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Encapsulation of E. coli phage ZCEC5 in chitosan–alginate beads as a delivery system in phage therapy

机译:壳聚糖-海藻酸盐微珠中大肠杆菌噬菌体ZCEC5的封装作为噬菌体治疗中的递送系统

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摘要

Bacteriophages can be used successfully to treat pathogenic bacteria in the food chain including zoonotic pathogens that colonize the intestines of farm animals. However, harsh gastric conditions of low pH and digestive enzyme activities affect phage viability, and accordingly reduce their effectiveness. We report the development of a natural protective barrier suitable for oral administration to farm animals that confers acid stability before functional release of bead-encapsulated phages. Escherichia coli bacteriophage ZSEC5 is rendered inactive at pH 2.0 but encapsulation in chitosan–alginate bead with a honey and gelatin matrix limited titer reductions to 1 log10 PFU mL−1. The encapsulated phage titers were stable upon storage in water but achieved near complete release over 4–5 h in a simulated intestinal solution (0.1% bile salt, 0.4% pancreatin, 50 mM KH2PO4 pH 7.5) at 37 °C. Exposure of E. coli O157:H7 to the bead-encapsulated phage preparations produced a delayed response, reaching a maximal reductions of 4.2 to 4.8 log10 CFU mL−1 after 10 h at 37 °C under simulated intestinal conditions compared to a maximal reduction of 5.1 log10 CFU mL−1 at 3 h for free phage applied at MOI = 1. Bead-encapsulation is a promising reliable and cost-effective method for the functional delivery of bacteriophage targeting intestinal bacteria of farm animals.
机译:噬菌体可以成功用于治疗食物链中的病原细菌,包括定植在农场动物肠道中的人畜共患病原体。然而,低pH和消化酶活性的苛刻胃条件会影响噬菌体的生存能力,并因此降低其有效性。我们报告了一种天然的保护性屏障的发展,该屏障适用于对农场动物进行口服给药,可在功能性释放小珠包裹的噬菌体之前赋予酸稳定性。大肠杆菌噬菌体ZSEC5在pH 2.0时失活,但用蜂蜜和明胶基质封装在壳聚糖-海藻酸盐微珠中,滴度降至1 log10 PFU mL -1 。封装的噬菌体滴度在水中储存后稳定,但在37°C的模拟肠溶液(0.1%胆汁盐,0.4%胰酶,50 mM KH2PO4 pH 7.5)中经过4–5小时几乎完全释放。将O157:H7大肠杆菌暴露于珠粒包裹的噬菌体制剂中会产生延迟反应,在模拟肠中于37°C下放置10 h后,最大减少量为4.2至4.8log10 CFU mL -1 相比于在3小时时以MOI = 1的游离噬菌体最大减少5.1 log10 CFU mL -1 的条件。珠粒包封是一种有希望的可靠且经济有效的方法,用于功能化噬菌体的递送针对农场动物的肠道细菌。

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