• Title/Summary/Keyword: soman

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Test of Degradation of Soman and Sarin Gas by Organophosphorus Acid Anhydrolase and Applicability of the Enzyme to the Development of Nerve Agent Decontaminant (신경작용제 분해효소의 Soman 및 Sarin Gas 분해 능력 측정 및 제독응용 가능성)

  • 김석찬;이남택
    • Journal of the Korea Institute of Military Science and Technology
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    • v.2 no.2
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    • pp.140-147
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    • 1999
  • A gene expressing organophosphorus acid (OPA) anhydrolases have been cloned from Alteromonas haloplanktis strain and expressed in bacterial strain BL21. Crude extract was prepared from the transformed bacterial strain BL2l and used in testing its degrading capability of real nerve gas, soman and sarin. Within 1 minute after the start of the reaction, nearly 65% of the soman added to the reactant(3mM) was degraded by adding 1 mg of the crude extract enzyme(20.0 Unit $mg^-{1}$ crude protein). In 6 minutes, the reaction reached at its steady state, which indicates that soman was completely degraded by that time. In the case of sarin, the degradation efficiency was observed to be about 0.7 times of that of soman. If the specific activity of OPAA is enhanced by both increased expression efficiency and purification, OPAA seems to be applied for the development of decontaminant of skin, especially of eye.

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AGE AND GENDER DIFFERENCES IN ACUTE TOXICITY AND BLOOD-BRAIN BARRIER OPENING INDUCED BY SOMAN

  • Kim, Yun-Bae
    • Proceedings of the Korean Society of Toxicology Conference
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    • 2002.05a
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    • pp.112-112
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    • 2002
  • The age- and gender-related differences in acute toxicity and opening of blood-brain barrier induced by an organophosphate soman were investigated in rats. To assess acute toxicity, young (7 weeks old) and old (12 weeks old) male and female rats were subcutaneously administered with various dose levels of soman.(omitted)

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Antidotal and Neuroprotective Efficacies of a Prophylactic Patch against Sarin and Soman Poisonings in Guinea Pigs (신경작용제 사린 및 소만 중독에 대한 기니픽에서의 예방패치의 해독 및 뇌보호 효능)

  • Song, Youngjo
    • Journal of the Korea Institute of Military Science and Technology
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    • v.24 no.1
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    • pp.144-150
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    • 2021
  • This study was designed to evaluate the prophylactic efficacy of a combinational patch system containing physostigmine and procyclidine against sarin and soman using guinea pig. The median lethal dose values of two nerve agents were calculated by a probit analysis of deaths occurring within 24 h. In this study, the values of median lethal dose of sarin and soman were determined to be 33.0 and 26.7 ㎍/kg in guinea-pigs, respectively. The guinea pigs treated with a prophylactic patch(4×5 ㎠) for 24 h were 100 % protected against a challenge of 1.5 LD50. The combinational KMARK-1(atropine and 2-PAM) and prophylactic patch were more effective than a single KMARK-1, a combination of pyridostigmine and KMARK-1 significantly. Epileptiform seizures in the guinea pigs treated with the combinational antidotes led to neuropathological changes, in comparison with intact feature of brain of the animal treated with the patch.

Protective Effect of Combinational Antidotes Composed of Physostigmine and Procyclidine Against Nerve-agent Poisoning

  • Kim, Yun-Bae;Cheon, Ki-Cheol;Hur, Gyeung-Haeng;Phi, Taek-San;Kim, Jee-Cheon;Deasik Hang
    • Toxicological Research
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    • v.16 no.3
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    • pp.195-200
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    • 2000
  • Antidotal efficacy of physostigmine plus procyclidine, the combinational prophylactics for organophosphate poisoning, was evaluated in rats and guinea pigs. To assess the dose-response relation-ship in rats, various doses (0.3-6.0mg/kg) of procyclidine in combination with a fixed dose (0.1mg/kg) of physostigmine were pretreated subcutaneously 30 min prior to subcutaneous exposure to nerve-agents. Physostigmine alone exerted protection ratios of 2.44, 1.20, 1.50, 1.50 and 2.20 folds for tabun, sarin, soman, cyclosarin and V-agent, respectively. Interestingly, coadmnistration of procyclidine with physostigmine exhibited remarkable synergistic effects in a dose-dependent manner, leading to 4.00~8.00 folds for tabun, 2.15-8.50 folds for sarin, 1.92~507 folds for so man, 2.15~2.90 folds for cyclosarin, and 2.71~10.50 folds for V-agent. On the contrary, a low effect (l.65 fold) was achieved with the traditional antidotes atropine (17.4 mg/kg) plus 2-pralidoxime (30 mg/kg) treated immediately after soman poisoning. Noteworthy, the combinational prophylactics markedly potentiated the effect of atropine plus 2-pralidoxime to 6.13 and 12.27 folds with 1.0 and 3.0 mg/kg of procyclidine, respectively, against soman poisoning. In guinea pigs, the physostigmine plus procyclidine prophylactics exerted protective effects of 3.00~4.70 folds against soman intoxcation, which were much higher at low doses (0.3~1.0 mg/kg) of procyclidine than those in rats. Taken together, it is proposed that the combinational prophylactics composed oj physostigmine and procyclidine could be a promising antidote regimen for the poisoning with organophosphates possessing diverse properties.

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A Study on the Anticonvulsant Effects of Centrally-Acting Drugs by Measuring Electroencephalography of Experimental Animals Intoxicated with Organophosphate Compounds (실험동물의 뇌파 측정에 의한 중추약물의 항경련효과 연구)

  • Cho, Young;Kim, Wang-Soo;Hur, Gyeung-Haeng
    • Journal of the Korea Institute of Military Science and Technology
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    • v.16 no.2
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    • pp.218-224
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    • 2013
  • Organophosphorus compounds are irreversible inhibitors of cholinesterase enzyme. Exposure causes a progression of toxic signs, including hypersecretion, tremor, convulsion, respiratory distress, epileptiform seizure, brain injuries and death. To protect brain injuries, administration of diazepam as a neuroprotectant is now considered essential for severely exposed nerve agent casualties. However, studies have shown diazepam to provide less than total protection against the neuropathological consequences of nerve agent exposure. In this context, extensive studies have been carried out to find out effective alternative drugs to protect brain from epileptiform seizures induced by organophosphate compounds intoxication. It has been reported that a combination of carbamate and anticholinergic or antiglutamatergic can be a very effective medical countermeasure in dealing with the threat of organophosphorous poisoning. In this study, experimental animals including rats and guinea pigs were implanted with microelectrodes on their brain sculls, and treated with various centrally acting drugs such as physostigmine and procyclidine prior to soman challenge, and then its electroencephalography(ECoG) was monitored to see anticonvulsant effects of the drugs. It was found that seizure activities in ECoG were not always in proportion to clinical signs induced by soman intoxication, and that combinative pretreatment with physostigmine plus procyclidine effectively stopped the seizures induced by organophosphorous poisoning.

Efficacy of Physostigmine and Procyclidine as Combinational Prophylactics of Organophosphate Poisoning (Physostigmine과 procyclidine으로 구성된 복합예방제의 유기인제 해독효능)

  • Hur, Gyeung-Haeng;Choen, Ki-Cheol;Phi, Taek-San;Kim, Jae-Cheon;Hong, Dea-Sik;Park, Hoon;Jung, Chang-Hee;Lee, Yong-Han;Kim, Yun-Bae
    • Biomolecules & Therapeutics
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    • v.9 no.1
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    • pp.33-39
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    • 2001
  • Antidotal efficacy of combinational prophylactics composed of physostigmine plus procyclidine, alone or in combination with antidotes such as atropine plus 2-pralidoxime or atropine plus HI-6, was evaluated in rats. Physostigmine (0.1 mg/kg) plus procyclidine (3 mg/kg), pretreated subcutaneously 30 min prior to subcutaneous exposure to organophosphates of militarily importance, exerted protection ratios of 7.2, 6.5, 4.0, 2.9 and 8.0 fold for tabun, saris, soman, cyclosarin and V-agent, respectively. In comparison, low effects (1.7 fold for soman and 1.3 fold for cyclosarin) were achieved with the traditional antidotes atropine (17.4 mg/kg) plus 2-pralidoxime (30 mg/kg) administered intramuscularly immediately after organophosphate, in contrast to high effects (5.5 fold for soman and 160.0 fold for cyclosarin) with atropine (17.4 mg/kg) plus HI-6 (125 mg/kg), although the protection ratio markedly decreased when treatment of antidotes was delayed. Note- worthy, the combinational prophylactics markedly potentiated the effects of antidotes to higher than 5.0 fold in all cases. In addition, the combinational prophylactics fully prevented the seizures and excitotoxic brain injuries induced by a high dose (100 mg/kg, 1.3 LD$_{50}$) of soman. Taken together, it is suggested that the prophylactics composed of physostigmine and procyclidine, in combination with posttreatment antidotes, could be a promising regimen for the prevention of lethality, seizures and brain injuries induced by organophosphates possessing diverse properties.s.

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A Study on the Synthesis of bis-IBA Derivatives and their Catalytic Effects on the Hydrolysis Reaction of Nerve Agents (Bis-IBA 유도체의 합성 및 신경작용제 가수분해 촉매 효과 연구)

  • 양일우;강덕구
    • Journal of the Korea Institute of Military Science and Technology
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    • v.2 no.1
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    • pp.73-81
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    • 1999
  • Four bis-iodosobenzoic acid derivatives have been synthesizd in 5 steps following literature methods from 5-hydroxyantranilic acid; 1) diazotization and iodination, 2) acid protection, 3) tosylate substitution, 4) acid deprotection, 5) oxidation of iodo-substituent to iodoso group. Catalytic effects of new 5,5'-tri-, tetra-, deca-, polyethyleneglycoxy- bis(2-iodosobenzoic acid) on hydrolysis reactions of PNPDPP(p-nitrophenyl diphenyl phosphate), sarin and soman have been measured to determine the role of ethyleneglycoxy substituents as phase transfer catalysts. At $25{\pm}0.2^{\circ}C$, pH 8.0, and cetyltrimethyl ammonium chloride(CTACl) micelle solution condition, bis-IBA derivatives hydrolyzes PNPDPP with maximum pseudo-first order rate constant($K_{obsd}^{max}$) of 0.32035 ~ 0.13659 $sec^{-1}$, which corresponds to 2~18 times rate increase than those of unsubstituted o-IBA[iodosobenzoate($K_{obsd}^{max}=0.0645sec^{-1}$), iodoxybenzoate ($K_{obsd}^{max}$ = $0.0178 sec^{-1}$)]. At the similar condition for PNPDPP hydrolysis, bis-IBA derivatives also act as efficient catalysts for hydrolytic cleavage of nerve agents such as sarin and soman. Hydrolysis rate constant with 5,5'-polyethyleneglycoxy- bis(2-iodosobenzoic acid) shows 7 times increase than that of simple 5-hydroxy-2-iodosobenzoic acid.

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A Study on the Hydrolysis of Sarin and Soman by Merrifield-Type Diaminatedpolystyrene-Cu (II) Heterogeneous Polymers (Merrifield-Type Diaminatedpolystyrene-Cu (II) 불균일 촉매에 의한 Sarin과 Soman 분해반응 연구)

  • 정우영;계영식
    • Journal of the Korea Institute of Military Science and Technology
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    • v.3 no.1
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    • pp.164-175
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    • 2000
  • Three compounds of Cu(II)-loaded N,N,N'-trimethylethylenediaminated Merrifield-type polymers were synthesized with yields higher than 80%, and the hydrolysis reaction rates of O-isopropylmethyl-phosphonofluoridate(GB) and O-pinacolylmethylphosphonofluoridate (GD) catalyzed by them have been surveyed. GB and GD hydrolysis by Cu(II)-loaded polymers occurs via intermediate complex mechanism where rapid equilibrium to form intermediate complex between substrate and Cu(II)-loaded polymers($K_f$) is followed by rate determining hydrolysis step($k_1$). The measured activation parameters for $k_1$ are ${\Delta}H^{\ddag}$ : $17.75{\pm}0.98kJ/mol$ ${\Delta}S^{\ddag}$ / : $-218.42{\pm}3.35J/mol$ K, $E^{\circ}_a$ : $20.22{\pm}0.98kJ/mo1$ for GB and ${\Delta}H^{\ddag}$ / : $11.16{\pm}1.15kJ/mol,$${\Delta}S^{\ddag}$ /: $-258.57{\pm}3.93J/mol$ K, $E^{\circ}_a$ : $13.64{\pm}1.15 kJ/mol$ for GD. Standard enthalpy/entropy changes corresponding to the intermediate complex formation constant $K_f$ are ${\Delta}H^{\circ}$ : $37.05{\pm}2.19 kJ/mo1,$$ {\Delta}S^{\circ}$ : $163.12{\pm}7.49 J/mol$ K and ${\Delta}H^{\circ}$ : 418.59{\pm}2.04 kJ/mol,$ ${\Delta}S^{\circ}$ : 4111.92{\pm}6.98 J/mol$ K for GB and GD, respectively, The electron push-pull mechanism by Cu(II)-loaded polymers lowers the P-F bond breaking energy(~400 kJ/mol) to less than 1/20 compared to the case in which no Cu(II)-loaded resin presents. Analysis of $K_f$ and 4k_1$ over pH=6.5~8.0 range suggest that the GB and GD hydrolysis occurs intramolecularily with $pK_a$ =7.29 for ligated $H_2O$ and $t_{1/2}$=36.9 sec, $pK_a$ = 7.06 and $t_{1/2}$=177.7 sec for GB and GD, respectively.

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Study on Nutritive Values of Whole Crop Barley Varieties Grown in a Paddy Field (논토양에서 재배한 청보리 품종의 사료가치 비교 연구)

  • Lee, Sang Moo;Kim, Eun Joong
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.33 no.1
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    • pp.30-38
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    • 2013
  • This study was carried out to investigate the growth characteristics, yield, chemical compositions and nutritive yield of whole crop barley varieties harvested in a paddy field. The experimental design was arranged in a randomized block design with three replications. The treatments consisted of five whole crop barley varieties (Yuyeon, Youngyang, Wooho, Dami, Soman). The planting date was on 21 October 2009 and the samples were harvested on 21 May 2010. Dry matter yield was higher in Youngyang and Dami than other varieties (p<0.05). Crude protein, crude fat, crude ash, ADF and TDN were not significantly different. Crude fiber was the highest at Dami (31.4%), and Youngyang (31.4%) exhibited the lowest crude fiber compared to other varieties (p<0.05). NDF was higher in the order of Wooho > Dami > Soman > Yuyeon > Youngyang (p<0.05). Total mineral content was higher in the order of Youngyang > Wooho > Dami > Soman > Yuyeon (p<0.05). The contents of both essential and non-essential amino acids were not different among whole crop barley varieties. Yields of crude protein was the highest in Wooho (p<0.05), and yields of mineral, amino acid, free sugar and TDN were the highest in Youngyang. Based on the results from this study, it can be suggested that Youngyang and Wooho showed to have higher productivity and high nutritive values compared to other varieties.