Lieske C N, Clark C R, Zoeffel L D, von Tersch R L, Lowe J R, Smith C D, Broomfield C A, Baskin S I, Maxwell D M
US Army Medical Research Institute of Chemical Defense, Aberdeen Proving Ground, MD 21010-5425, USA.
J Appl Toxicol. 1996 Mar-Apr;16(2):171-5. doi: 10.1002/(SICI)1099-1263(199603)16:2<171::AID-JAT327>3.0.CO;2-R.
As part of our studies directed at new treatments for cyanide poisoning we examined the effect of temperature on both the non-catalyzed and the albumin-catalyzed reactions of cyanide with a colloidal suspension of elemental sulfur (CSES). Using saturated sulfur solutions prepared in two solvents, pyridine (PY) and methyl cellosolve (MC), the reactions were studied at 15.0, 25.0, 30.0 and 37.5 degrees C. For all the cyanolysis reactions (non-catalyzed and albumin-catalyzed) there is an enhancement of reaction rate when the organic solvent for the sulfur is MC. Irrespective of the solvent for the CSES, the non-catalyzed reactions gave linear Arrhenius plots (PY, correlation coefficient = 0.998; MC, correlation coefficient = 0.997). In each case the entropy of activation was positive (14.1 cal K-1 mol-1 for PY and 56.4 cal K-1 mol-1 for MC). In contrast with these results the albumin-catalyzed reactions generated non-linear Arrhenius plots and negative entropies of activation. Non-linear plots were observed with the three albumins studied: human serum albumin, heat-shock bovine serum albumin and fatty acid-free bovine serum albumin. The non-linear plots are the result of a more complex reaction sequence than a simple cyanolysis reaction.
作为我们针对氰化物中毒新疗法研究的一部分,我们研究了温度对氰化物与元素硫胶体悬浮液(CSES)的非催化反应及白蛋白催化反应的影响。使用在吡啶(PY)和甲基溶纤剂(MC)这两种溶剂中制备的饱和硫溶液,在15.0、25.0、30.0和37.5摄氏度下研究了这些反应。对于所有的氰解反应(非催化和白蛋白催化),当硫的有机溶剂为MC时,反应速率会提高。无论CSES的溶剂是什么,非催化反应都给出线性的阿伦尼乌斯图(PY,相关系数 = 0.998;MC,相关系数 = 0.997)。在每种情况下,活化熵都是正值(PY为14.1 cal K⁻¹ mol⁻¹,MC为56.4 cal K⁻¹ mol⁻¹)。与这些结果相反,白蛋白催化反应产生非线性的阿伦尼乌斯图和负的活化熵。在所研究的三种白蛋白(人血清白蛋白、热休克牛血清白蛋白和无脂肪酸牛血清白蛋白)中都观察到了非线性图。这些非线性图是反应序列比简单氰解反应更复杂的结果。