Suppr超能文献

与正常口腔黏膜和皮肤组织相比,对体外培养的口腔黏膜等效物(EVPOME)进行非线性应力-应变测量。

Non-linear stress-strain measurements of ex vivo produced oral mucosal equivalent (EVPOME) compared to normal oral mucosal and skin tissue.

作者信息

Winterroth Frank, Hollister Scott J, Feinberg Stephen E, Kuo Shiuhyang, Fowlkes J Brian, Ganguly Arindam, Hollman Kyle W

机构信息

Department of Biomedical Engineer, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2011;2011:286-9. doi: 10.1109/IEMBS.2011.6090075.

Abstract

Stress-strain curves of oral mucosal tissues were measured using direct mechanical testing. Measurements were conducted on both natural oral mucosal tissues and engineered devices, specifically a clinically developed ex vivo produced oral mucosal equivalent (EVPOME). As seeded cells proliferate on EVPOME devices, they produce a keratinized protective upper layer which fills in surface irregularities. These transformations can further alter stress-strain parameters as cells in EVPOME differentiate, more similar to natural oral mucosal tissues in contrast to an unseeded scaffold. In addition to tissue devices grown under normal conditions (37 °C), EVPOMEs were also produced at 43 °C. These thermally stressed specimens model possible failure mechanisms. Results from a mechanical deformation system capable of accurate measurements on small (approximately 1.0-1.5 cm(2)) cylindrical tissue samples are presented. Deformations are produced by lowering a circular piston, with a radius smaller than the sample radius, onto the center of the sample. Resulting force is measured with a precision electronic balance. Cultured EVPOME was less stiff than AlloDerm®, but similar to native porcine buccal tissue. Porcine skin and porcine palate tissues were even less stiff. Thermally stressed EVPOME was less stiff than normally cultured EVPOME as expected because stressed keratin cells were damaged reducing the structural integrity of the tissue.

摘要

采用直接力学测试法测量口腔黏膜组织的应力-应变曲线。对天然口腔黏膜组织和工程化装置进行了测量,具体为一种临床研发的体外培养口腔黏膜替代物(EVPOME)。随着接种细胞在EVPOME装置上增殖,它们会形成一层角质化的保护性上层,填充表面不平整处。随着EVPOME中的细胞分化,这些转变会进一步改变应力-应变参数,与未接种细胞的支架相比,其更类似于天然口腔黏膜组织。除了在正常条件(37℃)下培养的组织装置外,还在43℃下制备了EVPOME。这些热应激样本模拟了可能的失效机制。展示了一种能够对小尺寸(约1.0 - 1.5平方厘米)圆柱形组织样本进行精确测量的机械变形系统的结果。通过将半径小于样本半径的圆形活塞降至样本中心来产生变形。用精密电子天平测量产生的力。培养的EVPOME比AlloDerm®更柔软,但与天然猪颊组织相似。猪皮肤和猪腭组织甚至更柔软。正如预期的那样,热应激EVPOME比正常培养的EVPOME更柔软,因为应激的角质形成细胞受损,降低了组织的结构完整性。

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