Hamouda T, Hayes M M, Cao Z, Tonda R, Johnson K, Wright D C, Brisker J, Baker J R
Center for Biologic Nanotechnology, Department of Medicine, University of Michigan Medical School, Ann Arbor, MI 48109-0648, USA.
J Infect Dis. 1999 Dec;180(6):1939-49. doi: 10.1086/315124.
Two nontoxic, antimicrobial nanoemulsions, BCTP and BCTP 401, have been developed. These emulsions are composed of detergents and oils in 80% water. BCTP diluted up to 1:1000 inactivated>90% of Bacillus anthracis spores in 4 h and was also sporicidal against three other Bacillus species. This sporicidal activity is due to disruption of the spore coat after initiation of germination without complete outgrowth. BCTP 401 diluted 1:1000 had greater activity than BCTP against Bacillus spores and had an onset of action of <30 min. Mixing BCTP or BCTP 401 with Bacillus cereus prior to subcutaneous injection in mice reduced the resulting skin lesion by 99%. Wound irrigation with BCTP 1 h after spore inoculation yielded a 98% reduction in skin lesion size, and mortality was reduced 3-fold. These nanoemulsion formulas are stable, easily dispersed, nonirritant, and nontoxic compared with other available sporicidal agents.
已经开发出两种无毒抗菌纳米乳液,即BCTP和BCTP 401。这些乳液由洗涤剂和油在80%的水中组成。BCTP稀释至1:1000在4小时内可使>90%的炭疽芽孢杆菌孢子失活,并且对其他三种芽孢杆菌也具有杀孢子活性。这种杀孢子活性是由于在萌发开始后芽孢外壳被破坏但没有完全生长。BCTP 401稀释1:1000对芽孢杆菌孢子的活性比BCTP更强,且作用起效时间<30分钟。在小鼠皮下注射前将BCTP或BCTP 401与蜡样芽孢杆菌混合,可使产生的皮肤损伤减少99%。在孢子接种后1小时用BCTP冲洗伤口,皮肤损伤大小减少98%,死亡率降低3倍。与其他现有的杀孢子剂相比,这些纳米乳液配方稳定、易于分散、无刺激性且无毒。