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两种脱细胞真皮等同物的比较。

Comparison of two decellularized dermal equivalents.

机构信息

Department of Oral and Maxillofacial Surgery, School of Dentistry, University of Michigan, Ann Arbor, MI, USA.

Consulting for Statistics, Computing & Analytics Research, University of Michigan, Ann Arbor, MI, USA.

出版信息

J Tissue Eng Regen Med. 2018 Apr;12(4):983-990. doi: 10.1002/term.2530. Epub 2017 Nov 5.

Abstract

Immunologically inert allogeneic acellular dermal scaffolds provide a matrix with molecular architecture close to native tissues, which synthetic scaffolds cannot. Not all nature-derived scaffolds possess the same biological and physical properties. The different properties of scaffolds supporting cellular growth used for manufacturing tissue engineered grafts could lead to different implantation results. The scaffold properties should be carefully considered in order to meet the expected outcomes of tissue engineered grafts. In this report, we evaluated the cellular growth on AlloDerm® and Allopatch, 2 acellular scaffolds derived from human cadaver skin, using a fabricated 3D organotypic culture with primary human oral keratinocytes to produce an ex vivo produced oral mucosa equivalent (EVPOME). A well stratified epithelium could be constructed on both scaffolds. AlloDerm® and Allopatch EVPOMEs were also implanted into severe combined immunodeficiency mice to compare the ingrowth of blood vessels into the dermal component of the two EVPOMEs. Blood vessel counts were 3.3 times higher (p = .01) within Allopatch EVPOMEs than within AlloDerm® EVPOMEs. An oral and skin keratinocyte co-culture, separated by a physical barrier to create a cell-free zone, was used to evaluate cell migration on AlloDerm® and Allopatch. Slower cell migration was observed on Allopatch than on AlloDerm®.

摘要

免疫惰性同种异体去细胞真皮支架提供了一种接近天然组织的分子结构的基质,而合成支架则无法提供。并非所有天然来源的支架都具有相同的生物学和物理特性。用于制造组织工程移植物的支持细胞生长的支架的不同特性可能导致不同的植入结果。为了达到组织工程移植物的预期效果,应该仔细考虑支架的特性。在本报告中,我们使用源自人尸体皮肤的两种去细胞支架(即 AlloDerm®和 Allopatch),通过制造具有原代人口腔角质形成细胞的 3D 器官型培养来评估细胞在其上的生长情况,以产生体外产生的口腔黏膜等效物(EVPOME)。两种支架上均可构建具有良好分层的上皮。还将 AlloDerm®和 Allopatch EVPOME 植入严重联合免疫缺陷小鼠中,以比较两种 EVPOME 中真皮成分内血管的生长情况。Allopatch EVPOME 中的血管计数比 AlloDerm®EVPOME 高 3.3 倍(p=0.01)。使用口腔和皮肤角质形成细胞共培养物,通过物理屏障将其隔开以创建无细胞区,评估细胞在 AlloDerm®和 Allopatch 上的迁移。与 AlloDerm®相比,Allopatch 上的细胞迁移速度较慢。

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