Method Article

Anticancer Metal Complexes: Synthesis and Cytotoxicity Evaluation by the MTT Assay

DOI:

10.3791/50767

November 10th, 2013

* These authors contributed equally

In This Article

Summary

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A method for synthesis of air-sensitive titanium and vanadium anticancer agents is described, along with the evaluation of their cytotoxic activity towards human cancer cell line by the MTT Assay.

Abstract

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Titanium (IV) and vanadium (V) complexes are highly potent anticancer agents. A challenge in their synthesis refers to their hydrolytic instability; therefore their preparation should be conducted under an inert atmosphere. Evaluation of the anticancer activity of these complexes can be achieved by the MTT assay.

The MTT assay is a colorimetric viability assay based on enzymatic reduction of the MTT molecule to formazan when it is exposed to viable cells. The outcome of the reduction is a color change of the MTT molecule. Absorbance measurements relative to a control determine the percentage of remaining viable cancer cells following their treatment with varying concentrations of a tested compound, which is translated to the compound anticancer activity and its IC50 values. The MTT assay is widely common in cytotoxicity studies due to its accuracy, rapidity, and relative simplicity.

Herein we present a detailed protocol for the synthesis of air sensitive metal based drugs and cell viability measurements, including preparation of the cell plates, incubation of the compounds with the cells, viability measurements using the MTT assay, and determination of IC50 values.

Introduction

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Chemotherapy is still one of the main courses of treatments employed in the clinic for various cancer diseases, and thus vast amount of research is conducted worldwide with the aim to develop new and improved anticancer drugs. Such studies mostly begin at the chemical level, with the design and preparation of compounds, followed by biological evaluation of the cytotoxic properties in vitro. Cell viability may be assessed by various assays that provide information on cellular activity1-2.

Cisplatin is an example of a platinum complex that is widely used as a chemotherapeutic drug, which is considered an efficient treatmen....

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Protocol

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  1. Preparation of the V (V) complex (Figure 2);18 conduct steps 1.1-1.4 in a glove-box; if a glove-box is not available, skip to the alternative steps 2 (2.1-2.6).
    1. Dissolve 0.42 mmol of the ligands H2L in dry THF and add it to a stirring solution of equivalent amounts of VO(OiPr)3 in THF.
    2. Stir the reaction mixture at room temperature for 15 min, and remove the volatiles under vacuum.
    3. Add cold hexane and remove it under vacuum. A dark purple powder should be obtained in a quantitative yield.
    4. Weigh 8 mg of the obtained compound in an Eppendorf vial. Skip to step 3.
  2. ....

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Results

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The complexes were prepared based on established procedures18,28 and their purity may be evaluated by NMR and elemental analysis.

The data received from the MTT assay is analyzed to evaluate the cytotoxicity of the compound18,21. First, subtraction of the blank control absorbance value from all the other values is performed. Second, the THF solvent control value is set to 100% viability, as no growth inhibiting compound was added. All other values are transformed into per.......

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Discussion

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The method described in this manuscript combines chemical synthesis with biological cell viability assay. As with any biological methods concerning viable cells, it is vital to work in a laminar hood, and maintain sterile conditions, including the use of sterile organic solvents. Also, preparation and storage of hydrolytically unstable metal based drugs should be carried out under inert conditions, for which glove box or Schlenk line techniques should be utilized.

The selection of the techniqu.......

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Disclosures

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The authors declare they have no competing financial interests.

Acknowledgements

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Funding was received from the European Research Council under the European Community's Seventh Framework Programme (FP7/2007-2013) / ERC Grant agreement no [239603]

....

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Materials

List of materials used in this article
NameCompanyCatalog NumberComments
Reagent/Material
Fetal bovine serum (FBS)Biological Industries04-007-1A
Hexane ARGadot830122313Dried using a solvent drying system
HT-29 cell lineATCCHTB-38
Isopropanol ARGadot830111370
L-glutamineBiological Industries03-020-1B
MTTSigma-AldrichM5655-1G
Penicillin/streptomycin antibioticsBiological Industries03-031-1B
RPMI-1640 with phenol red with L-glutamineSigma-AldrichR8758
RPMI without phenol redBiological Industries01-103-1A
Tetrahydrofuran (THF) ARGadot830156391dried using a solvent drying system
Ti(OiPr)4Sigma-Aldrich205273-500MLmoisture sensitive
Trypsin/EDTABiological Industries03-052-1B
VO(OiPr)3Sigma-Aldrich404926-10Gmoisture sensitive
Equipment
12-channel pipette 30-300 μlThermo Scientific
12-channel pipette 5-50 μlFinnpipette
75 cm2 flaskNUNC156472
96-well plate with lid (flat bottom)NUNC167008
CO2 IncubatorBinderAPT.line C150
Counter chamberMarienfeld-Superior650030
Eppendorf vialKARTELL
Glove boxM. Braun
Laminar flow hoodADS LAMINAIREOPTIMALE 12
Microplate reader spectrophotometerBio-TekEl-800
MicroscopeNikonEclipse TS100
Pipette 20-200 μlFinnpipette
Pipette 5-50 μlFinnpipette

References

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  1. Niles, A. L., Moravec, R. A., Riss, T. L. Update on in vitro cytotoxicity assays for drug development. Expert Opinion on Drug Discovery. 3, 655-669 (2008).
  2. Hatok, J., et al. In vitro assays for the evaluation of drug resistance in tumor ce....

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Tags

Metal Complex SynthesisCell Viability MeasurementIC50 DeterminationCancer Cell Culture96 Well PlateGlove Box ProcedureSpectrophotometer Analysis

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