• 제목/요약/키워드: mercaptobenzothiazole

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마늘 추출물의 약리적 특성 및 분석 (Pharmacetical Characteristics and Analysis of Garlic Extract)

  • 성기천
    • 한국응용과학기술학회지
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    • 제24권3호
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    • pp.301-308
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    • 2007
  • From the experiment result on pharmacetical characteristics and analysis of Garlic extract, some conclusions were obtained as follows. From the results on extract experiment of Garlic, extraction ratio was about 6.0%, and after dried with dry oven from Garlic extract, it obtained about 50%-Garlic extract of solid state. From results on antimicrobial experiment of Garlic extract, number of staphylococcus and fungus in microbe decreased more and more according to time passage. This phenomenon showed that Garlic extract keeps antimicrobial effect. From results on antioxidation experiment of Garlic extract, DPPH scavenging activity of free radical showed that Garlic extract appears more remarkable reduction ability than reference samples. This phenomenon means that antioxidation of Garlic extract appears higher than Vitamin-C and BHA. From results on instrument analysis, inorganic components of K, Na, Ca, Si, Mg, Zn etcs from Garlic extract were detected with ICP/OES and the fatty and aromatic components of trimethyl sulfide, diallyl disulfide, diallyl trisulfide, 2-mercaptobenzothiazole etcs from Garlic extract were detected with GC/MS.

KINETICS AND MECHANISM OF THE REACTION OF 2-MERCAPTOBENZOTHIAZOLE WITH N-(CYCLOHEXYLTHIO) PHTHALIMIDE AND RELATED COMPOUNDS

  • Son, P.N.;Andrews, K.E.;Schooley, A.T.
    • Elastomers and Composites
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    • 제13권3호
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    • pp.197-206
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    • 1978
  • 반응속도면(反應速度面)에서의 동력학적(動力學的) 연구결과(硏究結果)에 의(依)하면 2-메르캅토벤쪼티아졸(MBT)은 N-t-부틸-벤쪼티아졸썰펜아미드(BBTS) 또는 2-(4-몰폴리노티오) 벤쪼티아졸(OBTS)과 같은 가황촉진제(加黃促進劑)들 보다는 N-(싸이클로헥실티오)프탈이미드(CPT)가 훨신 더 빨리 반응(反應)한다는 사실(事實)을 탐지(探知)하였다. 또한 우수(優秀)한 가황지연제(加黃遲延劑)는 MBT와 급속(急速)히 반응(反應)하여야 하지마는 실소(室素)와 황(黃)과의 화학결합(化學結合)이 너무 약(弱)하여 내열안정성(耐熱安定性)이 없음으로 아무리 MBT와 빠른 속도(速度)로 반응(反應)하여도 좋은 가황(加黃)지연제가 될 수는 없다. 예를들면 N-(싸이클로헥실티오-O-벤쪼의 썰펜이미드(CTBS))는 CTP보다 더 빨리 MBT와 반응(反應)하지만 열안정성(熱安定性)이 부족(不足)하여 가황(加黃)지연제로서는 CTB 보다 좋지 못하다.

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Ab Initio and Experimental Studies on Dibenzothiazyl-Disulfide

  • Jian, Fang-Fang;Zhang, Ke-Jie;Zhao, Pu-Su;Zheng, Jian
    • Bulletin of the Korean Chemical Society
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    • 제27권7호
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    • pp.1048-1052
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    • 2006
  • Ab initio calculations of the structure, atomic charges and natural bond orbital (NBO) have been performed at HF/6-311G** and B3LYP/6-311G** levels for the title compound of dibenzothiazyl-disulfide. The calculated results show that the two nitrogen atoms have the biggest negative charges and they are the potential sites to react with the metallic ions, which make the title compound become a di-dentate ligand. Vibrational frequencies of the title compound have been obtained and compared with the experimental value and the comparison indicates that B3LYP/6-311G** level is better than HF/6-311G** level to predict the vibrational frequencies for the system studied here. For the title compound, electronic absorption spectra calculated by time?ependent density functional theory (TD-DFT) are more accurate than Hartree-Focksingle-excitation CI (CI-Singles) method. NBO analyses show that the electronic transitions are mainly derived from the contribution of bands $\pi\rightarrow\pi^{*}$. Thermodynamic calculated results show that the formation of the title compound from 2-mercaptobenzothiazole is a spontaneous process at room temperature with the change of free Gibbs being negative value.

Benzoazole계 화합물이 glutathione-S-transferases의 유도발현에 미치는 영향 (Expression of Rat Hepatic Glutathione-S-Transferases by Benzoazoles)

  • 서경원;김연정;김태완;김효정;조민경;김상건
    • Environmental Analysis Health and Toxicology
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    • 제13권3_4호
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    • pp.55-61
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    • 1998
  • Glutathione-S-transferases (GSTs) detoxify electrophilic xenobiotics and reactive metabolites. Recently benzene-fused heterocycles have been shown to increase the total amount of hepatic GSTs in rats. Primarily this study aimed to determine the induction of GSTs by benzoazoles (BAs) including benzoxazole (BX), 2-methylbenzoxazole (M-BX), 2,5-dimethyl benzoxazole (D-BX), benzothiazole (BT), aminobenzothiazole (A-BT) and 2-mercaptobenzothiazole (M-BT) in rats. Hepatic cytosol and poly(A)$^+$ mRNA were prepared from rats after oral administration of BX, BT, M-BX, D-BX, A-BT and M-BT for 5 consecutive days at doses of 1 mmol/kg. Western immunoblot and northern blot analysis were conducted with rabbit anti-GST Ya, Yb$_1$, Yb$_2$, Yc antibodies and cDNA probes containing = 500 bps in the specific coding regions of Ya, Yb$_1$, Yb$_2$, Yc$_1$, and Yc$_2$, respectively. All BAs increased the amount of enzymes and mRNA levels of GSTs. BT was the most effective inducer of GSTs among the compounds examined in this study. Although A-BT and M-BT, the derivatives of BT, induced GSTs, these chemicals had lesser effect on induction of GSTs than BT. The derivatives of BX also induced less GSTs than the parent compound and the addition of methyl group to the benzene ring of BX reduced the induction of GSTs. BAs had better inductive effects on the class $\alpha$(Ya, Yc) than class $\mu$ GSTs (Yb$_1$, Yb$_2$). BAs enhanced mRNA levels of GSTs in parallel with the protein levels. These results indicate that 1) most of BAs induced various isozymes of GSTs, 2) the induction of GSTs appears to be correlated with the chemical structure of the derivatives, and 3) the expression of GST by BAs is presumably under the transcriptional regulation.

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1,3-티아졸리딘 술폭시드의 입체구조에 관한 연구 (A Study on the Stereochemistry of 1,3-Thiazolidine)

  • 마혜덕;박신자;한호규
    • 대한화학회지
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    • 제37권1호
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    • pp.119-130
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    • 1993
  • 한 분자 내에 3개의 chiral 중심이 있는 1,3-티아졸리딘 술록시드 1의 입체화학을 중수소치환반응 및 trapping 반응을 통해 밝혔다. 3-아세틸-1,3-티아졸리딘 5의 부분이성질체를 분리한 다음 6과 8을 각각 술록시드로 산화시켜 상응하는 $\alpha$-시스 10, $\alpha$-트랜스 11과 $\beta$ -시스 12, $\beta$ -트랜스이성체 13을 얻었다. 술폭시드 10은 중성 조건하의 환류하는 벤젠 또는 톨루엔 용액 중에서 열역학적으로 보다 안정한 13으로 이성질화하였다. 중수소치환반응에 의해서 술폭시드 13과 술폭시드 11의 2-메틸기의 수소원자는 중수소로 치환되었다. 술폭시드 10과 12로부터 sigmatropic 전위에 의해서 생성된 중간체 슬페닌산 25 및 26은 2-머캡토벤조티아졸(2-MBT)에 의하여 trap되어 디술피드 27 및 28로 전환되었으나 동일한 반응조건하에서 술폭시드 11 및 13은 환팽창 생성물 디히드로-1,4-티아진 29로 전환되었다. 산촉매 존재하에서 술폭시드 10, 11, 12는 술폭시드 13을 통해서 디히드로-1,4-티아진 29로 정량적으로 전환되었다. 술폭시드들의 이성질화 및 29의 생성메카니즘도 기술하였다.

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