Ocular biocompatibility of gelatin microcarriers functionalized with oxidized hyaluronic acid

生物相容性 透明质酸 材料科学 明胶 微载波 生物医学工程 纳米技术 化学工程 高分子科学 有机化学 冶金 医学 生物化学 解剖 细胞 工程类 化学
作者
Jui‐Yang Lai,David Hui‐Kang
出处
期刊:Materials Science and Engineering: C [Elsevier]
卷期号:72: 150-159 被引量:31
标识
DOI:10.1016/j.msec.2016.11.067
摘要

Given that the presence of aldehyde groups on the oxidized sugar residues may pose toxicity concerns, it is necessary to examine the safety of gelatin microcarriers (GMC) functionalized with oxidized hyaluronic acid (oHA) for potential ophthalmic applications. In this study, the ocular biocompatibility of biopolymer microcarriers was investigated in vitro using primary rabbit corneal cell cultures and in vivo using the anterior chamber of the rabbit eye model. Our results showed that different types of corneal cells including epithelial, stromal, and endothelial cells remain viable and actively proliferate following 2 and 4days of exposure to test materials. In addition, similar interleukin-6 gene expression levels and comet tail lengths were seen in the presence and absence of biopolymer microcarriers, suggesting no cellular inflammation and genotoxicity. After 7 and 14days of intracameral injection in the rabbit eyes, both the GMC samples and their counterparts functionalized with oHA were well tolerated in the ocular anterior chamber as demonstrated by slit-lamp biomicroscopy. Clinical observations including specular microscopic examinations, corneal topography, and corneal thickness measurements also showed that the rabbits bearing biopolymer microcarriers exhibit no signs of corneal edema and astigmatism as well as endothelial damage, indicating the absence of tissue response. It is concluded that the GMC materials functionalized with oHA (oxidation level: 10.4±0.9%) are compatible toward corneal cells and ocular anterior segment tissues at a concentration of 10mg/ml. The information about the effect of coupling of aldehyde-functionalized HA to gelatin on in vitro and in vivo biocompatibility of biopolymer composites can be used as further development of corneal stromal cell microcarriers for tissue engineering applications.
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