将自凝固水凝胶优化为内镜下可递送水凝胶涂层系统:对猪内镜粘膜下剥离引起的溃疡进行概念验证研究

IF 2.3 4区 化学 Q3 POLYMER SCIENCE
Rina Cho, Hiroyuki Kamata, Yosuke Tsuji, Ayano Fujisawa, Yuko Miura, Shohei Ishikawa, Ren Sato, Takuya Katashima, Takamasa Sakai, Mitsuhiro Fujishiro
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引用次数: 0

摘要

内镜黏膜下剥离术(ESD)可使癌症早期患者获益,但也会带来各种并发症风险。在ESD引起的溃疡上使用临床认可的产品可以减少这些并发症,但这些产品的固定特性限制了人们对其对溃疡愈合影响的了解。这项研究的重点是 Tetra-PEG 凝胶,这是一种创新的水凝胶,由一对巯基马来酰亚胺制成,具有可控的物理特性。Tetra-PEG 凝胶中使用的生物相容性聚乙二醇(PEG)可使其作为生物材料应用。我们研究的目的是确定内窥镜应用的自凝固水凝胶的特性,并开发出一种新的溃疡涂层剂,用于ESD后治疗。我们开发了一种专用的双腔导管,并确定了水凝胶的最佳应用条件。我们研究了胶凝溶液的流体力学特性,并阐明了设备运行过程中出现的压降。最后,考虑到之前的实验结果,我们成功地将水凝胶应用于猪胃ESD后溃疡。我们相信,通过进一步优化具有有效控制特性的水凝胶,并继续通过动物实验对其进行研究,可以扩大我们对材料和溃疡愈合特性之间关系的理解,并将这些知识应用到临床应用中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Optimizing a self-solidifying hydrogel as an endoscopically deliverable hydrogel coating system: a proof-of-concept study on porcine endoscopic submucosal dissection-induced ulcers

Optimizing a self-solidifying hydrogel as an endoscopically deliverable hydrogel coating system: a proof-of-concept study on porcine endoscopic submucosal dissection-induced ulcers

Optimizing a self-solidifying hydrogel as an endoscopically deliverable hydrogel coating system: a proof-of-concept study on porcine endoscopic submucosal dissection-induced ulcers
Endoscopic submucosal dissection (ESD) benefits patients in the early stages of cancer, but it poses various risks of complication. Strategies involving the application of clinically approved products to cover ulcers caused by ESD can reduce these complications, but the fixed nature of their properties limit the understanding of their effects on ulcer healing. This study was focused on Tetra–PEG gel, an innovative hydrogel with controllable physical properties made from a sulfhydryl–maleimide pair. The use of biocompatible polyethylene glycol (PEG) in Tetra–PEG gel may allow for its application as a biomaterial. The aims of our study were to identify the characteristics of a self-solidifying hydrogel for endoscopic application and to develop a new ulcer coating agent for post-ESD treatment. We developed a specialized double-lumen catheter and determined the optimal application conditions of the hydrogel. We examined the hydrodynamic properties of the gelling solutions and elucidated the pressure drop that occurred during device operation. Finally, by considering previous experimental results, we successfully applied the hydrogel to post-ESD ulcers in porcine stomachs. We believed that by further optimizing hydrogels with effectively controlled properties and by continuing to investigate them through animal experiments, we could expand our understanding of the relationships among material and ulcer healing properties and apply this knowledge to clinical applications. We explored the feasibility of Tetra-PEG gel, a controllable hydrogel, as a new biomaterial to develop a coating agent for post-ESD ulcers. We examined the optimal conditions for hydrogel application and developed a specialized catheter, then investigated its properties. Ultimately, we successfully used the optimized hydrogel and device to cover post-ESD ulcers in the porcine stomach. Further optimization of the hydrogel and ongoing research through animal experiments are expected to deepen our understanding of the material’s effects on ulcer healing and contribute to its clinical applications.
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来源期刊
Polymer Journal
Polymer Journal 化学-高分子科学
CiteScore
5.60
自引率
7.10%
发文量
131
审稿时长
2.5 months
期刊介绍: Polymer Journal promotes research from all aspects of polymer science from anywhere in the world and aims to provide an integrated platform for scientific communication that assists the advancement of polymer science and related fields. The journal publishes Original Articles, Notes, Short Communications and Reviews. Subject areas and topics of particular interest within the journal''s scope include, but are not limited to, those listed below: Polymer synthesis and reactions Polymer structures Physical properties of polymers Polymer surface and interfaces Functional polymers Supramolecular polymers Self-assembled materials Biopolymers and bio-related polymer materials Polymer engineering.
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