Skarja Gary A, Brown Allison L, Ho Rebecca K, May Michael H, Sefton Michael V
Rimon Therapeutics Ltd, 203 College St., Suite 403, Toronto, Ontario M5T1P9, Canada.
Biomaterials. 2009 Apr;30(10):1890-7. doi: 10.1016/j.biomaterials.2008.12.040. Epub 2009 Jan 14.
Matrix metalloproteinase (MMP) sequestering polymer microspheres were prepared by a post-polymerization hydroxamic acid derivatization of poly(methyl methacrylate-co-methacrylic acid). The microspheres were designed to selectively bind MMPs from solutions on contact through a direct interaction between the polymer-bound hydroxamic acid groups and the characteristic catalytic site zinc atom common to all MMPs. MMP activity assays showed that the hydroxamic acid microspheres reduce MMP activity on contact in a time and concentration-dependent fashion. This effect was observed for several MMP subclasses (MMP-2, -3, -8 and -13) suggesting that the microspheres possess a broad-spectrum MMP binding capacity. However, inactive pro-forms of MMPs showed little binding affinity for the microspheres indicating that the interaction was dependent on MMP activation. The preferential binding of active MMPs was confirmed by MMP-3 and MMP-8 activation studies, which demonstrated significant increases in microsphere binding on activation. The MMP sequestering effect of the microspheres was also demonstrated in a physiologically relevant solution (human chronic wound fluid extract) indicating that the binding interaction was effective in a multi-component, competitive adsorption environment. Thus, the hydroxamic acid-containing microspheres may find use as localized, broad-spectrum MMP inhibitors for the treatment of a number of disease conditions characterized by elevated MMP activity.
通过聚(甲基丙烯酸甲酯 - 共 - 甲基丙烯酸)的聚合后异羟肟酸衍生化制备了基质金属蛋白酶(MMP)螯合聚合物微球。这些微球被设计成通过聚合物结合的异羟肟酸基团与所有MMP共有的特征催化位点锌原子之间的直接相互作用,在接触时从溶液中选择性地结合MMP。MMP活性测定表明,异羟肟酸微球在接触时以时间和浓度依赖性方式降低MMP活性。在几个MMP亚类(MMP - 2、 - 3、 - 8和 - 13)中观察到了这种效应,这表明微球具有广谱的MMP结合能力。然而,MMP的无活性前体形式对微球显示出很少的结合亲和力,这表明这种相互作用依赖于MMP的激活。MMP - 3和MMP - 8激活研究证实了活性MMP的优先结合,这些研究表明激活后微球结合显著增加。微球的MMP螯合作用也在生理相关溶液(人慢性伤口液提取物)中得到证实,这表明结合相互作用在多组分竞争吸附环境中是有效的。因此,含异羟肟酸的微球可能用作局部广谱MMP抑制剂,用于治疗多种以MMP活性升高为特征的疾病。