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首页> 外文期刊>International Journal of Pharmaceutics >Formation of multicellular tumor spheroids induced by cyclic RGD-peptides and use for anticancer drug testing in vitro
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Formation of multicellular tumor spheroids induced by cyclic RGD-peptides and use for anticancer drug testing in vitro

机译:环状RGD肽诱导的多细胞肿瘤球的形成及其在体外抗癌药物测试中的应用

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Development of novel anticancer formulations is a priority challenge in biomedicine. However, in vitro models based on monolayer cultures (2D) which are currently used for cytotoxicity tests leave much to be desired. More and more attention is focusing on 3D in vitro systems which can better mimic solid tumors. The aim of the study was to develop a novel one-step highly reproducible technique for multicellular tumor spheroid (MTS) formation using synthetic cyclic RGD-peptides, and to demonstrate availability of the spheroids as 3D in vitro model for antitumor drug testing. Cell self-assembly effect induced by addition of both linear and cyclic RGD-peptides directly to monolayer cultures was studied for 12 cell lines of various origins, including tumor cells (e.i. U-87 MG, MCF-7, M-3, HCT-116) and normal cells, in particular L-929, BNL. CL2, HepG2. Cyclo-RGDfK and its modification with triphenylphosphonium cation (TPP), namely cyclo-RGDfK(TPP) in a range of 10-100 mu M were found to induce spheroid formation. The obtained spheroids were unimodal with mean sizes in a range of 60-120 mu m depending on cell line and serum content in culture medium. The spheroids were used as 3D in vitro model, in order to evaluate cytotoxicity effects of antitumor drugs (doxorubicin, curcumin, temozolomide). The developed technique could be proposed as a promising tool for in vitro test of novel antitumor drugs. (c) 2016 Elsevier B.V. All rights reserved.
机译:新型抗癌制剂的开发是生物医学中的优先挑战。然而,目前基于单层培养物(2D)的体外模型目前已用于细胞毒性测试,这仍然有许多不足之处。越来越多的注意力集中在可以更好地模仿实体瘤的3D体外系统上。该研究的目的是开发一种使用合成环状RGD肽形成多细胞肿瘤球体(MTS)的新颖的一步可高度重现的技术,并证明该球体可作为3D体外模型用于抗肿瘤药物测试。研究了将线性和环状RGD肽直接添加到单层培养物中诱导的细胞自组装效应,研究了包括肿瘤细胞在内的12种不同来源的细胞系(ei U-87 MG,MCF-7,M-3,HCT- 116)和正常细胞,尤其是L-929,BNL。 CL2,HepG2。发现Cyclo-RGDfK及其经三苯基phosph阳离子(TPP)修饰的环RGDfK(TPP)在10-100μM范围内可诱导球体形成。所获得的球体是单峰的,平均大小在60-120微米之间,具体取决于细胞系和培养基中的血清含量。为了评估抗肿瘤药物(阿霉素,姜黄素,替莫唑胺)的细胞毒性作用,将球体用作体外3D模型。可以将开发的技术作为新型抗肿瘤药物的体外测试的有希望的工具。 (c)2016 Elsevier B.V.保留所有权利。

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