝胶,且其具有良好的自愈性能。A溶液的主要成分包含可形成两亲性胶束的表面活性剂SDS、强度增强成分甲基丙烯酸十八烷基酯(C18)以及提供热敏感性的NIPAAm。B溶液包含具有自愈性能的丙烯酸多巴胺(DAA)和作为连接剂的氯化铁(FeCl)。流变行为表明,当温度从25℃升高到32℃时,凝胶可在7分钟内完成形成NIPAAm - DAA - HA复合水凝胶。对复合DAA进行核磁共振鉴定时发现,与盐酸多巴胺相比出现了具有特定特征的新峰,这证实本研究成功制备了DAA;溶胀试验发现溶胀率可超过100%,且交联剂比例越高,吸水量越少;压缩试验结果表明,添加疏水胶束C18有效增强了水凝胶的力学性能,使其能够承受更大的外部应力;粘附性结果表明,NIPAAm - DAA - HA水凝胶中儿茶酚 - Fe浓度增加,在猪皮上的粘附性增加至0.0081 kg/cm;自愈试验表明,受损后,NIPAAm - DAA - HA水凝胶可通过儿茶酚 - Fe重新激活,并在24小时后以高达70%的速率自愈;抗菌试验表明,水凝胶对表皮葡萄球菌和蜡样芽孢杆菌具有良好的抗菌性;通过体外透皮吸收可见,水凝胶内药物的释放能力可达8.87μg/cm。本研究制备的NIPAAm - DAA - HA水凝胶在粘附和自愈试验中表现出色。其热敏和抗菌特性可应用于深部伤口的治疗,并解决传统伤口敷料的一些缺陷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b053/9413570/70c2f5ec05aa/polymers-14-03346-g001.jpg

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