首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Cellular uptake of electron paramagnetic resonance imaging probes through endocytosis of liposomes.
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Cellular uptake of electron paramagnetic resonance imaging probes through endocytosis of liposomes.

机译:电子顺磁共振成像探针通过脂质体的内吞作用吸收细胞。

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摘要

Electron paramagnetic resonance imaging (EPRI) allows detection and localization of paramagnetic spin probes in vivo and in real time. We have shown that nitroxide spin probes entrapped in the intracellular milieu can be imaged by EPRI. Therefore, with the development of a tumor-targetable vehicle that can efficiently deliver nitroxides into cells, it should be possible to use nitroxide spin probes to label and image cells in a tumor. In this study, we assess the potential of liposomes as a delivery vehicle for imaging probes. We demonstrate that liposomes can stably encapsulate nitroxides at very high concentrations (>100 mM), at which nitroxides exhibit concentration-dependent quenching of their EPR signal-a process analogous to the quenching of fluorescent molecules. The encapsulating liposomes thus appear spectroscopically "dark". When the liposomes are endocytosed and degraded by cells, the encapsulated nitroxides are liberated and diluted into the much larger intracellular volume. The consequent relief of quenching generates a robust intracellular nitroxide signal that can be imaged. We show that through endocytosis of nitroxide-loaded liposomes, CV1 cells can achieve intracellular nitroxide concentrations of approximately 1 mM. By using tissue phantom models, we verify that this concentration is more than sufficient for in vivo EPR imaging.
机译:电子顺磁共振成像(EPRI)允许在体内和实时检测和定位顺磁自旋探针。我们已经证明,陷于细胞内环境中的一氧化氮自旋探针可以被EPRI成像。因此,随着可以有效地将氮氧化物递送到细胞中的可靶向肿瘤的载体的发展,应该有可能使用氮氧化物旋转探针来标记和成像肿瘤中的细胞。在这项研究中,我们评估了脂质体作为成像探针的载体的潜力。我们证明脂质体可以稳定地封装非常高浓度(> 100 mM)的氮氧化物,在该浓度下,氮氧化物对它们的EPR信号表现出浓度依赖性的猝灭-与荧光分子的猝灭类似。因此,包囊的脂质体在光谱上看起来“暗”。当脂质体被细胞内吞并降解时,被包封的氮氧化物被释放并被稀释成更大的细胞内体积。因此消除了淬灭,产生了可以成像的强大的细胞内一氧化氮信号。我们表明,通过内吞硝酸盐负载的脂质体,CV1细胞可以达到大约1 mM的细胞内硝酸盐浓度。通过使用组织模型模型,我们验证了此浓度对于体内EPR成像绰绰有余。

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