城市垃圾填埋惰性土壤中除虫菊酯类化合物作为脑癌5-HT受体结合剂的研究

S. K. Thakur, S. Eswaran
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引用次数: 0

摘要

从位于印度东德里的Ghazipur城市固体废物填埋场获得的惰性土壤已被用作本文所述工作的起始材料。这种山一样的怪物经常出现在新闻中,因为它的臭味、排泄物对该地区地下水的污染,以及偶尔发生的火灾危及附近居民的生命。填埋场产生许多温室气体(CO2、CH4、CO、HCHO、H2S和NH3),这些气体有毒,会对周围地区造成环境污染。我们的工作寻求这种废料的替代用途(“废物变财富”)。这些研究可以带来更清洁的环境、更低的碳足迹、减少全球变暖,并对气候变化产生积极影响。这些都是在可持续发展目标和COP-28下讨论的非常热门的话题,特别是敦促发达国家减少碳足迹,并设立一个全球基金,以缓解气候变化导致的欠发达国家的气候危机。已分离出四种新的拟除虫菊酯化合物,并对其进行了光谱表征[使用紫外-可见光谱、FT-IR、NMR光谱(1H-NMR光谱)、质谱和扫描电子显微镜(SEM)]。新化合物具有一个环丙烷环,其一侧被4-甲氧基-3-氧代-丙酮酸盐单元取代,另一侧被N-甲酰基-氨基酸单元取代。拟除虫菊酯环丙烷结构的存在表明可能具有类似天然拟除虫菊酯的杀虫活性。N-甲酰基氨基酸可能是影响其生物活性的重要因素。使用Chem J.软件进行的计算研究预测了抗菌和抗炎活性,IC50值为8.720。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pyrethrin Type Compounds from the Municipal Solid Waste Ghazipur Landfill Inert Soil as Brain and Cancer 5-HT Receptor Binding Agents
The Inert soil obtained from the Ghazipur Municipal Solid Waste landfill located in East Delhi, India has been used as the starting material for the work described in this paper. This mountain-like monster is often in the news for its bad smell, pollution of the groundwater in the area from its leachates, and the occasional fires in it endangering the lives of the people living nearby. Landfills produce many greenhouse gases (CO2, CH4, CO, HCHO, H2S, and NH3) which are poisonous and cause environmental pollution in the surrounding areas. Our work sought alternative uses for this waste material (“Waste to Wealth”). These studies could lead to a cleaner environment, lower carbon footprints, diminished global warming, and positively impact climate change. These are very hot topics being discussed under the sustainable development goals and COP-28 urging, in particular, the developed world to reduce their carbon footprints and to create a global fund to mitigate the climate crisis in underdeveloped countries caused by climate change. Four new Pyrethrin-like compounds have been isolated and characterized spectroscopically [using UV-visible, FT-IR, NMR spectroscopy (1H-NMR spectroscopy), Mass Spectrometry, and Scanning Electron Microscopy (SEM)]. The new compounds possess a cyclopropane ring substituted on one side by a 4-methoxy-3-oxo-pyruvate unit and on the other side by an N-formyl-amino acid unit. The presence of pyrethrin-like cyclopropane structures indicates possible insecticidal activities like natural pyrethrins. The N-formyl amino acid could be an important factor in their bioactivity. Computational studies using the software Chem J. predict antibacterial, and anti-inflammatory activities with an IC50 value of 8.720.
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