体外和体内Midkine介导耐药和药物敏感神经母细胞瘤细胞间的细胞间串扰。

ISRN oncology Pub Date : 2013-09-03 eCollection Date: 2013-01-01 DOI:10.1155/2013/518637
Fei Chu, Jessica A Naiditch, Sandra Clark, Yi-Yong Qiu, Xin Zheng, Timothy B Lautz, Janette L Holub, Pauline M Chou, Michael Czurylo, Mary Beth Madonna
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引用次数: 7

摘要

长期以来,对细胞毒性药物的耐药性一直被认为是人类癌症治疗的一个主要限制。虽然已经确定了许多耐药机制,但针对已知机制的化疗未能有效逆转耐药,这表明替代机制仍未被发现。先前的研究发现,midkine (MK)是一种新的假定存活分子,负责体外耐药和药物敏感的神经母细胞瘤、骨肉瘤和乳腺癌细胞之间的细胞保护信号传导。在本研究中,我们提供了进一步的体外和体内研究,支持MK在神经母细胞瘤细胞保护中的作用。MK过表达的野生型神经母细胞瘤细胞在共培养系统中对野生型细胞表现出细胞保护作用,与阿霉素耐药细胞相似。在抗阿霉素神经母细胞瘤和骨肉瘤细胞中,siRNA敲低MK表达可改善这种保护作用。MK在野生型神经母细胞瘤细胞中的过度表达导致获得性对阿霉素和相关药物依托泊苷的耐药性。小鼠研究中,将不同比例的抗阿霉素或MK转染的细胞与转染GFP的野生型细胞注射在体内,证实了这种细胞保护作用。这些发现为神经母细胞瘤中存在由MK介导的细胞间细胞保护信号提供了进一步的证据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Midkine Mediates Intercellular Crosstalk between Drug-Resistant and Drug-Sensitive Neuroblastoma Cells In Vitro and In Vivo.

Midkine Mediates Intercellular Crosstalk between Drug-Resistant and Drug-Sensitive Neuroblastoma Cells In Vitro and In Vivo.

Midkine Mediates Intercellular Crosstalk between Drug-Resistant and Drug-Sensitive Neuroblastoma Cells In Vitro and In Vivo.

Midkine Mediates Intercellular Crosstalk between Drug-Resistant and Drug-Sensitive Neuroblastoma Cells In Vitro and In Vivo.

Resistance to cytotoxic agents has long been known to be a major limitation in the treatment of human cancers. Although many mechanisms of drug resistance have been identified, chemotherapies targeting known mechanisms have failed to lead to effective reversal of drug resistance, suggesting that alternative mechanisms remain undiscovered. Previous work identified midkine (MK) as a novel putative survival molecule responsible for cytoprotective signaling between drug-resistant and drug-sensitive neuroblastoma, osteosarcoma and breast carcinoma cells in vitro. In the present study, we provide further in vitro and in vivo studies supporting the role of MK in neuroblastoma cytoprotection. MK overexpressing wild type neuroblastoma cells exhibit a cytoprotective effect on wild type cells when grown in a co-culture system, similar to that seen with doxorubicin resistant cells. siRNA knockdown of MK expression in doxorubicin resistant neuroblastoma and osteosarcoma cells ameliorates this protective effect. Overexpression of MK in wild type neuroblastoma cells leads to acquired drug resistance to doxorubicin and to the related drug etoposide. Mouse studies injecting various ratios of doxorubicin resistant or MK transfected cells with GFP transfected wild type cells confirm this cytoprotective effect in vivo. These findings provide additional evidence for the existence of intercellular cytoprotective signals mediated by MK which contribute to chemotherapy resistance in neuroblastoma.

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