Department of Biochemistry and Biophysics, Institute of Biology and Earth Sciences, University of the National Education Commission, Podchorążych 2, 30-084, Cracow, Poland.
Sci Rep. 2024 Jul 18;14(1):16636. doi: 10.1038/s41598-024-67713-3.
In therapies, curcumin is now commonly formulated in liposomal form, administered through injections or creams. This enhances its concentration at the cellular level compared to its natural form ingestion. Due to its hydrophobic nature, curcumin is situated in the lipid part of the membrane, thereby modifying its properties and influencing processes The aim of the research was to investigate whether the toxicity of specific concentrations of curcumin, assessed through biochemical tests for the SK-N-SH and H-60 cell lines, is related to structural changes in the membranes of these cells, caused by the localization of curcumin in their hydrophobic regions. Biochemical tests were performed using spectrophotometric methods. Langmuir technique were used to evaluate the interaction of the curcumin with the studied lipids. Direct introduction of curcumin into the membranes alters their physicochemical parameters. The extent of these changes depends on the initial properties of the membrane. In the conducted research, it has been demonstrated that curcumin may exhibit toxicity to human cells. The mechanism of this toxicity is related to its localization in cell membranes, leading to their dysfunction. The sensitivity of cells to curcumin presence depends on the saturation level of their membranes; the more rigid the membrane, the lower the concentration of curcumin causes its disruption.
在治疗中,姜黄素现在通常以脂质体的形式配制,通过注射或乳膏给药。与天然形式的摄入相比,这提高了其在细胞水平上的浓度。由于其疏水性,姜黄素位于膜的脂质部分,从而改变其性质并影响过程。研究的目的是研究通过 SK-N-SH 和 H-60 细胞系的生化测试评估的特定浓度姜黄素的毒性是否与这些细胞的膜的结构变化有关,这是由姜黄素在其疏水区的定位引起的。生化测试使用分光光度法进行。Langmuir 技术用于评估姜黄素与研究脂质的相互作用。姜黄素的直接引入会改变膜的物理化学参数。这些变化的程度取决于膜的初始性质。在进行的研究中,已经证明姜黄素可能对人体细胞表现出毒性。这种毒性的机制与其在细胞膜中的定位有关,导致其功能障碍。细胞对姜黄素存在的敏感性取决于其膜的饱和水平;膜越刚性,姜黄素的浓度越低,导致其破坏。