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1.
Chem Biol Interact ; 395: 111001, 2024 May 25.
Artículo en Inglés | MEDLINE | ID: mdl-38641146

RESUMEN

In recent years, various poisoning incidents have been reported, involving the alleged use of the so-called Novichok agents, resulting in their addition to the Schedule I list of the Organisation for the Prohibition of Chemical Warfare (OPCW). As the physicochemical properties of these agents are different from the 'classical' nerve agents, such as VX, research is needed to evaluate whether and to what extent existing countermeasures are effective. Here, we evaluated the therapeutic potential of RSDL® (Reactive Skin Decontamination Lotion Kit) for the neutralization of percutaneous toxicity caused by Novichok agents, both in vitro and in vivo. Experiments showed the three selected Novichok agents (A230, A232, A234) could be degraded by RSDL lotion, but at a different rate. The half-life of A234, in the presence of an excess of RSDL lotion, was 36 min, as compared to A230 (<5 min) and A232 (18 min). Following dermal exposure of guinea pigs to A234, application of the RSDL kit was highly effective in preventing intoxication, even when applied up until 30 min following exposure. Delayed use of the RSDL kit until the appearance of clinical signs of intoxication (3-4 h) was not able to prevent intoxication progression and deaths. This study determines RSDL decontamination as an effective treatment strategy for dermal exposure to the Novichok agent A234 and underscores the importance of early, forward use of skin decontamination, as rapidly as possible.


Asunto(s)
Descontaminación , Agentes Nerviosos , Piel , Animales , Cobayas , Descontaminación/métodos , Piel/efectos de los fármacos , Agentes Nerviosos/toxicidad , Agentes Nerviosos/química , Crema para la Piel/farmacología , Crema para la Piel/química , Masculino , Sustancias para la Guerra Química/toxicidad
2.
Photochem Photobiol Sci ; 23(4): 763-780, 2024 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-38519812

RESUMEN

Nerve agents are the most notorious substances, which can be fatal to an individual because they block the activity of acetylcholinesterase. Fighting against unpredictable terrorist assaults and wars requires the simple and quick detection of chemical warfare agent vapor. In the present contribution, we have introduced a rhodamine-based chemosensor, BDHA, for the detection of nerve gas-mimicking agents diethylchlorophosphate (DCP) and diethylcyanophosphonate (DCNP) and mustard gas-mimicking agent 2-chloroethyl ethyl sulfide (CEES), both in the liquid and vapor phase. Probe BDHA provides the ability for detection by the naked eye in terms of colorimetric and fluorometric changes. It has been revealed that the interaction between nerve agents mimics and probe BDHA facilitates spirolactam ring opening due to the phosphorylation process. Thus, the highly fluorescent and colored species developed while probe BDHA is colorless and non-fluorescent due to the intramolecular spirolactam ring. Moreover, probe BDHA can effectively recognize DCP, DCNP, and CEES in the µM range despite many toxic analytes and could be identified based on the response times and quantum yield values. Inexpensive, easily carried paper strips-based test kits were developed for the quick, on-location solid and vapor phase detection of these mustard gas imitating agents (CEES) and nerve gas mimicking agents (DCP and DCNP) without needing expensive equipment or skilled personnel. More remarkably, the test strips' color and fluorescence can be rapidly restored, exposing them to triethyl amine (TEA) for cyclic use, suggesting a potential application in the real-time identification of chemical warfare agents. To accomplish the on-location application of BDHA, we have experimented with soil samples to find traces of DCP. Therefore, the chromo-fluorogenic probe BDHA is a promising, instantaneous, and on-the-spot monitoring tool for the selective detection of DCP, DCNP, and CEES in the presence of others.


Asunto(s)
Sustancias para la Guerra Química , Gas Mostaza/análogos & derivados , Agentes Nerviosos , Nitrofenoles , Organofosfatos , Compuestos Organofosforados , Sarín , Agentes Nerviosos/química , Acetilcolinesterasa , Colorantes Fluorescentes/química , Sustancias para la Guerra Química/análisis , Sustancias para la Guerra Química/química
3.
Arch Toxicol ; 98(1): 267-275, 2024 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-38051368

RESUMEN

Nerve agents are organophosphate chemical warfare agents that exert their toxic effects by irreversibly inhibiting acetylcholinesterase, affecting the breakdown of the neurotransmitter acetylcholine in the synaptic cleft. Due to the risk of exposure to dangerous nerve agents and for animal welfare reasons, in silico methods have been used to assess acute toxicity safely. The next-generation risk assessment (NGRA) is a new approach for predicting toxicological parameters that can meet modern requirements for toxicological research. The present study explains the acute toxicity of the examined V-series nerve agents (n = 9) using QSAR models. Toxicity Estimation Software Tool (ver. 4.2.1 and ver. 5.1.2), QSAR Toolbox (ver. 4.6), and ProTox-II browser application were used to predict the median lethal dose. The Simplified Molecular Input Line Entry Specification (SMILES) was the input data source. The results indicate that the most deadly V-agents were VX and VM, followed by structural VX analogues: RVX and CVX. The least toxic turned out to be V-sub x and Substance 100A. In silico methods for predicting various parameters are crucial for filling data gaps ahead of experimental research and preparing for the upcoming use of nerve agents.


Asunto(s)
Sustancias para la Guerra Química , Agentes Nerviosos , Compuestos Organotiofosforados , Animales , Sustancias para la Guerra Química/toxicidad , Sustancias para la Guerra Química/química , Agentes Nerviosos/toxicidad , Agentes Nerviosos/química , Acetilcolinesterasa/metabolismo , Compuestos Organotiofosforados/toxicidad
4.
Arch Toxicol ; 97(7): 1873-1885, 2023 07.
Artículo en Inglés | MEDLINE | ID: mdl-37264164

RESUMEN

VX is a highly toxic organophosphorus nerve agent that reacts with a variety of endogenous proteins such as serum albumin under formation of adducts that can be targeted by analytical methods for biomedical verification of exposure. Albumin is phosphonylated by the ethyl methylphosphonic acid moiety (EMP) of VX at various tyrosine residues. Additionally, the released leaving group of VX, 2-(diisopropylamino)ethanethiol (DPAET), may react with cysteine residues in diverse proteins. We developed and validated a microbore liquid chromatography-electrospray ionization high-resolution tandem mass spectrometry (µLC-ESI MS/HR MS) method enabling simultaneous detection of three albumin-derived biomarkers for the analysis of rat plasma. After pronase-catalyzed cleavage of rat plasma proteins single phosphonylated tyrosine residues (Tyr-EMP), the Cys34(-DPAET)Pro dipeptide as well as the rat-specific LeuProCys448(-DPAET) tripeptide were obtained. The time-dependent adduct formation in rat plasma was investigated in vitro and biomarker formation during proteolysis was optimized. Biomarkers were shown to be stable for a minimum of four freeze-and-thaw cycles and for at least 24 h in the autosampler at 15 °C thus making the adducts highly suited for bioanalysis. Cys34(-DPAET)Pro was superior compared to the other serum biomarkers considering the limit of identification and stability in plasma at 37 °C. For the first time, Cys34(-DPAET)Pro was detected in in vivo specimens showing a time-dependent concentration increase after subcutaneous exposure of rats underlining the benefit of the dipeptide disulfide biomarker for sensitive analysis.


Asunto(s)
Agentes Nerviosos , Animales , Ratas , Agentes Nerviosos/toxicidad , Agentes Nerviosos/química , Albúmina Sérica Humana/química , Espectrometría de Masa por Ionización de Electrospray/métodos , Compuestos Organofosforados , Dipéptidos , Biomarcadores , Tirosina
5.
Int J Mol Sci ; 24(10)2023 May 11.
Artículo en Inglés | MEDLINE | ID: mdl-37239944

RESUMEN

V-agents are exceedingly toxic organophosphate nerve agents. The most widely known V-agents are the phosphonylated thiocholines VX and VR. Nonetheless, other V-subclasses have been synthesized. Here, a holistic overview of V-agents is provided, where these compounds have been categorized based on their structures to facilitate their study. A total of seven subclasses of V-agents have been identified, including phospho(n/r)ylated selenocholines and non-sulfur-containing agents, such as VP and EA-1576 (EA: Edgewood Arsenal). Certain V-agents have been designed through the conversion of phosphorylated pesticides to their respective phosphonylated analogs, such as EA-1576 derived from mevinphos. Further, this review provides a description of their production, physical properties, toxicity, and stability during storage. Importantly, V-agents constitute a percutaneous hazard, while their high stability ensures the contamination of the exposed area for weeks. The danger of V-agents was highlighted in the 1968 VX accident in Utah. Until now, VX has been used in limited cases of terrorist attacks and assassinations, but there is an increased concern about potential terrorist production and use. For this reason, studying the chemistry of VX and other less-studied V-agents is important to understand their properties and develop potential countermeasures.


Asunto(s)
Sustancias para la Guerra Química , Agentes Nerviosos , Compuestos Organotiofosforados , Plaguicidas , Sustancias para la Guerra Química/química , Compuestos Organotiofosforados/química , Agentes Nerviosos/toxicidad , Agentes Nerviosos/química , Plaguicidas/toxicidad
6.
Anal Chem ; 95(9): 4390-4394, 2023 03 07.
Artículo en Inglés | MEDLINE | ID: mdl-36802493

RESUMEN

Chemical nerve agents are highly toxic organophosphorus compounds that are easy to obtain and can be utilized by terrorists to threaten homeland security and human safety. Those organophosphorus nerve agents contain nucleophilic ability that can react with acetylcholinesterase leading to muscular paralysis and human death. Therefore, there is great importance to explore a reliable and simple method to detect chemical nerve agents. Herein, the o-phenylenediamine-linked dansyl chloride as a colorimetric and fluorescent probe has been prepared to detect specific chemical nerve agent stimulants in the solution and vapor phase. The o-phenylenediamine unit serves as a detection site that can react with diethyl chlorophosphate (DCP) in a rapid response within 2 min. A satisfied relationship line was obtained between fluorescent intensity and the concentration of DCP in the range of 0-90 µM. In the optimized conditions, we conducted the fluorescent titration to measure the limits of detection (0.082 µM) with the fluorescent enhancement up to 18-fold. Fluorescence titration and NMR studies were also conducted to explore the detection mechanism, indicating that the formation of phosphate ester causes the intensity of fluorescent change during the PET process. Finally, probe 1 coated with the paper test is utilized to detect DCP vapor and solution by the naked eye. We expect that this probe may give some admiration to design the small molecule organic probe and applied in the selectivity detection of chemical nerve agents.


Asunto(s)
Estimulantes del Sistema Nervioso Central , Agentes Nerviosos , Humanos , Agentes Nerviosos/química , Colorantes Fluorescentes/química , Acetilcolinesterasa , Gases
7.
Arch Toxicol ; 97(3): 651-661, 2023 03.
Artículo en Inglés | MEDLINE | ID: mdl-36583745

RESUMEN

Novichok is the name given to the group of nerve agents created stealthily in the later phases of the Cold War by the Soviet Union. Constitute the fourth generation of chemical warfare agents; like other nerve agents, they are organophosphorus compounds designed to be incurable and undetectable. The mechanism of action is based on the non-competitive and irreversible inhibition of acetylcholinesterase. Due to their enormous toxicity, Novichoks have become attractive targets for terrorists. However, little information is known about the identity of nerve agents. Furthermore, these compounds have never been submitted to the Chemical Weapons Convention. Our article aspires to provide a general overview of Novichoks knowledge. As part of this, we reviewed the available literature data to answer the question, what are Novichoks? In addition to the physical and chemical properties of A-agents, synthesis, mechanism of action, and toxicity of nerve agents were also reviewed. We hope that this review will highlight the tremendous threat posed by nerve agents and will inspire further studies on the interdisciplinary aspects of these compounds.


Asunto(s)
Sustancias para la Guerra Química , Agentes Nerviosos , Agentes Nerviosos/química , Acetilcolinesterasa , Sustancias para la Guerra Química/química , Organofosfatos , Compuestos Organofosforados
8.
J Chromatogr A ; 1685: 463604, 2022 Dec 06.
Artículo en Inglés | MEDLINE | ID: mdl-36334562

RESUMEN

Nerve agents are organophosphorus compounds of the highest toxicity and danger. The production, transportation and use of these substances are prohibited by the Organization for the Prohibition of Chemical Weapons. Any fact of alleged use of nerve agents is a crime against humanity and must be investigated in detail by the world community. For this purpose, such analysis objects as biological fluids (urine, blood) and environmental objects (water, soil) are well studied. The current study demonstrates the possibility of using plants as a convenient material for retrospective analysis. Methyl phosphonic acid and some of its alkyl esters (ethyl, isopropyl, isobutyl, cyclohexyl, pinacolyl) were chosen as nerve agent metabolites. Hedera Helix growing in soil was used as a carrier of the markers. The selected markers were injected once in the soil and their content in the plant and soil was monitored for 4 weeks. A fast and simple way of sample homogenization with liquid nitrogen followed by ultrasonic liquid extraction was applied. The developed HPLC-MS/MS approach with the use of deuterated internal standards for quantitative analysis was validated. The research discovered that all the studied nerve agent markers could be detected and determined both in the soil and the plant for at least one month. The results indicate the promising use of plants as additional objects of analysis in investigation of incidents involving the use of chemical warfare agents.


Asunto(s)
Sustancias para la Guerra Química , Agentes Nerviosos , Agentes Nerviosos/química , Suelo/química , Espectrometría de Masas en Tándem , Hidrólisis , Compuestos Organofosforados/análisis , Estudios Retrospectivos , Cromatografía de Gases y Espectrometría de Masas/métodos , Cromatografía Liquida/métodos , Sustancias para la Guerra Química/análisis
9.
Inorg Chem ; 61(22): 8585-8591, 2022 Jun 06.
Artículo en Inglés | MEDLINE | ID: mdl-35613459

RESUMEN

Metal-organic frameworks (MOFs) have shown great success in aqueous-phase hydrolysis of nerve agents, with some even showing promise in the gas phase. However, both aqueous-phase reactivity and gas-phase reactivity are hindered because of the binding of the hydrolyzed products to the MOF nodes in a stable, bridging configuration, which limits turnover. Single transition-metal atoms in MOFs have been a growing field of interest for catalytic applications, and single atoms have been proposed to prevent the unwanted bridged conformation and increase catalytic turnover. To date, there has been little experimental evidence to support the hypothesis. Herein, we report two copper single atom-modified UiO-66 MOFs for nerve-agent simulant degradation. Despite the capping of highly active Zr4+ nodes with fewer Lewis acidic Cun+ atoms, the reactivity of both CuMOFs approaches that of native UiO-66 under aqueous conditions. Computational studies reveal that the Cu coordination environment impairs product inhibition with respect to the native MOF.


Asunto(s)
Estructuras Metalorgánicas , Agentes Nerviosos , Compuestos Organometálicos , Cobre , Estructuras Metalorgánicas/química , Agentes Nerviosos/química , Ácidos Ftálicos
10.
J Am Chem Soc ; 144(15): 6674-6680, 2022 04 20.
Artículo en Inglés | MEDLINE | ID: mdl-35385280

RESUMEN

Metal-organic frameworks (MOFs) constructed from Zr6 nodes and tetratopic carboxylate linkers display high structural diversity and complexity in which various crystal topologies can result from identical building units. To determine correlations between MOF topologies and experimental parameters, such as solvent choice or modulator identity and concentration, we demonstrate the rapid generation of phase diagrams for Zr6-MOFs with 1,4-dibromo-2,3,5,6-tetrakis(4-carboxyphenyl)benzene linkers under a variety of conditions. We have developed a full set of methods for high-throughput transmission electron microscopy (TEM), including automated sample preparation and data acquisition, to accelerate MOF characterization. The use of acetic acid as a modulator yields amorphous, NU-906, NU-600, and mixed-phase structures depending on the ratio of N,N-dimethylformamide to N,N-diethylformamide solvent and the quantity of the modulator. Notably, the use of formic acid as a modulator enables direct control of crystal growth along the c direction through variation of the modulator quantity, thus realizing aspect ratio control of NU-1008 crystals with different catalytic hydrolysis performance toward a nerve agent simulant.


Asunto(s)
Estructuras Metalorgánicas , Agentes Nerviosos , Catálisis , Estructuras Metalorgánicas/química , Microscopía Electrónica de Transmisión , Agentes Nerviosos/química , Solventes
11.
Chem Res Toxicol ; 35(5): 774-781, 2022 05 16.
Artículo en Inglés | MEDLINE | ID: mdl-35317551

RESUMEN

The recent terrorist attacks using Novichok agents and subsequent operations have necessitated an understanding of its physicochemical properties, such as vapor pressure and toxicity, as well as unascertained nerve agent structures. To prevent continued threats from new types of nerve agents, the organization for the prohibition of chemical weapons (OPCW) updated the chemical weapons convention (CWC) schedule 1 list. However, this information is vague and may encompass more than 10 000 possible chemical structures, which makes it almost impossible to synthesize and measure their properties and toxicity. To assist this effort, we successfully developed machine learning (ML) models to predict the vapor pressure to help with escape and removal operations. The model shows robust and high-accuracy performance with promising features for predicting vapor pressure when applied to Novichok materials and accurate predictions with reasonable errors. The ML classification model was successfully built for the swallow globally harmonized system class of organophosphorus compounds (OP) for toxicity predictions. The tuned ML model was used to predict the toxicity of Novichok agents, as described in the CWC list. Although its accuracy and linearity can be improved, this ML model is expected to be a firm basis for developing more accurate models for predicting the vapor pressure and toxicity of nerve agents in the future to help handle future terror attacks with unknown nerve agents.


Asunto(s)
Sustancias para la Guerra Química , Agentes Nerviosos , Sustancias para la Guerra Química/análisis , Sustancias para la Guerra Química/toxicidad , Aprendizaje Automático , Agentes Nerviosos/química , Agentes Nerviosos/toxicidad , Organofosfatos/química , Presión de Vapor
12.
J Fluoresc ; 32(3): 961-967, 2022 May.
Artículo en Inglés | MEDLINE | ID: mdl-35218474

RESUMEN

Nerve gas mimic binding with Rhodamine B ethylenediamine (1) was studied in organic media. Binding of the nerve gas mimic, diethyl chlorophosphate (DCP), with the probe generated a non-fluorescent intermediate and a fluorescent product. Fluorescent and non-fluorescent products generated were identified using mass spectrometry and X-ray crystallography. Time-dependent density functional theory calculations were also used to investigate the electronic structure of the fluorescent probe in the ground and lowest lying π → π* singlet excited state. Though good agreement between theory and experiment can be obtained for the intense peak in the experimental spectrum using non-hybrid functionals, care must be taken when modelling these complexes due to the appearance of an n → π* transition that is too low in energy and appears to fall in the shoulders of the π → π* transitions.


Asunto(s)
Agentes Nerviosos , Etilenodiaminas , Colorantes Fluorescentes/química , Agentes Nerviosos/química , Rodaminas/química
13.
Molecules ; 27(2)2022 Jan 13.
Artículo en Inglés | MEDLINE | ID: mdl-35056803

RESUMEN

A novel two-site chemodosimeter (SWJT-4) based on fluorescein skeleton to detect diethyl chlorophosphate (DCP) was designed and synthesized. It is a turn-on fluorescent probe for DCP with good selectivity and obvious color change in aqueous solution. Interestingly, the two oxime groups of SWJT-4 as dual response sites initiated different reactions with DCP to form a cyano group and an isoxazole ring, respectively. The corresponding mechanism was confirmed by 1H NMR, MS and DFT calculation. Moreover, SWJT-4 could be used as a fluorescent test paper to detect DCP vapor.


Asunto(s)
Colorantes Fluorescentes/química , Agentes Nerviosos/análisis , Agentes Nerviosos/química , Espectrometría de Fluorescencia/métodos , Color , Química Computacional , Fluoresceína/síntesis química , Fluoresceína/química , Colorantes Fluorescentes/síntesis química , Compuestos Organofosforados/análisis , Compuestos Organofosforados/química , Sensibilidad y Especificidad , Agua/química
14.
Anal Chem ; 94(4): 2048-2055, 2022 02 01.
Artículo en Inglés | MEDLINE | ID: mdl-35041786

RESUMEN

Organophosphorus (OP) nerve agents were used for chemical warfare, assassination, and attempted murder of individuals. Therefore, forensic methods are required to identify known and unknown incorporated OP poisons. Serum is tested for the presence of covalent reaction products (adducts) of the toxicant with, e.g., butyrylcholinesterase (BChE) typically by targeted analysis, thus only detecting known OP adducts. We herein present a nontargeted two-step mass spectrometry (MS)-based workflow taking advantage of a high-resolution (HR) Orbitrap mass spectrometer and its option for in-source collision-induced dissociation (IS-CID) highly valuable for the detection of unknown agents. BChE adducts are extracted by immunomagnetic separation and proteolyzed with pepsin yielding a phosphylated nonapeptide (NP) biomarker NP(OP). In step 1, the sample is separated by micro liquid chromatography (µLC) detecting the NP(OP) by nontargeted HR MS followed by data-dependent tandem-MS (ddMS2). Extracted ion chromatograms of diagnostic product ions at m/z 778.33661, 673.29402, and 602.25690 reveal the accurate mass of the NP(OP) precursor ion as well as the elemental composition of the adducted phosphyl moiety. Considering this information, a second µLC run is performed (step 2) for nonselective IS-CID of NP(OP) yielding the cleaved charged phosphyl moiety. This fragment ion is immediately subjected to targeted CID in parallel reaction monitoring (PRM). The accurate mass of its product ions allows the determination of their elemental composition and thus supports its structural elucidation. The described workflow was exemplarily applied to NP(OP) of three Tamelin esters and VX providing highly appropriate abilities for the detection of adducts even of unknown OP poisons like Novichok agents.


Asunto(s)
Butirilcolinesterasa , Agentes Nerviosos , Humanos , Separación Inmunomagnética , Agentes Nerviosos/química , Espectrometría de Masas en Tándem/métodos , Flujo de Trabajo
15.
ACS Appl Mater Interfaces ; 14(2): 2881-2892, 2022 Jan 19.
Artículo en Inglés | MEDLINE | ID: mdl-34985854

RESUMEN

Cascade catalysis that combines chemical catalysis and biocatalysis has received extensive attention in recent years, especially the integration of metal nanoparticles (MNPs) with enzymes. However, the compatibility between MNPs and enzymes, and the stability of the integrated nanocatalyst should be improved to promote the application. Therefore, in this study, we proposed a strategy to space-separately co-immobilize MNPs and enzymes to the pores and surface of a highly stable covalent organic framework (COF), respectively. Typically, Pd NPs that were prepared by in situ reduction with triazinyl as the nucleation site were distributed in COF (Tz-Da), and organophosphorus hydrolase (OPH) was immobilized on the surface of Tz-Da by a covalent method to improve its stability. The obtained integrated nanocatalyst Pd@Tz-Da@OPH showed high catalytic efficiency and reusability in the cascade degradation of organophosphate nerve agents. Furthermore, the versatility of the preparation strategy of COF-based integrated nanocatalyst has been preliminarily expanded: (1) Pd NPs and OPH were immobilized in the triazinyl COF (TTB-DHBD) with different pore sizes for cascade degradation of organophosphate nerve agent and the particle size of MNPs can be regulated. (2) Pt NPs and glucose oxidase were immobilized in COF (Tz-Da) to obtain an integrated nanocatalyst for efficient colorimetric detection of phenol.


Asunto(s)
Arildialquilfosfatasa/metabolismo , Materiales Biocompatibles/metabolismo , Nanopartículas del Metal/química , Estructuras Metalorgánicas/metabolismo , Agentes Nerviosos/metabolismo , Organofosfatos/metabolismo , Arildialquilfosfatasa/química , Biocatálisis , Materiales Biocompatibles/química , Ensayo de Materiales , Estructuras Metalorgánicas/química , Estructura Molecular , Agentes Nerviosos/química , Organofosfatos/química , Paladio/química , Paladio/metabolismo
16.
Inorg Chem ; 61(3): 1512-1520, 2022 Jan 24.
Artículo en Inglés | MEDLINE | ID: mdl-34969248

RESUMEN

Maintaining a long-term continuous and stable reactivator blood concentration to treat organophosphorus nerve agent poisoning using acetylcholinesterase (AChE) reactivator pralidoxime chloride (2-PAM) is very important yet difficult. Because the flexible framework of MIL-88B(Fe) nanoparticles (NPs) can swell in polar solvents, pralidoxime chloride (2-PAM) was loaded in MIL-88B(Fe) NPs (size: ca. 500 nm) by stirring and incubation in deionized water to obtain 2-PAM@MIL-88B(Fe), which had a maximum drug loading capacity of 12.6 wt %. The as-prepared composite was characterized by IR, powder X-ray diffraction (P-XRD), scanning electron microscopy (SEM), ζ-potential, Brunauer-Emmett-Teller (BET), and thermogravimetry/differential thermal analysis (TG/DTA). The results showed that under constant conditions, the maximum drug release rates of 2-PAM@MIL-88B(Fe) in absolute ethanol, phosphate-buffered saline (PBS) solution (pH = 7.4), and PBS solution (pH = 4) at 150 h were 51.7, 80.6, and 67.1%, respectively. This was because the composite showed different swelling behaviors in different solvents. In PBS solution with pH = 2, the 2-PAM@MIL-88B(Fe) framework collapsed after 53 h and released 100% of 2-PAM. For mice after intragastric poisoning with sarin (a neurotoxic agent), an atropine-assisted 2-PAM@MIL-88B(Fe) treatment experiment revealed that 2-PAM@MIL-88B(Fe) continuously released 2-PAM for more than 72 h so that poisoned AChE was continuously and steadily reactivated. The reactivation rate of AChE was 56.7% after 72 h. This composite is expected to provide a prolonged, stable therapeutic drug for the mid- and late-stage treatment of neurotoxic agent poisoning.


Asunto(s)
Estructuras Metalorgánicas/química , Agentes Nerviosos/farmacología , Compuestos de Pralidoxima/farmacología , Sarín/antagonistas & inhibidores , Acetilcolinesterasa/análisis , Acetilcolinesterasa/metabolismo , Administración Oral , Animales , Atropina/administración & dosificación , Atropina/farmacología , Relación Dosis-Respuesta a Droga , Masculino , Ratones , Ratones Endogámicos , Nanopartículas/química , Agentes Nerviosos/química , Compuestos de Pralidoxima/administración & dosificación , Compuestos de Pralidoxima/química , Sarín/administración & dosificación , Sarín/toxicidad
17.
J Am Chem Soc ; 143(43): 18261-18271, 2021 11 03.
Artículo en Inglés | MEDLINE | ID: mdl-34677965

RESUMEN

Rapid and robust sensing of nerve agent (NA) threats is necessary for real-time field detection to facilitate timely countermeasures. Unlike conventional phosphotriesterases employed for biocatalytic NA detection, this work describes the use of a new, green, thermally stable, and biocompatible zirconium metal-organic framework (Zr-MOF) catalyst, MIP-202(Zr). The biomimetic Zr-MOF-based catalytic NA recognition layer was coupled with a solid-contact fluoride ion-selective electrode (F-ISE) transducer, for potentiometric detection of diisopropylfluorophosphate (DFP), a F-containing G-type NA simulant. Catalytic DFP degradation by MIP-202(Zr) was evaluated and compared to the established UiO-66-NH2 catalyst. The efficient catalytic DFP degradation with MIP-202(Zr) at near-neutral pH was validated by 31P NMR and FT-IR spectroscopy and potentiometric F-ISE and pH-ISE measurements. Activation of MIP-202(Zr) using Soxhlet extraction improved the DFP conversion rate and afforded a 2.64-fold improvement in total percent conversion over UiO-66-NH2. The exceptional thermal and storage stability of the MIP-202/F-ISE sensor paves the way toward remote/wearable field detection of G-type NAs in real-world environments. Overall, the green, sustainable, highly scalable, and biocompatible nature of MIP-202(Zr) suggests the unexploited scope of such MOF catalysts for on-body sensing applications toward rapid on-site detection and detoxification of NA threats.


Asunto(s)
Materiales Biomiméticos/química , Isoflurofato/análisis , Estructuras Metalorgánicas/química , Agentes Nerviosos/análisis , Catálisis , Técnicas Electroquímicas/instrumentación , Técnicas Electroquímicas/métodos , Fluoruros/análisis , Tecnología Química Verde , Isoflurofato/química , Límite de Detección , Agentes Nerviosos/química , Dispositivos Electrónicos Vestibles , Circonio/química
18.
J Mass Spectrom ; 56(9): e4779, 2021 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-34407561

RESUMEN

Novichok is one of the most feared and controversial nerve agents, which existence was confirmed only after the Salisbury attack in 2018. A new attack on August 2020, in Russia, was confirmed. After the 2018 attack, the agent was included in the list of the most dangerous chemicals of the Chemical Weapons Convention (CWC). However, information related to its electron ionization mass spectrometry (EI/MS), essential for unambiguous identification, is scarce. Therefore, investigations about Novichok EI/MS are urgent. In this work, we employed Born-Oppenheimer molecular dynamics through the Quantum Chemistry Electron Ionization Mass Spectrometry (QCEIMS) method to simulate and rationalize the EI/MS spectra and fragmentation pathways of 32 Novichok molecules recently incorporated into the CWC. The comparison of additional simulations with the measured EI spectrum of another Novichok analog is very favorable. A general scheme of the fragmentation pathways derived from simulation results was presented. The present results will be useful for elucidation and prediction of the EI spectra and fragmentation pathways of the dangerous Novichok nerve agent.


Asunto(s)
Agentes Nerviosos , Organofosfatos , Electrones , Espectrometría de Masas , Agentes Nerviosos/química , Organofosfatos/química
19.
Top Curr Chem (Cham) ; 379(5): 33, 2021 Aug 04.
Artículo en Inglés | MEDLINE | ID: mdl-34346011

RESUMEN

Organophosphorus (OP) compounds are typically a broad class of compounds that possess various uses such as insecticides, pesticides, etc. One of the most evil utilizations of these compounds is as chemical warfare agents, which pose a greater threat than biological weapons because of their ease of access. OP compounds are highly toxic compounds that cause irreversible inhibition of enzyme acetylcholinesterase, which is essential for hydrolysis of neurotransmitter acetylcholine, leading to series of neurological disorders and even death. Due to the extensive use of these organophosphorus compounds in agriculture, there is an increase in the environmental burden of these toxic chemicals, with severe environmental consequences. Hence, the rapid and sensitive, selective, real-time detection of OP compounds is very much required in terms of environmental protection, health, and survival. Several techniques have been developed over a few decades to easily detect them, but still, numerous challenges and problems remain to be solved. Major advancement has been observed in the development of sensors using the spectroscopic technique over recent years because of the advantages offered over other techniques, which we focus on in the presented review.


Asunto(s)
Agentes Nerviosos/química , Compuestos Organofosforados/química , Plaguicidas/química , Acetilcolinesterasa/química , Acetilcolinesterasa/metabolismo , Carbocianinas/química , Transporte de Electrón , Colorantes Fluorescentes/química , Humanos , Microscopía Fluorescente , Agentes Nerviosos/metabolismo , Compuestos Organofosforados/metabolismo , Plaguicidas/metabolismo , Espectrometría de Fluorescencia
20.
Int J Mol Sci ; 22(15)2021 Jul 29.
Artículo en Inglés | MEDLINE | ID: mdl-34360916

RESUMEN

Organophosphorus nerve agents (OPNAs) are highly toxic compounds inhibiting cholinergic enzymes in the central and autonomic nervous systems and neuromuscular junctions, causing severe intoxications in humans. Medical countermeasures and efficient decontamination solutions are needed to counteract the toxicity of a wide spectrum of harmful OPNAs including G, V and Novichok agents. Here, we describe the use of engineered OPNA-degrading enzymes for the degradation of various toxic agents including insecticides, a series of OPNA surrogates, as well as real chemical warfare agents (cyclosarin, sarin, soman, tabun, VX, A230, A232, A234). We demonstrate that only two enzymes can degrade most of these molecules at high concentrations (25 mM) in less than 5 min. Using surface assays adapted from NATO AEP-65 guidelines, we further show that enzyme-based solutions can decontaminate 97.6% and 99.4% of 10 g∙m-2 of soman- and VX-contaminated surfaces, respectively. Finally, we demonstrate that these enzymes can degrade ethyl-paraoxon down to sub-inhibitory concentrations of acetylcholinesterase, confirming their efficacy from high to micromolar doses.


Asunto(s)
Descontaminación/métodos , Enzimas/química , Insecticidas/química , Agentes Nerviosos/química , Compuestos Organofosforados/química
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