Related Experiment Video
Updated: Aug 11, 2026

Using Click Chemistry to Measure the Effect of Viral Infection on Host-Cell RNA Synthesis
Published on: August 9, 2013
Cytotoxicity assessment of chlorinated bacteria in water using the RNA synthesis inhibition method
K A Ferey1, C Fauris, G P Husson
1Faculté de Pharmacie Paris V, Laboratoire d'Hydrologie, 6 Av. de l'Observatoire, 75270 cedex 06, Paris, France.
Abstract:
Chlorination of drinking water containing organic materials is known to generate toxic by-products. We suggested that such compounds may also be produced by interactions between chlorine and bacteria present in water. To confirm this hypothesis, a method based on RNA synthesis inhibition of HeLa S3 human cells in the presence of toxic compounds was applied. This method is rapid and highly sensitive since the concentration of the samples is not required. Furthermore, it was shown to be a suitable method for measurement of the cytotoxicity of water. Aeromonas hydrophila suspensions, prepared with pyrodistilled water, devoid of any organic material, were chlorinated for a definite contact time. HeLa S3 cells were incubated (20 h, 37 degrees C) in a culture medium prepared with the chlorinated bacteria suspensions. The rate of incorporation of 3H uridine into RNA was used as a measure of RNA synthesis and was evaluated in the presence and absence of chlorinated bacteria suspension. This study showed that chlorinated bacteria suspensions are cytotoxic. We observed that 0.22 microm filters retain cytotoxic compounds but 0.45 microm filters did not. Chlorine concentration and bacteria level influence the cytotoxicity. First, the toxicity level increases with chlorine concentration, then it decreases when chlorine concentration is too high. On another hand, a dose effect relationship between bacteria concentration and cytotoxicity was established.
More Related Videos
09:00An In Vitro Enzymatic Assay to Measure Transcription Inhibition by Gallium(III) and H3 5,10,15-tris(pentafluorophenyl)corroles
Published on: March 18, 2015
12:03Evaluation of the Efficacy And Toxicity of RNAs Targeting HIV-1 Production for Use in Gene or Drug Therapy
Published on: September 5, 2016