温度变化对四天线低聚甘氨酸水溶液中细菌内毒素捕获的影响

IF 2.5 Q3 CHEMISTRY, PHYSICAL Colloids and Interfaces Pub Date : 2023-10-11 DOI:10.3390/colloids7040062
Anna Y. Gyurova, Dimitrinka Arabadzhieva, Ivan Minkov, Ljubomir Nikolov, Elena Mileva
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引用次数: 0

摘要

在基于四天线寡甘氨酸(T4)的水溶液配方中记录了特定的自组装,即高度有序纳米结构的自发发生。这种现象是由氢键相互作用引起的,氢键相互作用促进了涉及聚甘氨酸ii型非规范结构的分子识别倾向。结果是形成带正电的超分子实体。它们具有捕获细菌内毒素的高潜力,如脂多糖(lps)。到目前为止,已经建立了通过微调水环境中的参数(组成、pH等),可以精确调节和逐渐改变这些体系的整体性能。一个尚未探索的选择是澄清温度变化的影响。本研究的目的是对温度变化如何影响去除T4测温仪捕获的痕量LPS的各种选择进行系统的调查。另一个目标是验证是否有可能开发连续的途径来恢复没有参与T4+LPS复合物形成的额外T4量。还概述了进一步应用的前景,例如在医学和制药方面的应用。
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Impact of Temperature Variations on the Entrapment of Bacterial Endotoxins in Aqueous Solutions of Four-Antennary Oligoglycines
Specific self-assembly is registered in aqueous solution formulations based on four-antennary oligoglycines (T4), namely a spontaneous onset of highly ordered nanostructures—tectomers. This phenomenon is initiated by the action of hydrogen-bonding interactions that promote molecular recognition propensities involving Polyglycine-II-type non-canonical architecture. The result is the formation of positively charged supramolecular entities. These have high potential to capture bacterial endotoxins, like lipopolysaccharides (LPSs). By now, it has been established that the overall properties of these systems can be precisely regulated and gradually changed through fine-tuning the parameters in the aqueous environment (composition, pH, etc.). One unexplored option is to clarify the impact of temperature variations. The aim of the present study is to implement systematic investigations on how changes in temperature influence the various options for the removal of trace LPS quantities, captured by the T4 tectomers. The additional goal is to verify the possibility to develop consecutive paths of recovering the extra T4 quantities that have not participated in the formation of T4+LPS complexes. Some prospects for further applications, e.g., in medicine and pharmaceutics, are also generally outlined.
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来源期刊
Colloids and Interfaces
Colloids and Interfaces CHEMISTRY, PHYSICAL-
CiteScore
3.90
自引率
4.20%
发文量
64
审稿时长
10 weeks
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