Danuta Raj
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引用次数: 1

摘要

今天简单的观察还能显著改变对基本现象的认识吗?共熔溶剂的案例本文提出了一个案例研究,其中一个简单的,实际的观察显著地改变了对细胞功能机制的基本现象的看法,从而能够改变现有的理论。这一观察结果引起了人们的注意,即使用纯酒精从干燥的植物物质中提取的提取物,在蒸馏掉溶剂后,不能得到干燥的浓缩提取物,而且粘性残留物不能通过蒸馏干燥。这是一个现象,几乎每一个植物化学家都遇到过,因为这个知识领域的开端。结果表明,对所描述的现象的解释是共晶溶剂的存在。共晶溶剂是通过混合特定的固体成分而形成的,由于混合物的熔点与起始材料的熔点相比显着降低,因此无需添加溶剂即可液化。尽管上述现象的描述已经过去了一百多年,但在自然科学领域,共晶溶剂长期以来一直被视为一种新奇的东西,而在医学领域,更具体地说,在药学领域,共晶溶剂被认为是一种造成药物不相容的不便。事实上,它们对细胞的功能至关重要,使植物具有抗冻性,负责动物组织的低温保存,或使细胞内不溶的物质溶解在脂质层或细胞汁液的水部分。上述发现于2011年完成,使人们对活细胞功能的理解有了飞跃式的提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Czy w dzisiejszych czasach proste obserwacje mogą jeszcze znacząco zmieniać postrzeganie podstawowych zjawisk? Przypadek cieczy eutektycznych
Can Simple Observations Today Still Significantly Change the Perception of Basic Phenomena? The Case of Eutectic Solvents The article presents a case study in which a simple, practical observation significantly changed the perception of basic phenomena regarding the mechanism of cell functioning, and thus was able to change the existing theory. This observation drew attention to the fact that the extract obtained from the dry plant substance with the use of pure alcohol, after distilling off the solvent, does not give a dry concentrated extract, and the viscous residue cannot be dried by distillation. This is a phenomenon that practically every phytochemist has encountered since the inception of this field of knowledge. It turned out that the explanation for the described phenomenon is the presence of eutectic solvents. Eutectic solvents are formed by mixing specific solid components, which liquefy without the addition of solvents, thanks to a significant lowering of the melting point of the mixture compared to the melting points of the starting materials. Although more than a hundred years have passed since the description of the above phenomenon, in the field of natural sciences, eutectic solvents have been treated as a curiosity for a long time, while in medical sciences – and more specifically in pharmacy – they were considered an inconvenience causing pharmaceutical incompatibilities. In fact, they are essential for the functioning of cells, enabling plants to develop frost resistance, being responsible for the ability to cryopreserve animal tissues, or allowing the dissolution of substances which are otherwise insoluble inside the cell in either the lipid layer or the aqueous part of the cell juice. The described discovery, made in 2011, allowed for a leap improvement in the understanding of the functioning of living cells.
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