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通过实时FUCCI成像观察发现,癌细胞在三维明胶海绵组织培养中模拟体内时空细胞周期阶段分布和化学敏感性,但在二维培养中则不然。

Cancer cells mimic in vivo spatial-temporal cell-cycle phase distribution and chemosensitivity in 3-dimensional Gelfoam® histoculture but not 2-dimensional culture as visualized with real-time FUCCI imaging.

作者信息

Yano Shuya, Miwa Shinji, Mii Sumiyuki, Hiroshima Yukihiko, Uehara Fuminaru, Kishimoto Hiroyuki, Tazawa Hiroshi, Zhao Ming, Bouvet Michael, Fujiwara Toshiyoshi, Hoffman Robert M

机构信息

a AntiCancer, Inc. ; San Diego , CA USA.

出版信息

Cell Cycle. 2015;14(6):808-19. doi: 10.1080/15384101.2014.1000685.

DOI:10.1080/15384101.2014.1000685
PMID:25564963
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4614530/
Abstract

The phase of the cell cycle can determine whether a cancer cell can respond to a given drug. We previously reported monitoring of real-time cell cycle dynamics of cancer cells throughout a live tumor, intravitally in live mice, using a fluorescence ubiquitination-based cell-cycle indicator (FUCCI). Approximately 90% of cancer cells in the center and 80% of total cells of an established tumor are in G0/G1 phase. Longitudinal real-time imaging demonstrated that cytotoxic agents killed only proliferating cancer cells at the surface and, in contrast, had little effect on quiescent cancer cells, which are the vast majority of an established tumor. Moreover, resistant quiescent cancer cells restarted cycling after cessation of chemotherapy. These results suggested why most drugs currently in clinical use, which target cancer cells in S/G2/M, are mostly ineffective on solid tumors. In the present report, we used FUCCI imaging and Gelfoam® collagen-sponge-gel histoculture, to demonstrate in real time, that the cell-cycle phase distribution of cancer cells in Gelfoam® and in vivo tumors is highly similar, whereby only the surface cells proliferate and interior cells are quiescent in G0/G1. This is in contrast to 2D culture where most cancer cells cycle. Similarly, the cancer cells responded similarly to toxic chemotherapy in Gelfoam® culture as in vivo, and very differently than cancer cells in 2D culture which were much more chemosensitive. Gelfoam® culture of FUCCI-expressing cancer cells offers the opportunity to image the cell cycle of cancer cells continuously and to screen for novel effective therapies to target quiescent cells, which are the majority in a tumor and which would have a strong probability to be effective in vivo.

摘要

细胞周期的阶段可以决定癌细胞是否能对某种特定药物产生反应。我们之前报道过,利用基于荧光泛素化的细胞周期指示剂(FUCCI),在活体小鼠体内对整个活体肿瘤中癌细胞的实时细胞周期动态进行监测。在一个已形成的肿瘤中,中心部位约90%的癌细胞以及肿瘤总细胞数的80%处于G0/G1期。纵向实时成像显示,细胞毒性药物仅杀死肿瘤表面增殖的癌细胞,相反,对静止的癌细胞几乎没有影响,而静止的癌细胞在已形成的肿瘤中占绝大多数。此外,耐药的静止癌细胞在化疗停止后重新开始循环。这些结果表明了为什么目前临床使用的大多数靶向S/G2/M期癌细胞的药物对实体瘤大多无效。在本报告中,我们使用FUCCI成像和明胶海绵®胶原海绵凝胶组织培养,实时证明了明胶海绵®和体内肿瘤中癌细胞的细胞周期阶段分布高度相似,即只有表面细胞增殖,内部细胞处于G0/G1期静止状态。这与二维培养不同,在二维培养中大多数癌细胞处于循环状态。同样,在明胶海绵®培养中的癌细胞对毒性化疗的反应与在体内相似,与二维培养中的癌细胞非常不同,二维培养中的癌细胞对化疗更敏感。表达FUCCI的癌细胞的明胶海绵®培养提供了连续成像癌细胞细胞周期以及筛选针对静止细胞的新型有效疗法的机会,静止细胞在肿瘤中占大多数,并且很有可能在体内有效。

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Cancer cells mimic in vivo spatial-temporal cell-cycle phase distribution and chemosensitivity in 3-dimensional Gelfoam® histoculture but not 2-dimensional culture as visualized with real-time FUCCI imaging.通过实时FUCCI成像观察发现,癌细胞在三维明胶海绵组织培养中模拟体内时空细胞周期阶段分布和化学敏感性,但在二维培养中则不然。
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Oncotarget. 2014 Sep 30;5(18):8729-36. doi: 10.18632/oncotarget.2369.
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Spatial-temporal FUCCI imaging of each cell in a tumor demonstrates locational dependence of cell cycle dynamics and chemoresponsiveness.肿瘤中每个细胞的时空FUCCI成像显示了细胞周期动力学和化学敏感性的位置依赖性。
Cell Cycle. 2014;13(13):2110-9. doi: 10.4161/cc.29156. Epub 2014 May 8.
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Invading cancer cells are predominantly in G0/G1 resulting in chemoresistance demonstrated by real-time FUCCI imaging.实时 FUCCI 成像显示,侵袭性癌细胞主要处于 G0/G1 期,从而导致化疗耐药。
Cell Cycle. 2014;13(6):953-60. doi: 10.4161/cc.27818. Epub 2014 Jan 20.
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3-dimensional tissue is formed from cancer cells in vitro on Gelfoam®, but not on Matrigel™.三维组织由癌细胞在体外于明胶海绵上形成,但在基质胶上则不会形成。
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