CRISPR approach in environmental chemical screening focusing on population variability
Author:
Affiliation:
1. INL-International Iberian Nanotechnology Laboratory, Portugal
2. State Key Laboratory of Pollution Control & Resource Reuse, School of the Environment, Nanjing University, China
Publisher
Japanese Society of Toxicology
Subject
Toxicology
Link
https://www.jstage.jst.go.jp/article/jts/46/11/46_499/_pdf
Reference47 articles.
1. Abdo, N., Wetmore, B.A., Chappell, G.A., Shea, D., Wright, F.A. and Rusyn, I. (2015a): In vitro screening for population variability in toxicity of pesticide-containing mixtures. Environ. Int., 85, 147-155.
2. Abdo, N., Xia, M., Brown, C.C., Kosyk, O., Huang, R., Sakamuru, S., Zhou, Y.H., Jack, J.R., Gallins, P., Xia, K., Li, Y., Chiu, W.A., Motsinger-Reif, A.A., Austin, C.P., Tice, R.R., Rusyn, I. and Wright, F.A. (2015b): Population-based in vitro hazard and concentration-response assessment of chemicals: the 1000 genomes high-throughput screening study. Environ. Health Perspect., 123, 458-466.
3. Balik-Meisner, M., Truong, L., Scholl, E.H., La Du, J.K., Tanguay, R.L. and Reif, D.M. (2018): Elucidating Gene-by-Environment Interactions Associated with Differential Susceptibility to Chemical Exposure. Environ. Health Perspect., 126, 067010.
4. Baliou, S., Adamaki, M., Kyriakopoulos, A.M., Spandidos, D.A., Panayiotidis, M., Christodoulou, I. and Zoumpourlis, V. (2018): CRISPR therapeutic tools for complex genetic disorders and cancer (Review). Int. J. Oncol., 53, 443-468.
5. Behan, F.M., Iorio, F., Picco, G., Gonçalves, E., Beaver, C.M., Migliardi, G., Santos, R., Rao, Y., Sassi, F., Pinnelli, M., Ansari, R., Harper, S., Jackson, D.A., McRae, R., Pooley, R., Wilkinson, P., van der Meer, D., Dow, D., Buser-Doepner, C., Bertotti, A., Trusolino, L., Stronach, E.A., Saez-Rodriguez, J., Yusa, K. and Garnett, M.J. (2019): Prioritization of cancer therapeutic targets using CRISPR-Cas9 screens. Nature, 568, 511-516.
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