Department of Soil, Water and Environmental Science, The University of Arizona, Tucson, AZ, 85721, USA.
Department of Pharmacology and Toxicology, The University of Arizona, Tucson, AZ, 85721, USA.
J Hazard Mater. 2019 Feb 15;364:600-607. doi: 10.1016/j.jhazmat.2018.10.050. Epub 2018 Nov 1.
Synthetic monorhamnolipids differ from biologically produced material because they are produced as single congeners, depending on the β-hydroxyalkanoic acid used during synthesis. Each congener is produced as one of four possible diastereomers resulting from two chiral centers at the carbinols of the lipid tails [(R,R), (R,S), (S,R) and (S,S)]. We compare the biodegradability (CO respirometry), acute toxicity (Microtox assay), embryo toxicity (Zebrafish assay), and cytotoxicity (xCELLigence and MTS assays) of synthetic rhamnosyl-β-hydroxydecanoyl-β-hydroxydecanoate (Rha-C10-C10) monorhamnolipids against biosynthesized monorhamnolipid mixtures (bio-mRL). All Rha-C10-C10 diastereomers and bio-mRL were inherently biodegradable ranging from 34 to 92% mineralized. The Microtox assay showed all Rha-C10-C10 diastereomers and bio-mRL are slightly toxic according to the US EPA ecotoxicity categories with 5 min EC values ranging from 39.6 to 87.5 μM. The zebrafish assay showed that of 22 developmental endpoints tested, only mortality was observed at 120 h post fertilization; all Rha-C10-C10 diastereomers and bio-mRL caused significant mortality at 640 μM, except the Rha-C10-C10 (R,R) which showed no developmental effects. xCELLigence and MTS showed IC values ranging from 103.4 to 191.1 μM for human lung cell line H1299 after 72 h exposure. These data provide key information regarding Rha-C10-C10 diastereomers that is pertinent when considering potential applications.
合成单鼠李糖脂与生物产生的物质不同,因为它们是作为单一的同系物产生的,这取决于合成过程中使用的β-羟基烷酸。每个同系物都是由脂质尾部的两个手性中心产生的四个可能的非对映异构体之一产生的,[(R,R)、(R,S)、(S,R)和(S,S)]。我们比较了合成的鼠李糖基-β-羟基癸酰基-β-羟基癸酸酯(Rha-C10-C10)单鼠李糖脂(Rha-C10-C10)的生物降解性(CO 呼吸测定法)、急性毒性(Microtox 测定法)、胚胎毒性(斑马鱼测定法)和细胞毒性(xCELLigence 和 MTS 测定法)对生物合成的单鼠李糖脂混合物(bio-mRL)的影响。所有 Rha-C10-C10 非对映异构体和 bio-mRL 均具有固有生物降解性,矿化率从 34%到 92%不等。Microtox 测定法显示,根据美国环保署的生态毒性分类,所有 Rha-C10-C10 非对映异构体和 bio-mRL 均具有轻微毒性,5 分钟 EC 值范围为 39.6 至 87.5 μM。斑马鱼试验表明,在所测试的 22 个发育终点中,只有在受精后 120 小时观察到死亡率;所有 Rha-C10-C10 非对映异构体和 bio-mRL 在 640 μM 时均导致显著死亡率,除 Rha-C10-C10(R,R)外,其无发育影响。xCELLigence 和 MTS 显示,暴露于 Rha-C10-C10 非对映异构体和 bio-mRL 72 小时后,人肺细胞系 H1299 的 IC 值范围为 103.4 至 191.1 μM。这些数据提供了有关 Rha-C10-C10 非对映异构体的关键信息,在考虑潜在应用时非常重要。