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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Preparation and quality test of superparamagnetic iron oxide labeled antisense oligodeoxynucleotide probe: a preliminary study.
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Preparation and quality test of superparamagnetic iron oxide labeled antisense oligodeoxynucleotide probe: a preliminary study.

机译:超顺磁性氧化铁标记的反义寡脱氧核苷酸探针的制备和质量测试:初步研究。

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摘要

Molecular imaging of tumor antisense gene techniques have been applied to the study of magnetic resonance (MR) gene imaging associated with malignant tumors. In this study, we designed, synthesized, and tested a novel molecular probe, in which the antisense oligodeoxynucleotide (ASODN) was labeled with superparamagnetic iron oxide (SPIO), and its efficiency was examined by in vitro MR imaging after SK-Br-3 mammary carcinoma cell lines (oncocytes) transfection. The SPIO-labeled ASODN probe was prepared through SPIO conjugated to ASODN using a chemical cross linking method. Its morphology and size were detected by atomic force microscope, size distribution were detected by laser granulometer, the conjugating rate and biological activity were determined by high performance liquid chromatography, and the stability was determined by polyacrylamide gel electrophoresis. After that, the probes were transfected into the SK-Br-3 oncocytes, cellular iron uptake was analyzed qualitatively at light and electron microscopy and was quantified at atomic absorption spectrometry, and the signal change of the transfected cells was observed and measured using MR imaging. The morphology of the SPIO-labeled ASODN probe was mostly spherical with well-distributed scattering, and the diameters were between 25 and 40 nm (95%) by atomic force microscope and laser granulometer, the conjugating rate of the probe was 99%. Moreover, this probe kept its activity under physiological conditions and could conjugate with antisense oligodeoxynucleotide. In addition, light microscopy revealed an intracellular uptake of iron oxides in the cytosol and electron microscopic studies revealed a lysosomal deposition of iron oxides in the transfected SK-Br-3 oncocytes by antisense probes, some of them gathered stacks, and the iron content of the group of transfected SK-Br-3 oncocytes by antisense probe is significantly higher (18.37 +/- 0.42 pg) than other contrast groups, the MR imaging showed that transfected SK-Br-3 oncocytes by antisense probe had the lowest signal of all. The SPIO-labeled ASODN probe shows unique features including well-distributed spherical morphology, high conjugating rate and loading efficiency, and the signal intensity of SPIO-labeled ASODN-transfected SK-Br-3 oncocytes is reduced in MR imaging. These results indicate that the SPIO-labeled ASODN probe is potentially useful as a MR targeting contrast enhancing agent to specifically diagnose tumors which had over-expression of the c-erbB2 oncogene at an early stage.
机译:肿瘤反义基因的分子成像技术已被用于研究与恶性肿瘤相关的磁共振(MR)基因成像。在这项研究中,我们设计,合成和测试了一种新型分子探针,该探针用超顺磁性氧化铁(SPIO)标记了反义寡聚脱氧核苷酸(ASODN),并通过SK-Br-3后的体外MR成像检查了其效率乳癌细胞系(癌细胞)转染。 SPIO标记的ASODN探针是通过使用化学交联方法与ASODN偶联的SPIO制备的。原子力显微镜检测其形貌和尺寸,激光粒度仪检测其尺寸分布,高效液相色谱法测定其结合率和生物活性,聚丙烯酰胺凝胶电泳法测定其稳定性。之后,将探针转染到SK-Br-3癌细胞中,在光和电子显微镜下定性分析细胞中铁的摄取,并在原子吸收光谱法中进行定量,并通过MR成像观察和测量转染细胞的信号变化。 。 SPIO标记的ASODN探针的形态大部分为球形,且散射分布均匀,原子力显微镜和激光粒度仪测得的直径在25至40 nm(95%)之间,探针的结合率为99%。此外,该探针在生理条件下保持其活性并且可以与反义寡脱氧核苷酸缀合。此外,光学显微镜显示胞浆中铁氧化物的细胞内摄取,电子显微镜研究显示,反义探针在转染的SK-Br-3癌细胞中溶存了氧化铁,其中一些聚集了堆积,并且铁的含量反义探针转染的SK-Br-3癌细胞组明显高于其他对比组(18.37 +/- 0.42 pg),MR成像显示,反义探针转染的SK-Br-3癌细胞信号最低。 。 SPIO标记的ASODN探针显示出独特的功能,包括分布均匀的球形形态,高的结合率和加载效率,并且在MR成像中减少了SPIO标记的ASODN转染的SK-Br-3癌细胞的信号强度。这些结果表明,SPIO标记的ASODN探针可潜在地用作MR靶向造影剂,以特异性地诊断在早期具有c-erbB2癌基因过表达的肿瘤。

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