Death J E, Coates D
J Clin Pathol. 1979 Feb;32(2):148-52. doi: 10.1136/jcp.32.2.148.
The effect of pH on the activity of buffered sodium hypochlorite solution, and a buffered methanol/sodium hypochlorite mixture, against Bacillus subtilis spores was investigated. The best results, considering both sporicidal activity and stability, were achieved in the pH range 7.6--8.1. The sporicidal activity and stability of five alcohol/hypochlorite mixtures, each containing a different alcohol and buffered to pH 7.6 and of hypochlorite alone buffered to pH 7.6, were compared. The mixtures were marginally more sporicidal than hypochlorite alone when fresh but were much less stable. An unbuffered methanol/hypochlorite mixture, a methanol/hypochlorite mixture buffered to pH 7.6, and hypochlorite alond buffered to pH 7.6 were all found to be effective against six vegetative organisms and spores of B. subtilis and Clostridium sporogenes. By buffering alcohol/hypochlorite mixtures or hypochlorite solution alone in the pH range 7.6--8.1, high sporicidal activity can be achieved with low concentrations of alcohol and hypochlorite. Such formulations show promise for the disinfection of heat-sensitive medical equipment.
研究了pH对缓冲次氯酸钠溶液以及缓冲甲醇/次氯酸钠混合物针对枯草芽孢杆菌孢子活性的影响。综合考虑杀孢子活性和稳定性,在pH值7.6至8.1范围内可获得最佳结果。比较了五种醇/次氯酸盐混合物(每种含有不同的醇并缓冲至pH 7.6)以及单独缓冲至pH 7.6的次氯酸盐的杀孢子活性和稳定性。新鲜时,这些混合物的杀孢子能力略高于单独的次氯酸盐,但稳定性要低得多。已发现,未缓冲的甲醇/次氯酸盐混合物、缓冲至pH 7.6的甲醇/次氯酸盐混合物以及单独缓冲至pH 7.6的次氯酸盐对六种营养型微生物以及枯草芽孢杆菌和产芽孢梭菌的孢子均有效。通过将醇/次氯酸盐混合物或单独的次氯酸盐溶液缓冲在pH值7.6至8.1范围内,低浓度的醇和次氯酸盐即可实现高杀孢子活性。此类配方在热敏医疗设备消毒方面显示出应用前景。