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1.
Mar Drugs ; 22(4)2024 Apr 15.
Artigo em Inglês | MEDLINE | ID: mdl-38667793

RESUMO

Tetrodotoxin (TTX) is a marine toxin responsible for many intoxications around the world. Its presence in some pufferfish species and, as recently reported, in shellfish, poses a serious health concern. Although TTX is not routinely monitored, there is a need for fast, sensitive, reliable, and simple methods for its detection and quantification. In this work, we describe the use of an automated patch clamp (APC) system with Neuro-2a cells for the determination of TTX contents in pufferfish samples. The cells showed an IC50 of 6.4 nM for TTX and were not affected by the presence of muscle, skin, liver, and gonad tissues of a Sphoeroides pachygaster specimen (TTX-free) when analysed at 10 mg/mL. The LOD achieved with this technique was 0.05 mg TTX equiv./kg, which is far below the Japanese regulatory limit of 2 mg TTX equiv./kg. The APC system was applied to the analysis of extracts of a Lagocephalus sceleratus specimen, showing TTX contents that followed the trend of gonads > liver > skin > muscle. The APC system, providing an in vitro toxicological approach, offers the advantages of being sensitive, rapid, and reliable for the detection of TTX-like compounds in seafood.


Assuntos
Técnicas de Patch-Clamp , Tetraodontiformes , Tetrodotoxina , Tetrodotoxina/análise , Animais , Alimentos Marinhos/análise , Camundongos , Contaminação de Alimentos/análise , Limite de Detecção
2.
Toxins (Basel) ; 16(4)2024 Apr 10.
Artigo em Inglês | MEDLINE | ID: mdl-38668611

RESUMO

Nemerteans, or ribbon worms, possess tetrodotoxin and its analogues (TTXs), neurotoxins of bacterial origin, which they presumably use for capturing prey and self-defense. Most TTXs-containing nemertean species have low levels of these toxins and, therefore, have usually been neglected in studies of TTXs functions and accumulation. In the present study, Kulikovia alborostrata and K. manchenkoi, two closely related species, were analyzed for TTXs distribution in the body using the HPLC-MS/MS and fluorescence microscopy methods. The abundance of TTXs-positive cells was determined in the proboscis, integument, and digestive system epithelium. As a result, six TTXs-positive cell types were identified in each species; however, only four were common. Moreover, the proportions of the toxins in different body parts were estimated. According to the HPLC-MS/MS analysis, the TTXs concentrations in K. alborostrata varied from 0.91 ng/g in the proboscis to 5.52 ng/g in the precerebral region; in K. manchenkoi, the concentrations ranged from 7.47 ng/g in the proboscis to 72.32 ng/g in the posterior body region. The differences observed between the two nemerteans in the distribution of the TTXs were consistent with the differences in the localization of TTXs-positive cells. In addition, TTXs-positive glandular cell types were found in the intestine and characterized for the first time. TTXs in the new cell types were assumed to play a unique physiological role for nemerteans.


Assuntos
Tetrodotoxina , Animais , Tetrodotoxina/toxicidade , Tetrodotoxina/metabolismo , Tetrodotoxina/análise , Japão , Espectrometria de Massas em Tandem , Invertebrados/química , Invertebrados/metabolismo , Baías , Cromatografia Líquida de Alta Pressão , Monitoramento Ambiental
3.
Mar Drugs ; 21(10)2023 Sep 29.
Artigo em Inglês | MEDLINE | ID: mdl-37888455

RESUMO

Given the dramatic increase in the L. sceleratus population in the southeastern Aegean Sea, there is growing interest in assessing the toxicity of this pufferfish and the factors controlling its tetrodotoxin (TTX) content. In the present study, liver, gonads, muscle and skin of 37 L. sceleratus specimens collected during May and June 2021 from the island of Rhodes, Greece, were subjected to multi-analyte profiling using liquid chromatography-tandem mass spectrometry (LC-MS/MS) in order to quantitate TTX and evaluate whether this biotoxin interrelates with hormones. TTX and its analogues 4-epiTTX, 11-deoxyTTX, 11-norTTX-6-ol, 4,9-anhydroTTX and 5,11/6,11-dideoxyTTX were detected in all tissue types. Liver and gonads were the most toxic tissues, with the highest TTX concentrations being observed in the ovaries of female specimens. Only 22% of the analyzed muscle samples were non-toxic according to the Japanese toxicity threshold (2.2 µg TTX eq g-1), confirming the high poisoning risk from the inadvertent consumption of this species. Four steroid hormones (i.e., cortisol, testosterone, androstenedione and ß-estradiol) and the gonadotropin-releasing hormone (GnRH) were detected in the gonads. Androstenedione dominated in female specimens, while GnRH was more abundant in males. A positive correlation of TTX and its analogues with ß-estradiol was observed. However, a model incorporating sex rather than ß-estradiol as the independent variable proven to be more efficient in predicting TTX concentration, implying that other sex-related characteristics are more important than specific hormone-regulated processes.


Assuntos
Tetraodontiformes , Masculino , Animais , Feminino , Tetrodotoxina/análise , Cromatografia Líquida , Androstenodiona , Espectrometria de Massas em Tandem , Hormônios Gonadais , Estradiol , Hormônio Liberador de Gonadotropina
4.
Mar Drugs ; 21(6)2023 May 25.
Artigo em Inglês | MEDLINE | ID: mdl-37367645

RESUMO

Tetrodotoxin (TTX) and its analogues are naturally occurring toxins historically responsible for human poisoning fatalities in Eastern Asia. It is typically linked to the consumption of pufferfish and, to a lesser extent, marine gastropods and crabs. In the scope of a comprehensive project to understand the prevalence of emergent toxins in edible marine organisms, we report, for the first time, the detection of TTX analogues in the soft tissues of edible crabs, the European fiddler crab (Afruca tangeri) and green crab (Carcinus maenas), harvested in southern Portugal. No TTX was detected in the analyzed samples. However, three TTX analogues were detected-an unknown TTX epimer, deoxyTTX, and trideoxyTTX. These three analogues were found in the European fiddler crab while only trideoxyTTX was found in the green crab, suggesting that the accumulation of TTX analogues might be influenced by the crabs' different feeding ecology. These results highlight the need to widely monitor TTX and its analogues in edible marine species in order to provide adequate information to the European Food Safety Authority and to protect consumers.


Assuntos
Braquiúros , Gastrópodes , Animais , Humanos , Tetrodotoxina/análise , Alimentos Marinhos , Inocuidade dos Alimentos
5.
Molecules ; 28(10)2023 May 18.
Artigo em Inglês | MEDLINE | ID: mdl-37241898

RESUMO

Tetrodotoxin (TTX) inhibits neurotransmission in animals, and there is no specific antidote. In clinical practice in China, Althaea rosea (A. rosea flower) extract has been used to treat TTX poisoning. In this work, the efficacy of the ethyl acetate fraction extract of A. rosea flower in treating TTX poisoning in rats was investigated. A high-performance liquid chromatography-tandem mass spectrometry (LC-MS/MS) method was developed to determine nine neurotransmitters in rat brain tissue, including γ-aminobutyric acid (GABA), dopamine (DA), 5-hydroxytryptamine (5-HT), noradrenaline (NE), 3,4-dihydroxyphenylacetic acid (DOPAC), homovanillic acid (HVA), 5-hydroxyindole-3-acetic acid (5-HIAA), epinephrine (E), and tyramine (Tyn). The detoxifying effect of A. rosea flower was verified by comparing the changes in neurotransmitters' content in brain tissue before and after poisoning in rats. The assay was performed in multiple reaction monitoring mode. The quantification method was performed by plotting an internal-standard working curve with good linearity (R2 > 0.9941) and sensitivity. Analyte recoveries were 94.04-107.53% (RSD < 4.21%). Results indicated that the levels of 5-HT, DA, E, and NE in the brains of TTX-intoxicated rats decreased, whereas the levels of GABA, Tyn, and 5-HIAA showed an opposite trend, and HVA and DOPAC were not detected. The levels of all seven neurotransmitters returned to normal after the gavage administration of ethyl acetate extract of A. rosea flower to prove that the ethyl acetate extract of A. rosea flower had a therapeutic effect on TTX poisoning. The work provided new ideas for studies on TTX detoxification.


Assuntos
Althaea , Espectrometria de Massas em Tandem , Ratos , Animais , Cromatografia Líquida , Espectrometria de Massas em Tandem/métodos , Tetrodotoxina/análise , Serotonina , Ácido 3,4-Di-Hidroxifenilacético , Ácido Hidroxi-Indolacético , Neurotransmissores/análise , Dopamina/análise , Norepinefrina , Ácido gama-Aminobutírico , Ácido Homovanílico , Flores/química
6.
Mar Drugs ; 21(4)2023 Mar 25.
Artigo em Inglês | MEDLINE | ID: mdl-37103347

RESUMO

Tetrodotoxin (TTX), also known as pufferfish toxin, is an extremely potent neurotoxin thought to be used as a biological defense compound in organisms bearing it. Although TTX was thought to function as a chemical agent for defense and anti-predation and an attractant for TTX-bearing animals including pufferfish, it has recently been demonstrated that pufferfish were also attracted to 5,6,11-trideoxyTTX, a related compound, rather than TTX alone. In this study, we attempted to estimate the roles of TTXs (TTX and 5,6,11-trideoxyTTX) in the pufferfish, Takifugu alboplumbeus, through examining the location of TTXs in various tissues of spawning pufferfish from Enoshima and Kamogawa, Japan. TTXs levels in the Kamogawa population were higher than those in the Enoshima population, and there was no significant difference in the amount of TTXs between the sexes in either population. Individual differences were greater in females than in males. However, the location of both substances in tissues differed significantly between sexes: male pufferfish accumulated most of their TTX in the skin and liver and most of their 5,6,11-trideoxyTTX in the skin, whereas females accumulated most of their TTX and 5,6,11-trideoxyTTX in the ovaries and skin.


Assuntos
Takifugu , Tetraodontiformes , Animais , Feminino , Masculino , Tetrodotoxina/toxicidade , Tetrodotoxina/análise , Pele/química , Fígado/química , Neurotoxinas/análise
7.
Mar Biotechnol (NY) ; 25(5): 666-676, 2023 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-36648572

RESUMO

Tetrodotoxin (TTX), or pufferfish toxin, has been frequently detected in edible bivalves around the world during the last decade and is problematic in food hygiene and safety. It was reported recently that highly concentrated TTX was detected in the midgut gland of the akazara scallop Chlamys (Azumapecten) farreri subsp. akazara collected in coastal areas of the northern Japanese archipelago. The toxification of the bivalve was likely to involve the larvae of the flatworm, Planocera multitentaculata. However, the overall status of bivalve TTX toxification has not been elucidated. In this study, 14 species/subspecies of bivalves from various Japanese waters were subjected to LC-MS/MS analysis to reveal TTX toxification state, demonstrating that the Pectinidae, including C. farreri akazara, Chlamys farreri nipponensis, Chlamys (Mimachlamys) nobilis, and Mizuhopecten yessoensis, accumulated TTX in their midgut gland. Many individuals of C. farreri akazara and C. farreri nipponensis were found with high concentrations of TTX, while C. nobilis and M. yessoensis exhibited low concentrations. The extent of TTX accumulation in C. farreri akazara and C. farreri nipponensis varied widely by region and season. Curiously, no other bivalve species investigated in this study showed evidence of TTX. These results suggest that monitoring for TTX, like other shellfish toxins, is necessary to ensure that pectinid bivalves are a safe food resource.


Assuntos
Pectinidae , Platelmintos , Tetrodotoxina , Animais , Cromatografia Líquida/métodos , Espectrometria de Massas em Tandem/métodos , Tetrodotoxina/análise
8.
J AOAC Int ; 106(2): 356-369, 2023 Mar 01.
Artigo em Inglês | MEDLINE | ID: mdl-36617186

RESUMO

BACKGROUND: Given the recent detection of tetrodotoxin (TTX) in bivalve molluscs but the absence of a full collaborative validation study for TTX determination in a large number of shellfish samples, interlaboratory assessment of method performance was required to better understand current capabilities for accurate and reproducible TTX quantitation using chemical and immunoassay methods. OBJECTIVE: The aim was to conduct an interlaboratory study with multiple laboratories, using results to assess method performance and acceptability of different TTX testing methods. METHODS: Homogenous and stable mussel and oyster materials were assessed by participants using a range of published and in-house detection methods to determine mean TTX concentrations. Data were used to calculate recoveries, repeatability, and reproducibility, together with participant acceptability z-scores. RESULTS: Method performance characteristics were good, showing excellent sensitivity, recovery, and repeatability. Acceptable reproducibility was evidenced by HorRat values for all LC-MS/MS and ELISA methods being less than the 2.0 limit of acceptability. Method differences between the LC-MS/MS participants did not result in statistically different results. Method performance characteristics compared well with previously published single-laboratory validated methods and no statistical difference was found in results returned by ELISA in comparison with LC-MS/MS. CONCLUSION: The results from this study demonstrate that current LC-MS/MS methods and ELISA are on the whole capable of sensitive, accurate, and reproducible TTX quantitation in shellfish. Further work is recommended to expand the number of laboratories testing ELISA and to standardize an LC-MS/MS protocol to further improve interlaboratory precision. HIGHLIGHTS: Multiple mass spectrometric methods and a commercial ELISA have been successfully assessed through an interlaboratory study, demonstrating excellent performance.


Assuntos
Bivalves , Ostreidae , Humanos , Animais , Tetrodotoxina/análise , Cromatografia Líquida/métodos , Reprodutibilidade dos Testes , Espectrometria de Massas em Tandem , Bivalves/química , Ostreidae/química , Ensaio de Imunoadsorção Enzimática/métodos
9.
Artigo em Inglês | MEDLINE | ID: mdl-36586344

RESUMO

Paralytic shellfish toxins (PSTs) and tetrodotoxins (TTXs) are powerful neurotoxins. Previous research reported that PSTs and TTXs are found together in seafoods and may pose a serious hazard to public health. In this study, a new analytical method combining modified QuEChERS (Quick, Easy, Cheap, Effective, Rugged, Safe) with high-performance liquid chromatography coupled to Q-Exactive Orbitrap high-resolution mass spectrometry was developed and validated for the quantification of 10 PSTs and 2 TTXs in human serum. Chromatographic separation was achieved using the HILIC TSK-Gel Amide-80 column. The mass spectrometer was operated in full scan/dd-MS2(data-dependent MS2) mode, and for quantification analysis. The dd-MS2 resolution was set to 17,500 fullwidthat halfmaximum (FWHM). Results showed that methanol with 1 % (v/v) acetic acid extraction combined with 50 mg graphitized carbon black (GCB) and 50 mg octadecyl bonded silica gel (C18) was most suitable for purification. The mean recovery for all toxins ranged from 85.3 % to 118.2 % (RSD < 12 %). The limits of detection and quantification for human serum were in the ranges of 0.67-2.61 and 2.23-8.69 ng mL-1, respectively. The method was applied to analyze toxins in serum samples obtained from three poisoned patients in a case of poisoning caused by consumption of toxin-contaminated gastropoda (Bullacta exerata). The study has important application for rapid and accurate diagnosis of PSTs and TTXs toxin poisoning patients in clinic.


Assuntos
Frutos do Mar , Espectrometria de Massas em Tandem , Humanos , Tetrodotoxina/análise , Frutos do Mar/análise , Espectrometria de Massas em Tandem/métodos , Cromatografia Líquida/métodos , Cromatografia Líquida de Alta Pressão
10.
Artigo em Inglês | MEDLINE | ID: mdl-36470397

RESUMO

Takifugu bimaculatus is a marine fish with high nutritional value. Its ovary contains tetrodotoxin (TTX) which is a severe neurotoxin that limits its edible value of it. To understand the mechanism of oogenesis and production of TTX in T. bimaculatus, an ovarian cell line named TBO from an adolescent ovary was established. TBO was composed of fibroblast-like cells that expressed the ovarian follicle cells marker gene Foxl2 and highly expressed TTX binding protein 2 (PSTBP2) but did not express the germ cells marker gene Vasa. Therefore, TBO seems to be mainly composed of follicle cells and possibly a small percentage of oocytes. Electroporation was used to successfully transfect the pEGFP-N1 and pNanog-N1 vectors into the TBO cell line with a high transfection efficiency. The morphological changes and survival rates of the exposed cells proved that this cell line was effective for exposure to conotoxins (CTXs), another group of toxins related to food safety. Furthermore, PSTBP2 was knocked out in TBO using CRISPR/Cas9 technology, showing that sgRNA2 could mutate PSTBP2. The results suggested that TBO will be more convenient, efficient, and rapid for reproduction and toxicology investigation, and gene editing. This study laid the groundwork for future research into the fish gonadal cell culture and food-related marine toxins. In conclusion, a cell line has been generated from T. bimaculatus, which might represent a valuable model for fish studies in the fields of toxicology and gene editing.


Assuntos
Edição de Genes , Takifugu , Animais , Feminino , Takifugu/genética , Takifugu/metabolismo , Ovário/metabolismo , Tetrodotoxina/análise , Tetrodotoxina/metabolismo , Linhagem Celular
11.
Artigo em Inglês | MEDLINE | ID: mdl-36459089

RESUMO

The lethal neurotoxins, paralytic shellfish toxins (PSTs), and tetrodotoxin (TTX) have recently been found in marine shellfish from many coastal states. Herein, we applied a sensitive and reliable ultra-performance hydrophilic interaction chromatography (HILIC)-tandem mass spectrometry (MS) method to determine 13 PSTs and TTX in marine shellfish using a porous carbon solid-phase extraction (SPE). This in-house validation study required the development of a novel chromatographic separation using a HILIC-Z column, which was necessary to retain highly polar compounds. Using acetonitrile as the organic phase and ammonium formate-formic acid buffer as the aqueous phase, the quantitative analysis was carried out with an external standard method in the multiple reaction monitoring modes using positive electrospray ionization. To reduce interference, 1% aqueous acetic acid extracts of the shellfish samples were cleaned up by ion-pair SPE using a porous graphitic carbon cartridge. The calibration curves for PSTs and TTX were linear (R2 > 0.995), and the sensitivity was good, with limits of detection (LODs) of 1.7-13.7 µg/kg, and limits of quantitation (LOQs) of 5.2-41.0 µg/kg. The recoveries were 76.5-95.5% with RSDs of 3.1-12.0%. Finally, We applied the method for the determination of PSTs and TTX in three batches of Nassarius showing excellent method accuracy against expected values.


Assuntos
Grafite , Espectrometria de Massas em Tandem , Tetrodotoxina/análise , Espectrometria de Massas em Tandem/métodos , Carbono/química , Porosidade , Frutos do Mar/análise , Cromatografia Líquida/métodos , Cromatografia Líquida de Alta Pressão , Extração em Fase Sólida , Interações Hidrofóbicas e Hidrofílicas
12.
Biosens Bioelectron ; 220: 114837, 2023 Jan 15.
Artigo em Inglês | MEDLINE | ID: mdl-36335708

RESUMO

Paralytic shellfish toxins (e.g., saxitoxin, STX; gonyautoxin-2, GTX-2) and tetrodotoxin (TTX) are highly toxic and widely distributed ion channel marine toxins which specifically block the voltage-dependent sodium channels (VDSCs), causing great harm to human health. It is urgent to exploit new detection methods with high specificity and high efficiency. Here, a portable high-throughput cardiomyocyte-based potential biosensor was established with cardiomyocytes, a 16-well microelectrodes (MEs) sensor and a robust 32-channel recording system, which presented high-quality and high-consistency extracellular field potential (EFP) signals in each well with a long duration of 80 h. The feature parameters, including firing rate (FR), spike amplitude (SA), spike slope (SS), spike duration (SD) and field potential duration (FPD), were extracted from EFP to quantitatively assess the toxic effects of these ion channel toxins. Importantly, the biosensor showed temporal specificity and parametric selectivity under toxin treatments, and FR, SS and SD were the optimal parameters to STX, TTX and GTX-2, respectively. This biosensor can rapidly detect 0.29 ng/mL STX, 0.30 ng/mL TTX and 0.16 ng/mL GTX-2 within 5 min, 10 min and 15 min, respectively. Thus, our novel multi-well cardiomyocyte-based biosensor will be a promising tool for high-effective detection of ion channel toxins.


Assuntos
Técnicas Biossensoriais , Toxinas Marinhas , Canais Iônicos , Toxinas Marinhas/análise , Miócitos Cardíacos , Saxitoxina , Tetrodotoxina/análise , Animais
13.
Shokuhin Eiseigaku Zasshi ; 64(6): 236-239, 2023.
Artigo em Japonês | MEDLINE | ID: mdl-38171895

RESUMO

Severe tetrodotoxin (TTX) poisoning due to small gastropods has been documented in Japan. In this study, we investigated the TTX content of the muscles and viscera of Nassarius sufflatus collected off the coast of Futaoi Island, Shimonoseki, Yamaguchi Prefecture, Japan, to prevent the occurrence of TTX poisoning caused by this small gastropod. Live specimens were obtained, and their muscles and viscera were collected. Test solutions were prepared from tissues of specimens and analyzed for TTX by HPLC-fluorescence detection. TTX was detected in both tissues at concentrations ranging from <0.1 to 18.2 µg/g for muscle and <0.1 to 130.7 µg/g for viscera. These results suggested that N. sufflatus accumulates TTX not only in its viscera but also in its muscles, and that precautions should be taken to prevent food poisoning due to this gastropod.


Assuntos
Doenças Transmitidas por Alimentos , Gastrópodes , Animais , Humanos , Tetrodotoxina/análise , Cromatografia Líquida/métodos , Cromatografia Líquida de Alta Pressão , Doenças Transmitidas por Alimentos/etiologia
14.
Molecules ; 27(24)2022 Dec 16.
Artigo em Inglês | MEDLINE | ID: mdl-36558099

RESUMO

Tetrodotoxin (TTX) is a kind of low-molecular-weight non-protein neurotoxin. It is one of the most potent neurotoxins found in nature, and it is found in puffer fish and various marine biota. The low sensitivity of previous analytical methods limited their application in puffer fish organ samples. This study established a method for the accurate and fast determination of TTX by reversed ultra-performance liquid chromatography coupled with proton-enhanced electron spray ionization-tandem mass spectrometry. The method yields good peak shapes, high sensitivity and low coeluted interferences. The method was successfully applied to determine TTX in puffer fish tissue samples of about 0.2 g.


Assuntos
Espectrometria de Massas em Tandem , Tetraodontiformes , Animais , Tetrodotoxina/análise , Tetrodotoxina/química , Espectrometria de Massas em Tandem/métodos , Cromatografia Líquida/métodos , Prótons , Neurotoxinas
15.
Shokuhin Eiseigaku Zasshi ; 63(6): 225-230, 2022.
Artigo em Japonês | MEDLINE | ID: mdl-36575037

RESUMO

We experienced a pufferfish poisoning case where no food residue was available to detect a causative agent. However, tetrodotoxin (TTX) was detected in vomit and urine samples from a patient using LC-MS/MS. Furthermore, we found a significant matrix effect in this analysis, indicating that the retention time of vomit and urine was not identical to the TTX standard solution and measured values multiplied by the dilution factors were not constant. Elimination of this matrix effect was attained by dilution of samples based on the retention time of the TTX standard solution, i.e., 10-time dilution of vomit test sample for LC-MS/MS analysis or 100-200-time dilution of urine one. Further research on urine analytical methods revealed that when TTX concentrations were too low to identify its peak on a chromatogram, TTX could be identified through a dilution procedure. It also showed that the application of the matrix-added TTX standard solution was effective for quantitative analysis under the influence of the matrix.


Assuntos
Espectrometria de Massas em Tandem , Tetraodontiformes , Humanos , Animais , Tetrodotoxina/análise , Cromatografia Líquida/métodos , Espectrometria de Massas em Tandem/métodos
16.
Mar Drugs ; 20(10)2022 Sep 23.
Artigo em Inglês | MEDLINE | ID: mdl-36286418

RESUMO

Tetrodotoxin (TTX) is a potent neurotoxin naturally occurring in terrestrial and marine organisms such as pufferfish. Due to the risk of TTX poisoning, fish of Tetraodontidae family and other puffer-related species must not be placed in the EU markets. This restriction applies to fish of the family Molidae even though no data on toxins' occurrence is available. In this study, the presence of TTX and its analogues was investigated in the main edible tissue (the white muscle) and the main xenobiotics storage organ (the liver) of ocean sunfish Mola spp. (n = 13) from the South Portuguese coast. HILIC-MS/MS analyses did not reveal TTX in the analyzed samples, suggesting an inexistent or very limited risk of TTX poisoning.


Assuntos
Tetraodontiformes , Animais , Tetrodotoxina/toxicidade , Tetrodotoxina/análise , Espectrometria de Massas em Tandem , Neurotoxinas/análise , Portugal/epidemiologia , Oceanos e Mares
17.
J Chromatogr A ; 1684: 463567, 2022 Nov 22.
Artigo em Inglês | MEDLINE | ID: mdl-36288625

RESUMO

In this study, we developed and validated a simple, fast and sensitive LC-MS/MS method for the measurement of tetrodotoxin (TTX) in human plasma. Three HILIC-type solid phase extraction (SPE) carriers (PSA, silica, Siphila i HILIX) with different stationary phase functional groups were compared. The Siphila i HILIX SPE plate containing multi-carboxyl groups was finally selected due to obviously better extraction recovery of TTX (about 80% of recovery from plasma samples) than the other two and no significant matrix effects were observed, which was speculated to have mixed-mode synergistic effects of hydrophilic interaction and ion exchange. 100µL plasma sample was precipitated rapidly with acetonitrile containing 1% trichloroacetic acid, and filtrates were loaded onto Siphila i HILIX 96 well SPE plate. After washed with 95% acetonitrile, TTX was eluted with 200µL of 50% acetonitrile containing 1% trichloroacetic acid. 2µL of elution solution was directly injected into LC-MS/MS and the total run time on a BEH amide column was 4.5 min. The method avoids the evaporation and ultrafiltration processes which is simple and timesaving (<30 min). TTX and internal standard (arginine-15N4) were monitored in positive mode using m/z 320.3→162.2 (quantification transition for TTX), 320.3→284.1 (confirmation transition for TTX) and 179.2→63.0 (transition for IS), respectively. The method was linear in the range of 0.1-20 ng/mL for TTX with the low limit of quantification (S/N > 10) of 0.1 ng/mL; the intra- and inter-assay accuracies were in the range of 98.5%-99.8% (relative standard deviations, RSDs ≤ 5.92%) and 98.8-99.5% (RSDs ≤ 6.23%), respectively. Biases of spiking analysis were ranged from -7.00% to 7.43% for healthy human plasma samples (RSDs ≤ 8.83%) and from -5.00% to 3.93% for hemolytic, high triglyceride, high cholesterol and high bilirubin plasma samples (RSDs ≤ 6.40%), which proved the good anti-interference property of the method. The results showed that the method is sensitive, accurate, specific, reliable, and can be used to monitor the concentration of TTX in plasma to meet the needs of clinical research and poisoning screening.


Assuntos
Espectrometria de Massas em Tandem , Ácido Tricloroacético , Humanos , Tetrodotoxina/análise , Cromatografia Líquida , Espectrometria de Massas em Tandem/métodos , Troca Iônica , Ácido Tricloroacético/análise , Limite de Detecção , Extração em Fase Sólida/métodos , Interações Hidrofóbicas e Hidrofílicas , Acetonitrilas , Cromatografia Líquida de Alta Pressão/métodos
18.
Molecules ; 27(18)2022 Sep 19.
Artigo em Inglês | MEDLINE | ID: mdl-36144854

RESUMO

Pufferfish is nutritious and delicious, but the tetrodotoxin (TTX) that may exist in its body poses a serious safety hazard. It is important to use scientific and effective methods to detect the TTX in pufferfish, but most of the existing methods require complex pre-treatment steps and have sample lethality. The solid-phase microextraction (SPME) technology can be used for in vivo detection due to its advantages such as no solvent demand, simple operation, and fast detection speed. In this study, the GO-PAN@PNE SPME fibers were made via a dipping method, and their extraction effect was verified in the TTX aqueous and spiked fish. The established method has good reproducibility, and the limit of detection of TTX in pufferfish was 32 ng·g-1, and the limit of quantitation was 150 ng·g-1, which can meet the detection needs of pufferfish for safe consumption. This method was used to in vivo detect the Takifugu obscurus exposed to the TTX, to determine the content of TTX in the pufferfish muscle. The detection method established in this study can relatively quickly and easily realize the in vivo detection of TTX in the pufferfish, which can provide theoretical support for improvement in the food safety level of the pufferfish.


Assuntos
Microextração em Fase Sólida , Takifugu , Animais , Cromatografia Líquida de Alta Pressão , Reprodutibilidade dos Testes , Microextração em Fase Sólida/métodos , Espectrometria de Massas em Tandem/métodos , Tetrodotoxina/análise
19.
J Agric Food Chem ; 70(39): 12249-12269, 2022 Oct 05.
Artigo em Inglês | MEDLINE | ID: mdl-36153990

RESUMO

Tetrodotoxin (TTX), found in various organisms including pufferfish, is an extremely potent marine toxin responsible for numerous food poisoning accidents. Due to its serious toxicity and public health threat, detecting TTX and its analogues in diverse food matrices with a simple, fast, efficient method has become a worldwide concern. This review summarizes the advances in sample preparation and analytical methods for the determination of TTX and its analogues, focusing on the latest development over the past five years. Current state-of-the-art technologies, such as solid-phase microextraction, online technology, novel injection technology, two-dimensional liquid chromatography, high-resolution mass spectrometry, newly developed lateral flow immunochromatographic strips, immunosensors, dual-mode aptasensors, and nanomaterials-based approaches, are thoroughly discussed. The advantages and limitations of different techniques, critical comments, and future perspectives are also proposed. This review is expected to provide rewarding insights to the future development and broad application of pretreatment and detection methods for TTX and its analogues.


Assuntos
Técnicas Biossensoriais , Tetraodontiformes , Animais , Imunoensaio , Espectrometria de Massas em Tandem/métodos , Tetrodotoxina/análise
20.
Toxicon ; 218: 1-7, 2022 Oct 30.
Artigo em Inglês | MEDLINE | ID: mdl-36041513

RESUMO

We have previously detected tetrodotoxin (TTX) in the brain of the wild toxic torafugu Takifugu rubripes by immunohistochemistry and LC/MS analysis. We have also indicated that TTX is a stress-relieving substance in the brain and reduces agonistic interactions in torafugu juveniles. Although the toxicity of marine pufferfish in the Japanese waters has been extensively examined for food hygiene, whether wild toxic pufferfish generally possess TTX in the brain has not been investigated. In the present study, we examined the presence of TTX in the brain of several wild toxic marine pufferfishes such as kusafugu T. alboplumbeus, komonfugu T. flavipterus, shosaifugu T. snyderi, okinawafugu Chelonodontops patoca, and in wild non-toxic pufferfishes such as shirosabafugu Lagocephalus spadiceus and yoritofugu Sphoeroides pachygaster. We also examined tsumugihaze Yongeichthys criniger, known to possess TTX in the skin, viscera, and gonad. TTX was extracted from the brain, liver, skin, and muscle and was analyzed by LC/MS. TTX was detected in the brain as well as in the liver, skin, and muscle in kusafugu, komonfugu, shosaifugu, okinawafugu, and tsumugihaze. In shirosabafugu, low level of TTX (0.8 mouse unit/g-brain) was detected in the brain in 1 out of 3 individuals. In yoritofugu, no TTX was detected in any of the tissues. We conclude that the brain is also an organ that contains TTX in the wild toxic marine pufferfishes.


Assuntos
Perciformes , Tetraodontiformes , Animais , Encéfalo , Cromatografia Líquida , Takifugu , Tetrodotoxina/análise , Tetrodotoxina/toxicidade
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