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一种用于检测结合软骨靶向和再生的肽共固定化的荧光单层。

A fluorogenic monolayer to detect the co-immobilization of peptides that combine cartilage targeting and regeneration.

作者信息

Cabanas-Danés Jordi, Nicosia Carlo, Landman Ellie, Karperien Marcel, Huskens Jurriaan, Jonkheijm Pascal

机构信息

Molecular Nanofabrication Group, MESA+ Institute for Nanotechnology and Faculty of Science and Technology, University of Twente, Enschede, The Netherlands.

出版信息

J Mater Chem B. 2013 Apr 14;1(14):1903-1908. doi: 10.1039/c3tb20109k. Epub 2013 Feb 25.

Abstract

Strategies to generate platforms combining tissue targeting and regeneration properties are in great demand in the regenerative medicine field. Here we employ an approach to directly visualize the immobilization of cysteine-terminated peptides on a novel fluorogenic surface. Peptides with relevant biological properties, CLPLGNSH and CLRGRYW, were synthesized to function as peptide binders to transforming growth factor (TGF)-β1 and collagen type II (CII). The selective immobilization of the peptides was directly detected using a fluorogenic surface. Adhered proteins were confined to patterns of these peptides matching with the fluorogenic areas. These results show that the fluorogenic signal can be used to detect the chemo-selective immobilization of non-fluorescent biomolecules and to correlate the cell response with the patterned peptides. After analyzing the sequence specificity and cross-reactivity of the binding of TGF-β1 and CII to the respective peptide regions employing immunofluorescence assays, both peptides were co-immobilized in a step-wise process as detected by the fluorogenic surface. TGF-β1 and CII could be self-sorted from a mixture in a regio-selective manner resulting in a bi-functional protein platform. Surfaces of CLPLGNSH pre-loaded with TGF-β1 showed excellent bioactivity in combination with human articular chondrocytes (HACs) and stimulated expression of chondrogenic markers.

摘要

在再生医学领域,迫切需要能够结合组织靶向和再生特性的平台构建策略。在此,我们采用一种方法直接可视化半胱氨酸末端肽在新型荧光表面的固定化。合成了具有相关生物学特性的肽CLPLGNSH和CLRGRYW,用作转化生长因子(TGF)-β1和II型胶原蛋白(CII)的肽结合剂。使用荧光表面直接检测肽的选择性固定化。附着的蛋白质被限制在与荧光区域匹配的这些肽的图案中。这些结果表明,荧光信号可用于检测非荧光生物分子的化学选择性固定化,并将细胞反应与图案化肽相关联。在用免疫荧光测定法分析TGF-β1和CII与各自肽区域结合的序列特异性和交叉反应性后,通过荧光表面检测到两种肽在逐步过程中共同固定化。TGF-β1和CII可以从混合物中以区域选择性方式自分类,从而形成双功能蛋白质平台。预先加载TGF-β1的CLPLGNSH表面与人类关节软骨细胞(HAC)结合时显示出优异的生物活性,并刺激软骨生成标志物的表达。

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