细胞外囊泡-小肠粘膜下层新型生物复合材料尿道狭窄修复与重建的实验研究。

IF 1 4区 医学 Q4 ENGINEERING, BIOMEDICAL
Dan Wang, Xiaojun Zhu, Buhe Siqin, Chao Ren, Ming Chang, Ligang Bai
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引用次数: 0

摘要

背景:尿道狭窄是一种常见的疾病,严重影响患者的生活质量。目的:探讨细胞外囊泡(EV)-小肠粘膜下层(SIS)复合物在USs修复中的应用价值。方法:从健康雄性新西兰大白兔中提取ev,采用过氧乙酸(PAA)氧化脱细胞法制备SIS。利用电子显微镜和qNano纳米颗粒分析仪对制备的EV-SIS复合物的形貌和粒径进行评价,并用Western blot法检测EV-SIS的标记蛋白。将EV-SIS复合物植入US兔模型,评估其尿动力学参数。结果:EV-SIS复合物形态完整,膜结构完整,粒径均匀。复合物中ev的蛋白浓度约为0.351µg/µL,产率约为1.86µg/106个细胞。该复合物在US兔模型中表现出显著的修复作用,膀胱容量、最大尿道压力、最小尿道压力均明显优于US组(P)。结论:EV-SIS复合物在US患者的修复中具有潜在的临床价值,改善尿动力学参数,为US患者提供了一种有希望的治疗选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental study of extracellular vesicle-small intestine submucosa novel biological composite for urethral stricture repair and reconstruction.

Background: Urethral stricture (US) is a common condition that considerably affects patients' quality of life.

Objectives: This study aimed to explore the adoption value of the extracellular vesicle (EV)- small intestinal submucosa (SIS) complex in the repair of USs.

Methods: EVs were extracted from healthy male New Zealand white rabbits, and SIS was prepared using peracetic acid (PAA) oxidation and decellularization. The morphology and particle size of the prepared EV-SIS complex were evaluated using electron microscopy and qNano nanoparticle analyzer, and the labeled proteins of EVs were detected using Western blot method. EV-SIS the complex was implanted in a rabbit model of US, and urodynamic parameters were assessed.

Results: The EV-SIS complex displayed a full morphology, intact membrane structure, and uniform particle size. The protein concentration of EVs in the complex was approximately 0.351 µg/µL, with a yield of approximately 1.86 µg/106 cells. The complex exhibited remarkable repair effects in the rabbit model of US, with bladder capacity, maximal urethral pressure, and minimal urethral pressure all markedly superior to those in the US group (P < 0.05).

Conclusion: The EV-SIS complex demonstrates potential clinical value in the repair of USs, improving urodynamic parameters, and offering a promising therapeutic option for patients with US.

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来源期刊
Bio-medical materials and engineering
Bio-medical materials and engineering 工程技术-材料科学:生物材料
CiteScore
1.80
自引率
0.00%
发文量
73
审稿时长
6 months
期刊介绍: The aim of Bio-Medical Materials and Engineering is to promote the welfare of humans and to help them keep healthy. This international journal is an interdisciplinary journal that publishes original research papers, review articles and brief notes on materials and engineering for biological and medical systems. Articles in this peer-reviewed journal cover a wide range of topics, including, but not limited to: Engineering as applied to improving diagnosis, therapy, and prevention of disease and injury, and better substitutes for damaged or disabled human organs; Studies of biomaterial interactions with the human body, bio-compatibility, interfacial and interaction problems; Biomechanical behavior under biological and/or medical conditions; Mechanical and biological properties of membrane biomaterials; Cellular and tissue engineering, physiological, biophysical, biochemical bioengineering aspects; Implant failure fields and degradation of implants. Biomimetics engineering and materials including system analysis as supporter for aged people and as rehabilitation; Bioengineering and materials technology as applied to the decontamination against environmental problems; Biosensors, bioreactors, bioprocess instrumentation and control system; Application to food engineering; Standardization problems on biomaterials and related products; Assessment of reliability and safety of biomedical materials and man-machine systems; and Product liability of biomaterials and related products.
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