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Injectable and Self-Healing Dynamic Hydrogels Based on Metal(I)-Thiolate/Disulfide Exchange as Biomaterials with Tunable Mechanical Properties

机译:基于金属(I)-硫醇盐/二硫化物交换的可注射且自修复的动态水凝胶,具有可调节机械性能,是生物材料

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Despite numerous strategies involving dynamic covalent bonds to produce self-healing hydrogels with similar frequency-dependent stiffness to native tissues, it remains challenging to use biologically relevant thiol/disulfide exchange to confer such properties to polymeric networks. Herein, we report a new method based on Metal(I) [Au(I) or Ag(I)] capping to protect thiolates from aerial oxidation without preventing thiolate/disulfide exchange. Dynamic hydrogels were readily prepared by injecting simultaneously aqueous solutions of commercially available HAuCl4 and 4-arm thiol-terminated polyethylene glycol [(PEGSH)(4)], resulting in a network containing a mixture of Au(I)-thiolate (Au-S) and disulfide bonds (SS). While the dynamic properties of the hydrogel were closely dependent on the pH, the mechanical properties could be easily tuned by adjusting (PEGSH)(4) concentration and amount of Au-S, as judged by dynamic rheology studies. Permanent Au-S/SS exchange at physiological pH conferred self-healing behavior and frequency-dependent stiffness to the hydrogel. In addition, in vitro studies confirmed that Au-based dynamic material was not cytotoxic to human dermal fibroblasts, demonstrating its potential use as a medical device. Dynamic hydrogels obtained using Ag(I) ions demonstrated that the exchange reaction was not affected by the nature of the Metal(I) capping. Finally, this efficient thiolate capping strategy offers a simple way to produce injectable and self-healing dynamic hydrogels from virtually any thiol-containing polymers.
机译:尽管有许多策略涉及动态共价键来产生自修复水凝胶,其具有与天然组织相似的频率依赖性刚度,但是使用生物学上相关的硫醇/二硫化物交换来将这种性质赋予聚合物网络仍然具有挑战性。在本文中,我们报告了一种基于金属(I)[Au(I)或Ag(I)]封端的新方法,可保护硫醇盐免于空气氧化而不阻止硫醇盐/二硫化物的交换。通过同时注入市售HAuCl4和4臂硫醇封端的聚乙二醇[(PEGSH)(4)]的水溶液轻松制备动态水凝胶,从而形成包含Au(I)-硫醇盐(Au-S )和二硫键(SS)。虽然水凝胶的动态特性与pH密切相关,但通过动态流变学研究可以判断,通过调节(PEGSH)(4)的浓度和Au-S的量可以轻松调整机械特性。在生理pH下的永久Au-S / SS交换赋予水凝胶自愈性和频率依赖性。另外,体外研究证实基于金的动态材料对人皮肤成纤维细胞没有细胞毒性,表明其潜在用途作为医疗设备。使用Ag(I)离子获得的动态水凝胶表明交换反应不受Metal(I)封端的性质影响。最后,这种有效的硫醇盐封端策略提供了一种简单的方法,可以从几乎任何含硫醇的聚合物生产可注射且可自我修复的动态水凝胶。

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