首页> 外文期刊>Environmental Science & Technology >Respiratory Toxicily and Inflammatory Response in Human Bronchial Epithelial Cells Exposed to Biosolids, Animal Manure, and Agricultural Soil Particulate Matter
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Respiratory Toxicily and Inflammatory Response in Human Bronchial Epithelial Cells Exposed to Biosolids, Animal Manure, and Agricultural Soil Particulate Matter

机译:暴露于生物固体,动物粪便和农业土壤颗粒物的人支气管上皮细胞的呼吸道毒性和炎症反应

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摘要

This study investigated cytotoxicity and inflammation caused by human bronchial epithelial cells exposed to respirable aerosols produced during the land application of stabilized sewage sludges (biosolids). BEAS-2B cells were exposed to respirable aerosols (PM_(10)) derived from soils, biosolids stabilized by mesophilic anaerobic digestion (MAD), temperature-phased anaerobic digestion (TPAD), and composting (COM) as well as animal manures stabilized by mesophilic anaerobic digestion (AMAD) and composting (ACOM). Anaerobically digested particles (MAD, TPAD, AMAD) induced the highest cytotoxicity with LD_(50) levels of 70μg/cm~2,310μg/cm~2 for, and 375μg/cm~2 for MAD, AMAD, and TPAD, respectively. Conversely, there was no observed cytotoxicity for soils, composted biosolids, or composted manures at the in vitro doses tested. Inflammatory responses, measured by interrleukin (IL)-6 and IL-8 release, were 2- to 15-fold greater in biosolids and manures than for equivalent doses in soils. Biosolids treatment rankings for human bronchial epithelial cell toxicity and inflammation were similar to the rankings found in recent biosolids pathogen content studies-from lowest pathogen content or toxicity to highest, rankings were as follows: COM < TPAD < MAD. Coupling in vitro responses with modeled tracheobronchial lung surface doses that may occur during a biosolids land application event suggests that an inflammatory aerosol exposure in the TB region could only occur under worst case scenarios (exercising human with reduced lung capacity at <65 m set backs), but examination of lower in vitro doses as well as consideration of the head and lower lung respiratory tract regions are needed to more definitively describe the links between biosolids aerosols and the potential for respiratory inflammation.
机译:这项研究调查了人支气管上皮细胞暴露于稳定化污泥(生物固体)在土地上施用过程中产生的可吸入气溶胶引起的细胞毒性和炎症。 BEAS-2B细胞暴露于源自土壤的可吸入气溶胶(PM_(10)),通过中温厌氧消化(MAD),温度分阶段厌氧消化(TPAD)和堆肥(COM)稳定化的生物固体以及通过中温厌氧消化(AMAD)和堆肥(ACOM)。厌氧消化的颗粒(MAD,TPAD,AMAD)诱导了最高的细胞毒性,LD_(50)水平分别为MAD,AMAD和TPAD分别为70μg/ cm〜2,310μg/ cm〜2和375μg/ cm〜2。相反,在测试的体外剂量下,未观察到对土壤,堆肥生物固体或堆肥粪便的细胞毒性。用白细胞介素(IL)-6和IL-8释放测量的炎性反应,在生物固体和粪肥中,比在土壤中等效剂量大2至15倍。人支气管上皮细胞毒性和炎症的生物固体治疗等级与最近的生物固体病原体含量研究中发现的等级相似-从最低的病原体含量或毒性到最高,等级如下:COM

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  • 来源
    《Environmental Science & Technology》 |2010年第8期|p.3142-3148|共7页
  • 作者单位

    Department of Chemical Engineering, Environmental Engineering Program, Yale University, New Haven, Connecticut;

    Department of Pharmacology and Experimental Therapeutics, School of Pharmacy, Faculty of Medicine, The Hebrew University of Jerusalem, Jerusalem, Israel;

    Department of Chemical Engineering, Environmental Engineering Program, Yale University, New Haven, Connecticut;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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