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一种用于超声分子成像的刺激响应性造影剂。

A stimulus-responsive contrast agent for ultrasound molecular imaging.

作者信息

Borden Mark A, Zhang Hua, Gillies Robert J, Dayton Paul A, Ferrara Katherine W

机构信息

Biomedical Engineering, University of California-Davis, Davis, CA 95616, USA.

出版信息

Biomaterials. 2008 Feb;29(5):597-606. doi: 10.1016/j.biomaterials.2007.10.011. Epub 2007 Oct 30.

Abstract

Complement activation by targeting ligands is an important issue that governs the fate of targeted colloidal contrast agents for molecular imaging. Here, we extend previous work on a stimulus-responsive microbubble construct, in which the ligand is normally buried by a polymeric overbrush and transiently revealed by ultrasound radiation force, to show reduced complement activation and focused adhesion to cells using a physiological peptide ligand. Attachment of C3/C3b in vitro and production of soluble C3a anaphylotoxin in vitro and in vivo decreased significantly for the buried-ligand architecture vs. the conventional exposed-ligand motif and no-ligand control. Additionally, the buried-ligand architecture prevented adhesion of Arg-Gly-Tyr (RGD)-bearing microbubbles to integrin-expressing human umbilical vein endothelial cells (HUVEC) when driven by buoyancy in a static chamber, but it did not affect adhesion efficiency when activated by ultrasound radiation force pulses. These results show, for the first time, the molecular mechanism for reduced immunogenicity for the buried-ligand architecture and feasibility of targeting with this motif using a physiological ligand-receptor pair.

摘要

通过靶向配体激活补体是一个重要问题,它决定了用于分子成像的靶向胶体造影剂的命运。在此,我们扩展了之前关于刺激响应性微泡构建体的研究工作,在该构建体中,配体通常被聚合物超支化结构包埋,并通过超声辐射力短暂暴露,以展示使用生理肽配体时补体激活的减少以及对细胞的靶向粘附。与传统的暴露配体基序和无配体对照相比,包埋配体结构在体外C3/C3b的附着以及在体外和体内可溶性C3a过敏毒素的产生均显著降低。此外,在静态腔室中通过浮力驱动时,包埋配体结构可防止携带精氨酸 - 甘氨酸 - 酪氨酸(RGD)的微泡与表达整合素的人脐静脉内皮细胞(HUVEC)粘附,但当通过超声辐射力脉冲激活时,它不会影响粘附效率。这些结果首次展示了包埋配体结构降低免疫原性的分子机制以及使用生理配体 - 受体对以此基序进行靶向的可行性。

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