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金属促进两条胶原模拟肽组装成具有生物功能的“螺旋角”支架。

Metal-Promoted Assembly of Two Collagen Mimetic Peptides into a Biofunctional "Spiraled Horn" Scaffold.

作者信息

Strauss Kevin, Chmielewski Jean

机构信息

Department of Chemistry, Purdue University, 560 Oval Drive, West Lafayette, IN 47907, USA.

出版信息

Materials (Basel). 2016 Oct 17;9(10):838. doi: 10.3390/ma9100838.

Abstract

Biofunctional scaffolds for the delivery of living cells are of the utmost importance for regenerative medicine. Herein, a novel, robust "spiraled horn" scaffold was elucidated through the Co-promoted hierarchical assembly of two collagen mimetic peptides, and . Each "horn" displayed a periodic banding pattern with band lengths corresponding to the length of the collagen peptide triple helix. Strand exchange between the two peptide trimers resulted in failure to form this intricate morphology, lending support to a precise metal-ligand-based mechanism of assembly. Little change occurred to the observed morphology when the Co concentration was varied from 0.5 to 4.0 mM, and the scaffold was found to be fully formed within two minutes of exposure to the metal ion. The horned network also displayed biological functionality by binding to a His-tagged fluorophore and associating with cells.

摘要

用于递送活细胞的生物功能支架对再生医学至关重要。在此,通过两种胶原模拟肽和的共促进分级组装,阐明了一种新型、坚固的“螺旋角”支架。每个“角”都呈现出周期性条纹图案,条纹长度与胶原肽三螺旋的长度相对应。两个肽三聚体之间的链交换导致无法形成这种复杂的形态,这支持了基于精确金属-配体的组装机制。当钴浓度从0.5 mM变化到4.0 mM时,观察到的形态几乎没有变化,并且发现支架在暴露于金属离子两分钟内完全形成。带角网络还通过与His标签荧光团结合并与细胞缔合而表现出生物功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30e1/5456626/d8067343034a/materials-09-00838-g001.jpg

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