首页> 外文期刊>Biomaterials Science >Thiolated gamma-polyglutamic acid as a bioadhesive hydrogel-forming material: evaluation of gelation, bioadhesive properties and sustained release of KGF in the repair of injured corneas
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Thiolated gamma-polyglutamic acid as a bioadhesive hydrogel-forming material: evaluation of gelation, bioadhesive properties and sustained release of KGF in the repair of injured corneas

机译:硫醇γ-聚谷氨酸作为生物粘附水凝胶形成材料:评价凝胶化,生物粘性特性和KGF在受伤的粘膜修复中的持续释放

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摘要

A Keratinocyte growth factor (KGF) has a good therapeutic effect on injured corneas. However, due to the washout of tears and blinking, locally administrated KGF usually has a short residence time on the surface of an injured cornea, resulting in its poor bioavailability. Herein, a bioadhesive hydrogel is described produced using cysteine-modified gamma-polyglutamic acid (PGA-Cys) as the hydrogel-forming material to locally deliver KGF. A series of PGA-Cys polymers with different graft ratios of cysteine were firstly synthesized and carefully characterized. Thereafter, the PGA-Cys hydrogel was screened by changing the graft ratio of cysteine and polymer concentration, and the apparent viscosities and bioadhesive force were also carefully investigated. It was found that PGA-Cys polymers with different graft ratios of cysteine exhibited tunable apparent viscosity and bioadhesive properties at the same polymer concentration. When PGA-Cys with a graft ratio of 1.5 mmol g(-1) of cysteine (PGA-Cys-1.5) was used as hydrogel-forming material, the hydrogel exhibited a good gelation property with an apparent viscosity of 5.2 Pa s and strong bioadhesive force of 167 +/- 0.5 mN. In vitro release study showed that KGF was slowly released from PGA-Cys-1.5 hydrogel over a longer time in comparison to PGA solution alone. Moreover, PGA-Cys-1.5 hydrogel enabled most of the encapsulated KGF to be retained on the cornea and conjunctiva after local administration. Meanwhile, the morphology of the corneal epithelium in the alkali-injured cornea of mice was well repaired after 7 days of treatment with KGF-PGA-Cys-1.5 hydrogel. The therapeutic mechanism was strongly associated with inhibiting corneal inflammation and neovascularization, promoting proliferation of the corneal epithelium and inhibiting apoptosis. Overall, the use of the bioadhesive PGA-Cys hydrogel with a suitable KGF release profile may be a more promising approach than using PGA solution alone and KGF to repair injured corneas.
机译:角蛋白细胞生长因子(KGF)对受伤的角膜具有良好的治疗效果。然而,由于泪水和闪烁的冲洗,当地施用的KGF通常在受伤角膜表面上具有短暂的停留时间,导致其生物利用度差。在此,使用半胱氨酸改性的γ-聚谷氨酸(PGA-Cys)作为水凝胶形成材料制备生物粘附水凝胶,以局部递送KGF。首先合成并仔细描述了一系列具有不同移植物的PGA-CYS聚合物具有不同移植物的半胱氨酸比。此后,通过改变半胱氨酸和聚合物浓度的接枝比来筛选PGA-Cys水凝胶,并且还仔细研究了表观粘度和生物粘附力。发现具有不同流动的半胱氨酸的PGA-Cys聚合物在相同的聚合物浓度下表现出可调性表观粘度和生物粘度性质。当具有1.5mmol g(-1)半胱氨酸(PGA-Cys-1.5)的PGA-Cys用作水凝胶形成材料时,水凝胶表现出良好的凝胶化性能,表观粘度为5.2Pa S和强生物粘附力为167 +/- 0.5mn。体外释放研究表明,与单独的PGA溶液相比,在较长时间缓慢释放KGF。此外,PGA-CYS-1.5水凝胶使大多数包封的KGF能够在局部给药后保留在角膜和结膜上。同时,在用KGF-PGA-Cys-1.5水凝胶治疗7天后,在小鼠的碱性损伤角膜中的角膜上皮的形态得到很好的修复。治疗机制与抑制角膜炎症和新血管形成强烈有关,促进角膜上皮的增殖和抑制细胞凋亡。总的来说,使用具有合适的KGF释放曲线的生物粘附PGA-CYS水凝胶可以是比使用PGA溶液单独使用PGA溶液和KGF修复受伤的角膜。

著录项

  • 来源
    《Biomaterials Science》 |2019年第6期|共18页
  • 作者单位

    Wenzhou Med Univ Dept Pharmaceut Sch Pharmaceut Sci Wenzhou 325035 Zhejiang Peoples R China;

    Wenzhou Med Univ Dept Pharmaceut Sch Pharmaceut Sci Wenzhou 325035 Zhejiang Peoples R China;

    Wenzhou Med Univ Dept Pharmaceut Sch Pharmaceut Sci Wenzhou 325035 Zhejiang Peoples R China;

    Wenzhou Med Univ Dept Pharmaceut Sch Pharmaceut Sci Wenzhou 325035 Zhejiang Peoples R China;

    Wenzhou Med Univ Dept Pharmaceut Sch Pharmaceut Sci Wenzhou 325035 Zhejiang Peoples R China;

    Wenzhou Med Univ Sch Int Studies Wenzhou 325035 Zhejiang Peoples R China;

    Wenzhou Med Univ Dept Pharmaceut Sch Pharmaceut Sci Wenzhou 325035 Zhejiang Peoples R China;

    Wenzhou Med Univ Dept Pharmaceut Sch Pharmaceut Sci Wenzhou 325035 Zhejiang Peoples R China;

    Wenzhou Med Univ Dept Pharmaceut Sch Pharmaceut Sci Wenzhou 325035 Zhejiang Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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