Suppr超能文献

异种纤维蛋白封闭剂与生物工程人胚胎干细胞联合应用以改善自体坐骨神经移植修复后的再生情况。

Combination of heterologous fibrin sealant and bioengineered human embryonic stem cells to improve regeneration following autogenous sciatic nerve grafting repair.

作者信息

Mozafari Roghayeh, Kyrylenko Sergiy, Castro Mateus Vidigal, Ferreira Rui Seabra, Barraviera Benedito, Oliveira Alexandre Leite Rodrigues

机构信息

1Department of Structural and Functional Biology, Institute of Biology, University of Campinas (UNICAMP), Laboratory of Nerve Regeneration, Campinas, SP CEP 13083-970 Brazil.

2Department of Public Health, Medical Institute of Sumy State University, Sumy, 40007 Ukraine.

出版信息

J Venom Anim Toxins Incl Trop Dis. 2018 Apr 12;24:11. doi: 10.1186/s40409-018-0147-x. eCollection 2018.

Abstract

BACKGROUND

Peripheral nerve injury is a worldwide clinical problem, and the preferred surgical method for treating it is the end-to-end neurorrhaphy. When it is not possible due to a large nerve gap, autologous nerve grafting is used. However, these surgical techniques result in nerve regeneration at highly variable degrees. It is thus very important to seek complementary techniques to improve motor and sensory recovery. One promising approach could be cell therapy. Transplantation therapy with human embryonic stem cells (hESCs) is appealing because these cells are pluripotent and can differentiate into specialized cell types and have self-renewal ability. Therefore, the main objective of this study was to find conditions under which functional recovery is improved after sciatic nerve neurorrhaphy. We assumed that hESC, either alone or in combination with heterologous fibrin sealant scaffold, could be used to support regeneration in a mouse model of sciatic nerve injury and repair via autografting with end-to-end neurorrhaphy.

METHODS

Five millimeters of the sciatic nerve of C57BL/6 J mice were transected off and rotated 180 degrees to simulate an injury, and then stumps were sutured. Next, we applied heterologous fibrin sealant and/or human embryonic stem cells genetically altered to overexpress fibroblast growth factor 2 (FGF2) at the site of the injury. The study was designed to include six experimental groups comprising neurorrhaphy (N), neurorrhaphy + heterologous fibrin sealant (N + F), neurorrhaphy + heterologous fibrin sealant + doxycycline (N + F + D), neurorrhaphy + heterologous fibrin sealant + wild-type hESC (N + F + W), neurorrhaphy + heterologous fibrin sealant + hESC off (N + F + T), and neurorrhaphy + heterologous fibrin sealant + hESC on via doxycycline (N + F + D + T). We evaluated the recovery rate using Catwalk and von Frey functional recovery tests, as well as immunohistochemistry analysis.

RESULTS

The experiments indicated that sensory function improved when transgenic hESCs were used. The regeneration of sensory fibers indeed led to increased reflexes, upon stimulation of the paw ipsilateral to the lesion, as seen by von-Frey evaluation, which was supported by immunohistochemistry.

CONCLUSIONS

Overall, the present data demonstrated that transgenic embryonic stem cells, engineered to overexpress FGF-2 in an inducible fashion, could be employed to support regeneration aiming at the recovery of both motor and sensory functions.

摘要

背景

周围神经损伤是一个全球性的临床问题,治疗该疾病的首选手术方法是端端神经缝合术。当因神经缺损较大而无法进行端端神经缝合术时,则采用自体神经移植术。然而,这些手术技术导致的神经再生程度差异很大。因此,寻求辅助技术以改善运动和感觉功能恢复非常重要。一种有前景的方法可能是细胞治疗。用人胚胎干细胞(hESCs)进行移植治疗很有吸引力,因为这些细胞具有多能性,能够分化为特定的细胞类型,并且具有自我更新能力。因此,本研究的主要目的是找到能在坐骨神经缝合术后改善功能恢复的条件。我们假设,单独使用hESC或与异源纤维蛋白封闭剂支架联合使用,可用于支持坐骨神经损伤小鼠模型通过自体移植和端端神经缝合术进行的再生和修复。

方法

切断C57BL/6 J小鼠的坐骨神经5毫米,并将其旋转180度以模拟损伤,然后缝合残端。接下来,我们在损伤部位应用异源纤维蛋白封闭剂和/或经过基因改造以过表达成纤维细胞生长因子2(FGF2)的人胚胎干细胞。该研究设计包括六个实验组,分别为神经缝合术(N)、神经缝合术+异源纤维蛋白封闭剂(N+F)、神经缝合术+异源纤维蛋白封闭剂+强力霉素(N+F+D)、神经缝合术+异源纤维蛋白封闭剂+野生型hESC(N+F+W)、神经缝合术+异源纤维蛋白封闭剂+关闭hESC(N+F+T)以及神经缝合术+异源纤维蛋白封闭剂+通过强力霉素开启hESC(N+F+D+T)。我们使用Catwalk和von Frey功能恢复测试以及免疫组织化学分析来评估恢复率。

结果

实验表明,使用转基因hESCs时感觉功能得到改善。如von-Frey评估所示,在刺激损伤同侧爪子时,感觉纤维的再生确实导致反射增加,免疫组织化学也证实了这一点。

结论

总体而言,目前的数据表明,经过基因工程改造以可诱导方式过表达FGF-2的转基因胚胎干细胞,可用于支持旨在恢复运动和感觉功能的再生。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验