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Pesquisa : D01.268.185.900 [Categoria DeCS]
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  1 / 12397 MEDLINE  
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[PMID]:28743765
[Au] Autor:Kurmanbayeva A; Bekturova A; Srivastava S; Soltabayeva A; Asatryan A; Ventura Y; Khan MS; Salazar O; Fedoroff N; Sagi M
[Ad] Endereço:Plant Stress Laboratory, French Associates Institute for Agriculture and Biotechnology of Drylands, Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, 84990, Israel.
[Ti] Título:Higher Novel L-Cys Degradation Activity Results in Lower Organic-S and Biomass in than the Related Saltwort, .
[So] Source:Plant Physiol;175(1):272-289, 2017 Sep.
[Is] ISSN:1532-2548
[Cp] País de publicação:United States
[La] Idioma:eng
[Ab] Resumo:and are almost identical halophytes whose edible succulent shoots hold promise for commercial production in saline water. Enhanced sulfur nutrition may be beneficial to crops naturally grown on high sulfate. However, little is known about sulfate nutrition in halophytes. Here we show that (ecotype RN) exhibits a significant increase in biomass and organic-S accumulation in response to supplemental sulfate, whereas (ecotype VM) does not, instead exhibiting increased sulfate accumulation. We investigated the role of two pathways on organic-S and biomass accumulation in and : the sulfate reductive pathway that generates Cys and l-Cys desulfhydrase that degrades Cys to H S, NH , and pyruvate. The major function of -acetyl-Ser-(thiol) lyase (OAS-TL; EC 2.5.1.47) is the formation of l-Cys, but our study shows that the OAS-TL A and OAS-TL B of both halophytes are enzymes that also degrade l-Cys to H S. This activity was significantly higher in than in , especially upon sulfate supplementation. The activity of the sulfate reductive pathway key enzyme, adenosine 5'-phosphosulfate reductase (APR, EC 1.8.99.2), was significantly higher in than in These results suggest that the low organic-S level in is the result of high l-Cys degradation rate by OAS-TLs, whereas the greater organic-S and biomass accumulation in is the result of higher APR activity and low l-Cys degradation rate, resulting in higher net Cys biosynthesis. These results present an initial road map for halophyte growers to attain better growth rates and nutritional value of and .
[Mh] Termos MeSH primário: Amaranthaceae/metabolismo
Chenopodiaceae/metabolismo
Cisteína/metabolismo
Proteínas de Plantas/metabolismo
Salsola/metabolismo
Enxofre/metabolismo
[Mh] Termos MeSH secundário: Amaranthaceae/efeitos dos fármacos
Biomassa
Chenopodiaceae/efeitos dos fármacos
Cisteína Sintase/metabolismo
Oxirredutases atuantes sobre Doadores de Grupo Enxofre/metabolismo
Salinidade
Salsola/efeitos dos fármacos
Plantas Tolerantes a Sal
Sódio/farmacologia
Sulfatos/farmacologia
Compostos de Sulfidrila/metabolismo
[Pt] Tipo de publicação:COMPARATIVE STUDY; JOURNAL ARTICLE
[Nm] Nome de substância:
0 (Plant Proteins); 0 (Sulfates); 0 (Sulfhydryl Compounds); 70FD1KFU70 (Sulfur); 9NEZ333N27 (Sodium); EC 1.8.- (Oxidoreductases Acting on Sulfur Group Donors); EC 1.8.99.2 (adenylylsulfate reductase); EC 2.5.1.47 (Cysteine Synthase); K848JZ4886 (Cysteine)
[Em] Mês de entrada:1802
[Cu] Atualização por classe:180226
[Lr] Data última revisão:
180226
[Sb] Subgrupo de revista:IM
[Da] Data de entrada para processamento:170727
[St] Status:MEDLINE
[do] DOI:10.1104/pp.17.00780


  2 / 12397 MEDLINE  
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[PMID]:29248819
[Au] Autor:Searcy DG
[Ad] Endereço:Biology Department, University of Massachusetts, Amherst, MA 01003, USA. Electronic address: dsearcy@bio.umass.edu.
[Ti] Título:Elemental sulfur reduction to H S by Tetrahymena thermophila.
[So] Source:Eur J Protistol;62:56-68, 2018 Feb.
[Is] ISSN:1618-0429
[Cp] País de publicação:Germany
[La] Idioma:eng
[Ab] Resumo:Eukaryotic nucleocytoplasm is believed to be descended from ancient Archaea that respired on elemental sulfur. If so, a vestige of sulfur reduction might persist in modern eukaryotic cells. That was tested in Tetrahymena thermophila, chosen as a model organism. When oxygenated, the cells consumed H S rapidly, but when made anoxic they produced H S mostly by amino acid catabolism. That could be inhibited by adding aminooxyacetic acid, and then H S production from elemental sulfur became more evident. Anoxic cell lysates produced H S when provided with sulfur and NADH, but not with either substrate alone. When lysates were fractionated by centrifugation, NADH-dependent H S production was 83% in the soluble fraction. When intact cells that had just previously oxidized H S were shifted to anoxia, the cells produced H S evidently by re-using the oxidized sulfur. After aerobic H S oxidation was stopped, the oxidation product remained available for H S production for about 10 min. The observed H S production is consistent with an evolutionary relationship of nucleocytoplasm to sulfur-reducing Archaea. Mitochondria often are the cellular site of H S oxidation, suggesting that eukaryotic cells might have evolved from an ancient symbiosis that was based upon sulfur exchange.
[Mh] Termos MeSH primário: Enxofre/metabolismo
Tetrahymena thermophila/metabolismo
[Mh] Termos MeSH secundário: Sulfeto de Hidrogênio/química
Mitocôndrias/metabolismo
Oxirredução
Enxofre/química
[Pt] Tipo de publicação:JOURNAL ARTICLE
[Nm] Nome de substância:
70FD1KFU70 (Sulfur); YY9FVM7NSN (Hydrogen Sulfide)
[Em] Mês de entrada:1802
[Cu] Atualização por classe:180223
[Lr] Data última revisão:
180223
[Sb] Subgrupo de revista:IM
[Da] Data de entrada para processamento:171218
[St] Status:MEDLINE


  3 / 12397 MEDLINE  
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[PMID]:29370210
[Au] Autor:Ojha KS; Burgess CM; Duffy G; Kerry JP; Tiwari BK
[Ad] Endereço:Food Chemistry and Technology, Teagasc Food Research Centre, Dublin, Ireland.
[Ti] Título:Integrated phenotypic-genotypic approach to understand the influence of ultrasound on metabolic response of Lactobacillus sakei.
[So] Source:PLoS One;13(1):e0191053, 2018.
[Is] ISSN:1932-6203
[Cp] País de publicação:United States
[La] Idioma:eng
[Ab] Resumo:The lethal effects of soundwaves on a range of microorganisms have been known for almost a century whereas, the use of ultrasound to promote or control their activity is much more recent. Moreover, the fundamental molecular mechanism influencing the behaviour of microorganisms subjected to ultrasonic waves is not well established. In this study, we investigated the influence of ultrasonic frequencies of 20, 45, 130 and 950 kHz on growth kinetics of Lactobacillus sakei. A significant increase in the growth rate of L. sakei was observed following ultrasound treatment at 20 kHz despite the treatment yielding a significant reduction of ca. 3 log cfu/mL in cells count. Scanning electron microscopy showed that ultrasound caused significant changes on the cell surface of L. sakei culture with the formation of pores "sonoporation". Phenotypic microarrays showed that all ultrasound treated L. sakei after exposure to various carbon, nitrogen, phosphorus and sulphur sources had significant variations in nutrient utilisation. Integration of this phenotypic data with the genome of L. sakei revealed that various metabolic pathways were being influenced by the ultrasound treatments. Results presented in this study showed that the physiological response of L. sakei in response to US is frequency dependent and that it can influence metabolic pathways. Hence, ultrasound treatments can be employed to modulate microbial activity for specialised applications.
[Mh] Termos MeSH primário: Genótipo
Lactobacillus sakei/metabolismo
Ultrassom
[Mh] Termos MeSH secundário: Carbono/metabolismo
Genes Bacterianos
Lactobacillus sakei/genética
Lactobacillus sakei/crescimento & desenvolvimento
Lactobacillus sakei/ultraestrutura
Microscopia Eletrônica de Varredura
Nitrogênio/metabolismo
Fósforo/metabolismo
Enxofre/metabolismo
[Pt] Tipo de publicação:JOURNAL ARTICLE; RESEARCH SUPPORT, NON-U.S. GOV'T
[Nm] Nome de substância:
27YLU75U4W (Phosphorus); 70FD1KFU70 (Sulfur); 7440-44-0 (Carbon); N762921K75 (Nitrogen)
[Em] Mês de entrada:1802
[Cu] Atualização por classe:180222
[Lr] Data última revisão:
180222
[Sb] Subgrupo de revista:IM
[Da] Data de entrada para processamento:180126
[St] Status:MEDLINE
[do] DOI:10.1371/journal.pone.0191053


  4 / 12397 MEDLINE  
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[PMID]:29390912
[Au] Autor:Supuran CT
[Ad] Endereço:a Neurofarba Department, Sezione di Chimica Farmaceutica e Nutraceutica , Università degli Studi di Firenze , Florence , Italy.
[Ti] Título:Carbon- versus sulphur-based zinc binding groups for carbonic anhydrase inhibitors?
[So] Source:J Enzyme Inhib Med Chem;33(1):485-495, 2018 Dec.
[Is] ISSN:1475-6374
[Cp] País de publicação:England
[La] Idioma:eng
[Ab] Resumo:A set of compounds incorporating carbon-based zinc-binding groups (ZBGs), of the type PhX (X = COOH, CONH , CONHNH , CONHOH, CONHOMe), and the corresponding derivatives with sulphur(VI)-based ZBGs (X = SO H, SO NH , SO NHNH , SO NHOH, SO NHOMe) were tested as inhibitors of all mammalian isoforms of carbonic anhydrase (CA, EC 4.2.1.1), CA I-XV. Three factors connected with the ZBG influenced the efficacy as CA inhibitor (CAI) of the investigated compounds: (i) the pKa of the ZBG; (ii) its geometry (tetrahedral, i.e. sulphur-based, versus trigonal, i.e. carbon-based ZBGs), and (iii) orientation of the organic scaffold induced by the nature of the ZBG. Benzenesulphonamide was the best inhibitor of all isoforms, but other ZBGs led to interesting inhibition profiles, although with an efficacy generally reduced when compared to the sulphonamide. The nature of the ZBG also influenced the CA inhibition mechanism. Most of these derivatives were zinc binders, but some of them (sulfonates, carboxylates) may interact with the enzyme by anchoring to the zinc-coordinated water molecule or by other inhibition mechanisms (occlusion of the active site entrance, out of the active site binding, etc.). Exploring structurally diverse ZBGs may lead to interesting new developments in the field of CAIs.
[Mh] Termos MeSH primário: Carbono/farmacologia
Inibidores da Anidrase Carbônica/farmacologia
Anidrases Carbônicas/metabolismo
Compostos Organometálicos/farmacologia
Enxofre/farmacologia
Zinco/farmacologia
[Mh] Termos MeSH secundário: Carbono/química
Inibidores da Anidrase Carbônica/síntese química
Inibidores da Anidrase Carbônica/química
Relação Dose-Resposta a Droga
Estrutura Molecular
Compostos Organometálicos/síntese química
Compostos Organometálicos/química
Relação Estrutura-Atividade
Enxofre/química
Zinco/química
[Pt] Tipo de publicação:JOURNAL ARTICLE
[Nm] Nome de substância:
0 (Carbonic Anhydrase Inhibitors); 0 (Organometallic Compounds); 70FD1KFU70 (Sulfur); 7440-44-0 (Carbon); EC 4.2.1.1 (Carbonic Anhydrases); J41CSQ7QDS (Zinc)
[Em] Mês de entrada:1802
[Cu] Atualização por classe:180212
[Lr] Data última revisão:
180212
[Sb] Subgrupo de revista:IM
[Da] Data de entrada para processamento:180203
[St] Status:MEDLINE
[do] DOI:10.1080/14756366.2018.1428572


  5 / 12397 MEDLINE  
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[PMID]:29224357
[Au] Autor:Christian S; Pradhan P; Jans U
[Ad] Endereço:Department of Chemistry and Biochemistry, The City College of New York , New York, New York 10031, United States.
[Ti] Título:Investigation of the Nucleophilic Attack of Dichlorvos by Reduced Sulfur Species Using H NMR.
[So] Source:J Agric Food Chem;66(2):424-431, 2018 Jan 17.
[Is] ISSN:1520-5118
[Cp] País de publicação:United States
[La] Idioma:eng
[Ab] Resumo:The mechanism of the reaction of dichlorvos through hydrolysis reactions and through the reaction with polysulfide (S ) and thiophenolate (PhS ) was investigated by proton nuclear magnetic resonance ( H NMR). The study confirmed product identities of an organophosphorus insecticide reacting with reduced sulfur species using H NMR in oxygen sensitive solutions. The experiments of dichlorvos with polysulfide led to the detection of a previously undetected product. The thiophenolate experiments were further advanced to investigate second-order rate kinetics using an internal standard. The experiments provide new evidence for a nucleophilic attack by the reduced sulfur species at the methoxy carbon of dichlorvos. In addition, the observation of in situ reaction dynamics illustrates the applicability of H NMR spectroscopy toward kinetic investigations in environmental science.
[Mh] Termos MeSH primário: Diclorvós/química
Inseticidas/química
Espectroscopia de Prótons por Ressonância Magnética/métodos
Enxofre/química
[Mh] Termos MeSH secundário: Cinética
Oxirredução
[Pt] Tipo de publicação:EVALUATION STUDIES; JOURNAL ARTICLE
[Nm] Nome de substância:
0 (Insecticides); 70FD1KFU70 (Sulfur); 7U370BPS14 (Dichlorvos)
[Em] Mês de entrada:1802
[Cu] Atualização por classe:180205
[Lr] Data última revisão:
180205
[Sb] Subgrupo de revista:IM
[Da] Data de entrada para processamento:171212
[St] Status:MEDLINE
[do] DOI:10.1021/acs.jafc.7b04749


  6 / 12397 MEDLINE  
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[PMID]:28873573
[Au] Autor:Curtis TY; Powers SJ; Wang R; Halford NG
[Ad] Endereço:Plant Science Department, Rothamsted Research, Harpenden, Hertfordshire AL5 2JQ, United Kingdom. Electronic address: tanyayankova@msn.com.
[Ti] Título:Effects of variety, year of cultivation and sulphur supply on the accumulation of free asparagine in the grain of commercial wheat varieties.
[So] Source:Food Chem;239:304-313, 2018 Jan 15.
[Is] ISSN:0308-8146
[Cp] País de publicação:England
[La] Idioma:eng
[Ab] Resumo:Free asparagine concentration, which is the determining factor for acrylamide-forming potential in cereals, was measured in grain from wheat grown in field trials in the United Kingdom in 2011-2012 and 2012-2013. There were 25 varieties in 2012 and 59 in 2013, with eleven present in both trials. The trials were split-plot, with half of each plot supplied with sulphur and the other half not. The varietal means (mmol per kg) for free asparagine in the sulphur-fed wheat ranged from 1.521 to 2.687 in 2011-2012 and 0.708 to 11.29 in 2012-2013. Eight varieties were identified as having consistently low free asparagine concentration. There was a differential response of varieties to sulphur, and much higher levels of free asparagine in 2012-2013 versus 2011-2012. Given the short commercial lifespan of some wheat varieties, it is concluded that information on free asparagine concentration should be made available when a variety is launched.
[Mh] Termos MeSH primário: Triticum
[Mh] Termos MeSH secundário: Asparagina
Grãos Comestíveis
Enxofre
Reino Unido
[Pt] Tipo de publicação:JOURNAL ARTICLE
[Nm] Nome de substância:
7006-34-0 (Asparagine); 70FD1KFU70 (Sulfur)
[Em] Mês de entrada:1711
[Cu] Atualização por classe:180116
[Lr] Data última revisão:
180116
[Sb] Subgrupo de revista:IM
[Da] Data de entrada para processamento:170907
[St] Status:MEDLINE


  7 / 12397 MEDLINE  
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[PMID]:29236755
[Au] Autor:Fonseca A; Ishoey T; Espinoza C; Pérez-Pantoja D; Manghisi A; Morabito M; Salas-Burgos A; Gallardo VA
[Ad] Endereço:Department of Pharmacology, University of Concepcion, Concepcion, Chile.
[Ti] Título:Genomic features of "Candidatus Venteria ishoeyi", a new sulfur-oxidizing macrobacterium from the Humboldt Sulfuretum off Chile.
[So] Source:PLoS One;12(12):e0188371, 2017.
[Is] ISSN:1932-6203
[Cp] País de publicação:United States
[La] Idioma:eng
[Ab] Resumo:The Humboldt Sulfuretum (HS), in the productive Humboldt Eastern Boundary Current Upwelling Ecosystem, extends under the hypoxic waters of the Peru-Chile Undercurrent (ca. 6°S and ca. 36°S). Studies show that primeval sulfuretums held diverse prokaryotic life, and, while rare today, still sustain species-rich giant sulfur-oxidizing bacterial communities. We here present the genomic features of a new bacteria of the HS, "Candidatus Venteria ishoeyi" ("Ca. V. ishoeyi") in the family Thiotrichaceae.Three identical filaments were micro-manipulated from reduced sediments collected off central Chile; their DNA was extracted, amplified, and sequenced by a Roche 454 GS FLX platform. Using three sequenced libraries and through de novo genome assembly, a draft genome of 5.7 Mbp, 495 scaffolds, and a N50 of 70 kbp, was obtained. The 16S rRNA gene phylogenetic analysis showed that "Ca. V. ishoeyi" is related to non-vacuolate forms presently known as Beggiatoa or Beggiatoa-like forms. The complete set of genes involved in respiratory nitrate-reduction to dinitrogen was identified in "Ca. V. ishoeyi"; including genes likely leading to ammonification. As expected, the sulfur-oxidation pathway reported for other sulfur-oxidizing bacteria were deduced and also, key inorganic and organic carbon acquisition related genes were identified. Unexpectedly, the genome of "Ca. V. ishoeyi" contained numerous CRISPR repeats and an I-F CRISPR-Cas type system gene coding array. Findings further show that, as a member of an eons-old marine ecosystem, "Ca. V. ishoeyi" contains the needed metabolic plasticity for life in an increasingly oxygenated and variable ocean.
[Mh] Termos MeSH primário: Bactérias/metabolismo
Genoma Bacteriano
Enxofre/metabolismo
[Mh] Termos MeSH secundário: Bactérias/classificação
Bactérias/genética
Chile
DNA Bacteriano/genética
DNA Bacteriano/isolamento & purificação
Oxirredução
Filogenia
RNA Ribossômico 16S/genética
[Pt] Tipo de publicação:JOURNAL ARTICLE
[Nm] Nome de substância:
0 (DNA, Bacterial); 0 (RNA, Ribosomal, 16S); 70FD1KFU70 (Sulfur)
[Em] Mês de entrada:1801
[Cu] Atualização por classe:180104
[Lr] Data última revisão:
180104
[Sb] Subgrupo de revista:IM
[Da] Data de entrada para processamento:171214
[St] Status:MEDLINE
[do] DOI:10.1371/journal.pone.0188371


  8 / 12397 MEDLINE  
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[PMID]:29174813
[Au] Autor:Huang G; Zhao HR; Meng QQ; Zhang QJ; Dong JY; Zhu BQ; Li SS
[Ad] Endereço:School of Pharmacy, Shanghai Jiao Tong University, Shanghai 200240, China. Electronic address: guanghuangmedchem@hotmail.com.
[Ti] Título:Synthesis and biological evaluation of sulfur-containing shikonin oxime derivatives as potential antineoplastic agents.
[So] Source:Eur J Med Chem;143:166-181, 2018 Jan 01.
[Is] ISSN:1768-3254
[Cp] País de publicação:France
[La] Idioma:eng
[Ab] Resumo:As a continuation of our research on developing potent and potentially safe antineoplastic agents, a set of forty five sulfur-containing shikonin oxime derivatives were synthesized and evaluated for their in vitro cytotoxic activity against human colon cancer (HCT-15), gastric carcinoma (MGC-803), liver (Bel7402), breast (MCF-7) cancer cells and human skin fibroblast (HSF) cells. All the synthesized compounds exhibited potent cytotoxic activity selectively towards HCT-15 cells and did not display apparent toxicity to the normal HSF cells, some of which were more or comparatively effective to the parent compound against HCT-15, MGC-803 and Bel7402 cells. The most active agent 9m displayed high potency against human cancer cells with IC ranging from 0.27 ± 0.02 to 9.23 ± 0.12 µM. The structure-activity relationships (SARs) studies suggested that the nature of substituent group in the side chain is important for antitumor potency in vitro. Additionally, nitric oxide release studies revealed that the amount of nitric oxide generated from these oxime derivatives was relatively low. Furthermore, cellular mechanism investigations indicated that compound 9m could arrest cell cycle at G1 phase and induce a strong apoptotic response in HCT-15 cells. Moreover, western blot studies revealed that compound 9m induced apoptosis through the down-regulation of Bcl-2 and up-regulation of Bax, caspase 3 and 9. For all these reasons, compound 9m hold promising potential as antineoplastic agent.
[Mh] Termos MeSH primário: Antineoplásicos/farmacologia
Naftoquinonas/farmacologia
Oximas/farmacologia
Enxofre/farmacologia
[Mh] Termos MeSH secundário: Antineoplásicos/síntese química
Antineoplásicos/química
Apoptose/efeitos dos fármacos
Ciclo Celular/efeitos dos fármacos
Proliferação Celular/efeitos dos fármacos
Relação Dose-Resposta a Droga
Ensaios de Seleção de Medicamentos Antitumorais
Seres Humanos
Estrutura Molecular
Naftoquinonas/síntese química
Naftoquinonas/química
Óxido Nítrico/análise
Óxido Nítrico/metabolismo
Oximas/síntese química
Oximas/química
Relação Estrutura-Atividade
Enxofre/química
Células Tumorais Cultivadas
[Pt] Tipo de publicação:JOURNAL ARTICLE
[Nm] Nome de substância:
0 (Antineoplastic Agents); 0 (Naphthoquinones); 0 (Oximes); 31C4KY9ESH (Nitric Oxide); 3IK6592UBW (shikonin); 70FD1KFU70 (Sulfur)
[Em] Mês de entrada:1801
[Cu] Atualização por classe:180104
[Lr] Data última revisão:
180104
[Sb] Subgrupo de revista:IM
[Da] Data de entrada para processamento:171128
[St] Status:MEDLINE


  9 / 12397 MEDLINE  
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[PMID]:28873658
[Au] Autor:Wu CY; Kong M; Zhang W; Long F; Zhou J; Zhou SS; Xu JD; Xu J; Li SL
[Ad] Endereço:Department of Pharmaceutical Analysis, Affiliated Hospital of Integrated Traditional Chinese and Western Medicine, Nanjing University of Chinese Medicine, Nanjing 210028, People's Republic of China.
[Ti] Título:Impact of sulphur fumigation on the chemistry of ginger.
[So] Source:Food Chem;239:953-963, 2018 Jan 15.
[Is] ISSN:0308-8146
[Cp] País de publicação:England
[La] Idioma:eng
[Ab] Resumo:Ginger (Zingiberis Rhizoma), a commonly-consumed food supplement, is often sulphur-fumigated during post-harvest handling, but it remains unknown if sulphur fumigation induces chemical transformations in ginger. In this study, the effects of sulphur fumigation on ginger chemicals were investigated by ultra-high performance liquid chromatography coupled with quadrupole time-of-flight mass spectrometry (UHPLC-QTOF-MS/MS)-based metabolomics. The results showed that sulphur fumigation significantly altered the holistic chemical profile of ginger by triggering chemical transformations of certain original components. 6-Gingesulphonic acid, previously reported as a naturally-occurring component in ginger, was revealed to be a sulphur fumigation-induced artificial derivative, which was deduced to be generated by electrophilic addition of 6-shogaol to sulphurous acid. Using UHPLC-QTOF-MS/MS extracting ion analysis with 6-gingesulphonic acid as a characteristic chemical marker, all the commercial ginger samples inspected were determined to be sulphur-fumigated. The research outcomes provide a chemical basis for further comprehensive safety and efficacy evaluations of sulphur-fumigated ginger.
[Mh] Termos MeSH primário: Gengibre
[Mh] Termos MeSH secundário: Catecóis
Cromatografia Líquida de Alta Pressão
Fumigação
Enxofre
Espectrometria de Massas em Tandem
[Pt] Tipo de publicação:JOURNAL ARTICLE
[Nm] Nome de substância:
0 (Catechols); 70FD1KFU70 (Sulfur); 83DNB5FIRF (shogaol)
[Em] Mês de entrada:1711
[Cu] Atualização por classe:171128
[Lr] Data última revisão:
171128
[Sb] Subgrupo de revista:IM
[Da] Data de entrada para processamento:170907
[St] Status:MEDLINE


  10 / 12397 MEDLINE  
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[PMID]:29051366
[Au] Autor:Rosenzweig AC
[Ad] Endereço:Departments of Molecular Biosciences and Chemistry, Northwestern University, Evanston, IL 60208, USA. amyr@northwestern.edu.
[Ti] Título:A biochemical sulfur delivery service.
[So] Source:Science;358(6361):307-308, 2017 10 20.
[Is] ISSN:1095-9203
[Cp] País de publicação:United States
[La] Idioma:eng
[Mh] Termos MeSH primário: Enxofre
[Pt] Tipo de publicação:JOURNAL ARTICLE; COMMENT
[Nm] Nome de substância:
70FD1KFU70 (Sulfur)
[Em] Mês de entrada:1711
[Cu] Atualização por classe:171103
[Lr] Data última revisão:
171103
[Sb] Subgrupo de revista:IM
[Da] Data de entrada para processamento:171021
[St] Status:MEDLINE
[do] DOI:10.1126/science.aap9299



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