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1.
Chem Res Toxicol ; 37(4): 643-657, 2024 Apr 15.
Article En | MEDLINE | ID: mdl-38556765

Organophosphorus (OP) nerve agents inhibit acetylcholinesterase (AChE), creating a cholinergic crisis in which death can occur. The phosphylated serine residue spontaneously dealkylates to the OP-aged form, which current therapeutics cannot reverse. Soman's aging half-life is 4.2 min, so immediate recovery (resurrection) of OP-aged AChE is needed. In 2018, we showed pyridin-3-ol-based quinone methide precursors (QMPs) can resurrect OP-aged electric eel AChE in vitro, achieving 2% resurrection after 24 h of incubation (pH 7, 4 mM). We prepared 50 unique 6-alkoxypyridin-3-ol QMPs with 10 alkoxy groups and five amine leaving groups to improve AChE resurrection. These compounds are predicted in silico to cross the blood-brain barrier and treat AChE in the central nervous system. This library resurrected 7.9% activity of OP-aged recombinant human AChE after 24 h at 250 µM, a 4-fold increase from our 2018 report. The best QMP (1b), with a 6-methoxypyridin-3-ol core and a diethylamine leaving group, recovered 20.8% (1 mM), 34% (4 mM), and 42.5% (predicted maximum) of methylphosphonate-aged AChE activity over 24 h. Seven QMPs recovered activity from AChE aged with Soman and a VX degradation product (EA-2192). We hypothesize that QMPs form the quinone methide (QM) to realkylate the phosphylated serine residue as the first step of resurrection. We calculated thermodynamic energetics for QM formation, but there was no trend with the experimental biochemical data. Molecular docking studies revealed that QMP binding to OP-aged AChE is not the determining factor for the observed biochemical trends; thus, QM formation may be enzyme-mediated.


Cholinesterase Reactivators , Indolequinones , Organophosphate Poisoning , Soman , Humans , Aged , Acetylcholinesterase/metabolism , Cholinesterase Inhibitors/chemistry , Molecular Docking Simulation , Organophosphorus Compounds/pharmacology , Organophosphorus Compounds/metabolism , Serine , Oximes , Cholinesterase Reactivators/chemistry
2.
Mymensingh Med J ; 33(2): 509-515, 2024 Apr.
Article En | MEDLINE | ID: mdl-38557534

Organophosphorus compound (OPC) poisoning is common in Bangladesh. The toxicity of the agent and paucity of appropriate medical services has resulted in high mortality rates. To find out the clinical profile and outcome of OPC poisoning patients is the main aim of my study. This descriptive cross-sectional study was conducted in the Department of Medicine, Mymensingh Medical College Hospital, Bangladesh from September 2016 to November 2018. In this study, mean age of the study subjects was 25.90±11.24 years. Males (70.8%) were predominant than female (29.2%). In this study, most of the poisoning was done by ingestion (98.3%) and only two (1.7%) by inhalation. Regarding features, most muscarinic effect was constricted pupil and bronchospasm (65.0%). Common nicotinic effect was fasciculation (25.0%) and central effect was headache (61.67%). Mean amount of OPC ingestion was 26.30±17.24 ml in this study. Regarding circumstances of poisoning, familial disharmony (38.3%) and quarrel with other family members (37.5%) were the major reason followed by failure of personal affairs (15.0%) and other reasons (9.2%). Regarding complications, aspiration pneumonia was found in 6.7% cases, cardiac arrhythmia was in 6.7% cases and intermediate syndrome was in 1.7% cases. Most of the study subjects (95.0%) recovered fully. Most of the patients were from rural area. Suicidal was the common motive and familial disharmony and quarrel with other family members are the common circumstances of poisoning. Mortality rate was 5.0%.


Organophosphate Poisoning , Poisoning , Male , Humans , Female , Adolescent , Young Adult , Adult , Organophosphate Poisoning/epidemiology , Organophosphate Poisoning/therapy , Tertiary Care Centers , Cross-Sectional Studies , Organophosphorus Compounds , Bangladesh/epidemiology , Poisoning/epidemiology , Poisoning/therapy , Poisoning/complications
3.
Neuropharmacology ; 249: 109895, 2024 May 15.
Article En | MEDLINE | ID: mdl-38437913

Acute intoxication with organophosphate (OP) cholinesterase inhibitors poses a significant public health risk. While currently approved medical countermeasures can improve survival rates, they often fail to prevent chronic neurological damage. Therefore, there is need to develop effective therapies and quantitative metrics for assessing OP-induced brain injury and its rescue by these therapies. In this study we used a rat model of acute intoxication with the OP, diisopropylfluorophosphate (DFP), to test the hypothesis that T2 measures obtained from brain magnetic resonance imaging (MRI) scans provide quantitative metrics of brain injury and therapeutic efficacy. Adult male Sprague Dawley rats were imaged on a 7T MRI scanner at 3, 7 and 28 days post-exposure to DFP or vehicle (VEH) with or without treatment with the standard of care antiseizure drug, midazolam (MDZ); a novel antiseizure medication, allopregnanolone (ALLO); or combination therapy with MDZ and ALLO (DUO). Our results show that mean T2 values in DFP-exposed animals were: (1) higher than VEH in all volumes of interest (VOIs) at day 3; (2) decreased with time; and (3) decreased in the thalamus at day 28. Treatment with ALLO or DUO, but not MDZ alone, significantly decreased mean T2 values relative to untreated DFP animals in the piriform cortex at day 3. On day 28, the DUO group showed the most favorable T2 characteristics. This study supports the utility of T2 mapping for longitudinally monitoring brain injury and highlights the therapeutic potential of ALLO as an adjunct therapy to mitigate chronic morbidity associated with acute OP intoxication.


Brain Injuries , Organophosphate Poisoning , Rats , Male , Animals , Rats, Sprague-Dawley , Isoflurophate/toxicity , Organophosphates , Cholinesterase Inhibitors/pharmacology , Organophosphate Poisoning/drug therapy , Organophosphate Poisoning/pathology , Brain Injuries/chemically induced , Brain , Midazolam/pharmacology
4.
Chem Biol Interact ; 394: 110941, 2024 May 01.
Article En | MEDLINE | ID: mdl-38493910

The current study imposes a new class of organophosphorus (OP)-inhibited cholinesterase reactivators by conceptualizing a family of asymmetric bisoximes with various reactivating scaffolds. Several novel nucleophilic warheads were investigated, putting forward 29 novel reactivating options, by evaluating their nucleophilicity and ability to directly decompose OP compounds. Adopting the so-called zwitterionic strategy, 17 mono-oxime and nine bisoxime reactivators were discovered with major emphasis on the bifunctional-moiety approach. Compounds were compared with clinically used standards and other known experimentally highlighted reactivators. Our results clearly favor the concept of asymmetric bisoximes as leading reactivators in terms of efficacy and versatility. These top-ranked compounds were characterized in detail by reactivation kinetics parameters and evaluated for potential CNS availability. The highlighted molecules 55, 57, and 58 with various reactivating warheads, surpassed the reactivating potency of pralidoxime and several notable uncharged reactivators. The versatility of lead drug candidate 55 was also inspected on OP-inhibited butyrylcholinesterase, revealing a much higher rate compared to existing clinical antidotes.


Butyrylcholinesterase , Cholinesterase Reactivators , Organophosphate Poisoning , Oximes , Oximes/chemistry , Oximes/pharmacology , Cholinesterase Reactivators/chemistry , Cholinesterase Reactivators/pharmacology , Butyrylcholinesterase/metabolism , Butyrylcholinesterase/chemistry , Humans , Organophosphate Poisoning/drug therapy , Acetylcholinesterase/metabolism , Antidotes/chemistry , Antidotes/pharmacology , Kinetics , Cholinesterase Inhibitors/chemistry , Cholinesterase Inhibitors/pharmacology , Animals , Organophosphorus Compounds/chemistry
5.
Arh Hig Rada Toksikol ; 75(1): 81-84, 2024 Mar 01.
Article En | MEDLINE | ID: mdl-38548379

Organophosphorus poisoning is a critical condition that can cause central nervous system depression, respiratory failure, and death early on. As its clinical manifestations closely resemble those of carbamate pesticide poisoning, the aim of this case study is to present a case of misdiagnosis, initially identifying carbofuran poisoning as organophosphate in a patient suspect of a heatstroke. We also present a case of intentional self-poisoning with organophosphate dichlorvos to underline the likelihood of pesticide poisoning in patients exhibiting acute cholinergic symptoms when the ingested substance is not known. In such cases, empirical treatment with atropine and oxime can be started pending timely differential diagnosis to adjust treatment as necessary.


Insecticides , Organophosphate Poisoning , Pesticides , Poisoning , Humans , Carbamates/therapeutic use , Organophosphate Poisoning/diagnosis , Organophosphate Poisoning/drug therapy , Dichlorvos/therapeutic use , Poisoning/therapy
6.
J Infect Dev Ctries ; 18(2): 277-284, 2024 Feb 29.
Article En | MEDLINE | ID: mdl-38484356

INTRODUCTION: The aim of this study was to determine the clinical predictors of staphylococcal ventilator-associated pneumonia (VAP) and to compare the outcomes of staphylococcal VAP with non-staphylococcal VAP. METHODOLOGY: A retrospective observational study was conducted among adult patients admitted to the medical intensive care unit (MICU) in a tertiary care hospital in India from January 2017 to December 2019. The patients were grouped based on their diagnosis into staphylococcal and non-staphylococcal VAP, and the baseline characteristics, clinical parameters, co-morbidities, and outcome parameters were compared. RESULTS: Out of 2129 MICU admissions, 456 patients with microbiologically confirmed VAP were included, of which 69 (15.1%) had staphylococcal VAP, and the remaining 387 (84.9%) had non-staphylococcal VAP. Organophosphorus (OP) poisoning was identified as an independent predictor of staphylococcal VAP (odds ratio: 2.57; 95% CI: 1.4 to 4.73). The median duration of mechanical ventilation before VAP diagnosis was less in the staphylococcal VAP group (4 vs. 5 days; p = 0.004). The staphylococcal group also showed a better in-hospital outcome. CONCLUSIONS: OP poisoning was an independent predictor of staphylococcal VAP. Staphylococcal VAP was diagnosed earlier in patients than non-staphylococcal VAP. Screening for nasal carriage for Staphylococcus, especially in patients with OP poisoning at the time of MICU admission, may help guide antibiotic therapy.


Organophosphate Poisoning , Pneumonia, Ventilator-Associated , Adult , Humans , Pneumonia, Ventilator-Associated/microbiology , Retrospective Studies , Respiration, Artificial , Staphylococcus , Intensive Care Units
7.
Toxicol Lett ; 394: 23-31, 2024 Apr.
Article En | MEDLINE | ID: mdl-38387764

Intoxications with organophosphorus compounds (OPCs) effect a severe impairment of cholinergic neurotransmission that, as a result of overstimulation may lead to desensitization of nicotinic acetylcholine receptors (nAChRs) and finally to death due to respiratory paralysis. So far, therapeutics, that are capable to address and revert desensitized neuromuscular nAChRs into their resting, i.e. functional state are still missing. Still, among a class of compounds termed bispyridinium salts, which are characterized by the presence of two pyridinium subunits, constituents have been identified, that can counteract organophosphate poisoning by resensitizing desensitized nAChRs. According to comprehensive modeling studies this effect is mediated by an allosteric binding site at the nAChR termed MB327-PAM-1 site. For MB327, the most prominent representative of the bispyridinium salts and all other analogues studied so far, the affinity for the aforementioned binding site and the intrinsic activity measured in ex vivo and in in vivo experiments are distinctly too low, to meet the criteria to be fulfilled for therapeutic use. Hence, in order to identify new compounds with higher affinities for the MB327-PAM-1 binding site, as a basic requirement for an enhanced potency, two compound libraries, the ChemDiv library with 60 constituents and the Tocriscreen Plus library with 1280 members have been screened for hit compounds addressing the MB327-PAM-1 binding site, utilizing the [2H6]MB327 MS Binding Assay recently developed by us. This led to the identification of a set of 10 chemically diverse compounds, all of which exhibit an IC50 value of ≤ 10 µM (in the [2H6]MB327 MS Binding Assay), which had been defined as selection criteria. The three most affine ligands, which besides a quinazoline scaffold share similarities with regard to the substitution pattern and the nature of the substituents, are UNC0638, UNC0642 and UNC0646. With binding affinities expressed as pKi values of 6.01 ± 0.10, 5.97 ± 0.05 and 6.23 ± 0.02, respectively, these compounds exceed the binding affinity of MB327 by more than one log unit. This renders them promising starting points for the development of drugs for the treatment of organophosphorus poisoning by addressing the MB327-PAM-1 binding site of the nAChR.


Organophosphate Poisoning , Pyridinium Compounds , Receptors, Nicotinic , Humans , Receptors, Nicotinic/metabolism , Salts/metabolism , Salts/therapeutic use , Structure-Activity Relationship , Binding Sites , Organophosphate Poisoning/drug therapy , Ligands
8.
Arch Toxicol ; 98(4): 1177-1189, 2024 Apr.
Article En | MEDLINE | ID: mdl-38305864

Recent experimental evidence suggests combined treatment with midazolam and allopregnanolone is more effective than midazolam alone in terminating seizures triggered by acute organophosphate (OP) intoxication. However, there are concerns that combined midazolam and allopregnanolone increases risk of adverse cardiovascular events. To address this, we used telemetry devices to record cardiovascular responses in adult male Sprague-Dawley rats acutely intoxicated with diisopropylfluorophosphate (DFP). Animals were administered DFP (4 mg/kg, sc), followed immediately by atropine (2 mg/kg, i.m.) and 2-PAM (25 mg/kg, i.m.). At 40 min post-exposure, a subset of animals received midazolam (0.65 mg/kg, im); at 50 min, these rats received a second dose of midazolam or allopregnanolone (12 mg/kg, im). DFP significantly increased blood pressure by ~ 80 mmHg and pulse pressure by ~ 34 mmHg that peaked within 12 min. DFP also increased core temperature by ~ 3.5 °C and heart rate by ~ 250 bpm that peaked at ~ 2 h. Heart rate variability (HRV), an index of autonomic function, was reduced by ~ 80%. All acute (within 15 min of exposure) and two-thirds of delayed (hours after exposure) mortalities were associated with non-ventricular cardiac events within 10 min of cardiovascular collapse, suggesting that non-ventricular events should be closely monitored in OP-poisoned patients. Compared to rats that survived DFP intoxication without treatment, midazolam significantly improved recovery of cardiovascular parameters and HRV, an effect enhanced by allopregnanolone. These data demonstrate that midazolam improved recovery of cardiovascular and autonomic function and that the combination of midazolam and allopregnanolone may be a better therapeutic strategy than midazolam alone.


Midazolam , Organophosphate Poisoning , Humans , Rats , Male , Animals , Rats, Sprague-Dawley , Midazolam/pharmacology , Midazolam/therapeutic use , Pregnanolone/pharmacology , Isoflurophate/pharmacology , Organophosphates , Brain , Organophosphate Poisoning/drug therapy
9.
Toxicology ; 503: 153741, 2024 Mar.
Article En | MEDLINE | ID: mdl-38311098

Organophosphate (OP) poisoning is currently treated with atropine, oximes and benzodiazepines. The nicotinic signs, i.e., respiratory impairment, can only be targeted indirectly via the use of oximes as reactivators of OP-inhibited acetylcholinesterase. Hence, compounds selectively targeting nicotinic acetylcholine receptors (nAChRs) might fundamentally improve current treatment options. The bispyridinium compound MB327 has previously shown some therapeutic effect against nerve agents in vitro and in vivo. Nevertheless, compound optimization was deemed necessary, due to limitations (e.g., toxicity and efficacy). The current study investigated a series of 4-tert-butyl bispyridinium compounds and of corresponding bispyridinium compounds without substituents in a rat diaphragm model using an indirect field stimulation technique. The length of the respective linker influenced the ability of the bispyridinium compounds to restore muscle function in rat hemidiaphragms. The current data show structure-activity relationships for a series of bispyridinium compounds and provide insight for future structure-based molecular modeling.


Cholinesterase Reactivators , Nerve Agents , Organophosphate Poisoning , Rats , Animals , Oximes/pharmacology , Oximes/therapeutic use , Nerve Agents/toxicity , Diaphragm , Acetylcholinesterase/metabolism , Pyridinium Compounds/pharmacology , Pyridinium Compounds/therapeutic use , Structure-Activity Relationship , Organophosphate Poisoning/drug therapy , Cholinesterase Reactivators/pharmacology , Cholinesterase Inhibitors/pharmacology
10.
BMJ Case Rep ; 17(2)2024 Feb 21.
Article En | MEDLINE | ID: mdl-38383128

Organophosphate poisoning is a common, under-reported cause of attempted and completed suicide worldwide. Following the resolution of the acute cholinergic syndrome, patients may develop respiratory muscle and proximal limb weakness, known as intermediate syndrome. A young man was brought to our rural hospital unconscious, in extremis, due to organophosphate pesticide poisoning. He developed atypical intermediate syndrome with global paralysis, persistent fasciculations and prolonged cholinergic symptoms, differing from the recognised presentation. He was intubated for fifteen days in our newly developed intensive care unit. Limited treatment options and the absence of blood gases, electrolyte testing, ECGs, invasive monitoring and imaging, in conjunction with regular disruptions to electricity and oxygen, and complications including seizures and pneumonia, all made this prolonged intubation an ambitious and challenging endeavour. We offer learning points for the acute physician and rural intensivist, and a summary of our reflections and hints for best care when adapting to a resource-limited setting.


Insecticides , Organophosphate Poisoning , Male , Humans , Organophosphate Poisoning/therapy , Zambia , Intensive Care Units , Cholinergic Agents
11.
Disaster Med Public Health Prep ; 18: e32, 2024 Feb 22.
Article En | MEDLINE | ID: mdl-38384185

Pralidoxime is the only oxime antidote to organophosphate poisoning stocked in the United Kingdom, produced by rational drug design in the 1950s. Typically, it is used alongside atropine, to reverse the effects of acetylcholinesterase inhibition. However, its efficacy has been questioned by recent meta-analyses of use treating attempted suicides in less economically developed countries, where organophosphate poisoning is more common. This policy analysis assesses the likely efficacy of pralidoxime in the United Kingdom, in scenarios largely different from those evaluated in meta-analyses. In all scenarios, the UK delay in antidote administration poses a major problem, as pralidoxime acts in a time-critical reactivation mechanism before "ageing" of acetylcholinesterase occurs. Additionally, changes in the organophosphates used today versus those pralidoxime was rationally designed to reverse, have reduced efficacy since the 1950s. Finally, the current dosage regimen may be insufficient. Therefore, one must re-evaluate our preparedness and approach to organophosphate poisoning in the United Kingdom.


Cholinesterase Reactivators , Organophosphate Poisoning , Pralidoxime Compounds , Humans , Antidotes/therapeutic use , Organophosphate Poisoning/drug therapy , Acetylcholinesterase/therapeutic use , Cholinesterase Reactivators/therapeutic use , Cholinesterase Reactivators/pharmacology
12.
J Pharmacol Exp Ther ; 388(2): 313-324, 2024 01 17.
Article En | MEDLINE | ID: mdl-37770202

Sex differences are common in human epilepsy. Although men are more susceptible to seizure than women, the mechanisms underlying sex-specific vulnerabilities to seizure are unclear. The organophosphate (OP) diisopropylfluorophosphate (DFP) is known to cause neurotoxicity and status epilepticus (SE), a serious neurologic condition that causes prolonged seizures and brain damage. Current therapies for OP poisoning and SE do not consider neuronal variations between male and female brains. Therefore, we investigated sex-dependent differences in electrographic seizure activity and neuronal injury using the DFP model of refractory SE in rats. Electroencephalogram recordings were used to monitor DFP-induced SE, and the extent of brain injury was determined using fluoro-jade-B staining to detect cellular necrosis. After DFP exposure, we observed striking sex-dependent differences in SE and seizure activity patterns as well as protective responses to midazolam treatment. Following acute DFP exposure, male animals displayed more severe SE with intense epileptiform spiking and greater mortality than females. In contrast, we observed significantly more injured cells and cellular necrosis in the hippocampus and other brain regions in females than in males. We also observed extensive neuronal injury in the somatosensory cortex of males. The anticonvulsant effect of midazolam against SE was limited in this model and found to be similar in males and females. However, unlike males, females exhibited substantially more protection against neuronal damage after midazolam treatment. Overall, these results demonstrate significant sex-dependent differences in DFP-induced refractory SE and neuronal damage patterns, suggesting that it may be possible to develop sex-specific neuroprotective strategies for OP intoxication and refractory SE. SIGNIFICANCE STATEMENT: Sex-dependent differences in neurotoxicity and status epilepticus (SE) are key biological variables after organophosphate (OP) exposure. Here, we investigated sex-dependent differences in SE and brain injury after acute diisopropylfluorophosphate exposure. Male rats had more severe SE and less survival than females, while females had more neuronal damage. Females had more neuroprotection to midazolam than males, while both sexes had similar but partial anticonvulsant effects. These findings suggest that a sex-specific therapeutic approach may prevent neurological complications of OP-induced SE.


Brain Injuries , Organophosphate Poisoning , Status Epilepticus , Humans , Female , Male , Rats , Animals , Benzodiazepines/pharmacology , Anticonvulsants/adverse effects , Midazolam/pharmacology , Isoflurophate/pharmacology , Organophosphates/pharmacology , Sex Characteristics , Rats, Sprague-Dawley , Status Epilepticus/chemically induced , Status Epilepticus/drug therapy , Seizures/chemically induced , Seizures/drug therapy , Brain , Organophosphate Poisoning/drug therapy , Brain Injuries/drug therapy , Necrosis/drug therapy
13.
J Pharmacol Exp Ther ; 388(2): 399-415, 2024 01 17.
Article En | MEDLINE | ID: mdl-38071567

Organophosphates (OPs) and nerve agents are potent neurotoxic compounds that cause seizures, status epilepticus (SE), brain injury, or death. There are persistent long-term neurologic and neurodegenerative effects that manifest months to years after the initial exposure. Current antidotes are ineffective in preventing these long-term neurobehavioral and neuropathological changes. Additionally, there are few effective neuroprotectants for mitigating the long-term effects of acute OP intoxication. We have pioneered neurosteroids as novel anticonvulsants and neuroprotectants for OP intoxication and seizures. In this study, we evaluated the efficacy of two novel synthetic, water-soluble neurosteroids, valaxanolone (VX) and lysaxanolone (LX), in combating the long-term behavioral and neuropathological impairments caused by acute OP intoxication and SE. Animals were exposed to the OP nerve agent surrogate diisopropylfluorophosphate (DFP) and were treated with VX or LX in addition to midazolam at 40 minutes postexposure. The extent of neurodegeneration, along with various behavioral and memory deficits, were assessed at 3 months postexposure. VX significantly reduced deficits of aggressive behavior, anxiety, memory, and depressive-like traits in control (DFP-exposed, midazolam-treated) animals; VX also significantly prevented the DFP-induced chronic loss of NeuN(+) principal neurons and PV(+) inhibitory neurons in the hippocampus and other regions. Additionally, VX-treated animals exhibited a reduced inflammatory response with decreased GFAP(+) astrogliosis and IBA1(+) microgliosis in the hippocampus, amygdala, and other regions. Similarly, LX showed significant improvement in behavioral and memory deficits, and reduced neurodegeneration and cellular neuroinflammation. Together, these results demonstrate the neuroprotectant effects of the novel synthetic neurosteroids in mitigating the long-term neurologic dysfunction and neurodegeneration associated with OP exposure. SIGNIFICANCE STATEMENT: Survivors of nerve agents and organophosphate (OP) exposures suffer from long-term neurological deficits. Currently, there is no specific drug therapy for mitigating the impact of OP exposure. However, novel synthetic neurosteroids that activate tonic inhibition provide a viable option for treating OP intoxication. The data from this study indicates the neuroprotective effects of synthetic, water-soluble neurosteroids for attenuation of long-term neurological deficits after OP intoxication. These findings establish valaxanolone and lysaxanolone as potent and efficacious neuroprotectants suitable for injectable dosing.


Nerve Agents , Neuroprotective Agents , Neurosteroids , Organophosphate Poisoning , Organothiophosphorus Compounds , Status Epilepticus , Rats , Animals , Neuroprotective Agents/pharmacology , Neuroprotective Agents/therapeutic use , Neurosteroids/therapeutic use , Isoflurophate/pharmacology , Midazolam/pharmacology , Neuroinflammatory Diseases , Brain , Nerve Agents/pharmacology , Rats, Sprague-Dawley , Status Epilepticus/chemically induced , Status Epilepticus/drug therapy , Status Epilepticus/pathology , Seizures/drug therapy , Organophosphate Poisoning/drug therapy , Organophosphates/pharmacology , Memory Disorders/pathology
14.
Chem Biol Interact ; 387: 110821, 2024 Jan 05.
Article En | MEDLINE | ID: mdl-38042398

Hypertension is the most important and well-known risk factor for cardiovascular disease (CVD). Recently, acute organophosphate (OP) poisoning has also been pointed as a CVD risk factor. Despite this evidence, no studies have contrasted the acute toxicosis and cardiovascular (CV) effects of OP poisoning under conditions of normotension and hypertension. In this work, adult male normotensive Wistar and Spontaneously Hypertensive rats (SHR) were intraperitoneally injected with saline or chlorpyrifos (CPF), an OP compound, monitored for acute toxicosis signs and 24-h survival. After poisoning, blood pressure, heart rate and ventilation were recorded, the Bezold-Jarisch Reflex (BJR), the Chemoreflex (CR) were chemically activated, as well as the cardiac autonomic tone (AUT) was assessed. Erythrocyte and brainstem acetylcholinesterase and plasmatic butyrylcholinesterase (BuChE) activities were measured as well as lipid peroxidation, advanced oxidation protein products (AOPP), nitrite/nitrate levels, expression of catalase, TNFα and angiotensin-I converting enzyme (ACE-1) within the brainstem. CPF induced a much more pronounced acute toxicosis and 33 % lethality in SHR. CPF poisoning impaired ventilation in SHR, the BJR reflex responses in Wistar rats, and the chemoreflex tachypneic response in both strains. CPF inhibited activity of cholinesterases in both strains, increased AOPP and nitrite/nitrate levels and expression of TNFα and ACE-1 in the brainstem of Wistar rats. Interestingly, SHR presented a reduced intrinsic BuChE activity, an important bioscavenger. Our findings show that, CPF at sublethal doses in normotensive rats lead to lethality and much more pronounced acute toxicity signs in the SHR. We also showed that cardiorespiratory reflexes were differentially impacted after CPF poisoning in both strains and that the cardiorespiratory disfunction seems to be associated with interference in cholinergic transmission, oxidative stress and inflammation. These results points to an increased susceptibility to acute toxicosis in hypertension, which may impose a significant risk to vulnerable populations.


Chlorpyrifos , Hypertension , Organophosphate Poisoning , Rats , Male , Animals , Chlorpyrifos/toxicity , Rats, Wistar , Acetylcholinesterase/metabolism , Butyrylcholinesterase , Nitrates , Nitrites , Advanced Oxidation Protein Products , Tumor Necrosis Factor-alpha , Hypertension/chemically induced , Rats, Inbred SHR
15.
J Pharmacol Exp Ther ; 388(2): 386-398, 2024 01 17.
Article En | MEDLINE | ID: mdl-38050069

Nerve agents and organophosphates (OP) are neurotoxic chemicals that induce acute seizures, status epilepticus (SE), and mortality. Long-term neurologic and neurodegenerative effects manifest months to years after OP exposure. Current benzodiazepine anticonvulsants are ineffective in preventing such long-term neurobehavioral and neuropathological changes. New and effective anticonvulsants are needed for OP intoxication, especially for mitigating the long-term sequelae after acute exposure. We developed neurosteroids as novel anticonvulsants and neuroprotectants in OP exposure models. In this study, we evaluated the long-term efficacy of novel synthetic neurosteroids in preventing the development of chronic epilepsy and hyperexcitable ictal events in a rat OP model of SE. Rats were exposed to the OP nerve agent surrogate diisopropylfluorophosphate (DFP), and the experimental groups were treated with the synthetic neurosteroid valaxanolone (VX) or lysaxanolone (LX) 40 minutes post-exposure in conjunction with midazolam. Video-electroencephalography was monitored for two months to assess spontaneous recurrent seizures (SRS), epileptiform discharges, interictal spikes, and high-frequency oscillations (HFOs). Within 60 days of DFP exposure, rats developed chronic epilepsy characterized by frequent SRS, epileptiform discharges, and HFOs. LX treatment was associated with a dose-dependent reduction of epilepsy occurrence and overall seizure burden with a significant decrease in SRS and epileptiform discharges. It also significantly reduced the occurrence of epileptic biomarkers of HFOs and interictal spikes, indicating potential disease-modifying activity. Similarly, the neurosteroid analog VX also significantly attenuated SRS, discharges, HFOs, and ictal events. These results demonstrate the long-term protective effects of synthetic neurosteroids in the OP-exposed post-SE model, indicating their disease-modifying potential to prevent epilepsy and ictal abnormalities. SIGNIFICANCE STATEMENT: The effects of nerve agents and organophosphate (OP) exposure are persistent, and survivors suffer from a number of devastating, chronic neurological dysfunctions. Currently, there is no specific therapy for preventing this disastrous impact of OP exposure. We propose synthetic neurosteroids that activate tonic inhibition provide viable options for preventing the long-term neurological effects of OP intoxication. The results from this study reveal the disease-modifying potential of two novel synthetic neurosteroids in preventing epileptogenesis and chronic epileptic seizures after OP-induced SE.


Epilepsy , Nerve Agents , Neurosteroids , Organophosphate Poisoning , Organothiophosphorus Compounds , Status Epilepticus , Rats , Animals , Neurosteroids/therapeutic use , Anticonvulsants/adverse effects , Organophosphates/adverse effects , Nerve Agents/adverse effects , Rats, Sprague-Dawley , Seizures/chemically induced , Seizures/drug therapy , Seizures/prevention & control , Status Epilepticus/chemically induced , Status Epilepticus/drug therapy , Epilepsy/drug therapy , Electroencephalography , Biomarkers
16.
J Pharmacol Exp Ther ; 388(2): 301-312, 2024 01 17.
Article En | MEDLINE | ID: mdl-37827702

Organophosphate (OP) poisoning can trigger cholinergic crisis, a life-threatening toxidrome that includes seizures and status epilepticus. These acute toxic responses are associated with persistent neuroinflammation and spontaneous recurrent seizures (SRS), also known as acquired epilepsy. Blood-brain barrier (BBB) impairment has recently been proposed as a pathogenic mechanism linking acute OP intoxication to chronic adverse neurologic outcomes. In this review, we briefly describe the cellular and molecular components of the BBB, review evidence of altered BBB integrity following acute OP intoxication, and discuss potential mechanisms by which acute OP intoxication may promote BBB dysfunction. We highlight the complex interplay between neuroinflammation and BBB dysfunction that suggests a positive feedforward interaction. Lastly, we examine research from diverse models and disease states that suggest mechanisms by which loss of BBB integrity may contribute to epileptogenic processes. Collectively, the literature identifies BBB impairment as a convergent mechanism of neurologic disease and justifies further mechanistic research into how acute OP intoxication causes BBB impairment and its role in the pathogenesis of SRS and potentially other long-term neurologic sequelae. Such research is critical for evaluating BBB stabilization as a neuroprotective strategy for mitigating OP-induced epilepsy and possibly seizure disorders of other etiologies. SIGNIFICANCE STATEMENT: Clinical and preclinical studies support a link between blood-brain barrier (BBB) dysfunction and epileptogenesis; however, a causal relationship has been difficult to prove. Mechanistic studies to delineate relationships between BBB dysfunction and epilepsy may provide novel insights into BBB stabilization as a neuroprotective strategy for mitigating epilepsy resulting from acute organophosphate (OP) intoxication and non-OP causes and potentially other adverse neurological conditions associated with acute OP intoxication, such as cognitive impairment.


Epilepsy , Organophosphate Poisoning , Rats , Animals , Humans , Blood-Brain Barrier , Brain/pathology , Neuroinflammatory Diseases , Organophosphates , Rats, Sprague-Dawley , Epilepsy/chemically induced , Acute Disease
18.
Toxicol Lett ; 392: 75-83, 2024 Feb.
Article En | MEDLINE | ID: mdl-38160862

Precision-cut lung slices (PCLS) are a suitable model for analyzing the acetylcholinesterase (AChE) activity and subsequent effects after exposure to organophosphorus (OP) compounds. In this study, the AChE activity was determined in intact PCLS for the first time. Since the current standard therapy for OP poisoning (atropine + oxime + benzodiazepine) lacks efficiency, reliable models to study novel therapeutic substances are needed. Models should depict pathophysiological mechanisms and help to evaluate the beneficial effects of new therapeutics. Here PCLS were exposed to three organophosphorus nerve agents (OPNAs): sarin (GB), cyclosarin (GF), and VX. They were then treated with three reactivators: HI-6, obidoxime (OBI), and a non-oxime (NOX-6). The endpoints investigated in this study were the AChE activity and the airway area (AA) change. OPNA exposure led to very low residual AChE activities. Depending on the reactivator properties different AChE reactivation results were measured. GB-inhibited PCLS-AChE was reactivated best, followed by VX and GF. To substantiate these findings and to understand the connection between the molecular and the functional levels in a more profound way the results were correlated to the AA changes. These investigations underline the importance of reactivator use and point to the possibilities for future improvements in the treatment of OPNA-exposed victims.


Cholinesterase Reactivators , Organophosphate Poisoning , Organothiophosphorus Compounds , Humans , Acetylcholinesterase , Cholinesterase Reactivators/pharmacology , Cholinesterase Reactivators/therapeutic use , Cholinesterase Inhibitors , Organophosphorus Compounds/toxicity , Oximes/pharmacology , Oximes/therapeutic use , Organophosphate Poisoning/drug therapy , Lung
19.
Spinal Cord Ser Cases ; 9(1): 54, 2023 11 04.
Article En | MEDLINE | ID: mdl-37925431

INTRODUCTION: Organophosphorus compounds (OPC) are one of the most commonly used pesticides worldwide and are often misused for suicidal poisoning due to their easy availability. Acute manifestations and management of organophosphorus (OP) poisoning have been reported several times. Organophosphorus-induced delayed neurotoxicity (OPIDN) is a rare delayed presentation of OP poisoning that involves central-peripheral distal axonopathy. CASE PRESENTATION: In this study, we report two cases of OPIDN developed after a few weeks of OP poisoning. Clinical features, electrodiagnostic study findings, and rehabilitative measures adopted for the patients and their follow-up have been described in the report. DISCUSSION: Organophosphorus (OP) poisoning may rarely produce features of delayed neurotoxicity, which may gradually appear after acute cholinergic symptoms. This report shows the importance of considering the delayed presentation of possible OPC toxicity in patients with neurological symptoms and a history of OPC exposure.


Neurotoxicity Syndromes , Organophosphate Poisoning , Humans , Organophosphate Poisoning/complications , Organophosphate Poisoning/diagnosis , Organophosphorus Compounds/toxicity , Neurotoxicity Syndromes/diagnosis , Neurotoxicity Syndromes/etiology
20.
Article En | MEDLINE | ID: mdl-37943072

OBJECTIVE: To discuss the clinical presentation and successful treatment of a suspected case of intermediate syndrome due to organophosphate (OP) poisoning in a dog. CASE SUMMARY: Two dogs presented with acute cholinergic signs after ingesting an OP insecticide containing 50% acephate. Clinical signs consistent with acute cholinergic crisis resolved in both dogs within 24 hours postingestion. One dog developed an onset of neurological signs consistent with intermediate syndrome approximately 24 hours postingestion. This patient's clinical signs resolved with the use of pralidoxime chloride. NEW OR UNIQUE INFORMATION PROVIDED: OP poisoning most commonly presents as an acute cholinergic crisis, with rare instances of animals developing intermediate syndrome. Few reports of successful treatment and recovery from intermediate syndrome exist in the veterinary literature, particularly with instances in which 2 dogs within the same exposure setting were treated for acute cholinergic signs and only 1 progressed to an intermediate syndrome. This report also highlights the importance of early intervention with pralidoxime chloride prior to the onset of aging.


Dog Diseases , Insecticides , Organophosphate Poisoning , Poisoning , Dogs , Animals , Organophosphate Poisoning/drug therapy , Organophosphate Poisoning/veterinary , Pralidoxime Compounds/therapeutic use , Insecticides/therapeutic use , Cholinergic Agents/therapeutic use , Poisoning/drug therapy , Poisoning/veterinary , Dog Diseases/chemically induced , Dog Diseases/drug therapy
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