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Synthesis of Photodegradable Macromers for Conjugation and Release of Bioactive Molecules

机译:可光降解的大分子蛋白的共轭和释放生物活性分子的合成

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摘要

Hydrogel scaffolds are used in biomedicine to study cell differentiation and tissue evolution, where it is critical to control the delivery of chemical cues both spatially and temporally. While large molecules can be physically entrapped in a hydrogel, moderate molecular weight therapeutics must be tethered to the hydrogel network through a labile linkage to allow controlled release. We synthesized and characterized a library of polymerizable ortho-nitrobenzyl (o-NB) macromers with different functionalities at the benzylic position (alcohol, amine, BOC-amine, halide, acrylate, carboxylic acid, activated disulfide, N-hydroxysuccinyl ester, biotin). This library of polymerizable macromers containing o-NB groups should allow direct conjugation of nearly any type of therapeutic agent and its subsequent controlled photorelease from a hydrogel network. As proof-of-concept, we incorporated the N-hydroxysuccinyl ester macromer into hydrogels and then reacted phenylalanine with the NHS ester. Upon exposure to light (λ = 365 nm; 10 mW/cm~2, 10 min), 81.3% of the phenylalanine was released from the gel. Utilizing the photodegradable macromer incorporating an activated disulfide, we conjugated a cell-adhesive peptide (GCGYGRGDSPG), a protein that exhibits enzymatic activity (bovine serum albumin (BSA)), and a growth factor (transforming growth factor-β1 (TGF-β1)) into hydrogels, controlled their release with light (λ = 365 nm; 10 rnW/cm~2, 0—20 min), and verified the bioactivity of the photoreleased molecules. The photoreleasable peptide allows real-time control over cell adhesion. BSA maintains full enzymatic activity upon sequestration and release from the hydrogel. Photoreleased TGF-β1 is able to induce chondrogenic differentiation of human mesenchymal stem cells comparable to native TGF-β1. Through this approach, we have demonstrated that photodegradable tethers can be used to sequester peptides and proteins into hydrogel depots and release them in an externally controlled, predictable manner without compromising biological function.
机译:水凝胶支架用于生物医生以研究细胞分化和组织进化,在空间和时间上控制化学提示的递送至关重要。虽然大分子可以物理夹在水凝胶中,但是中等分子量治疗剂必须通过不稳定的连接将其束缚到水凝胶网络中以允许受控释放。我们合成并表征了具有不同官能团的可聚合正交 - 硝基苄基(O-NB)大分子类合物,在苄基位置(醇,胺,镁胺,卤化物,丙烯酸酯,羧酸,活化二硫化物,N-羟基琥珀基酯,生物素) 。该含有O-Nb基团的可聚合型大分子单体库应允许从水凝胶网络直接缀合几乎任何类型的治疗剂及其随后的受控光释放。作为概念证明,我们将N-羟基琥珀炔基酯大分子体掺入水凝胶中,然后用NHS酯反应苯丙氨酸。在暴露于光(λ= 365nm; 10mW / cm〜2,10min)后,81.3%的苯丙氨酸从凝胶中释放。利用掺入活化的二硫化物的可光降解的大分子剂,我们缀合细胞粘合剂肽(GCGYGRGDSPG),其蛋白质,其表现出酶活性(牛血清白蛋白(BSA))和生长因子(转化生长因子-β1(TGF-β1) )进入水凝胶,用光(λ= 365nm; 10RNW / cm〜2,0-20分钟)控制它们的释放,并验证了光遮挡分子的生物活性。可光放射的肽允许实时控制细胞粘附。 BSA在用水凝胶中螯合和释放时保持全酶活性。光遮密的TGF-β1能够诱导与天然TGF-β1相当的人间充质干细胞的软骨形成分化。通过这种方法,我们已经证明可光降解的系数可用于将肽和蛋白质螯合到水凝胶贮库中并以外部控制的,可预测的方式释放它们,而不会影响生物学功能。

著录项

  • 来源
    《Biomacromolecules 》 |2013年第4期| 共9页
  • 作者单位

    Department of Bioengineering University of California Los Angeles 410 Westwood Plaza 5121 Eng V Los Angeles California 90095 United States;

    Department of Bioengineering University of California Los Angeles 410 Westwood Plaza 5121 Eng V Los Angeles California 90095 United States;

    Department of Bioengineering University of California Los Angeles 410 Westwood Plaza 5121 Eng V Los Angeles California 90095 United States;

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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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