Pereira A, Silva L, Laranjeiro C, Lino C, Pena A (2020) Selected pharmaceuticals in different
aquatic compartments: part II-toxicity and environmental risk assessment. Molecules 25(8)
Pessah IN, Lehmler HJ, Robertson LW, Perez CF, Cabrales E, Bose DD, Feng W (2009) Enantiomeric specificity of (-)-2,2
0 ,3,3
0 ,6,6
0 -hexachlorobiphenyl toward ryanodine receptor types 1 and
2. Chem Res Toxicol 22(1):201–207
Petrie B, Mrazova J, Kasprzyk-Hordern B, Yates K (2018) Multi-residue analysis of chiral and
achiral trace organic contaminants in soil by accelerated solvent extraction and enantioselective
liquid chromatography tandem-mass spectrometry. J Chromatogr A 1572:62–71
Petriello MC, Hoffman JB, Vsevolozhskaya O, Morris AJ, Hennig B (2018) Dioxin-like PCB
126 increases intestinal inflammation and disrupts gut microbiota and metabolic homeostasis.
Environ Pollut 242(Pt A):1022–1032
Petrović M, Barceló D, Perez S (2013) Analysis, removal, effects and risk of pharmaceuticals in the
water cycle : occurrence and transformation in the environment. Elsevier, Boston
Platt KL, Schollmeier M, Frank H, Oesch F (1990) Stereoselective metabolism of dibenz(a,h)
anthracene to trans-dihydrodiols and their activation to bacterial mutagens. Environ Health
Perspect 88:37–41
Połeć I, Cieślak L, Śledziński B, Ksycińska H (1998) Simple syntheses of malathion and malaoxon
enantiomers, and isomalathion diastereoisomers: toxicity–configuration relationship. Pestic Sci
53(2):165–171
Proctor K, Petrie B, Barden R, Arnot T, Kasprzyk-Hordern B (2019) Multi-residue ultra-performance liquid chromatography coupled with tandem mass spectrometry method for comprehensive multi-class anthropogenic compounds of emerging concern analysis in a catchment-based
exposure-driven study. Anal Bioanal Chem 411(27):7061–7086
Pucko M, Stern GA, Barber DG, Macdonald RW, Warner KA, Fuchs C (2012) Mechanisms and
implications of alpha-HCH enrichment in melt pond water on Arctic sea ice. Environ Sci
Technol 46(21):11862–11869
Qi Y, Liu D, Zhao W, Liu C, Zhou Z, Wang P (2015) Enantioselective phytotoxicity and bioactivity
of the enantiomers of the herbicide napropamide. Pestic Biochem Physiol 125:38–44
Qian Y, Zhou P, Zhang Q (2017) Development of environment-friendly insecticides based on
enantioselectivity: bifenthrin as a case. Curr Protein Pept Sci 18(1):10–14
Qiao X, Carmosini N, Li F, Lee LS (2011) Probing the primary mechanisms affecting the
environmental distribution of estrogen and androgen isomers. Environ Sci Technol 45
(9):3989–3995
Qu H, Ma R, Wang B, Yang J, Duan L, Yu G (2019) Enantiospecific toxicity, distribution and
bioaccumulation of chiral antidepressant venlafaxine and its metabolite in loach (Misgurnus
anguillicaudatus) co-exposed to microplastic and the drugs. J Hazard Mater 370:203–211
Quinn D (2008) Does chirality matter? pharmacodynamics of enantiomers of methylphenidate in
patients with attention-deficit/hyperactivity disorder. J Clin Psychopharmacol 28(3 Suppl 2):
S62–S66
Rapala J, Sivonen K, Luukkainen R, Niemelä SI (1993) Anatoxin-a concentration in Anabaena and
Aphanizomenon under different environmental conditions and comparison of growth by toxic
and non-toxic Anabaena-strains—a laboratory study. J Appl Phycol 5(6):581–591
Reddy IK, Kommuru TR, Zaghloul AA, Khan MA (2000) Chirality and its implications in
transdermal drug development. Crit Rev Ther Drug Carrier Syst 17(4):285–325
Reuber MD (1979) Carcinogenicity of toxaphene: a review. J Toxicol Environ Health 5(4):729–748
Ribeiro C, Santos C, Goncalves V, Ramos A, Afonso C, Tiritan ME (2018) Chiral drug analysis in
forensic chemistry: an overview. Molecules 23(2)
Rice J, Proctor K, Lopardo L, Evans S, Kasprzyk-Hordern B (2018) Stereochemistry of ephedrine
and its environmental significance: exposure and effects directed approach. J Hazard Mater
348:39–46
Rodriguez OP, Muth GW, Berkman CE, Kim K, Thompson CM (1997) Inhibition of various
cholinesterases with the enantiomers of malaoxon. Bull Environ Contamin Toxicol 58
(2):171–176
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