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天然衍生粘合剂止血海绵的3D打印

3D Printing of Naturally Derived Adhesive Hemostatic Sponge.

作者信息

Zhou Minyu, Yuan Tao, Shang Luoran

机构信息

The First Affiliated Hospital of Wenzhou Medical University, Wenzhou 325035, China.

Department of Spine Surgery, Second Xiangya Hospital of Central South University, Changsha 410011, China.

出版信息

Research (Wash D C). 2024 Aug 9;7:0446. doi: 10.34133/research.0446. eCollection 2024.

Abstract

Hydrogel hemostatic sponges have been recognized for its effectiveness in wound treatment due to its excellent biocompatibility, degradability, as well as multi-facet functionalities. Current research focuses on optimizing the composition and structure of the sponge to enhance its therapeutic effectiveness. Here, we propose an adhesive hydrogel made from purely natural substances extracted from okra and Panax notoginseng. We utilize 3-dimensional (3D) printing technology to fabricate the hemostatic hydrogel scaffold, incorporating gelatin into the hydrogel and refining the mixing ratio. The interaction between gelatin and okra polyphenols contributes to successful injectability as well as stability of the printed scaffold. The okra in the scaffold exhibits favorable adhesion and hemostatic effects, and the total saponins of Panax notoginseng facilitate angiogenesis. Through in vitro experiments, we have substantiated the scaffold's excellent stability, adhesion, biocompatibility, and angiogenesis-promoting ability. Furthermore, in vivo experiments have demonstrated its dual functionality in rapid hemostasis and wound repair. These features suggest that the 3D-printed, natural substance-derived hydrogel scaffolds have valuable potential in wound healing and related applications.

摘要

水凝胶止血海绵因其优异的生物相容性、可降解性以及多方面的功能特性,在伤口治疗中的有效性已得到认可。当前的研究重点在于优化海绵的组成和结构,以提高其治疗效果。在此,我们提出一种由从秋葵和三七中提取的纯天然物质制成的粘性水凝胶。我们利用三维(3D)打印技术制造止血水凝胶支架,将明胶加入水凝胶中并优化混合比例。明胶与秋葵多酚之间的相互作用有助于实现成功的可注射性以及打印支架的稳定性。支架中的秋葵具有良好的粘附性和止血效果,三七总皂苷则促进血管生成。通过体外实验,我们证实了该支架具有出色的稳定性、粘附性、生物相容性和促血管生成能力。此外,体内实验证明了其在快速止血和伤口修复方面的双重功能。这些特性表明,3D打印的、源自天然物质的水凝胶支架在伤口愈合及相关应用中具有宝贵的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d53/11309851/74ef6e9dc540/research.0446.fig.001.jpg

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