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首页> 外文期刊>Anticancer Research: International Journal of Cancer Research and Treatment >A rapid imageable in vivo metastasis assay for circulating tumor cells.
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A rapid imageable in vivo metastasis assay for circulating tumor cells.

机译:用于循环肿瘤细胞的快速可成像的体内转移测定。

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摘要

Circulating tumor cells (CTCs) are of great importance for cancer diagnosis, prognosis and treatment. It is necessary to improve the ability to image and analyze them for their biological properties which determine their behavior in the patient. In the present study, using immunomagnetic beads, CTCs were rapidly isolated from the circulation of mice orthotopically implanted with human PC-3 prostate cancer cells stably expressing green fluorescent protein (GFP). The PC-3-GFP CTCs were then expanded in culture in parallel with the parental PC-3-GFP cell line. Both cell types were then inoculated onto the chorioallentoic membrane (CAM) of chick embryos. Eight days later, embryos were harvested and the brains were processed for frozen sections. The IV-100 intravital laser scanning microscope enabled rapid identification of fluorescent metastatic foci within the chick embryonic brain. Inoculation of embryos with PC-3-GFP CTCs resulted in a 3 to 10-fold increase in brain metastasis when compared to those with the parental PC-3-GFP cells (p<0.05 in all animals). Thus, PC-3-GFP CTCs have increased metastatic potential compared to their parental counterparts. Furthermore, the chick embryo represents a rapid, sensitive, imageable assay of metastatic potential for CTCs. The chick embryo assay has future clinical application for individualizing patient therapy based on the metastatic profile of their CTCs.
机译:循环肿瘤细胞(CTC)对于癌症的诊断,预后和治疗非常重要。有必要提高成像和分析它们的生物学特性的能力,这些生物学特性决定了它们在患者体内的行为。在本研究中,使用免疫磁珠,从原位植入稳定表达绿色荧光蛋白(GFP)的人PC-3前列腺癌细胞的小鼠体内快速分离出四氯化碳。然后将PC-3-GFP CTC与亲本PC-3-GFP细胞系平行培养。然后将两种细胞类型接种到雏鸡的绒毛膜绒毛膜上。八天后,收获了胚胎,并对大脑进行了冷冻切片处理。 IV-100活体激光扫描显微镜能够快速识别雏鸡胚胎脑内的荧光转移灶。与亲代PC-3-GFP细胞相比,用PC-3-GFP CTC接种胚胎导致脑转移增加3到10倍(在所有动物中,p <0.05)。因此,与父母亲相比,PC-3-GFP CTC具有更高的转移潜力。此外,鸡胚代表了CTC转移潜力的快速,灵敏,可成像的测定方法。雏鸡胚胎测定法具有未来的临床应用,可用于根据其CTC的转移特征对患者进行个体化治疗。

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