Queensland Eye Institute, South Brisbane, Queensland 4101, Australia.
Biomaterials. 2012 May;33(13):3529-38. doi: 10.1016/j.biomaterials.2012.01.045. Epub 2012 Feb 13.
Membranes prepared from Bombyx mori silk fibroin have shown potential as a substrate for human limbal epithelial (L-EC) and stromal cell cultivation. Here we present fibroin as a dual-layer construct containing both an epithelium and underlying stroma for corneolimbal reconstruction. We have compared the growth and phenotype of L-EC on non-porous versus porous fibroin membranes. Furthermore, we have compared the growth of limbal mesenchymal stromal cells (L-MSC) in either serum-supplemented medium or the MesenCult-XF(®) culture system within fibroin fibrous mats. The co-culture of L-EC and L-MSC in fibroin dual-layer constructs was also examined. L-EC on porous membranes displayed a squamous monolayer; in contrast, L-EC on non-porous fibroin appeared cuboidal and stratified. Both constructs maintained evidence of corneal phenotype (cytokeratin 3/12) and distribution of ΔNp63(+) progenitor cells. L-MSC cultivated within fibroin fibrous mats in serum-supplemented medium contained less than 64% of cells expressing the characteristic MSC phenotype of CD73(+)CD90(+)CD105(+) after two weeks, compared with over 81% in MesenCult-XF(®) medium. Dual-layer fibroin scaffolds consisting of L-EC and L-MSC maintained a similar phenotype as on the separate layers. These results support the feasibility of a 3D engineered limbus constructed from B. mori silk fibroin, and warrant further studies into the potential benefits it offers to corneolimbal tissue regeneration.
家蚕丝素蛋白制备的膜已显示出作为人角膜缘上皮(L-EC)和基质细胞培养的潜在底物。在这里,我们提出了一种双层结构的丝素,既包含上皮细胞又包含下方的基质细胞,用于角膜缘重建。我们比较了 L-EC 在非多孔与多孔丝素膜上的生长和表型。此外,我们比较了在丝素纤维垫中补充血清的培养基或 MesenCult-XF(®)培养系统中,角膜缘间充质基质细胞(L-MSC)的生长情况。还检查了 L-EC 和 L-MSC 在丝素双层构建体中的共培养。在多孔膜上的 L-EC 呈鳞状单层;相比之下,在非多孔丝素上的 L-EC 呈立方体形并分层。两种构建体均保持角膜表型(细胞角蛋白 3/12)和 ΔNp63(+)祖细胞分布的证据。在补充血清的培养基中,在丝素纤维垫内培养的 L-MSC 在两周后,表达特征性 MSC 表型 CD73(+)CD90(+)CD105(+)的细胞不到 64%,而在 MesenCult-XF(®)培养基中则超过 81%。由 L-EC 和 L-MSC 组成的双层丝素支架在分离层上保持相似的表型。这些结果支持了由家蚕丝素蛋白构建的 3D 工程化角膜缘的可行性,并进一步研究了它为角膜缘组织再生提供的潜在益处。