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联合技术用于组织工程气管移植的气管去细胞化

Decellularization of Trachea With Combined Techniques for Tissue-Engineered Trachea Transplantation.

作者信息

Batioglu-Karaaltin Aysegul, Ovali Ercüment, Karaaltin Mehmet V, Yener Murat, Yılmaz Mehmet, Eyüpoğlu Fatma, Yılmaz Yetkin Zeki, Bozkurt Erol Rüştü, Demir Necdet, Konuk Esma, Bozdağ Ergun Süreyya, Yiğit Özgür, Cansiz Harun

机构信息

Department of Otolaryngology, Head and Neck Surgery, Istanbul University Cerrahpasa Medicine Faculty, Istanbul, Turkey.

Acibadem Labcell Laboratories, Istanbul, Turkey.

出版信息

Clin Exp Otorhinolaryngol. 2019 Feb;12(1):86-94. doi: 10.21053/ceo.2018.00486. Epub 2018 Oct 18.

Abstract

OBJECTIVES

The purpose of this study is to shorten the decellularization time of trachea by using combination of physical, chemical, and enzymatic techniques.

METHODS

Approximately 3.5-cm-long tracheal segments from 42 New Zealand rabbits (3.5±0.5 kg) were separated into seven groups according to decellularization protocols. After decellularization, cellular regions, matrix and strength and endurance of the scaffold were followed up.

RESULTS

DNA content in all groups was measured under 50 ng/mg and there was no significant difference for the glycosaminoglycan content between group 3 (lyophilization+deoxycholic acid+de-oxyribonuclease method) and control group (P=0.46). None of the decellularized groups was different than the normal trachea in tensile stress values (P>0.05). Glucose consumption and lactic acid levels measured from supernatants of all decellularized groups were close to group with cells only (76 mg/dL and 53 mg/L).

CONCLUSION

Using combination methods may reduce exposure to chemicals, prevent the excessive influence of the matrix, and shorten the decellularization time.

摘要

目的

本研究旨在通过物理、化学和酶促技术相结合的方法缩短气管脱细胞时间。

方法

将42只新西兰兔(3.5±0.5千克)约3.5厘米长的气管段按脱细胞方案分为7组。脱细胞后,对支架的细胞区域、基质以及强度和耐久性进行随访。

结果

所有组的DNA含量均测定为低于50纳克/毫克,第3组(冻干+脱氧胆酸+脱氧核糖核酸酶法)与对照组之间的糖胺聚糖含量无显著差异(P=0.46)。所有脱细胞组的拉伸应力值与正常气管相比均无差异(P>0.05)。所有脱细胞组上清液中测得的葡萄糖消耗量和乳酸水平与仅含细胞的组相近(分别为76毫克/分升和53毫克/升)。

结论

采用联合方法可减少化学物质暴露,防止基质的过度影响,并缩短脱细胞时间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c01/6315211/5cc834dc71cb/ceo-2018-00486f1.jpg

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