Journal of Cancer · 2011 · 90 citations · 9 references
ImmunologyImmunotherapeuticsRapid GenerationImmunotherapyTumor BiologySynthetic ImmunologyMicroenvironmental EffectsTumor SpheroidsAntibody EngineeringMatrix BiologyMonoclonal Antibody TherapyCell-based Drug DeliveryMulticellular SpheroidsTumor TargetingAntibody ScreeningCell BiologyTumor MicroenvironmentDrug TargetingMedicine
Tumor microenvironments present significant barriers to penetration by antibodies and immunoconjugates and are difficult to study in vitro. Cells cultured as monolayers typically exhibit less resistance to therapy than those grown in vivo. Therefore, it is important to develop an alternative research model that better represents in vivo tumors. We have developed a protocol to produce multicellular spheroids, a simple and more relevant model of in vivo tumors that allows for further investigations of the microenvironmental effects on drug penetration and tumor cell killing. The protocol is used to produce in vitro three-dimensional tumor spheroids from established human cancer cell lines and primary cancer cells isolated from patients without the use of any extracellular components. To study the ability of tumor-targeting immunoconjugates to penetrate these tumor spheroids in vitro, we have used an immunotoxin targeting mesothelin, a surface protein expressed in malignant mesotheliomas. This method for producing consistent, reproducible 3D spheroids may allow for improved testing of novel monoclonal antibodies and other agents for their ability to penetrate solid tumors for cancer therapy.
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High-throughput 3D spheroid culture and drug testing using a 384 hanging drop array
Yi‐Chung Tung, Amy Y. Hsiao, Steven G. Allen et al. · The Analyst · 2010 · 945 citations · Full text
Mesothelin Expression in Human Lung Cancer
Mitchell Ho, Tapan K. Bera, Mark C. Willingham et al. · Clinical Cancer Research · 2007 · 155 citations
Making Antibodies by Phage Display Technology
R. Hoogenboom · Annual Review of Immunology · 1994 · 70 citations