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小麦胚凝集素与莫能菌素联合细胞毒性的研究。

Studies on the joint cytotoxicity of Wheat Germ Agglutinin and monensin.

作者信息

Dalla Pellegrina Chiara, Matucci Andrea, Zoccatelli Gianni, Rizzi Corrado, Vincenzi Simone, Veneri Gianluca, Andrighetto Giancarlo, Peruffo Angelo D B, Chignola Roberto

机构信息

Dipartimento Scientifico e Tecnologico, Universita' di Verona, Strada Le Grazie, 15, 37134 Verona, Italy.

出版信息

Toxicol In Vitro. 2004 Dec;18(6):821-7. doi: 10.1016/j.tiv.2004.04.008.

Abstract

Wheat Germ Agglutinin (WGA) cytotoxicity has been studied using two human leukemia cell lines, Molt3 and K562, and human peripheral blood mononuclear cells (PBMC). In spite of similar binding at the cell surface, WGA was found to promote cell death to a different extent in Molt3, K562 and PBMC and to induce different death events leading to apoptosis in Molt3 and either apoptosis and necrosis in K562 cells and PBMC. In Molt3 but not in K562 cells, WGA cytotoxicity could be potentiated 66-200 fold by 50 nM monensin, a carboxylic ionophore that perturbs the intracellular trafficking of endocytosed molecules. Synergism between the cytotoxic activities of WGA and monensin was demonstrated in Molt3 cells by comparing non toxic, or slightly toxic, doses of WGA and monensin alone or in combination. These results show that the cytotoxic effect of WGA is dependent on internalisation events which may differ among the cell lines used. WGA and monensin can enter the human diet being a component of wheat germ and an antibiotic used for zootechnic reasons in the bioindustry, respectively. These data reveal the synergistic effect between two dietary molecules, otherwise per se toxic at much higher concentrations, with possible implications for human and animal health.

摘要

已使用两种人类白血病细胞系Molt3和K562以及人类外周血单核细胞(PBMC)对麦胚凝集素(WGA)的细胞毒性进行了研究。尽管WGA在细胞表面的结合情况相似,但研究发现,WGA在Molt3、K562和PBMC中促进细胞死亡的程度不同,并且在Molt3中诱导不同的导致凋亡的死亡事件,而在K562细胞和PBMC中则诱导凋亡和坏死。在Molt3细胞中而非K562细胞中,50 nM莫能菌素(一种干扰内吞分子细胞内运输的羧酸离子载体)可使WGA的细胞毒性增强66至200倍。通过比较单独使用或联合使用无毒或低毒剂量的WGA和莫能菌素,在Molt3细胞中证明了WGA和莫能菌素细胞毒性之间的协同作用。这些结果表明,WGA的细胞毒性取决于内化事件,而内化事件在所用的细胞系中可能有所不同。WGA和莫能菌素可分别作为麦胚的一种成分和生物工业中出于动物饲养原因使用的一种抗生素进入人类饮食。这些数据揭示了两种饮食分子之间的协同作用,否则它们本身在高得多的浓度下是有毒的,这可能对人类和动物健康产生影响。

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