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High-throughput screening with nanoimprinting 3D culture for efficient drug development by mimicking the tumor environment
- Source :
- Biomaterials. 51
- Publication Year :
- 2014
-
Abstract
- Anti-cancer drug development typically utilizes high-throughput screening with two-dimensional (2D) cell culture. However, 2D culture induces cellular characteristics different from tumors in vivo, resulting in inefficient drug development. Here, we report an innovative high-throughput screening system using nanoimprinting 3D culture to simulate in vivo conditions, thereby facilitating efficient drug development. We demonstrated that cell line-based nanoimprinting 3D screening can more efficiently select drugs that effectively inhibit cancer growth in vivo as compared to 2D culture. Metabolic responses after treatment were assessed using positron emission tomography (PET) probes, and revealed similar characteristics between the 3D spheroids and in vivo tumors. Further, we developed an advanced method to adopt cancer cells from patient tumor tissues for high-throughput drug screening with nanoimprinting 3D culture, which we termed Cancer tissue-Originated Uniformed Spheroid Assay (COUSA). This system identified drugs that were effective in xenografts of the original patient tumors. Nanoimprinting 3D spheroids showed low permeability and formation of hypoxic regions inside, similar to in vivo tumors. Collectively, the nanoimprinting 3D culture provides easy-handling high-throughput drug screening system, which allows for efficient drug development by mimicking the tumor environment. The COUSA system could be a useful platform for drug development with patient cancer cells.
- Subjects :
- Drug
Male
Leupeptins
media_common.quotation_subject
High-throughput screening
Biophysics
Cell Culture Techniques
Mice, Nude
Bioengineering
Antineoplastic Agents
Biology
Biomaterials
3D cell culture
In vivo
Cell Line, Tumor
Neoplasms
Spheroids, Cellular
medicine
Tumor Microenvironment
Animals
Humans
Nanotechnology
media_common
Mice, Inbred BALB C
Cancer
medicine.disease
Cell Hypoxia
Drug development
Mechanics of Materials
Cell culture
Drug Design
Cancer cell
Ceramics and Composites
Cancer research
Biological Assay
Drug Screening Assays, Antitumor
Biomedical engineering
Subjects
Details
- ISSN :
- 18785905
- Volume :
- 51
- Database :
- OpenAIRE
- Journal :
- Biomaterials
- Accession number :
- edsair.doi.dedup.....7411b4fabb88fdcf95a2c1bd84211ddb