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基于热响应性壳聚糖/多巴胺的水凝胶作为组织粘连和止血的可注射治疗方法。

Thermoresponsive Chitosan/DOPA-Based Hydrogel as an Injectable Therapy Approach for Tissue-Adhesion and Hemostasis.

作者信息

Shou Yufeng, Zhang Jiahui, Yan Shifeng, Xia Pengfei, Xu Pengliang, Li Guifei, Zhang Kunxi, Yin Jingbo

机构信息

Department of Polymer Materials, School of Materials Science and Engineering, Shanghai University, Shanghai 200444, China.

出版信息

ACS Biomater Sci Eng. 2020 Jun 8;6(6):3619-3629. doi: 10.1021/acsbiomaterials.0c00545. Epub 2020 May 21.

DOI:10.1021/acsbiomaterials.0c00545
PMID:33463168
Abstract

Chitosan (CS) hydrogels are widely used in wound hemostatic agents due to their superior biocompatibility, biodegradability, and hemostatic effect. However, most of them fail to achieve great hemostatic effect because of poor adhesion to bleeding tissues. Also, the conventional implantation surgery of hemostatic hydrogels to internal bleeding wounds may cause secondary trauma to the human body. In this work, catechol-hydroxybutyl chitosan (HBCS-C) has been designed and prepared by grafting hydroxybutyl groups and catechol groups to the CS backbones. The multifunctional HBCS-C hydrogels are fabricated with the properties of thermosensitivity, injectability, tissue-adhesion, biodegradation, biocompatibility, and wound hemostasis. They exhibit excellent liquid-gel transition at different temperatures, through the changes of hydrophilic-hydrophobic interaction and hydrogen bonds generating from hydroxybutyl groups. By the multiple interactions between catechol groups/amino groups and tissues, the biocompatible hydrogels can strongly adhere on the surface of tissue. To further study, the bleeding rat-liver models are made to evaluate the hemostatic effects. After injecting the hydrogel precursor solution into the rat body, the hydrogels are not only formed in situ within 30 s but are also firmly adhered to the bleeding tissues which shows effective hemostasis. The injectability and tissue-adhesion improvement in this study gives a new insight into hemostatic agents, and the multifunctional hydrogels have a great potential in the biomedical application.

摘要

壳聚糖(CS)水凝胶因其优异的生物相容性、生物降解性和止血效果而被广泛应用于伤口止血剂。然而,由于其对出血组织的粘附性较差,大多数壳聚糖水凝胶未能达到良好的止血效果。此外,将止血水凝胶常规植入内出血伤口的手术可能会对人体造成二次创伤。在这项工作中,通过将羟丁基和儿茶酚基团接枝到CS主链上,设计并制备了儿茶酚-羟丁基壳聚糖(HBCS-C)。多功能HBCS-C水凝胶具有热敏性、可注射性、组织粘附性、生物降解性、生物相容性和伤口止血性能。通过羟丁基产生的亲水-疏水相互作用和氢键的变化,它们在不同温度下表现出优异的液-凝胶转变。通过儿茶酚基团/氨基与组织之间的多重相互作用,这种生物相容性水凝胶可以牢固地粘附在组织表面。为了进一步研究,制作了大鼠肝脏出血模型来评估止血效果。将水凝胶前体溶液注入大鼠体内后,水凝胶不仅在30秒内原位形成,而且还牢固地粘附在出血组织上,显示出有效的止血效果。本研究中可注射性和组织粘附性的改善为止血剂提供了新的见解,这种多功能水凝胶在生物医学应用中具有巨大潜力。

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