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首页> 外文期刊>Process Biochemistry >Influence of Triton X-100 and β-cyclodextrin on the bioavailability and biodegradation of crystalline phenanthrene covered with biofilms
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Influence of Triton X-100 and β-cyclodextrin on the bioavailability and biodegradation of crystalline phenanthrene covered with biofilms

机译:Triton X-100和β-环糊精对生物膜覆盖的结晶菲生物利用度和生物降解的影响

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PAH biodegradation aided by surfactants and cyclodextrins has been widely studied because the former's micelles and the latter's hydrophobic cavities can increase the apparent solubility of PAHs. In this work, the effects of Triton X-100 (TX-100) and beta-cyclodextrin (beta-CD) on the bioavailability and biodegradation of phenanthrene (PHE) were investigated. The degrading microorganism used was Moraxella osloensis CFP312, a new strain screened from polluted soil and could form biofilms on crystalline PHE. At the same concentrations, beta-CD solubilized less PHE than TX-100 but promoted PHE biodegradation. The two solubilizers had almost no different effects on CFP312 hydrophobicity; however, beta-CD significantly eluted fewer cells from biofilms on crystalline PHE than TX-100. Microscopy observation revealed that the residual structure of the biofilm treated with beta-CD was more complete than that of the biofilm treated with TX-100. This effect is beneficial to the function of biofilms and conducive to mass transfer from the exposed area in the crystalline PHE to the aqueous phase. Although TX-100 and beta-CD could enhance the mass transfer of PHE to the aqueous phase, the latter significantly improved the bioavailability and biodegradation of PHE mainly because its solubilization was accompanied by easy desorption and retention of the biofilm functional integrity.
机译:由于前者的胶束和后者的疏水性腔,因此已经广泛研究了表面活性剂和环糊精的PAH生物降解已被广泛研究,因为前者的胶束可以增加PAHS的表观溶解度。在这项工作中,研究了TRITON X-100(TX-100)和β-环糊精(BETA-CD)对生物利用度和生物降解的影响,对菲甲苯(PHE)的生物降解的影响。使用的降解微生物是Moraxella Osloensis CFP312,一种从污染的土壤中筛选的新菌株,可以在结晶手术上形成生物膜。在相同的浓度下,β-CD溶解少于Tx-100但促进了Phe生物降解。两种增溶剂对CFP312疏水性几乎没有不同的影响;然而,Beta-CD显着从生物膜上显着被较少的细胞比TX-100从生物膜上脱落。显微镜观察显示,用β-CD处理的生物膜的残余结构比用TX-100处理的生物膜的残留结构更完整。这种效果有利于生物膜的功能,并有利于从结晶PHE中的暴露区域到水相的质量转移。虽然TX-100和β-CD可以增强PHE对水相的传质转移,但后者显着提高了PHE的生物利用度和生物降解,主要是因为其溶解伴随着易解吸和保留生物膜功能完整性。

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