Alginate-based 3D cancer cell culture for therapeutic response modeling.

Alginate-based 3D cancer cell culture for therapeutic response modeling.
复制标题

DOI:
10.1016/j.xpro.2021.100391
复制
发表时间:
2021-06-18
期刊:
影响因子:
--
通讯作者:
Benes CH
Benes CH
中科院分区:
其他
文献类型:
--
作者:
Davoudi F;Ghorbanpoor S;Yoda S;Pan X;Crowther GS;Yin X;Murchie E;Hata AN;Willers H;Benes CH

文献摘要

参考文献

被引文献

相似文献

肿瘤细胞的二维(2D)培养不能概括体内实验中看到的细胞组织的一些重要方面。此外,细胞培养传统上使用非生理浓度的营养物质。在这里,我们描述了一种简便的三维(3D)癌细胞培养格式的方案。这个3D平台有助于克服2D文化的限制。此外,它还允许对癌症治疗的反应进行纵向建模。有关使用和执行本协议的完整细节,请参阅,和。基于水凝胶的患者源性肿瘤细胞系3D培养的详细方案水凝胶聚合物中没有细胞结合位点,允许细胞纯粹相互作用纵向3D增殖试验和药物反应评估快速轻松地恢复用于下游实验的3D培养细胞二维(2D)肿瘤细胞培养无法概括体内实验中看到的细胞组织的一些重要方面。此外,细胞培养传统上使用非生理浓度的营养物质。在这里,我们描述了一种简便的三维(3D)癌细胞培养格式的方案。这个3D平台有助于克服2D文化的限制。此外,它还允许对癌症治疗的反应进行纵向建模。
Two-dimensional (2D) culture of tumor cells fails to recapitulate some important aspects of cellular organization seen in in vivo experiments. In addition, cell cultures traditionally use non-physiological concentration of nutrients. Here, we describe a protocol for a facile three-dimensional (3D) culture format for cancer cells. This 3D platform helps overcome the 2D culture limitations. In addition, it allows for longitudinal modeling of responses to cancer therapeutics. For complete details on the use and execution of this protocol, please refer to, and. A detailed protocol on hydrogel-based 3D culture of patient-derived tumor cell lines No binding sites for cells in hydrogel polymers allowing for pure interaction of cells Longitudinal 3D proliferation assays and drug-response assessments Quick and easy recovery of 3D-cultured cells for downstream experiments Two-dimensional (2D) culture of tumor cells fails to recapitulate some important aspects of cellular organization seen in in vivo experiments. In addition, cell cultures traditionally use non-physiological concentration of nutrients. Here, we describe a protocol for a facile three-dimensional (3D) culture format for cancer cells. This 3D platform helps overcome the 2D culture limitations. In addition, it allows for longitudinal modeling of responses to cancer therapeutics.
DOI: 10.1007/s10616-015-9861-1
发表时间: 2016-08-01
期刊: CYTOTECHNOLOGY
影响因子: 2.2
作者:
Lehmann, R.;Gallert, C.;Thurow, K.
通讯作者: Thurow, K.
DOI: 10.1186/s12885-017-3478-z
发表时间: 2017-07-18
期刊: BMC cancer
影响因子: 3.8
作者:
Lhuissier E;Bazille C;Aury-Landas J;Girard N;Pontin J;Boittin M;Boumediene K;Baugé C
通讯作者: Baugé C
DOI: 10.1126/science.1254721
发表时间: 2014-12-19
期刊: Science (New York, N.Y.)
影响因子: --
作者:
Crystal AS;Shaw AT;Sequist LV;Friboulet L;Niederst MJ;Lockerman EL;Frias RL;Gainor JF;Amzallag A;Greninger P;Lee D;Kalsy A;Gomez-Caraballo M;Elamine L;Howe E;Hur W;Lifshits E;Robinson HE;Katayama R;Faber AC;Awad MM;Ramaswamy S;Mino-Kenudson M;Iafrate AJ;Benes CH;Engelman JA
通讯作者: Engelman JA
DOI: 10.2119/molmed.2011.00052
发表时间: 2011-07-01
期刊: MOLECULAR MEDICINE
影响因子: 5.7
作者:
Duval, Elise;Bigot, Nicolas;Bauge, Catherine
通讯作者: Bauge, Catherine
开发仿生硫酸软骨素修饰水凝胶以增强肿瘤细胞的转移
DOI: 10.1038/srep29858
发表时间: 2016-07-19
期刊: Scientific reports
影响因子: 4.6
作者:
Liu Y;Wang S;Sun D;Liu Y;Liu Y;Wang Y;Liu C;Wu H;Lv Y;Ren Y;Guo X;Sun G;Ma X
通讯作者: Ma X