Faculty of Chemistry, University of Bialystok, Ciolkowskiego 1K, 15-245 Bialystok, Poland.
Faculty of Mechatronics, Kazimierz Wielki University, Chodkiewicz 30, 85-867 Bydgoszcz, Poland.
Molecules. 2023 Jan 19;28(3):1013. doi: 10.3390/molecules28031013.
The influence of kaempferol (K), myricetin (M) and lipoic acid (LA) on the properties of natural erythrocytes, isolated from animal blood and biological membrane models (monolayers and liposomes) made of phosphatidylcholine (PC), cholesterol (CHOL), and sphingomyelin (SM), CHOL in a ratio of 10:9, was investigated. The Langmuir method, Brewster angle microscopy (BAM) and microelectrophoresis were used. The presented results showed that modification of liposomes with kaempferol, myricetin and lipoic acid caused changes in the surface charge density and the isoelectric point value. Comparing the tested systems, several conclusions were made. (1) The isoelectric point for the DPPC:Chol:M (2.2) had lower pH values compared to lipoic acid (pH2.5) and kaempferol (pH2.6). (2) The isoelectric point for the SM-Chol with myricetin (3.0) had lower pH values compared to kaempferol (pH3.4) and lipoic acid (pH4.7). (3) The surface charge density values for the DPPC:Chol:M system in the range of pH 2-9 showed values from 0.2 to -2.5 × 10 C m. Meanwhile, for the DPPC:Chol:K and DPPC:Chol:LA systems, these values were higher at pH2 (0.7 × 10 C m and 0.8 × 10 C m) and lower at pH9 (-2.1 × 10 C m and -1.8 × 10 C m), respectively. (4) The surface charge density values for the SM:Chol:M system in the range of pH 2-9 showed values from 0.5 to -2.3 × 10 C m. Meanwhile, for the DPPC:Chol:K and DPPC:Chol:LA systems, these values were higher at pH2 (0.8 × 10 C m), and lower at pH9 (-1.0 × 10 C m and -1.8 × 10 C m), respectively. (5) The surface charge density values for the erythrocytes with myricetin in the range of pH 2-9 showed values from 1.0 to -1.8 × 10 C m. Meanwhile, for the erythrocytes:K and erythrocytes:LA systems, these values, at pH2, were 1.3 × 10 C m and 0.8 × 10 C m and, at pH9, -1.7 × 10 C m and -1.0 × 10 C m, respectively.
研究了山奈酚(K)、杨梅素(M)和硫辛酸(LA)对动物血液分离的天然红细胞和由磷脂酰胆碱(PC)、胆固醇(CHOL)和神经鞘磷脂(SM)组成的生物膜模型(单层和脂质体)性质的影响,PC:CHOL:SM 的比例为 10:9:1。采用 Langmuir 法、Brewster 角显微镜(BAM)和微电泳法。结果表明,用山奈酚、杨梅素和硫辛酸修饰脂质体导致表面电荷密度和等电点值发生变化。通过比较测试系统,得出了以下几个结论。(1)DPPC:Chol:M(2.2)的等电点 pH 值低于硫辛酸(pH2.5)和山奈酚(pH2.6)。(2)SM-Chol 与杨梅素(3.0)的等电点 pH 值低于山奈酚(pH3.4)和硫辛酸(pH4.7)。(3)DPPC:Chol:M 系统在 pH 2-9 范围内的表面电荷密度值在 0.2 到-2.5×10^-3 C m 之间。同时,对于 DPPC:Chol:K 和 DPPC:Chol:LA 系统,这些值在 pH2 时较高(0.7×10^-3 C m 和 0.8×10^-3 C m),在 pH9 时较低(-2.1×10^-3 C m 和-1.8×10^-3 C m)。(4)SM:Chol:M 系统在 pH 2-9 范围内的表面电荷密度值在 0.5 到-2.3×10^-3 C m 之间。同时,对于 DPPC:Chol:K 和 DPPC:Chol:LA 系统,这些值在 pH2 时较高(0.8×10^-3 C m),在 pH9 时较低(-1.0×10^-3 C m 和-1.8×10^-3 C m)。(5)在 pH 2-9 范围内,含杨梅素的红细胞的表面电荷密度值在 1.0 到-1.8×10^-3 C m 之间。同时,对于红细胞:K 和红细胞:LA 系统,这些值在 pH2 时分别为 1.3×10^-3 C m 和 0.8×10^-3 C m,在 pH9 时分别为-1.7×10^-3 C m 和-1.0×10^-3 C m。