2007Journal of environmental healthRequires access

Study on Effect of Benzo(a)pyrene on Cell Viability of Human Embryonic Lung Fibroblast in Vitro

Zhang Hong-we

Open publisher page 0 citations

Abstract

Objective To study effect of benzo(a)pyrene[B(a)P] at different doses for different treating time on cell viability of human embryonic lung fibroblast(HELF) in vitro. Methods HELF cells at exponential growth phase in vitro planted in 96 wells microplates were treated by low doses of 0.018-10.000 μmol/ L and high doses of 15.6-125.0 μmol/ L B(a)P for 2, 4, 6, 24 h and 2, 4, 6, 24, 48, 72 h respectively. MTT assay was used to evaluate the effects of B(a)P on cell viability of HELF cells. Results Compared with the negative control, neither the effects on HELF cell viability of B(a)P at doses of 0.018-10.000 μmol/ L for 2, 4, 6, 24 h nor the effects at doses of 15.6-125.0 μmol/ L for 2, 4 h were observed. At the dose of 125.0 μmol/ L for 6 h, at the doses of 125.0?62.5?31.3 μmol/ L for 24, 48 h and at the doses of 15.6-125.0 μmol/ L for 72 h, cell viability of HELF were inhibited significantly. Conclusion Effects of B(a)P on cell viability of HELF were significantly dependent on the doses and the time.

About this research paper

What this paper is about

Objective To study effect of benzo(a)pyrene[B(a)P] at different doses for different treating time on cell viability of human embryonic lung fibroblast(HELF) in vitro. Methods HELF cells at exponential growth phase in vitro planted in 96 wells microplates were treated by low doses of 0.018-10.000 μmol/ L and high doses of 15.6-125.0 μmol/ L B(a)P for 2, 4, 6, 24 h and 2, 4, 6, 24, 48, 72 h respectively. MTT assay was used to evaluate the effects of B(a)P on cell viability of HELF cells. Results Compared with the negative control, neither the effects on HELF cell viability of B(a)P at doses of 0.018-10.000 μmol/ L for 2, 4, 6, 24 h nor the effects at doses of 15.6-125.0 μmol/ L for 2, 4 h were observed. At the dose of 125.0 μmol/ L for 6 h, at the doses of 125.0?62.5?31.3 μmol/ L for 24, 48 h and at the doses of 15.6-125.0 μmol/ L for 72 h, cell viability of HELF were inhibited significantly. Conclusion Effects of B(a)P on cell viability of HELF were significantly dependent on the doses and the time.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Objective To study effect of benzo(a)pyrene[B(a)P] at different doses for different treating time on cell viability of human embryonic lung fibroblast(HELF) in vitro. Methods HELF cells at exponential growth phase in vitro planted in 96 wells microplates were treated by low doses of 0.018-10.000 μmol/ L and high doses of 15.6-125.0 μmol/ L B(a)P for 2, 4, 6, 24 h and 2, 4, 6, 24, 48, 72 h respectively. MTT assay was used to evaluate the effects of B(a)P on cell viability of HELF cells. Results Compared with the negative control, neither the effects on HELF cell viability of B(a)P at doses of 0.018-10.000 μmol/ L for 2, 4, 6, 24 h nor the effects at doses of 15.6-125.0 μmol/ L for 2, 4 h were observed. At the dose of 125.0 μmol/ L for 6 h, at the doses of 125.0?62.5?31.3 μmol/ L for 24, 48 h and at the doses of 15.6-125.0 μmol/ L for 72 h, cell viability of HELF were inhibited significantly. Conclusion Effects of B(a)P on cell viability of HELF were significantly dependent on the doses and the time.

Key concepts: Viability assay, Benzo(a)pyrene, Fibroblast, In vitro, Pyrene, Chemistry, Molecular biology, Cell

Related papers

Back to paper searchBrowse research topicsOriginal source
Study on Effect of Benzo(a)pyrene on Cell Viability of Human Embryonic Lung Fibroblast in Vitro — Research Paper | ScholarLens