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蓝藻培养物和复杂水华中脂多糖的分离、内毒素活性及其与异养细菌和绿藻影响的比较。

Isolation and endotoxin activities of lipopolysaccharides from cyanobacterial cultures and complex water blooms and comparison with the effects of heterotrophic bacteria and green alga.

作者信息

Bernardová Katerina, Babica Pavel, Marsálek Blahoslav, Bláha Ludek

机构信息

Biology Centre of the Academy of Sciences, Institute of Hydrobiology, Na Sádkách 7, 370 05 Ceské Budejovice, Czech Republic.

出版信息

J Appl Toxicol. 2008 Jan;28(1):72-7. doi: 10.1002/jat.1257.

Abstract

Massive cyanobacterial water blooms are serious environmental and health problems worldwide. While some cyanobacterial toxins such as peptide microcystins have been investigated extensively, other toxic components of cyanobacteria (e.g. lipopolysaccharides, LPS) are poorly understood. The present study characterized endotoxin activities of LPS isolated from (i) laboratory cyanobacterial cultures, (ii) cyanobacterial water bloom samples dominated by Microcystis sp., Planktothrix sp., Aphanizomenon sp. and Anabaena sp., (iii) heterotrophic Gram-negative bacteria Escherichia coli, Kluyvera intermedia, Pseudomonas putida and Pseudomonas fluorescens and (iv) green alga Pseudokirchneriella subcapitata. Toxicity results derived with Limulus amebocyte lysate assay (LAL-test) showed that endotoxin activities of LPS from both cyanobacteria and heterotrophic bacteria were comparable and the values were within a similar range (1 x 10(3)-1 x 10(6) Endotoxin Units, EU, per mg of isolated LPS). The highest activities among the cyanobacterial samples were observed in the Aphanizomenon sp. dominated water bloom. The results also suggest generally higher endotoxin activities in complex natural samples than in laboratory cyanobacterial cultures. Further, experiments with the eukaryotic green alga P. subcapitata demonstrated a need for careful purification of the LPS extracts prior to testing with the LAL assay as several contaminants may overestimate endotoxin activities. This study shows relatively high pyrogenicity of LPS from various cyanobacteria. Further research should focus on detailed toxicological and ecotoxicological characterization of LPS in massive cyanobacterial water blooms.

摘要

大规模蓝藻水华是全球严重的环境和健康问题。虽然一些蓝藻毒素如肽微囊藻毒素已得到广泛研究,但蓝藻的其他有毒成分(如脂多糖,LPS)却了解甚少。本研究对从以下几种来源分离的LPS的内毒素活性进行了表征:(i)实验室蓝藻培养物;(ii)以微囊藻属、席藻属、束丝藻属和鱼腥藻属为主的蓝藻水华样本;(iii)异养革兰氏阴性菌大肠杆菌、中间克鲁维氏菌、恶臭假单胞菌和荧光假单胞菌;(iv)绿藻小形假基尔希纳藻。用鲎试剂法(LAL试验)得出的毒性结果表明,蓝藻和异养细菌的LPS内毒素活性相当,且数值在相似范围内(每毫克分离的LPS含1×10³ - 1×10⁶内毒素单位,EU)。在束丝藻属为主的水华中观察到蓝藻样本中的内毒素活性最高。结果还表明,复杂天然样本中的内毒素活性通常高于实验室蓝藻培养物中的。此外,对真核绿藻小形假基尔希纳藻的实验表明,在用LAL试验检测之前,需要对LPS提取物进行仔细纯化,因为一些污染物可能会高估内毒素活性。本研究表明各种蓝藻的LPS具有较高的致热原性。进一步的研究应侧重于对大规模蓝藻水华中LPS进行详细的毒理学和生态毒理学表征。

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