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Multivalent Protein Polymer MRI Contrast Agents: Controlling Relaxivity via Modulation of Amino Acid Sequence

机译:多价蛋白质聚合物MRI造影剂:通过调节氨基酸序列控制弛豫

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摘要

Magnetic resonance imaging is a noninvasive imaging modality with high spatial and temporal resolution. Contrast agents (CAs) are frequently used to increase the contrast between tissues of interest. To increase the effectiveness of MR agents, small molecule CAs have been attached to macromolecules. We have created a family of biodegradable, macromolecular CAs based on protein polymers, allowing control over the CA properties. The protein polymers are monodisperse, random coil, and contain evenly spaced lysines that serve as reactive sites for Gd(III) chelates. The exact sequence and length of the protein can be specified, enabling controlled variation in lysine spacing and molecular weight. Relaxivity could be modulated by changing protein polymer length and lysine spacing. Relaxivities of up to ~14 mM~(-1) s~(-1) per Gd(III) and ~461 mM~(-1) s~(-1) per conjugate were observed. These CAs are biodegradable by incubation with plasmin, such that they can be easily excreted after use. They do not reduce cell viability, a prerequisite for future in vivo studies. The protein polymer CAs can be customized for different clinical diagnostic applications, including biomaterial tracking, as a balanced agent with high relaxivity and appropriate molar mass.
机译:磁共振成像是一种具有高时空分辨率的非侵入性成像方式。造影剂(CAs)通常用于增加目标组织之间的对比度。为了提高MR剂的有效性,小分子CA已与大分子连接。我们创建了一个基于蛋白质聚合物的可生物降解的大分子CA系列,可以控制CA属性。蛋白质聚合物是单分散,无规卷曲的,并且包含均匀间隔的赖氨酸,它们充当Gd(III)螯合物的反应位点。可以指定蛋白质的确切序列和长度,从而实现赖氨酸间距和分子量的受控变化。松弛度可以通过改变蛋白质聚合物的长度和赖氨酸间隔来调节。每个Gd(III)的弛豫度分别高达〜14 mM〜(-1)s〜(-1)和每个缀合物的〜461 mM〜(-1)s〜(-1)。这些CA可通过与纤溶酶温育进行生物降解,因此使用后可以很容易地将其排出体外。它们不会降低细胞活力,而这是未来体内研究的前提。可以将蛋白质聚合物CA定制为不同的临床诊断应用程序,包括生物材料追踪,作为具有高松弛性和适当摩尔质量的平衡剂。

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