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首页> 外文期刊>Stem cells international >Establishment and Characterization of a Human Small Cell Osteosarcoma Cancer Stem Cell Line: A New Possible In Vitro Model for Discovering Small Cell Osteosarcoma Biology
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Establishment and Characterization of a Human Small Cell Osteosarcoma Cancer Stem Cell Line: A New Possible In Vitro Model for Discovering Small Cell Osteosarcoma Biology

机译:人类小型细胞骨肉瘤癌干细胞系的建立和表征:一种发现小细胞骨肉瘤生物学的新型体外模型

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Osteosarcoma (OSA) is the most common primary malignant bone tumor, usually arising in the long bones of children and young adults. There are different subtypes of OSA, among which we find the conventional OS (also called medullary or central osteosarcoma) which has a high grade of malignancy and an incidence of 80%. There are different subtypes of high grade OS like chondroblastic, fibroblastic, osteoblastic, telangiectatic, and the small cell osteosarcoma (SCO). In this study, for the first time, we have isolated, established, and characterized a cell line of cancer stem cells (CSCs) from a human SCO. First of all, we have established a primary finite cell line of SCO, from which we have isolated the CSCs by the sphere formation assay. We have proved their in vitro mesenchymal and embryonic stem phenotype. Additionally, we have showed their neoplastic phenotype, since the original tumor bulk is a high grade osteosarcoma. This research demonstrates the existence of CSCs also in human primary SCO and highlights the establishment of this particular stabilized cancer stem cell line. This will represent a first step into the study of the biology of these cells to discover new molecular targets molecules for new incisive therapeutic strategies against this highly aggressive OSA.
机译:骨肉瘤(OSA)是最常见的原发性恶性骨肿瘤,通常在儿童和年轻成年人的长骨骼中产生。有不同的OSA亚型,其中我们发现具有高年级恶性肿瘤和80%的发病率的常规OS(也称为髓质或中央骨肉瘤)。有不同的高档OS亚型,如软骨束,纤维细胞,骨赘,鳞状病和小细胞骨肉瘤(SCO)。在这项研究中,我们首次被隔离,建立并表征了来自人类SCO的癌症干细胞(CSCs)的细胞系。首先,我们建立了一个主要的COMITE细胞系,我们通过球形形成测定来分离CSC。我们已经证明了它们的体外间充质和胚胎干燥表型。此外,我们展示了它们的肿瘤表型,因为原始肿瘤散装是高级骨肉瘤。该研究表明,在人初级SCO中也存在CSC的存在,并突出显示该特定稳定的癌症干细胞系的建立。这将代表研究这些细胞生物学的第一步,以发现新的分子靶标分子用于对这种高度侵略性的OSA进行新的inchive治疗策略。

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