Department of Pharmaceutical Technology and Biochemistry and BioMedTech Centre, Faculty of Chemistry, Gdańsk University of Technology, Gabriela Narutowicza Str. 11/12, 80-233 Gdańsk, Poland.
Institute of Bioorganic Chemistry, Polish Academy of Sciences, Zygmunta Noskowskiego Str. 12/14, 61-704 Poznań, Poland.
Molecules. 2022 Jun 21;27(13):3995. doi: 10.3390/molecules27133995.
Unsymmetrical bisacridines (UAs) represent a novel class of anticancer agents previously synthesized by our group. Our recent studies have demonstrated their high antitumor potential against multiple cancer cell lines and human tumor xenografts in nude mice. At the cellular level, these compounds affected 3D cancer spheroid growth and their cellular uptake was selectively modulated by quantum dots. UAs were shown to undergo metabolic transformations in vitro and in tumor cells. However, the physicochemical properties of UAs, which could possibly affect their interactions with molecular targets, remain unknown. Therefore, we selected four highly active UAs for the assessment of physicochemical parameters under various pH conditions. We determined the compounds' pK dissociation constants as well as their potential to self-associate. Both parameters were determined by detailed and complex chemometric analysis of UV-Vis spectra supported by nuclear magnetic resonance (NMR) spectroscopy. The obtained results indicate that general molecular properties of UAs in aqueous media, including their protonation state, self-association ratio, and solubility, are strongly pH-dependent, particularly in the physiological pH range of 6 to 8. In conclusion, we describe the detailed physicochemical characteristics of UAs, which might contribute to their selectivity towards tumour cells as opposed to their effect on normal cells.
不对称双吖啶(UAs)是一类新型的抗癌药物,此前由我们小组合成。我们最近的研究表明,它们对多种癌细胞系和裸鼠人肿瘤异种移植物具有很高的抗肿瘤潜力。在细胞水平上,这些化合物影响 3D 癌症球体的生长,并且它们的细胞摄取被量子点选择性地调节。UAs 被证明在体外和肿瘤细胞中发生代谢转化。然而,UAs 的物理化学性质可能会影响它们与分子靶标的相互作用,这些性质仍然未知。因此,我们选择了四种高活性的 UAs 来评估在各种 pH 条件下的物理化学参数。我们确定了化合物的 pK 离解常数以及它们自缔合的能力。这两个参数都是通过详细和复杂的化学计量分析 UV-Vis 光谱来确定的,该分析得到了核磁共振(NMR)光谱的支持。得到的结果表明,UAs 在水介质中的一般分子性质,包括其质子化状态、自缔合比和溶解度,强烈依赖于 pH 值,特别是在 6 到 8 的生理 pH 范围内。总之,我们描述了 UAs 的详细物理化学特性,这可能有助于它们对肿瘤细胞的选择性,而不是对正常细胞的影响。