Effect of fibroin sponge coating on in vivo performance of knitted silk small diameter vascular grafts.

IF 1.6 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Toshiharu Fukayama, Yusuke Ozai, Haruka Shimokawadoko, Derya Aytemiz, Ryou Tanaka, Noboru Machida, Tetsuo Asakura
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引用次数: 21

Abstract

Vascular grafts under 5 mm or less in diameter are not developed due to a problem caused by early thrombus formation, neointimal hyperplasia, etc. Bombyx mori silk fibroin (SF) which has biodegradability and tissue infiltration is focused as tube and coating material of vascular grafts. Coating is an important factor to maintain the strength of the anastomotic region of vascular grafts, and to prevent the blood leak from the vascular grafts after implantation. Therefore, in this research, we focused on the SF concentration of the coating solution, and tissue infiltration and remodeling were compared among each SF concentration. Silk poly (-ethylene) glycol diglycidyl ether (PGDE) coating with concentrations of 1.0%, 2.5%, 5.0%, and 7.5% SF were applied for the double-raschel knitted small-sized vessel with 1.5 mm diameter and 1cm in length. The grafts were implanted in the rat abdominal aorta and removed after 3 weeks or 3 months. Vascular grafts patency was monitored by ultrasound, and morphological evaluation was performed by histopathological examination. SF concentration had no significant effects on the patency rate. However, tissue infiltration was significantly higher in the sample of 2.5% SF in 3 weeks, and 1.0% and 2.5% SF in 3 months. Also, in comparison of length inside of the graft, stenosis were not found in 3 weeks, however, found with 5.0% and 7.5% in 3 months. From these results, it is clear that 2.5% SF coating is the most suitable concentration, based on the characteristics of less stenosis, early tissue infiltration, and less neointimal hyperplasia.

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丝素海绵涂层对针织丝小直径血管移植物体内性能的影响。
由于早期血栓形成、内膜增生等问题,直径小于5mm的血管移植物不能发育。家蚕丝素蛋白具有生物可降解性和组织浸润性,可作为血管移植物的管材和包衣材料。涂层是维持血管吻合区强度,防止血管植入后血管渗漏的重要因素。因此,在本研究中,我们重点研究了包覆液的SF浓度,并比较了不同SF浓度对组织浸润和重塑的影响。采用1.0%、2.5%、5.0%、7.5% SF浓度的丝质聚乙二醇二缩水甘油醚(PGDE)涂层制备直径1.5 mm、长1cm的双拉谢尔针织小血管。将移植物植入大鼠腹主动脉,分别于3周或3个月后取出。超声监测血管通畅程度,组织病理学检查进行形态学评价。SF浓度对通畅率无显著影响。而2.5% SF组3周、1.0%和2.5% SF组3个月的组织浸润率明显高于对照组。与移植物内部长度相比,3周内未发现狭窄,3个月狭窄率分别为5.0%和7.5%。从这些结果可以清楚地看出,2.5% SF涂层是最合适的浓度,基于较少狭窄,早期组织浸润和较少内膜增生的特点。
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来源期刊
Organogenesis
Organogenesis BIOCHEMISTRY & MOLECULAR BIOLOGY-DEVELOPMENTAL BIOLOGY
CiteScore
4.10
自引率
4.30%
发文量
6
审稿时长
>12 weeks
期刊介绍: Organogenesis is a peer-reviewed journal, available in print and online, that publishes significant advances on all aspects of organ development. The journal covers organogenesis in all multi-cellular organisms and also includes research into tissue engineering, artificial organs and organ substitutes. The overriding criteria for publication in Organogenesis are originality, scientific merit and general interest. The audience of the journal consists primarily of researchers and advanced students of anatomy, developmental biology and tissue engineering. The emphasis of the journal is on experimental papers (full-length and brief communications), but it will also publish reviews, hypotheses and commentaries. The Editors encourage the submission of addenda, which are essentially auto-commentaries on significant research recently published elsewhere with additional insights, new interpretations or speculations on a relevant topic. If you have interesting data or an original hypothesis about organ development or artificial organs, please send a pre-submission inquiry to the Editor-in-Chief. You will normally receive a reply within days. All manuscripts will be subjected to peer review, and accepted manuscripts will be posted to the electronic site of the journal immediately and will appear in print at the earliest opportunity thereafter.
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