Hill Sophie K, England Richard M, Perrier Sébastien
Department of Chemistry, University of Warwick, Gibbet Hill Road, Coventry CV4 7AL, UK.
Advanced Drug Delivery, Pharmaceutical Sciences, R&D, AstraZeneca, Macclesfield, UK.
J Control Release. 2024 Mar;367:687-696. doi: 10.1016/j.jconrel.2024.01.023. Epub 2024 Feb 9.
High aspect-ratio nanomaterials have recently emerged as promising drug delivery vehicles due to evidence of strong cellular association and prolonged in vivo circulation times. Cyclic peptide - polymer conjugate nanotubes are excellent candidates due to their elongated morphology, their supramolecular composition and high degree of pliability due to the versatility in manipulating amino acid sequence and polymer type. In this work, we explore the use of a nanotube structure on which a potent anti-cancer drug, camptothecin, is attached alongside hydrophilic or amphiphilic RAFT polymers, which shield the cargo. We show that subtle modifications to the cleavable linker type and polymer architecture have a dramatic influence over the rate of drug release in biological conditions. In vitro studies revealed that multiple cancer cell lines in 2D and 3D models responded effectively to the nanotube treatment, and analogous fluorescently labelled materials revealed key mechanistic information regarding the degree of cellular uptake and intracellular fate. Importantly, the ability to instruct specific drug release profiles indicates a potential for these nanomaterials as vectors which can provide sustained drug concentrations for a maximal therapeutic effect.
由于有证据表明高纵横比纳米材料具有强烈的细胞关联性和延长的体内循环时间,它们最近已成为很有前景的药物递送载体。环肽-聚合物共轭纳米管是极佳的候选材料,因为它们具有细长的形态、超分子组成,并且由于在操纵氨基酸序列和聚合物类型方面的多功能性而具有高度柔韧性。在这项工作中,我们探索了一种纳米管结构的用途,在该结构上连接了一种强效抗癌药物喜树碱以及亲水性或两亲性RAFT聚合物,这些聚合物可保护药物。我们表明,对可裂解连接子类型和聚合物结构的细微修饰会对生物条件下的药物释放速率产生显著影响。体外研究表明,二维和三维模型中的多种癌细胞系对纳米管处理有有效反应,类似的荧光标记材料揭示了有关细胞摄取程度和细胞内命运的关键机制信息。重要的是,能够指导特定的药物释放曲线表明这些纳米材料作为载体具有潜力,可为最大治疗效果提供持续的药物浓度。