补体系统
替代补体途径
肽
系数H
生物相容性
补体因子I
细胞生物学
化学
先天免疫系统
生物化学
免疫系统
生物
免疫学
有机化学
作者
You‐Qiang Wu,Hongchang Qu,Georgia Sfyroera,Αποστολία Τζέκου,Brian K. Kay,Bo Nilsson,Kristina Nilsson Ekdahl,Daniel Ricklin,John D. Lambris
出处
期刊:Journal of Immunology
[American Association of Immunologists]
日期:2011-02-22
卷期号:186 (7): 4269-4277
被引量:92
标识
DOI:10.4049/jimmunol.1003802
摘要
Abstract Exposure of nonself surfaces such as those of biomaterials or transplanted cells and organs to host blood frequently triggers innate immune responses, thereby affecting both their functionality and tolerability. Activation of the alternative pathway of complement plays a decisive role in this unfavorable reaction. Whereas previous studies demonstrated that immobilization of physiological regulators of complement activation (RCA) can attenuate this foreign body-induced activation, simple and efficient approaches for coating artificial surfaces with intact RCA are still missing. The conjugation of small molecular entities that capture RCA with high affinity is an intriguing alternative, as this creates a surface with autoregulatory activity upon exposure to blood. We therefore screened two variable cysteine-constrained phage-displayed peptide libraries for factor H-binding peptides. We discovered three peptide classes that differed with respect to their main target binding areas. Peptides binding to the broad middle region of factor H (domains 5–18) were of particular interest, as they do not interfere with either regulatory or binding activities. One peptide in this group (5C6) was further characterized and showed high factor H-capturing activity while retaining its functional integrity. Most importantly, when 5C6 was coated to a model polystyrene surface and exposed to human lepirudin-anticoagulated plasma, the bound peptide captured factor H and substantially inhibited complement activation by the alternative pathway. Our study therefore provides a promising and novel approach to produce therapeutic materials with enhanced biocompatibility.
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