| Literature DB >> 26301164 |
Amanda Hebert1, Michelle Bishop2, Dhiman Bhattacharyya3, Karen Gleason3, Stephen Torosian1.
Abstract
There is need for devices that decrease detection time of food-borne pathogens from days to real-time. In this study, a rapid-detection device is being developed and assessed for potential cytotoxicity. The device is comprised of melt-spun polypropylene coupons coated via oxidative chemical vapor deposition (oCVD) with 3,4-Ethylenedioxythiophene (EDOT), for conductivity and 3-Thiopheneethanol (3TE), allowing antibody attachment. The Ames test and comet assay have been used in this study to examine the toxicity potentials of EDOT, 3TE, and polymerized EDOT-co-3TE. For this study, Salmonella typhimurium strain TA1535 was used to assess the mutagenic potential of EDOT, 3TE and the copolymer. The average mutagenic potential of EDOT, 3TE and copolymer was calculated to be 0.86, 0.56, and 0.92, respectively. For mutagenic potential, on a scale from 0 to 1, close to 1 indicates low potential for toxicity, whereas a value of 0 indicates a high potential for toxicity. The comet assay is a single-cell gel electrophoresis technique that is widely used for this purpose. This assay measures toxicity based on the area or intensity of the comet-like shape that DNA fragments produce when DNA damage has occurred. Three cell lines were assessed; FRhK-4, BHK-21, and Vero cells. After averaging the results of all three strains, the tail intensity of the copolymer was 8.8 % and tail moment was 3.0, and is most similar to the untreated control, with average tail intensity of 5.7 % and tail moment of 1.7. The assays conducted in this study provide evidence that the copolymer is non-toxic to humans.Entities:
Keywords: Biosensor; Cytotoxicity; P(EDOT-co-3TE); oCVD
Year: 2014 PMID: 26301164 PMCID: PMC4538710 DOI: 10.1007/s13204-014-0373-7
Source DB: PubMed Journal: Appl Nanosci ISSN: 2190-5517 Impact factor: 3.674
Ames test
| Chemical added | CFU/plate 1 | CFU/plate 2 | CFU/plate 3 | Average | Mutagenic frequency |
|---|---|---|---|---|---|
| Sodium azide | 102 | 157 | 131 | 130 | 2.6 |
| None (just | 47 | 59 | 44 | 50 | 1 |
| Copolymer from glass slide | 51 | 52 | 35 | 46 | 0.92 |
| EDOT | 35 | 62 | 33 | 43 | 0.86 |
| 3TE | 42 | 27 | 15 | 28 | 0.56 |
Mutagenic frequency is measured by dividing the test chemical CFU by the negative control (Salmonella) CFU
Fig. 1FRhK-4 cells. 1 Untreated, 2 hydrogen peroxide treatment, 3 P(EDOT-CO-3TE) treatment, 4 EDOT treatment, 5 3TE treatment
Fig. 2BHK-21 cells. 1 Untreated, 2 hydrogen peroxide treatment, 3 3TE treatment, 4 EDOT treatment, 5 P(EDOT-co-3TE) treatment, 6 P(EDOT-co-3TE) injected into cells via electroporation, untreated
Fig. 3Percent tail intensity and tail moment for FRhK-4 cells
Fig. 4Percent tail intensity and tail moment for BHK-21 cells
Fig. 5Percent tail intensity and tail moment for Vero cells*
Fig. 6Average percent tail intensity and tail moment for three cell lines