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利用纤维仿生基膜再生气道上皮。

Regenerating airway epithelium using fibrous biomimetic basement membranes.

机构信息

Head and Neck Regenerative Medicine Laboratory, Mayo Clinic Arizona, Phoenix, Arizona, USA.

Division of Laryngology, Mayo Clinic Arizona, Phoenix, Arizona, USA.

出版信息

J Biomed Mater Res A. 2022 Jun;110(6):1251-1262. doi: 10.1002/jbm.a.37371. Epub 2022 Feb 10.

Abstract

There are reciprocal interactions between epithelial cells and underlying basement membrane. The resemblance of biomaterials to native basement membrane is thus critical for their success when used to regenerate epithelium-containing organs. Particularly, the use of nanofibers and the incorporation of basement membrane proteins may mimic both biophysical and biochemical properties of basement membrane, respectively. Herein we tested how electrospun polycaprolactone/heparin fibers with and without adsorbed laminin and collagen IV proteins affect epithelial cell functions. We found that airway epithelial cells attached, migrated, and proliferated on all scaffolds but protein-functionalized fibers promoted higher attachment, quicker migration, and increased proliferation. Fibers were then integrated on polyethylene scaffolds and cultured at an air-liquid interface. The detection of secretory and ciliated cell markers was higher in cells on polyethylene with fibers. These findings demonstrate that electrospun fibers incite beneficial epithelial cell responses and can be used in the fabrication of bioengineered functional epithelia.

摘要

上皮细胞与基底膜之间存在相互作用。生物材料与天然基底膜的相似性对于它们在用于再生含有上皮细胞的器官时的成功至关重要。特别是,使用纳米纤维和基底膜蛋白的掺入可以分别模拟基底膜的生物物理和生化特性。在此,我们测试了具有和不具有吸附层粘连蛋白和胶原 IV 蛋白的电纺聚己内酯/肝素纤维如何影响上皮细胞功能。我们发现气道上皮细胞可以附着、迁移和增殖在所有支架上,但蛋白功能化纤维促进了更高的附着、更快的迁移和增加的增殖。然后将纤维整合到聚乙烯支架上,并在气液界面培养。在带有纤维的聚乙烯上培养的细胞中,分泌细胞和纤毛细胞标志物的检测更高。这些发现表明,电纺纤维引起有益的上皮细胞反应,可用于制造生物工程功能上皮。

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