Instituto e investigación, Desarrollo e Innovación en Biotecnología Sanitaria de Elche (IDiBE), Universidad Miguel Hernández (UMH), E-03202 Elche, Spain.
Biomolecules. 2020 Jul 9;10(7):1015. doi: 10.3390/biom10071015.
The interaction of temozolomide (TMZ) (the main chemotherapeutic agent for brain tumors) with blood components has not been studied at the molecular level to date, even though such information is essential in the design of dosage forms for optimal therapy. This work explores the binding of TMZ to human serum albumin (HSA) and alpha-1-acid glycoprotein (AGP), as well as to blood cell-mimicking membrane systems. Absorption and fluorescence experiments with model membranes indicate that TMZ does not penetrate into the lipid bilayer, but binds to the membrane surface with very low affinity. Fluorescence experiments performed with the plasma proteins suggest that in human plasma, most of the bound TMZ is attached to HSA rather than to AGP. This interaction is moderate and likely mediated by hydrogen-bonding and hydrophobic forces, which increase the hydrolytic stability of the drug. These experiments are supported by docking and molecular dynamics simulations, which reveal that TMZ is mainly inserted in the subdomain IIA of HSA, establishing π-stacking interactions with the tryptophan residue. Considering the overexpression of albumin receptors in tumor cells, our results propose that part of the administered TMZ may reach its target bound to plasma albumin and suggest that HSA-based nanocarriers are suitable candidates for designing biomimetic delivery systems that selectively transport TMZ to tumor cells.
迄今为止,尚未在分子水平上研究替莫唑胺(TMZ)(脑瘤的主要化疗药物)与血液成分的相互作用,尽管此类信息对于设计最佳治疗剂量形式至关重要。本工作探讨了 TMZ 与人血清白蛋白(HSA)和α-1-酸性糖蛋白(AGP)以及模拟血细胞膜系统的结合。用模型膜进行的吸收和荧光实验表明,TMZ 不会穿透脂质双层,而是与膜表面以非常低的亲和力结合。与血浆蛋白进行的荧光实验表明,在人血浆中,大部分结合的 TMZ 与 HSA 而不是与 AGP 结合。这种相互作用适中,可能通过氢键和疏水相互作用介导,这增加了药物的水解稳定性。这些实验得到对接和分子动力学模拟的支持,该模拟表明 TMZ 主要插入 HSA 的亚域 IIA 中,与色氨酸残基建立π-堆积相互作用。考虑到白蛋白受体在肿瘤细胞中的过表达,我们的结果表明,部分给予的 TMZ 可能与血浆白蛋白结合到达其靶标,并表明基于 HSA 的纳米载体是设计仿生递药系统的合适候选物,该系统可选择性地将 TMZ 递送至肿瘤细胞。