The multicellular tumor spheroid model for high-throughput cancer drug discovery

被引:192
|
作者
LaBarbera, Daniel V. [1 ]
Reid, Brian G. [1 ]
Yoo, Byong Hoon [1 ]
机构
[1] Univ Colorado AMC, Dept Pharmaceut Sci, Univ Colorado Denver, Skaggs Sch Pharm & Pharmaceut Sci, Aurora, CO USA
关键词
3D-culture; anticancer drugs; cell-based assays; drug discovery; high-content screening; high-throughput screening; microenvironment; spheroid; EPITHELIAL-MESENCHYMAL TRANSITION; 3-DIMENSIONAL CULTURE MODELS; SYSTEMS BIOLOGY; BREAST-CANCER; IN-VITRO; CELL-CULTURE; STEM-CELLS; DYNAMIC RECIPROCITY; TISSUE ARCHITECTURE; MALIGNANT BREAST;
D O I
10.1517/17460441.2012.708334
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Introduction: For the past 30 years 2D-cell-based assay models have dominated preclinical cancer drug discovery efforts. 2D-cell-based models fail to predict in vivo efficacy, contributing to a lower success rate and higher cost required to translate an investigational new drug to clinical approval. Technological advances in 3D-cell culture models bridge the gap between 2D and in vivo models to improve upon the current success rates of cancer drug discovery. Areas covered: This review focuses on the multicellular tumor spheroid (MCTS), particularly how this model can be utilized for HTS drug discovery. We discuss the current technologies for uniform culture of MCTS suitable for HTS and detection methods utilized for assay development and drug screening. Expert opinion: Substantial hurdles remain before we reach the ultimate goal of robust HTS of large compound libraries with MCTS models. Specifically, we can group these challenges into three categories: MCTS growth, data collection, and data analysis. The MCTS model should be utilized with fluorescent readouts and high-content imaging with a systems biology approach to model human tumors in vitro. Such models will be more predictive of in vivo efficacy, improving on the current success rates of cancer drug discovery from bench to bedside.
引用
收藏
页码:819 / 830
页数:12
相关论文
共 50 条
  • [11] High throughput triculture: A breast cancer spheroid model for drug screening
    Benton, Gabriel J.
    DeGray, Gerald
    Arnaoutova, Irina
    Kleinman, Hynda K.
    George, Jay
    CANCER RESEARCH, 2015, 75
  • [12] Application of nanogels as drug delivery systems in multicellular spheroid tumor model
    Abdolahinia, Elaheh Dalir
    Barati, Ghasem
    Ranjbar-Navazi, Zahra
    Kadkhoda, Jamileh
    Islami, Maryam
    Hashemzadeh, Nastaran
    Dizaj, Solmaz Maleki
    Sharifi, Simin
    JOURNAL OF DRUG DELIVERY SCIENCE AND TECHNOLOGY, 2022, 68
  • [13] High-throughput drug discovery against breast cancer stem cells
    McDermott, Sean P.
    Ndaw, Fatou
    Fox, Alexandra
    Vander Roest, Steve R.
    Larsen, Martha J.
    Wicha, Max S.
    CANCER RESEARCH, 2014, 74 (19)
  • [14] A High-Throughput Screen for Antibiotic Drug Discovery
    Scanlon, Thomas C.
    Dostal, Sarah M.
    Griswold, Karl E.
    BIOTECHNOLOGY AND BIOENGINEERING, 2014, 111 (02) : 232 - 243
  • [15] High-throughput crystallography to enhance drug discovery
    Sharff, A
    Jhoti, H
    CURRENT OPINION IN CHEMICAL BIOLOGY, 2003, 7 (03) : 340 - 345
  • [16] High-Throughput Flow Cytometry in Drug Discovery
    Ding, Mei
    Edwards, Bruce S.
    SLAS DISCOVERY, 2018, 23 (07) : 599 - 602
  • [17] High-throughput and in silico screenings in drug discovery
    Phatak, Sharangdhar S.
    Stephan, Clifford C.
    Cavasotto, Claudio N.
    EXPERT OPINION ON DRUG DISCOVERY, 2009, 4 (09) : 947 - 959
  • [18] High-throughput flow cytometry for drug discovery
    Edwards, Bruce S.
    Young, Susan M.
    Saunders, Matthew J.
    Bologa, Cristian
    Oprea, Tudor I.
    Ye, Richard D.
    Prossnitz, Eric R.
    Graves, Steven W.
    Sklar, Larry A.
    EXPERT OPINION ON DRUG DISCOVERY, 2007, 2 (05) : 685 - 696
  • [19] High-throughput analysis of behavior for drug discovery
    Alexandrov, Vadim
    Brunner, Dani
    Hanania, Taleen
    Leahy, Emer
    EUROPEAN JOURNAL OF PHARMACOLOGY, 2015, 750 : 82 - 89
  • [20] High-throughput screening, metabolomics and drug discovery
    Harrigan, GG
    Yates, LA
    IDRUGS, 2006, 9 (03) : 188 - 192