Putaggio Stefano, Russo Annamaria, Patanè Giuseppe Tancredi, Calderaro Antonella, Cirmi Santa, Verboso Ivana, Laganà Giuseppina, Ficarra Silvana, Barreca Davide, Raymo Françisco, Tellone Ester
Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of Messina, Viale Ferdinando Stagno d'Alcontres 31, 98166 Messina, Italy.
Virology and Microbiology AOOR Papardo-Piemonte, 98166 Messina, Italy.
Biology (Basel). 2025 Aug 5;14(8):1005. doi: 10.3390/biology14081005.
L. (MA) is a member of the Moraceae family, known as "white mulberry". Due to the high levels of bioactive compounds, mulberry plants can be considered a good source of nutrients and antioxidant compounds. Our study aims to analyze the effect of MA extract leaves on erythrocytes, focusing on its action on metabolism and membrane integrity. The choice of erythrocytes as a study model is based on their metabolic simplicity and their easy availability. Cell viability, following exposure of the cells to the extract, was evaluated by hemolysis, methemoglobin, caspase 3 activity and flow cytofluorimetric analysis; in addition, the effect of the pretreatment with the MA was detected after incubation of erythrocytes with different stressors. The impact on cell metabolism was evaluated by measuring anion flux kinetics, ATP levels and phosphatase activity. The results obtained show a peculiar (double) effect of the extract, which, on the one hand, probably by exploiting its component with antioxidant properties, protects the cell membrane by accumulating on the bilayer. On the other hand, the alteration of anion exchange could lead to the triggering of apoptosis and consequent cell death. The hypotheses, although excluded by our data, all point toward a beneficial and protective action of the extract on the health and vitality of RBCs.
L.(MA)是桑科植物的一员,被称为“白桑”。由于含有高水平的生物活性化合物,桑树植物可被视为营养物质和抗氧化化合物的良好来源。我们的研究旨在分析MA叶提取物对红细胞的影响,重点关注其对代谢和膜完整性的作用。选择红细胞作为研究模型是基于其代谢简单且易于获取。在细胞暴露于提取物后,通过溶血、高铁血红蛋白、半胱天冬酶3活性和流式细胞荧光分析评估细胞活力;此外,在用不同应激源孵育红细胞后,检测MA预处理的效果。通过测量阴离子通量动力学、ATP水平和磷酸酶活性来评估对细胞代谢的影响。获得的结果显示提取物具有独特的(双重)作用,一方面,可能通过利用其具有抗氧化特性的成分,通过在双层膜上积累来保护细胞膜。另一方面,阴离子交换的改变可能导致凋亡的触发和随之而来的细胞死亡。尽管我们的数据排除了这些假设,但所有假设都指向提取物对红细胞健康和活力的有益和保护作用。