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首页> 外文期刊>Green chemistry >Synthesis of a series of amino acid derived ionic liquids and tertiary amines: green chemistry metrics including microbial toxicity and preliminary biodegradation data analysis
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Synthesis of a series of amino acid derived ionic liquids and tertiary amines: green chemistry metrics including microbial toxicity and preliminary biodegradation data analysis

机译:一系列氨基酸衍生的离子液体和叔胺的合成:绿色化学指标,包括微生物毒性和初步生物降解数据分析

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摘要

A series of L-phenylalanine ionic liquids (ILs), L-tyrosine ILs, tertiary amino analogues and proposed transformation products (PTPs) have been synthesised. Antimicrobial toxicity data, as part of the green chemistry metrics evaluation and to supplement preliminary biodegradation studies, was determined for ILs, tertiary amino analogues and PTPs. Good to very good overall yields (76 to 87%) for the synthesis of 6 ILs from L-phenylalanine were achieved. A C-2-symmetric IL was prepared from TMS-imidazole in a one-pot two-step method in excellent yield (91%). Synthesis of the L-tyrosine IL derivatives utilised a simple protection group strategy by using an extra equivalent of the bromoacetyl bromide reagent. Improvements in the synthesis of the alpha-bromoamide alkylating reagent from L-phenylalanine were achieved, directed by green chemistry metric analysis. A solvent switch from dichloromethane to THF is described, however the yield was 15% lower. Antimicrobial activity testing of L-phenylalanine ILs, L-tyrosine ILs, tertiary amino analogues and PTPs, against 8 bacteria and 12 fungi strains, showed that no compound had a high antimicrobial activity, apart from an L-proline analogue. In this exceptional case, the highest toxicity (IC95 = 125 and 250 mu M) was observed towards the two Gram positive strains Staphylococcus aureus and Staphylococcus epidermidis respectively. High antimicrobial activity was not found for the other bacteria or fungi strains screened. The limitations of the antimicrobial activity study is discussed in relation to SAR studies. Preliminary analysis of biodegradation data (Closed Bottle Test, OECD 301D) is presented. The pyridinium IL derivative is the preferred green IL of the series based on synthesis, toxicity and biodegradation considerations. This work is a joint study with Kummere and co-workers and the PTPs were selected as target compounds based on concurrent biodegradation studies by the Kummerer group. For the comprehensive biodegradation and transformation product analysis see the accompanying paper.
机译:合成了一系列的L-苯丙氨酸离子液体(ILs),L-酪氨酸ILs,叔氨基类似物和拟议的转化产物(PTP)。确定了IL,叔氨基类似物和PTP的抗菌毒性数据,作为绿色化学指标评估的一部分,并补充了初步的生物降解研究。从L-苯丙氨酸合成6个IL的总收率好到非常好(76%到87%)。用一锅两步法由TMS-咪唑制备C-2对称的IL,产率极高(91%)。 L-酪氨酸IL衍生物的合成通过使用额外当量的溴乙酰溴试剂使用了简单的保护基策略。通过绿色化学度量分析,实现了从L-苯丙氨酸合成α-溴酰胺烷基化试剂的改进。描述了从二氯甲烷到THF的溶剂转换,但是产率降低了15%。 L-苯丙氨酸ILs,L-酪氨酸ILs,叔氨基类似物和PTP对8种细菌和12种真菌菌株的抗菌活性测试表明,除L-脯氨酸类似物外,没有化合物具有很高的抗菌活性。在这种例外情况下,分别对两种革兰氏阳性菌株金黄色葡萄球菌和表皮葡萄球菌观察到最高的毒性(IC95 = 125和250μM)。筛选出的其他细菌或真菌菌株未发现高抗菌活性。结合SAR研究讨论了抗菌活性研究的局限性。介绍了生物降解数据的初步分析(密闭瓶测试,OECD 301D)。基于合成,毒性和生物降解的考虑,吡啶鎓IL衍生物是该系列的首选绿色IL。这项工作是与Kummere及其同事共同进行的一项研究,根据Kummerer组同时进行的生物降解研究,选择了PTP作为目标化合物。有关生物降解和转化产物的综合分析,请参见随附的论文。

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