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Discerning the composition of penetratin for safe penetration from cornea to retina

机译:辨别出Peacetratin的组成,以安全渗透到视网膜

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摘要

Graphical abstract Display Omitted Abstract Delivery of biomacromolecules into the eye is greatly hindered by several protective barriers. The cell-penetrating peptide, penetratin, has been found to be an effective absorption enhancer for noninvasive intraocular gene delivery. To discern the composition of penetratin for safe penetration from cornea to retina, we designed a series of penetratin derivatives by varying the hydrophobicity and evaluated their potency for retina-targeted delivery. The hydrophilic amino acids of penetratin, excluding the conserved basic amino acid residues, were respectively replaced with tryptophan. Secondary structure of the resultant derivatives was analyzed by computer simulation and circular dichroism, exhibiting that the hydrophobic derivatives had a propensity to form high content of helix and entered corneal and conjunctival cells more easily than did penetratin. As expected, the hydrophobic derivatives showed improved permeability in excised rabbit cornea and sclera, and kept intact after penetration. When instilled topically in the conjunctival sac of mice eyes, the hydrophobic derivatives distributed safely and rapidly into both cornea and retina, with increased amount and prolonged retention time in comparison to penetratin. In conclusion, we demonstrated that the ocular permeability of penetratin derivatives closely correlated with their hydrophobicity, and introducing hydrophobic amino acids in penetratin was a feasible approach to develop more powerful ocular absorption enhancers. Statement of Significance Due to the defensive barriers of the eye, efficient and safe absorption enhancers are indispensable for noninvasive delivery of exogenous biomacromolecules to the posterior segment. In this manuscript, we designed a series of penetratin derivatives and validated they had significantly improved penetration ability from cornea to retina than wild-type penetratin, without increasing toxicity. More importantly, we provided a sequence of solid evidences that the ocular permeability of penetratin derivatives closely correlated with their hydrophobicity, and introducing hydrophobic amino acids in penetratin was a feasible approach to develop more powerful ocular absorption enhancers. We also demonstrated that the penetratin derivatives permeated through cornea and sclera with intact structure, and might enter the eye by non-corneal pathway.
机译:图形摘要显示屏省略了摘要将生物摩擦分配进入眼睛,极大地阻碍了几种保护障碍。已经发现细胞穿透肽,渗透蛋白是非侵入性眼内基因递送的有效吸收增强剂。为了辨别出渗透素的组成,以便将基角膜的安全渗透到视网膜,我们通过改变疏水性设计一系列的白桦蛋白衍生物,并评估其对视网膜靶向递送的效力。渗透素的亲水性氨基酸,不包括保守的碱性氨基酸残基分别用色氨酸替换。通过计算机模拟和圆形二色性分析所得衍生物的二级结构,表现出疏水性衍生物具有形成高含量的螺旋含量,并且比Penetratin更容易进入角膜和结膜细胞。如预期的那样,疏水衍生物在切除的兔角膜和巩膜中显示出改善的渗透性,并在渗透后保持完整。当在小鼠眼的结膜囊中旋转旋转时,疏水衍生物安全且迅速地分布到角膜和视网膜中,与penetratin相比,随着量的量和延长的保留时间。总之,我们证明了与其疏水性密切相关的白桦蛋白衍生物的眼渗透性,并引入Penetratin中的疏水性氨基酸是一种可行的方法来发展更强大的眼部吸收增强剂。由于眼睛的防御性屏障,高效和安全的吸收增强剂的显着性陈述是不可缺乏的外源生物调整到后部的不可或缺的。在这一原稿中,我们设计了一系列的渗透素衍生物并验证了它们从角膜到视网膜的渗透能力显着提高了野生型PENETRADIN,而不会增加毒性。更重要的是,我们提供了一系列固体证据,即渗透素衍生物与其疏水性密切相关的眼渗透性,并引入渗透素中的疏水性氨基酸是一种可行的方法来发展更强大的眼部吸收增强剂。我们还证明了穿透蛋白衍生物通过角膜和巩膜渗透,具有完整的结构,并且可以通过非角膜通道进入眼睛。

著录项

  • 来源
    《Acta biomaterialia》 |2017年第2017期|共12页
  • 作者单位

    Key Laboratory of Smart Drug Delivery Ministry of Education Department of Pharmaceutics School;

    Key Laboratory of Smart Drug Delivery Ministry of Education Department of Pharmaceutics School;

    Key Laboratory of Smart Drug Delivery Ministry of Education Department of Pharmaceutics School;

    Key Laboratory of Smart Drug Delivery Ministry of Education Department of Pharmaceutics School;

    Key Laboratory of Smart Drug Delivery Ministry of Education Department of Pharmaceutics School;

    Key Laboratory of Smart Drug Delivery Ministry of Education Department of Pharmaceutics School;

    Key Laboratory of Smart Drug Delivery Ministry of Education Department of Pharmaceutics School;

    Key Laboratory of Smart Drug Delivery Ministry of Education Department of Pharmaceutics School;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 普通生物学;
  • 关键词

    Penetratin; Absorption enhancer; Amino acid mutation; Ocular permeability; Hydrophobicity;

    机译:Pepetratin;吸收增强剂;氨基酸突变;眼渗透性;疏水性;

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