Antitumor Effect of Zwitterions of Imidazolium Derived from L-methionine in BALB/c Mice with Lymphoma L5178Y.

Karen C Vargas-Castro, Ana M Puebla Pérez, Irma I Rangel-Salas, Jorge I Delgado-Saucedo, José B Pelayo-Vázquez, Elvia Becerra-Martínez, Alejandro A Peregrina-Lucano, Raul R Quiñonez-Lopez, Gabriela J Soltero-Reynoso, Sara A Cortes-Llamas
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Abstract

Background: In the therapy of cancer, several treatments have been designed using nanomaterials, among which gold nanoparticles (AuNPs) have been featured as a promising antitumoral agent. Our research group has developed the synthesis of gold nanoparticles L-AuNPs and D-AuNPs stabilized with zwitterions of imidazolium (L-1 and D-1) derived from L-methionine and D-methionine. Because the stabilizer agent is chiral, we observed through circular dichroism that AuNPs also present chirality; such chirality as well as the fact that the stabilizing agent contains fragments of methionine and imidazolium that are commonly involved in biological processes, opens up the possibility that this system may have biological compatibility. Additionally, the presence of methionine in the stabilizing agent opens the application of this system as a possible antitumor agent because methionine is involved in methylation processes of molecules such as DNA.

Objective: The aim of this research is the evaluation of the antitumor activity of gold nanoparticles stabilized with zwitterions of imidazolium (L-AuNPs) derived from L-methionine in the model of BALB/c mice with lymphoma L5178Y.

Methods: Taking as a parameter cell density, the evaluation of the inhibitory effect of L-AuNPs was carried out with a series of in vivo tests in BALB/c type mice; three groups of five mice each were formed (Groups 1, 2 and 3); all mice were i.p. inoculated with the lymphoblast murine L5178Y. Group 1 consisted of mice without treatment. In the Groups 2 and 3 the mice were treated with L-AuNPs at 0.3 mg/Kg on days 1, 7 and 14 by orally and intraperitonally respectively.

Results: These results show low antitumor activity of these gold nanoparticles (L-NPsAu) but interestingly, the imidazolium stabilizing agent of gold nanoparticle (L-1) displayed promising antitumor activity. On the other hand, the enantiomer of L-1, (D-1) as well as asymmetric imidazole derivate from L-methionine (L-2), do not exhibit the same activity as L-1.

Conclusion: The imidazolium stabilizing agent (L-1) displayed promising antitumor activity. Modifications in the structure of L-1 showed that, the stereochemistry (like D-1) and the presence of methionine fragments (like L-2) are determinants in the antitumor activity of this compound.

由 L-蛋氨酸衍生的咪唑鎓齐聚物对 BALB/c 淋巴瘤 L5178Y 小鼠的抗肿瘤作用
背景:在癌症治疗方面,已经设计出多种使用纳米材料的疗法,其中金纳米粒子(AuNPs)是一种很有前景的抗肿瘤药物。我们的研究小组开发了用从 L-蛋氨酸和 D-蛋氨酸中提取的咪唑盐(L-1 和 D-1)稳定的金纳米粒子 L-AuNPs 和 D-AuNPs。由于稳定剂是手性的,我们通过圆二色性观察到 AuNPs 也具有手性;这种手性以及稳定剂含有蛋氨酸和咪唑鎓片段这一事实,都是生物过程中常见的成分,因此该系统可能具有生物兼容性。此外,由于蛋氨酸参与了 DNA 等分子的甲基化过程,稳定剂中蛋氨酸的存在使该系统有可能被用作抗肿瘤剂:本研究的目的是在 BALB/c 淋巴瘤 L5178Y 小鼠模型中评估由 L-蛋氨酸衍生的咪唑类齐聚物(L-AuNPs)稳定的金纳米粒子的抗肿瘤活性:以细胞密度为参数,在 BALB/c 型小鼠体内进行了一系列试验,评估 L-AuNPs 的抑制作用。第 1 组小鼠未经处理。第 2 组和第 3 组的小鼠分别在第 1、7 和 14 天口服和腹腔注射 0.3 mg/Kg 的 L-AuNPs 治疗:结果表明,这些金纳米粒子(L-NPsAu)的抗肿瘤活性较低,但有趣的是,金纳米粒子的咪唑稳定剂(L-1)显示出良好的抗肿瘤活性。另一方面,L-1 的对映体(D-1)以及来自 L-蛋氨酸的不对称咪唑衍生物(L-2)并没有表现出与 L-1 相同的活性:结论:咪唑稳定剂(L-1)具有良好的抗肿瘤活性。对 L-1 结构的修改表明,立体化学结构(如 D-1)和蛋氨酸片段的存在(如 L-2)是该化合物抗肿瘤活性的决定因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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