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按需溶解化学交联水凝胶。

On-Demand Dissolution of Chemically Cross-Linked Hydrogels.

机构信息

Departments of Chemistry, Biomedical Engineering, and Medicine, Boston University , 590 Commonwealth Avenue, Boston, Massachusetts 02215, United States.

出版信息

Acc Chem Res. 2017 Feb 21;50(2):151-160. doi: 10.1021/acs.accounts.6b00547. Epub 2017 Feb 7.

Abstract

The formation and subsequent on-demand dissolution of chemically cross-linked hydrogels is of keen interest to chemists, engineers, and clinicians. In this Account, we summarize our recent advances in the area of dissolvable chemically cross-linked hydrogels and provide a comparative discussion of other recent hydrogel systems. Using biocompatible macromonomers, we developed a library of cross-linked dendritic hydrogels that possess favorable properties, including biocompatibility, tissue adhesion, and swelling. Additionally, these hydrogels possess the unique ability to dissolve on-demand via application of a biocompatible aqueous solution. Each of the three hydrogel systems described employs a thiol-thioester exchange reaction as the mechanism of dissolution. These new materials successfully decrease bleeding in in vivo models of hepatic and aortic hemorrhage and dissolve on-demand, providing easy removal. In addition, we evaluated these hydrogels as dressings for second-degree burn wounds and performed proof-of-concept in vivo studies. These hydrogel wound dressings provide a means of repeatedly changing the dressing in a minimally invasive and atraumatic manner while also serving as a protective barrier against bacterial infection. Finally, we highlight the seminal work of other researchers in the field of dissolvable chemically cross-linked hydrogels using thiol-disulfide exchange, retro-Michael-type, and retro-Diels-Alder reactions. These chemistries provide a versatile synthetic toolbox to dissolve hydrogels in a controlled manner on time scales from minutes to weeks. Continued investigation of these dissolution approaches as well as the development of new chemical reactions will open doors to other avenues of on-demand dissolution and expand the application space for these materials. In summary, the management and closure of wounds after traumatic injury or surgical intervention are of significant clinical importance. Stimuli-responsive hydrogels that function as sealants, adhesives, or dressings are emerging as vital alternatives to current standards of care that rely upon conventional sutures, staples, or dressings.

摘要

化学交联水凝胶的形成和随后的按需溶解引起了化学家、工程师和临床医生的极大兴趣。在本综述中,我们总结了我们在可溶解化学交联水凝胶领域的最新进展,并对其他最近的水凝胶系统进行了比较讨论。我们使用生物相容性的大分子单体,开发了一系列交联树枝状水凝胶,这些水凝胶具有良好的性能,包括生物相容性、组织黏附性和溶胀性。此外,这些水凝胶具有通过应用生物相容性水溶液按需溶解的独特能力。所描述的三种水凝胶系统中的每一种都采用硫醇-硫酯交换反应作为溶解机制。这些新材料在肝和主动脉出血的体内模型中成功减少了出血,并按需溶解,易于去除。此外,我们还将这些水凝胶评估为二级烧伤伤口的敷料,并进行了体内概念验证研究。这些水凝胶伤口敷料提供了一种以微创和无创伤的方式反复更换敷料的方法,同时还可以作为防止细菌感染的保护屏障。最后,我们强调了其他研究人员在使用硫醇-二硫交换、反迈克尔型和反狄尔斯-阿尔德反应的可溶解化学交联水凝胶领域的开创性工作。这些化学为在从几分钟到几周的时间尺度上以受控方式溶解水凝胶提供了一个多功能的合成工具箱。对这些溶解方法的进一步研究以及新化学反应的开发将为按需溶解开辟其他途径,并扩展这些材料的应用空间。总之,创伤后或手术干预后伤口的处理和闭合具有重要的临床意义。作为密封剂、粘合剂或敷料的响应性水凝胶作为目前依赖于传统缝线、订书钉或敷料的护理标准的重要替代物正在出现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87d1/5764157/d55e03dc65cb/nihms926920f1.jpg

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