Robotic printing and drug testing of 384-well tumor spheroids
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[1] S. Strömblad,et al. Cell to extracellular matrix interactions and their reciprocal nature in cancer. , 2013, Experimental cell research.
[2] Ying Zhang,et al. Development of an in Vitro Multicellular Tumor Spheroid Model Using Microencapsulation and Its Application in Anticancer Drug Screening and Testing , 2008, Biotechnology progress.
[3] Juergen Friedrich,et al. Experimental anti-tumor therapy in 3-D: Spheroids – old hat or new challenge? , 2007, International journal of radiation biology.
[4] Stephanie L. Ham,et al. Robotic production of cancer cell spheroids with an aqueous two-phase system for drug testing. , 2015, Journal of visualized experiments : JoVE.
[5] H. Tavana,et al. Automated, spatio‐temporally controlled cell microprinting with polymeric aqueous biphasic system , 2014, Biotechnology and bioengineering.
[6] Shuichi Takayama,et al. High-throughput 3D spheroid culture and drug testing using a 384 hanging drop array. , 2011, The Analyst.
[7] Maria Teresa Santini,et al. Three-Dimensional Spheroid Model in Tumor Biology , 1999, Pathobiology.
[8] I. Tannock,et al. Drug penetration in solid tumours , 2006, Nature Reviews Cancer.
[9] L. Kunz-Schughart,et al. Multicellular tumor spheroids: intermediates between monolayer culture and in vivo tumor , 1999, Cell biology international.
[10] W. Jonat,et al. In vitro effects of imatinib mesylate on radiosensitivity and chemosensitivity of breast cancer cells , 2010, BMC Cancer.
[11] Hossein Tavana,et al. High Throughput, Polymeric Aqueous Two‐Phase Printing of Tumor Spheroids , 2014, Advanced functional materials.
[12] DoYeun Park,et al. Functional 3D Human Primary Hepatocyte Spheroids Made by Co-Culturing Hepatocytes from Partial Hepatectomy Specimens and Human Adipose-Derived Stem Cells , 2012, PloS one.
[13] Hossein Tavana,et al. Optimization of Aqueous Biphasic Tumor Spheroid Microtechnology for Anti-cancer Drug Testing in 3D Culture , 2014, Cellular and Molecular Bioengineering.