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Linker-Regulated H2S Release from Aromatic Peptide Amphiphile Hydrogels

机译:从芳族肽两亲水凝胶中释放接头调节的H2S

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摘要

Controlled release is an essential requirement for delivery of hydrogen sulfide (H2S) because of its reactive nature, short half-life in biological fluids, and toxicity at high concentrations. In this context, H2S delivery via hydrogels may be beneficial as they can deliver H2S locally at the site of interest. Herein, we employed hydrogels based on aromatic peptide amphiphiles (APAs) with tunable mechanical properties to modulate the rates of H2S release. The APAs contained an aromatic S-aroylthiooxime (SATO) H2S donor attached with a linker to a short IAVEEE hexapeptide. Linker units included carbonyl, substituted O-methylenes, alkenyl, and alkyl segments with the goal of evaluating the role of linker structure on self-assembly, capacity for hydrogelation, and H2S release rate. We studied each peptide by transmission electron microscopy, circular dichroism spectroscopy, and rheology, and we measured H2S release rates from each gel, triggering SATO decomposition and release of H2S by addition of cysteine (Cys). Using an H2S-selective electrode probe as well as a turn-on fluorescent H2S probe in the presence of H9C2 cardiomyocytes, we found that the rate of H2S release from the hydrogels depended on the rate of Cys penetration into the nanofiber core with stiffer gels showing longer overall release.
机译:控制释放是由于其活性性,生物液中的反应性,半衰期,高浓度的毒性,因此控制释放是赋予硫化氢(H2S)的重要要求。在这种情况下,通过水凝胶的H 2 S递送可能是有益的,因为它们可以在感兴趣部位局部递送H2。在此,我们使用基于芳族肽两亲物(APAS)的水凝胶,可调谐机械性能以调节H2S释放的速率。 APAS含有芳香族S-芳氧化物(SATO)H2S供体,其与六肽的短IAVEEE Hexapeptide连接。接头单元包括羰基,取代的O-甲基,链烯基和烷基段,其目的是评估接头结构对自组装,水胶质能力和H2S释放速率的作用。我们通过透射电子显微镜,圆形二色体谱和流变学研究了各种肽,并且我们通过添加半胱氨酸(Cys)来测量来自每个凝胶的H2S释放速率,触发佐藤分解和H2S的释放。在H9C2心肌细胞存在下,使用H 2 S选择电极探针以及导通荧光H2S探针,我们发现从水凝胶中释放的H2S释放的速率依赖于Cys渗透到纳米纤维芯中的纤维凝胶显示较长的整体释放。

著录项

  • 来源
    《Biomacromolecules 》 |2020年第3期| 共8页
  • 作者单位

    Virginia Tech Ctr Drug Discovery Dept Chem Blacksburg VA 24061 USA;

    Virginia Tech Ctr Drug Discovery Dept Chem Blacksburg VA 24061 USA;

    Virginia Tech Ctr Drug Discovery Dept Chem Blacksburg VA 24061 USA;

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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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