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AlgiMatrix™ Based 3D Cell Culture System as an In-Vitro Tumor Model for Anticancer Studies
被引:179
作者:
Godugu, Chandraiah
[1
]
Patel, Apurva R.
[1
]
Desai, Utkarsh
[1
]
Andey, Terrick
[1
]
Sams, Alexandria
[2
]
Singh, Mandip
[1
]
机构:
[1] Florida A&M Univ, Coll Pharm & Pharmaceut Sci, Tallahassee, FL 32307 USA
[2] Life Technol Corp, Cell Syst Div, Primary & Stem Cell Syst, Frederick, MA USA
来源:
基金:
美国国家卫生研究院;
关键词:
CANCER STEM-CELL;
EXTRACELLULAR-MATRIX;
DRUG-RESISTANCE;
SOLID TUMORS;
TISSUE;
SCAFFOLDS;
THERAPY;
3RD-DIMENSION;
PENETRATION;
SPHEROIDS;
D O I:
10.1371/journal.pone.0053708
中图分类号:
O [数理科学和化学];
P [天文学、地球科学];
Q [生物科学];
N [自然科学总论];
学科分类号:
07 ;
0710 ;
09 ;
摘要:
Background: Three-dimensional (3D) in-vitro cultures are recognized for recapitulating the physiological microenvironment and exhibiting high concordance with in-vivo conditions. Taking the advantages of 3D culture, we have developed the in-vitro tumor model for anticancer drug screening. Methods: Cancer cells grown in 6 and 96 well AlgiMatrix (TM) scaffolds resulted in the formation of multicellular spheroids in the size range of 100-300 mu m. Spheroids were grown in two weeks in cultures without compromising the growth characteristics. Different marketed anticancer drugs were screened by incubating them for 24 h at 7, 9 and 11 days in 3D cultures and cytotoxicity was measured by AlamarBlue (R) assay. Effectiveness of anticancer drug treatments were measured based on spheroid number and size distribution. Evaluation of apoptotic and anti-apoptotic markers was done by immunohistochemistry and RT-PCR. The 3D results were compared with the conventional 2D monolayer cultures. Cellular uptake studies for drug (Doxorubicin) and nanoparticle (NLC) were done using spheroids. Results: IC50 values for anticancer drugs were significantly higher in AlgiMatrix (TM) systems compared to 2D culture models. The cleaved caspase-3 expression was significantly decreased (2.09 and 2.47 folds respectively for 5-Fluorouracil and Camptothecin) in H460 spheroid cultures compared to 2D culture system. The cytotoxicity, spheroid size distribution, immunohistochemistry, RT-PCR and nanoparticle penetration data suggested that in vitro tumor models show higher resistance to anticancer drugs and supporting the fact that 3D culture is a better model for the cytotoxic evaluation of anticancer drugs in vitro. Conclusion: The results from our studies are useful to develop a high throughput in vitro tumor model to study the effect of various anticancer agents and various molecular pathways affected by the anticancer drugs and formulations.
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