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5 protocols using flusilazole

1

Conazole Compounds Procurement and Preparation

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The ten selected conazoles (Table 1) were purchased from Sigma–Aldrich Co. (Zwijndrecht, The Netherlands): cyproconazole (CYPRO; 99.8%, CAS# 94361-06-5), fluconazole (FLUC; ≥98%, CAS# 86386-73-4), flusilazole (FLUS; 99.8%, CAS# 85509-19-9), hexaconazole (HEXA; 99.7%, CAS# 79983-71-4), myclobutanil (MYC; 99.3%, CAS# 88671-89-0), penconazole (PEN; 99.1%, CAS# 66246-88-6), prochloraz (PRO; 99.1%, CAS# 67747-09-5), tebuconazole (TEBU; 99.6%, CAS# 107534-96-3), triadimefon (TRIA; 99.7%, CAS# 43121-43-3), and triticonazole (TRIT; 98.8%, CAS# 131983-72-7). SU10603 was a kind gift from Dr. Honora Cooper Eckhardt (Hovartis Pharmaceuticals Corporation, Summit, USA). Stock solutions were prepared in DMSO resulting in a maximal solvent concentration of 0.1% (v/v) in the exposure medium.
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2

Preparation of Flusilazole Standard Solution

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Flusilazole purchased from Sigma-Aldrich (≥99%, Sigma-Aldrich, St. Louis, MO, USA) was dissolved into acetonitrile (HPLC reagent, J&K Scientific, Logan, UT, USA) aqueous solution (50%, v/v) to prepare Flusilazole standard solution with different concentrations. (0.1, 0.2, 0.5, 1 and 2 mg/L).
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3

Flusilazole and Carbendazim Analytical Standards

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Flusilazole (product no. 45753) and carbendazim (product no. 45368) were purchased as PESTANAL ® analytical standards from Sigma Aldrich (Poole, Dorset) and made up to 10 µM stocks solutions in dimethylsulfoxide (DMSO) (also from Sigma Aldrich). Serial dilutions of the stock solutions were made to give the appropriate concentrations in the treatment flasks. Test agent/vehicle control solutions did not exceed 1% v/v in the treatment flasks.
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4

Analytical Standards for Environmental and Forensic Analysis

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Materials. HPLC-grade acetonitrile, water, hexafluorobenzene (99%) and chlorobenzene (99.9%), iodobenzene (>99%) and fluorobenzene (>99.5%) were obtained from Sigma-Aldrich (Buchs, Switzerland), and toluene (99.85%) and acetone (99.9%) from Acros Organics (Geel, Belgium). Analytical-grade pesticide and drug standards were purchased from Sigma-Aldrich, and were: ametryn, atrazine, prometon, prometryn, propazine, simazine, terbutryn, disulfoton, famphur, parathion, parathion-methyl, phorate, sulfotep, thionazin, triethyl thiophosphate, dimethoate, metolachlor, pyrimethanil, malathion, cyprodinil, flusilazole, cyproconazole, trifloxystrobin, quinoxyfen, tebuconazole, pyriproxyfen, pyridaben, difenoconazole, azoxystrobin, diazepam, cocaine, methadone, desipramine, imipramine, MDMA, ketamine, lidocaine and fentanyl. Phenanthrene-d10, pyrene-d10, and a polycyclic aromatic hydrocarbon mix (CRM 47930) were purchased from Sigma-Aldrich.
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5

Pesticide Residue Analysis in Grape Juice

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Materials. HPLC-grade water and acetonitrile and dimethyldichlorosilane (DMDCS, 5% in toluene) were obtained from Sigma-Aldrich (Buchs, Switzerland). PESTANAL© analyticalgrade standards were purchased from Sigma-Aldrich: famphur, parathion, parathion-met, sulfotep, thionazin, ametryn, atrazine, atrazine-D 5 , metolachlor, prometon, prometryn, terbutryn, propazine, simazine, pyrimethanil, cyproconazole, quinoxyfen, flusilazole, trifloxystrobin, azoxystrobin, pyridaben, pyraclostrobin, pyriproxyfen, tebuconazole, cyprodinil, difenoconazole and malathion. Organic grape juice was purchased at local grocery stores in Zurich (Switzerland) and in Waterloo (ON, Canada). PDMS/DVB/PDMS coatings were prepared in-house following the procedure described by Souza-Silva et al. 16 Sample preparation. Individual pesticide standard stock solutions were prepared at a concentration of 5 mg/mL in acetonitrile, and stored at -20 °C. A mix of the pesticides at 100 µg/mL in acetonitrile was prepared from the stock solutions. Diluted solutions used for SPME analysis were prepared in ACN from the mix and were stored at a temperature of 4 °C.
The grape juice samples were spiked with an aliquot of the pesticides standards mixtures, always keeping the total amount of solvent spiked in the matrix below 1% (v:v).
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