Publications

Detailed Information

Residue Analysis of Cyazofamid, and Its Metabolism by Soil Fungus Cunninghamella elegans and Human Liver Microsomes : 토양 곰팡이 Cunninghamella elegans 및 인체 간 마이크로좀에 의한 살균제 Cyazofamid의 대사 및 잔류분석법 연구

DC Field Value Language
dc.contributor.advisor김정한-
dc.contributor.author이혜리-
dc.date.accessioned2017-07-13T08:23:36Z-
dc.date.available2017-07-13T08:23:36Z-
dc.date.issued2015-08-
dc.identifier.other000000067062-
dc.identifier.urihttps://hdl.handle.net/10371/119505-
dc.description학위논문 (박사)-- 서울대학교 대학원 : 농생명공학부, 2015. 8. 김정한.-
dc.description.abstractCyazofamid, a sulfonamide fungicide, has been used for the protection of several vegetables and fruits from various diseases. In the present study, the analytical method of cyazofamid and its metabolite by HPLC and LC-MS/MS was established. And metabolism of cyazofamid by soil fungus Cunninghamella elegans and by in vitro human mimicking system was investigated to understand bioenvironmental fate of cyazofamid. Apple, mandarin, Kimchi cabbage, green pepper, potato, and soybean were chosen as the representative crop samples for analytical study. LOQ and MLOQ for cyazofamid were 2 ng and 0.02 mg/kg, respectively, on HPLC. Recoveries of cyazofamid at three spiking levels were reasonable (75.3 - 98.5%). A rapid and effective LC?MS/MS analytical method of cyazofamid and its metabolite, CCIM (4-chloro-5-p-tolylimidazole-2-carbonitrile), was established for soil and water samples in addition to the crop samples using QuEChERS sample treatment. On LC-MS/MS, MLOQ of cyazofamid and CCIM were 2 ng/g and 5 ng/g for crop/soil samples, respectively, while 0.02 ng/mL and 0.05 ng/mL were achieved, respectively, for water samples. The recoveries of target analytes in crop/environmental samples were 80.2% - 105.1% for cyazofamid and 75.1% - 99.1% for CCIM. CCIM was observed in the metabolism of cyazofamid by artificial gastric juice and intestinal juice. CCHS (4-chloro-2-cyano-5-(4-(hydroxymethyl)phenyl)N,N-dimethyl-imidazole-1-sulfonamide) was identified unambiguously as a noble metabolite in the metabolism of cyazofamid by soil fungus Cunninghamella elegans. It could be degraded to 4-chloro-5-(4-hydroxymethylphenyl)imidazole-2-carbonitrile (CHCN) and further oxidized to 4-(4-chloro-2-cyanoimidazole-5-yl)benzoic acid (CCBA). In vitro metabolism of cyazofamid by HLMs, CCHS was also produced as the only metabolite. Among 10 types of recombinant CYPs (rCYPs), the formation of CCHS was observed only in CYP2B6, 2C9, and 2C19, contributing 27.4%, 66.1% and 6.5% in metabolism. In molecular docking study of crystal structure of cyazofamid with rCYPs 2B6, 2C9, 2C19 and 3A4, the metabolic reactivity order of three rCYPs was well correlated with the distance between the heme iron of rCYPs and hydroxylated carbon of cyazofamid. In phase II metabolism of cyazofamid no conjugate metabolite was observed in reaction with UDP-glucuronosyl transferases (UGTs) however, CCIM was observed in reaction with glutathione S-transferases (GSTs).-
dc.description.tableofcontentsABSTRACT
CONTENTS
LIST OF FIGURES
LIST OF TABLES

INTRODUCTION
1. Pesticides residues analysis
1.1 General and conventional pesticide residue analysis
1.2 QuEChERS method
1.3 Method validation
2. Degradation of pesticides in gastrointestinal tracts
3. Metabolism of pesticides by phase I and II reactions
3.1 Phase I metabolic reaction
3.2 Phase II metabolic reaction
4. Metabolism of pesticides by microorganisms
5. Human liver microsomes (HLMs)
6. Cyazofamid
7. The purposes of the present study

CAHPTER I : Residue Analysis of Cyazofamid
I. Establishment of Analytical Method for Cyazofamid Residue in Apple, Mandarin, Korean Cabbage, Green Pepper, Potato and Soybean
1. Introduction
2. Materials and methods
2.1 Subject pesticides and crops
2.2 Chemicals, reagents, and standard solutions
2.3 Measurement of instrumental sensitivity, reproducibility, and calibration curve linearity
2.4 Establishment of the HPLC condition for separation of cyazofamid in crop samples
2.5 Establishment of sample preparation procedure for cyazofamid
2.6 Recovery test of cyazofamid in crop samples
2.7 Retention factor of cyazofamid of chromatogram
2.8 Number of theoretical plate (N) and height equivalent to a theoretical plate (H)
3. Results and discussion
3.1 Optimum detection wavelength of cyazofamid
3.2 Clean-up method with Florisil® column chromatography
3.3 Liquid-liquid partitioning of cyazofamid
3.4 Selection of extraction solvent
3.5 Method validation
3.6 Recoveries of cyazofamid from crop samples
3.7 Retention factor (k) and chromatographic efficiency in resolution of cyazofamid on HPLC
II. Analysis of Cyazofamid and Its Metabolite in the Environmental and Crop Samples Using LC?MS/MS
1. Introduction
2. Materials and method
2.1 Chemicals and reagents
2.2 Analytical instruments and conditions
2.3 Stock and working solutions
2.4 Matrix effect
2.5 Recovery test of cyazofamid and its metabolite in crop and environmental samples
2.6 Real sample test
3. Results and discussion
3.1 Instrumental conditions by LC-MS/MS
3.2 Matrix effect
3.3 Recoveries of cyazofamid from crop and environmental samples
3.4 Application of established method for real samples

CAPTER II : Metabolism of Cyazofamid by Soil Fungus Cunninghamella elegans
I. Introduction
II. Materials and Methods
1. Chemicals and reagents
2. Analytical instruments and conditions
2.1 HPLC
2.2 LC-MS/MS
2.3 Preparative HPLC
2.4 1H, 13C, DEPT, and 2D 1H-13C HSQC-NMR
3. Metabolism of cyazofamid by Cunninghamella elegans
III. Results and Discussion
1. Degradation of cyazofamid and formation of metabolites
2. Confirmation of cyazofamid structure with NMR
3. Metabolites identification
IV. Conclusion

CHAPTER III : Metabolism of Cyazofamid by in vitro Human Mimicking System
I. Introduction
II. Materials and Methods
1. Chemicals and reagents
2. Analytical instruments and conditions
2.1 HPLC
2.2 LC-MS/MS
3. Metabolism of cyazofamid by artificial gastrointestinal juice
3.1 Preparation of artificial gastrointestinal juices
3.2 In vitro metabolism of cyazofamid by gastrointestinal juices
4. Metabolism of cyazofamid by HLMs and S9 fractions
4.1 Metabolism of cyazofamid in HLMs (Phase I reaction)
4.2 Metabolite identification
4.3 Optimization of metabolic conditions and kinetic studies
4.4 Metabolism of cyazofamid by cDNA-expressed CYP450 isoforms
and kinetic studies
4.5 Metabolism of cyazofamid in S9 fractions (Phase II reaction)
5. Determination of crystal structure for cyazofamid
6. Molecular docking study
III. Results and Discussion
1. Metabolism of cyazofamid by artificial gastrointestinal juice
1.1 Preparation of artificial gastrointestinal juices
1.2 In vitro metabolic reaction of cyazofamid by artificial gastrointestinal juice
1.3 Metabolic pattern of cyazofamid by artificial gastrointestinal juices
2. In vitro Metabolism of cyazofamid by HLMs and S9 fraction
2.1 Phase I metabolism of cyazofamid by HLMs
2.1.1 Formation of the cyazofamid metabolite by HLMs
2.1.2 Optimization of metabolic conditions and kinetic studies
2.1.3 Metabolism of cyazofamid in cDNA-expressed CYP450 isoforms and kinetic studies
2.2 Phase II metabolism of cyazofamid by S9 fractions
2.2.1 Phase II metabolism of cyazofamid by UGT
2.2.2 Phase II metabolism of cyazofamid by GST
3. Determination of crystal structure for cyazofamid
4. Molecular docking of cyazofamid with rCYPs
IV. Conclusion

REFERENCES
APPENDICES
ABSTRACT IN KOREAN
-
dc.formatapplication/pdf-
dc.format.extent3023576 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectCunninghamella elegans-
dc.subjectCyazofamid-
dc.subjectHPLC-
dc.subjectHuman liver microsomes-
dc.subjectLC-MS/MS-
dc.subjectMetabolism-
dc.subjectQuEChERS-
dc.subject.ddc630-
dc.titleResidue Analysis of Cyazofamid, and Its Metabolism by Soil Fungus Cunninghamella elegans and Human Liver Microsomes-
dc.title.alternative토양 곰팡이 Cunninghamella elegans 및 인체 간 마이크로좀에 의한 살균제 Cyazofamid의 대사 및 잔류분석법 연구-
dc.typeThesis-
dc.description.degreeDoctor-
dc.citation.pagesxvii, 202-
dc.contributor.affiliation농업생명과학대학 농생명공학부-
dc.date.awarded2015-08-
Appears in Collections:
Files in This Item:

Altmetrics

Item View & Download Count

  • mendeley

Items in S-Space are protected by copyright, with all rights reserved, unless otherwise indicated.

Share