Abdel-Hafez Shams H, Alexeree Shaimaa M I
Department of Chemistry, Faculty of Science, Assiut University, Assiut, 71516, Egypt.
Department of Laser application in Metrology, Photochemistry and Photobiology, Agriculture National Institute of Laser Enhanced Science, Cairo University, Giza, 12613, Egypt.
BMC Cancer. 2025 Sep 16;25(1):1423. doi: 10.1186/s12885-025-14954-8.
In this study, a new chemical folate conjugated to α-tocopherol (VAF) is introduced. The main goal is to investigate the potential of VAF as a strong anticancer agent. This improves the drug-targeting delivery system and lessens the negative effects associated with traditional chemotherapy.
To synthesize VAF, α-tocopherol, and folic acid were linked by a peptide bond, creating an amphiphilic structure that allowed for self-assembly in aqueous conditions. With an emphasis on evaluating VAF's capacity to target folate receptors, In vitro experiments were carried out utilizing A549 lung cancer cells to assess the anticancer effects of VAF.
VAF was synthesized under mild circumstances, and its characterization was carried out using many analytical techniques, such as FTIR spectroscopy and NMR. In vitro investigations showed that VAF's improved active targeting via folate receptors results in excellent anticancer effects. Additionally, the cell viability of Wi-38 and A549 was assessed by using confocal laser scanning microscopy (CLSM).
According to the research, VAF reduces the possibility of adverse effects while increasing the efficacy of anticancer treatments. The compound exhibits promising properties that make it a great option for additional research and development in cancer treatments. Research provides important new information about drug-targeting delivery systems and improves a potentially useful method for anticancer drug therapeutic indices.
在本研究中,引入了一种与α-生育酚偶联的新型化学叶酸(VAF)。主要目标是研究VAF作为一种强效抗癌剂的潜力。这改善了药物靶向递送系统,并减轻了与传统化疗相关的负面影响。
为了合成VAF,α-生育酚和叶酸通过肽键连接,形成了一种两亲结构,使其能够在水性条件下自组装。重点评估VAF靶向叶酸受体的能力,利用A549肺癌细胞进行体外实验,以评估VAF的抗癌效果。
VAF在温和条件下合成,并使用多种分析技术(如傅里叶变换红外光谱和核磁共振)对其进行表征。体外研究表明,VAF通过叶酸受体改善的主动靶向作用产生了优异的抗癌效果。此外,使用共聚焦激光扫描显微镜(CLSM)评估了Wi-38和A549的细胞活力。
根据研究,VAF在提高抗癌治疗效果的同时降低了产生不良反应的可能性。该化合物具有有前景的特性,使其成为癌症治疗进一步研发的理想选择。该研究提供了有关药物靶向递送系统的重要新信息,并改进了一种潜在有用的抗癌药物治疗指数方法。