首页> 美国卫生研究院文献>Environmental Health Perspectives >Human cell exposure assays of Bacillus thuringiensis commercial insecticides: production of Bacillus cereus-like cytolytic effects from outgrowth of spores.
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Human cell exposure assays of Bacillus thuringiensis commercial insecticides: production of Bacillus cereus-like cytolytic effects from outgrowth of spores.

机译:苏云金芽孢杆菌商业杀虫剂的人体细胞暴露测定:孢子生长产生蜡状芽孢杆菌样细胞溶解作用。

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摘要

Most contemporary bioinsecticides are derived from scaled-up cultures of Bacillus thuringiensis subspecies israelensis (Bti) and kurstaki (Btk), whose particulate fractions contain mostly B. thuringiensis spores (> 10(12)/L) and proteinaceous aggregates, including crystal-like parasporal inclusion bodies (PIB). Based on concerns over relatedness to B. cereus-group pathogens, we conducted extensive testing of B. thuringiensis (BT) products and their subfractions using seven human cell types. The Bti/Btk products generated nonspecific cytotoxicities involving loss in bioreduction, cell rounding, blebbing and detachment, degradation of immunodetectable proteins, and cytolysis. Their threshold dose (Dt approximately equal.5 times 10(-14)% BT product/target cell) equated to a single spore and a target cell half-life (tLD(50)) of approximately 16 hr. At Dts > 10(4), the tLD(50) rapidly shifted to < 4 hr; with antibiotic present, no component, including PIB-related [delta]-endotoxins, was cytolytic up to an equivalent of approximately 10(9 )Dt. The cytolytic agent(s) within the Bti/Btk-vegetative cell exoprotein (VCP) pool is an early spore outgrowth product identical to that of B. cereus and acting possibly by arresting protein synthesis. No cytolytic effects were seen with VCP from B. subtilis and Escherichia coli. These data, including recent epidemiologic work indicate that spore-containing BT products have an inherent capacity to lyse human cells in free and interactive forms and may also act as immune sensitizers. To critically impact at the whole body level, the exposure outcome would have to be an uncontrolled infection arising from intake of Btk/Bti spores. For humans, such a condition would be rare, arising possibly in equally rare exposure scenarios involving large doses of spores and individuals with weak or impaired microbe-clearance capacities and/or immune response systems.
机译:大多数当代生物杀虫剂均来自苏云金芽胞杆菌亚种以色列(Bti)和库尔斯塔基(Btk)的规模化养殖,它们的颗粒级分主要含有苏云金芽孢杆菌的孢子(> 10(12)/ L)和蛋白质聚集体,包括晶体状椎旁融合体(PIB)。基于对蜡状芽孢杆菌病原体相关性的担忧,我们使用7种人类细胞类型对苏云金芽孢杆菌(BT)产品及其亚组分进行了广泛测试。 Bti / Btk产品产生非特异性细胞毒性,包括生物还原损失,细胞变圆,起泡和脱离,免疫可检测蛋白降解以及细胞溶解。它们的阈值剂量(Dt约等于10(-14)%BT产物/靶细胞的5倍)等于单个孢子和靶细胞的半衰期(tLD(50))约16小时。在Dts> 10(4)时,tLD(50)迅速移至<4小时;在存在抗生素的情况下,包括PIB相关的δ-内毒素在内的任何组分都不能被细胞溶解直至相当于约10(9)Dt的水平。 Bti / Btk营养细胞外蛋白(VCP)库中的溶细胞剂是一种早期孢子生长产物,与蜡状芽孢杆菌相同,并可能通过阻止蛋白质合成起作用。枯草芽孢杆菌和大肠杆菌的VCP均未见细胞溶解作用。这些数据,包括最近的流行病学研究表明,含孢子的BT产品具有固有的能力以自由和相互作用的形式裂解人类细胞,并且还可以充当免疫敏化剂。为了对整个人体产生严重影响,接触的结果必须是摄入Btk / Bti孢子引起的不受控制的感染。对于人类而言,这种情况将是罕见的,可能在同样罕见的暴露场景中发生,涉及大剂量的孢子以及微生物清除能力和/或免疫应答系统弱或受损的个体。

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