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Development of composite cultured oral mucosa utilizing collagen sponge matrix and contracted collagen gel: a preliminary study for clinical applications.

机译:利用胶原海绵基质和收缩胶原凝胶的复合培养口腔粘膜的开发:临床应用的初步研究。

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A new type of cultured mucosa was developed as a mucosal substitute. This composite cultured oral mucosa (CCOM) was composed of (1) a lamina propria in which fibroblasts were embedded in contacted collagen gel and honeycomb structured collagen sponge and (2) stratified epithelial cell layers on the surface of the cultured lamina propria. CCOM had a well-stratified and differentiated epithelial cell layer, and its involucrin and laminin expression resembled that of normal oral mucosa. Desmosomes were recognizable with transmission electron microscopic examination. In the lamina propria, contracted collagen gel had pooled away from the sponge wall, leaving a sparse structure inside the collagen sponge. Transplantation of CCOM to nude mice was performed by creating full-thickness wound and then applying CCOM (n = 12). Murine skin allograft (n = 4) and no-graft conditions (n = 5) served as controls. The mice were sacrificed for histological evaluation and assessed for wound contraction 28 days after transplantation. The epithelium of the CCOM-treated group had five to 10 cell layers, and the dermis contained many fibroblasts and a large amount of collagen bundles. The wound contraction of the CCOM-treated group was statistically less than that of the no-graft group. These results indicate that CCOM has barrier functions against various stresses and can induce a fibrovascular ingrowth from the surrounding wound bed, and that CCOM could be applied in a clinical setting.
机译:开发了一种新型的培养粘膜作为粘膜替代物。该复合培养口腔粘膜(CCOM)由(1)固有层(其中成纤维细胞嵌入接触的胶原蛋白凝胶和蜂窝结构的胶原海绵中)和(2)培养固有层表面上的分层上皮细胞层组成。 CCOM的上皮细胞层具有良好的分层和分化能力,其involucrin和层粘连蛋白的表达与正常口腔粘膜相似。通过透射电子显微镜检查可以识别出桥粒。在固有层中,收缩的胶原蛋白凝胶从海绵壁上聚集,在胶原蛋白海绵内部留下稀疏的结构。将CCOM移植到裸鼠中,方法是创建全层伤口,然后使用CCOM(n = 12)。小鼠皮肤同种异体移植(n = 4)和无移植条件(n = 5)作为对照。处死小鼠以进行组织学评估,并在移植后28天评估伤口收缩。 CCOM治疗组的上皮细胞有5至10个细胞层,真皮中含有许多成纤维细胞和大量胶原束。统计学上,CCOM治疗组的伤口收缩小于无移植物组。这些结果表明CCOM具有抵抗各种压力的屏障功能,并且可以诱导周围伤口床的纤维血管向内生长,并且CCOM可以在临床环境中应用。

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