Schwartz A, Bar R
Department of Applied Microbiology, Hebrew University, Jerusalem, Israel.
Appl Environ Microbiol. 1995 Jul;61(7):2727-31. doi: 10.1128/aem.61.7.2727-2731.1995.
Degradation of an immiscible aromatic solvent, toluene, and a water-soluble aromatic compound, p-toluic acid, by a Pseudomonas putida strain in the presence of beta-cyclodextrin (beta-CD) was investigated. The ability of CDs to interact with hydrophobic organics and form inclusion compounds was exploited in this study to remove or alleviate the toxicities of substrates and consequently to enable or enhance degradation. Liquid toluene was found to be highly toxic to P. putida. However, this phase toxicity was removed when crystalline beta-CD-complexed toluene was provided as the substrate. The latter was fully degraded at a concentration of up to 10 g/liter. Degradation of toluene vapors was enhanced in the presence of beta-CD as a result of reduced molecular toxicity and facilitated absorption of the gaseous substrate. Similarly, beta-CD alleviated the inhibitory effect of p-toluic acid on P. putida. This protective effect of CD was remarkably more prominent when the microbial culture was shock loaded with an otherwise toxic dose of p-toluic acid (1.8 g/liter).
研究了在β-环糊精(β-CD)存在下,恶臭假单胞菌菌株对不混溶的芳香族溶剂甲苯和水溶性芳香族化合物对甲苯甲酸的降解情况。本研究利用环糊精与疏水性有机物相互作用并形成包合物的能力来去除或减轻底物的毒性,从而实现或增强降解。发现液态甲苯对恶臭假单胞菌具有高毒性。然而,当提供结晶β-CD复合甲苯作为底物时,这种相毒性被消除。后者在浓度高达10克/升时被完全降解。由于分子毒性降低和气态底物的吸收促进,在β-CD存在下甲苯蒸气的降解得到增强。同样,β-CD减轻了对甲苯甲酸对恶臭假单胞菌的抑制作用。当微生物培养物受到否则有毒剂量的对甲苯甲酸(1.8克/升)冲击加载时,CD的这种保护作用明显更为突出。