Phytic acid-loaded polyvinyl alcohol hydrogel promotes wound healing of injured corneal epithelium through inhibiting ferroptosis

IF 10.7 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Redox Biology Pub Date : 2024-09-11 DOI:10.1016/j.redox.2024.103354
Danni Gong , Nianxuan Wu , Huan Chen , Weijie Zhang , Chenxi Yan , Chunlei Zhang , Yao Fu , Hao Sun
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Abstract

As the important barrier of intraocular tissue, cornea is easy to suffer various kinds of injuries. Among them, acute alkali burn is a thorny ophthalmic emergency event, which can lead to corneal persistent epithelial defects, ulcers, and even perforation. Ferroptosis, a mode of regulatory cell death, has been found to play a key role in the process of corneal alkali burn, of which lipid peroxidation and intracellular iron levels are considered to be the possible therapeutic targets. To seek new effective treatments, the study herein focused on the occurrence of oxidative stress and ferroptosis in corneal alkali burn, exploring the role of phytic acid (PA), a natural small molecule with both antioxidant and iron chelating capacity, in the repair of corneal epithelial injury. The in vivo therapeutic results showed that PA eyedrops treatment promoted the recovery of corneal morphology and function, and in vitro experiments proved that PA prompted the repair of oxidative stress induced-corneal epithelial injury through ferroptosis inhibition. In addition, better drug treatment effect could be achieved through hydrogel delivery and sustained release, and our in vivo experiments showed the superior therapeutic effects of PA delivered by PVA hydrogels with larger molecular weights on corneal injury. In summary, this study demonstrated the excellent effect of natural small molecule PA with antioxidant and high efficiency chelating ferrous ions on ferroptosis inhibition, and showed the outstanding application prospect of PVA/PA hydrogels in the treatment of corneal epithelial injury.

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植酸负载聚乙烯醇水凝胶通过抑制铁突变促进受伤角膜上皮的伤口愈合
角膜作为眼内组织的重要屏障,容易受到各种损伤。其中,急性碱烧伤是一种棘手的眼科急症,可导致角膜持续性上皮缺损、溃疡甚至穿孔。研究发现,角膜碱烧伤过程中的一种调节性细胞死亡模式--铁变态反应(Ferroptosis)起着关键作用,而其中的脂质过氧化反应和细胞内铁水平被认为是可能的治疗靶点。为了寻求新的有效治疗方法,本研究聚焦于角膜碱烧伤中氧化应激和铁变态反应的发生,探索植酸(PA)这一兼具抗氧化和铁螯合能力的天然小分子在角膜上皮损伤修复中的作用。体内治疗结果表明,植酸眼药水能促进角膜形态和功能的恢复;体外实验证明,植酸能通过抑制铁跃迁促进氧化应激诱导的角膜上皮损伤的修复。此外,通过水凝胶递送和持续释放可以达到更好的药物治疗效果,我们的体内实验表明,分子量较大的 PVA 水凝胶递送的 PA 对角膜损伤有更好的治疗效果。综上所述,本研究证实了天然小分子 PA 具有抗氧化和高效螯合亚铁离子的良好抑制铁突变作用,并展示了 PVA/PA 水凝胶在角膜上皮损伤治疗中的广阔应用前景。
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来源期刊
Redox Biology
Redox Biology BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
19.90
自引率
3.50%
发文量
318
审稿时长
25 days
期刊介绍: Redox Biology is the official journal of the Society for Redox Biology and Medicine and the Society for Free Radical Research-Europe. It is also affiliated with the International Society for Free Radical Research (SFRRI). This journal serves as a platform for publishing pioneering research, innovative methods, and comprehensive review articles in the field of redox biology, encompassing both health and disease. Redox Biology welcomes various forms of contributions, including research articles (short or full communications), methods, mini-reviews, and commentaries. Through its diverse range of published content, Redox Biology aims to foster advancements and insights in the understanding of redox biology and its implications.
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