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基于笼型富勒烯内包钆簇合物的活体磁共振对比剂的灵敏度提高 500 倍:癌症诊断的新机会。

Gain of a 500-fold sensitivity on an intravital MR contrast agent based on an endohedral gadolinium-cluster-fullerene-conjugate: a new chance in cancer diagnostics.

机构信息

Department of Medical Physics in Radiology, German Cancer Research Center, INF 280, D-69120 Heidelberg, Germany.

出版信息

Int J Med Sci. 2010 May 28;7(3):136-46. doi: 10.7150/ijms.7.136.

Abstract

Among the applications of fullerene technology in health sciences the expanding field of magnetic resonance imaging (MRI) of molecular processes is most challenging. Here we present the synthesis and application of a Gd(x)Sc(3-x)N@C(80)-BioShuttle-conjugate referred to as Gd-cluster@-BioShuttle, which features high proton relaxation and, in comparison to the commonly used contrast agents, high signal enhancement at very low Gd concentrations. This modularly designed contrast agent represents a new tool for improved monitoring and evaluation of interventions at the gene transcription level. Also, a widespread monitoring to track individual cells is possible, as well as sensing of microenvironments. Furthermore, BioShuttle can also deliver constructs for transfection or active pharmaceutical ingredients, and scaffolding for incorporation with the host's body. Using the Gd-cluster@-BioShuttle as MRI contrast agent allows an improved evaluation of radio- or chemotherapy treated tissues.

摘要

在富勒烯技术在健康科学中的应用中,分子过程磁共振成像(MRI)领域的扩展最具挑战性。在这里,我们提出了 Gd(x)Sc(3-x)N@C(80)-BioShuttle 缀合物的合成和应用,称为 Gd-簇@-BioShuttle,其具有高质子弛豫性,并且与常用的对比剂相比,在非常低的 Gd 浓度下具有高信号增强。这种模块化设计的造影剂代表了一种新的工具,用于改善基因转录水平干预的监测和评估。此外,还可以进行广泛的监测以跟踪单个细胞,并感测微环境。此外,BioShuttle 还可以输送用于转染或活性药物成分的构建体,以及与宿主身体结合的支架。使用 Gd-簇@-BioShuttle 作为 MRI 造影剂可以改善对放射或化学疗法治疗组织的评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/870b/2880842/395dfe2d152c/ijmsv07p0136g02.jpg

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