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Real-Time Optogenetics System for Controlling Gene Expression Using a Model-Based Design.

Author(s): Soffer G, Perry JM, Shih SCC

Optimization of engineered biological systems requires precise control over the rates and timing of gene expression. Optogenetics is used to dynamically control gene expression as an alternative to conventional chemical-based methods since it provides a mor...

Article GUID: 33543619

Increased oxidative modifications of amniotic fluid albumin in pregnancies associated with gestational diabetes mellitus.

Author(s): Boisvert MR, Koski KG, Skinner CD

Anal Chem. 2010 Feb 01;82(3):1133-7 Authors: Boisvert MR, Koski KG, Skinner CD

Article GUID: 20063865

Development of a particle-trap preconcentration-soft ionization mass spectrometric technique for the quantification of mercury halides in air

Author(s): Deeds DA; Ghoshdastidar A; Raofie F; Guérette ÉA; Tessier A; Ariya PA;

Measurement of oxidized mercury, Hg(II), in the atmosphere poses a significant analytical challenge as Hg(II) is present at ultra-trace concentrations (picograms per cubic meter air). Current technologies are sufficiently sensitive to measure the total Hg p...

Article GUID: 25837315

Integration of World-to-Chip Interfaces with Digital Microfluidics for Bacterial Transformation and Enzymatic Assays.

Author(s): Moazami E, Perry JM, Soffer G, Husser MC, Shih SCC

Anal Chem. 2019 Apr 16;91(8):5159-5168 Authors: Moazami E, Perry JM, Soffer G, Husser MC, Shih SCC

Article GUID: 30945840

Analyzing the Biochemical Alteration of Green Algae During Chronic Exposure to Triclosan Based on Synchrotron-Based Fourier Transform Infrared Spectromicroscopy.

Author(s): Xin X, Huang G, An C, Weger H, Cheng G, Shen J, Rosendahl S

Anal Chem. 2019 May 31;: Authors: Xin X, Huang G, An C, Weger H, Cheng G, Shen J, Rosendahl S

Article GUID: 31117408


Title:Analyzing the Biochemical Alteration of Green Algae During Chronic Exposure to Triclosan Based on Synchrotron-Based Fourier Transform Infrared Spectromicroscopy.
Authors:Xin XHuang GAn CWeger HCheng GShen JRosendahl S
Link:https://www.ncbi.nlm.nih.gov/pubmed/31117408?dopt=Abstract
Category:Anal Chem
PMID:31117408
Dept Affiliation: ENCS
1 Institute for Energy, Environment and Sustainable Communities , University of Regina , Regina , Saskatchewan S4S 0A2 , Canada.
2 Department of Building, Civil and Environmental Engineering , Concordia University , Montreal , Québec H3G 1M8 , Canada.
3 Department of Biology , University of Regina , Regina , Saskatchewan S4S 0A2 , Canada.
4 Canadian Light Source , Saskatoon , Saskatchewan S7N 2 V3 , Canada.

Description:

Analyzing the Biochemical Alteration of Green Algae During Chronic Exposure to Triclosan Based on Synchrotron-Based Fourier Transform Infrared Spectromicroscopy.

Anal Chem. 2019 May 31;:

Authors: Xin X, Huang G, An C, Weger H, Cheng G, Shen J, Rosendahl S

Abstract

The study explored the chronic toxicity of triclosan to green microalga Chlorococcum sp. under multiple interactions among multiple environmental conditions. This is the first study on chronic algal toxicity to combine synchrotron-based Fourier transform infrared spectromicroscopy, factorial analysis, principal component analysis, and stepwise-cluster analysis. Such a combination helps to reveal the toxic mechanism at the molecular level and explore the inner correlationship among multiple environmental conditions. In the 120-h test, nitrogen content became the most significant factor of the physiochemical properties. Some insignificant factors in the 48-h test became significant in the 120-h test. Temperature * nitrogen content, temperature * phosphorus content, and pH * phosphorus content were the most significant two-order interactions. Temperature * pH * NaCl concentration and temperature * NaCl concentration * phosphorus content were the most significant three-order interactions. More high-order interactions became significant in the 120-h test, indicating the complexity and impacts of all the factors may increase when time was extended. The chronic toxicity of triclosan presented more distinguishable variations among treatments based on biochemical alterations. These results demonstrate that the sensitivity and fragility of algae to triclosan can be amplified with time extension. Long-term exposure can be applied to better evaluate and predict the environmental toxicity behavior of triclosan. It can also help with environmental evaluation and risk management of real-world triclosan toxicity.

PMID: 31117408 [PubMed - as supplied by publisher]