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Proceedings of the Annual Symposium Plenary Session on Regenerative Medicine (PASRM)

机译:再生医学年会和全体会议论文集(PASRM)

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摘要

The cancer stem cells (CSCs) capable of continuous proliferation and self-renewal are considered to play significant roles in oncogenesis, tumor growth, metastasis and cancer recurrence. CSCs should be derived from normal stem cells affected by the tumor microenvironment although the mechanism of development is not clear yet. On the other hand, induced pluripotent stem cells (iPSCs) as well as embryonic stem cells are considered to be induced into progenitor cells, which differentiate into various normal phenotypes depending on the normal niche. We hypothesized that CSCs could be derived from iPSCs in the conditioned culture medium of cancer cell lines, which might be a mimic of carcinoma microenvironment. In this study, we employed Nanog mouse iPSCs, in which GFP gene has been inserted into the 5' untranslated region of the Nanog gene. As a result, the cells treated with the conditioned medium for 4 weeks exhibited a high tumorigenicity in vivo with a capacity of self-renewal and the expression of markers associated with stem cell properties and an undifferentiated state. The cells efficiently formed spheroids expressing GFP in suspension culture, vasculogenic tubes in the presence of type IV collagen in vitro and exhibited extensive angiogenesis in vivo, which was confirmed by magnetic resonance imaging and by histochemical analysis. From the tumors the CSCs expressing GFP were isolated as spheroid forming cells in the primary culture. These cells showed almost the same characters as those found in the originally transplanted CSCs. Furthermore, the CSCs exhibited extensive metastasis to lung when injected into tail vein. Thus we concluded that a model of CSCs was originally developed using mouse iPSCs and proposed the conditioned culture medium might perform as niche for producing CSCs. It is worthwhile noticing that the mouse iPSCs co-cultured with cancer-derived cells did not form malignant tumors in vivo. This implies that cell-to-cell contact may have inhibitory effect on the conversion of mouse iPSCs into CSCs. The tumor microenvironment, which converted mouse iPSCs to CSCs, as well as the heterogeneity in tumor tissues, will be further discussed.
机译:<!-front-stub->能够持续增殖和自我更新的癌症干细胞(CSC)被认为在肿瘤发生,肿瘤生长,转移和癌症复发中起着重要作用。 CSC应源自受肿瘤微环境影响的正常干细胞,尽管其发展机理尚不清楚。另一方面,诱导多能干细胞(iPSC)以及胚胎干细胞被认为是被诱导为祖细胞,这些祖细胞根据正常的环境分化成各种正常的表型。我们假设CSCs可以源自癌细胞系条件培养基中的iPSC,这可能是癌微环境的模仿。在这项研究中,我们采用了Nanog小鼠iPSC,其中GFP基因已插入Nanog基因的5'非翻译区。结果,用条件培养基处理4周的细胞在体内表现出高致瘤性,具有自我更新的能力以及与干细胞特性和未分化状态相关的标志物的表达。该细胞在悬浮培养,IV型胶原存在下的体外血管形成管中有效地形成了表达GFP的球体,并在体内表现出广泛的血管生成,这已通过磁共振成像和组织化学分析得到了证实。从肿瘤中分离出表达GFP的CSC作为原代培养物中的球状形成细胞。这些细胞显示出与最初移植的CSC中几乎相同的特征。此外,当注入尾静脉时,CSCs表现出向肺的广泛转移。因此,我们得出的结论是,最初使用小鼠iPSC开发了CSCs模型,并提出条件培养基可能充当生产CSC的利基市场。值得注意的是,与癌症细胞共培养的小鼠iPSC在体内没有形成恶性肿瘤。这意味着细胞间接触可能对小鼠iPSC转化为CSC具有抑制作用。将进一步讨论将小鼠iPSC转换为CSC的肿瘤微环境以及肿瘤组织中的异质性。

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