Ecotoxicological assessment of pharmaceuticals and personal care products using predictive toxicology approaches?
Green Chemistry Pub Date: 2020-01-09 DOI: 10.1039/C9GC03265G
Abstract
The use of active pharmaceutical ingredients (APIs) and personal care products (PCPs) is growing day by day all over the world. Thus, these materials have appeared as contaminants of emerging concern (CEC) responsible for hazards and toxicity towards aquatic and terrestrial living systems as well as to humans. Regulatory agencies from all over the world have formulated multiple rules, guidelines and regulations for the risk assessment of pharmaceuticals and PCPs (PPCPs) to the ecosystem. As the generation of a huge amount of experimental data is time consuming and costly, and also requires sacrifice of a large number of animals, computational modeling or in silico approaches are proving to be an efficient technique for not only risk assessment, but also for risk management and data gap filling. The present review deals with the critical assessment of the hazardous potential of PPCPs in the environment. The importance of in silico modeling approaches for the environmental toxicity endpoints to diverse organisms covering all compartments of taxonomy, details of the most commonly employed endpoints, ecotoxicity databases and expert systems as rapid screening tools are discussed meticulously with complete mechanistic interpretations of in silico models reported over the years.
Recommended Literature
- [1] Emerging investigator series: heterogeneous reactions of sulfur dioxide on mineral dust nanoparticles: from single component to mixed components? Tao Wang,Yangyang Liu,Yue Deng,Hongbo Fu,Jianmin ChenEnviron. Sci.: Nano, 2018,5, 1821-1833 10.1039/C8EN00376A
- [2] Distributed research: a new paradigm for undergraduate research and global problem solving? Bruce ParkinsonEnergy Environ. Sci., 2010,3, 509-511 10.1039/B919523H
- [3] Excitable dynamics in the bromate–sulfite–ferrocyanide reaction J. Zagora,M. Vosla?,L. Schreiberová,I. SchreiberPhys. Chem. Chem. Phys., 2002,4, 1284-1291 10.1039/B110048C
- [4] Exceptional activity of sub-nm Pt clusters on CdS for photocatalytic hydrogen production: a combined experimental and first-principles study? Qiyuan Wu,Shangmin Xiong,Peichuan Shen,Shen Zhao,Alexander OrlovCatal. Sci. Technol., 2015,5, 2059-2064 10.1039/C4CY01563K
- [5] Distinctive size effects of Pt nanoparticles immobilized on Fe3O4@PPy used as an efficient recyclable catalyst for benzylic alcohol aerobic oxidation and hydrogenation reduction of nitroaromatics Yu Long,Bing Yuan,Jianrui Niu,Xin Tong,Jiantai MaNew J. Chem., 2015,39, 1179-1185 10.1039/C4NJ01869A
- [6] Distribution and ecological risk assessment of typical antibiotics in the surface waters of seven major rivers, China? Environ. Sci.: Processes Impacts, 2021,23, 1088-1100 10.1039/D1EM00079A
- [7] Exchangeability of amino acid residues with similar physicochemical properties in coiled-coil interactions? Guiying Zhang,Maosheng Cheng,Yanni Li,Keliang Liu,Lifeng CaiChem. Commun., 2013,49, 11086-11088 10.1039/C3CC46560H
- [8] Emulsion technologies for multicellular tumour spheroid radiation assays? Kay S. McMillan,Anthony G. McCluskey,Annette Sorensen,Marie Boyd,Michele ZagnoniAnalyst, 2016,141, 100-110 10.1039/C5AN01382H
- [9] Embedding cyclic nitrone in mesoporous silica particles for EPR spin trapping of superoxide and other radicals? Eric Besson,Stéphane Gastaldi,Emily Bloch,Selma Aslan,Hakim Karoui,Olivier Ouari,Micael HardyAnalyst, 2019,144, 4194-4203 10.1039/C9AN00468H
- [10] Fe(ii)-Assisted one-pot synthesis of ultra-small core–shell Au–Pt nanoparticles as superior catalysts towards the HER and ORR? Yi Cao,Yujiao Xiahou,Lixiang Xing,Xiang Zhang,Hong Li,ChenShou Wu,Haibing XiaNanoscale, 2020,12, 20456-20466 10.1039/D0NR04995F
Journal Name:Green Chemistry
research_products
-
CAS no.: 89640-58-4