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载维甲酸透明质酸衍生物膜上呼吸道上皮细胞的粘液纤毛分化和水通道蛋白形成增加。

Increased mucociliary differentiation and aquaporins formation of respiratory epithelial cells on retinoic acid-loaded hyaluronan-derivative membranes.

机构信息

Department of Otolaryngology, Far Eastern Memorial Hospital, Taipei, Taiwan.

出版信息

Acta Biomater. 2013 Jun;9(6):6783-9. doi: 10.1016/j.actbio.2013.02.038. Epub 2013 Mar 5.

DOI:10.1016/j.actbio.2013.02.038
PMID:23467044
Abstract

While playing a major role in maintaining the mucociliary phenotype of respiratory epithelial cells (RECs), retinoids are critical determinants of their normal function. However, despite being a powerful biological agent, retinoic acid (RA) is generally not used in regenerative medicine due to its scarce bioavailability via conventional administration. Therefore, the ability to incorporate RA into biomaterials allows for a combination of the biological effects of RA and biomaterials in influencing cellular behavior. This study attempts to develop RA-loaded hyaluronan-derivative membrane (RA-HAm) and investigates how this membrane affects the mucociliary differentiation and aquaporins (AQP) formation of RECs. In a simulated in vitro culture condition, the RA release from membranes is maintained for 7days. On the seventh day, the cumulative release rate of RA from supportive biomaterials is ~87% under detect limitation. RECs cultured on RA-HAm reveal numerous mature ciliated cells and microvilli compared to aggregated cilia-like structures on hyaluronan-derivative membrane (HAm). Moreover, the expression levels of MUC5AC and AQP on RA-HAm are higher than those on HAm. The proposed model elucidates the release of hydrophobic RA from hyaluronan-derivative biomaterials. We believe that RA-loaded hyaluronan biomaterials are highly promising biomaterials for use in sinonasal surgery and tissue engineering of the respiratory system.

摘要

虽然视黄酸(retinoic acid,RA)在维持呼吸道上皮细胞(RECs)的纤毛表型方面发挥着重要作用,但它也是决定 RECs 正常功能的关键因素。然而,尽管 RA 是一种强大的生物制剂,但由于其通过常规给药途径的生物利用度较低,通常不用于再生医学。因此,将 RA 纳入生物材料的能力可以将 RA 的生物学效应与生物材料的生物学效应结合起来,从而影响细胞行为。本研究试图开发载有 RA 的透明质酸衍生物膜(RA-HAm),并研究该膜如何影响 RECs 的黏液纤毛分化和水通道蛋白(AQP)的形成。在模拟的体外培养条件下,膜中 RA 的释放可维持 7 天。在第 7 天,在检测极限下,支持性生物材料中 RA 的累积释放率约为 87%。与透明质酸衍生物膜(HAm)上聚集的纤毛样结构相比,在 RA-HAm 上培养的 RECs 显示出许多成熟的纤毛细胞和微绒毛。此外,RA-HAm 上的 MUC5AC 和 AQP 的表达水平高于 HAm。所提出的模型阐明了疏水 RA 从透明质酸衍生物生物材料中的释放。我们相信,载有 RA 的透明质酸生物材料是用于鼻腔鼻窦手术和呼吸系统组织工程的很有前途的生物材料。

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