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Potential Risk of Virus Carryover by Fabrics of Personal Protective Gowns

机译:个人保护礼服面料病毒携带的潜在风险

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Personal protective gowns and coveralls are classified based on barrier efficiency that validates protection from fluid penetration under certain pressures. Materials standardized in this system have been found suitable for emergency medical practices confronting highly contagious diseases. Nevertheless, adhesion of blood and body fluids from virus-infected patients to the surface of protective clothing still imposes a risk of pathogen transmission in the process of doffing, or undressing. We performed a small-scale experiment to test the possibility of infectious virus carryover on the surface of different fabrics used in commercially available protective gowns. Application of a lentivirus vector that expresses green fluorescent protein allowed easy monitoring of infectious viral loads on fabrics. Results indicate that fabrics of level-3 surgical gowns serve better to reduce virus transmission compared to fabrics of chemical protective clothing with the same or higher barrier efficiency. Analysis of sliding angles provided indexes of fluid repellency, which were inversely related to virus carryover potentials. Droplets of infectious body fluids may easily roll off fabrics with water-repellent finishing. Thus, virus carryover is a measurable risk factor to be considered for better choice of personal protective clothing.
机译:根据障碍效率,验证在某些压力下的流体渗透保护的障碍效率,个人防护服和套件进行分类。已经发现该系统中标准化的材料适用于面对高度传染性疾病的紧急医疗措施。然而,从病毒感染患者到保护衣物表面的血液和体液的粘附仍然在落叶或脱衣服过程中造成了病原体传播的风险。我们进行了一项小规模的实验,以测试在市售的保护礼服的不同织物表面上的传染性病毒残留的可能性。表达绿色荧光蛋白的慢病毒载体的应用允许容易地监测织物上传染性病毒载量。结果表明,与具有相同或更高障碍效率的化学防护服的织物相比,水平3级手术礼服的织物有效减少病毒传播。滑动角度的分析提供了流体排斥性的指标,其与病毒携带电位反向相关。传染性体液的液滴可能很容易用防水整理滚动织物。因此,病毒携带是可衡量的风险因素,以便更好地选择个人防护服。

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