Bhattacharyya Jayanta, Weitzhandler Isaac, Ho Shihan Bryan, McDaniel Jonathan R, Li Xinghai, Tang Lei, Liu Jinyao, Dewhirst Mark, Chilkoti Ashutosh
Department of Biomedical Engineering, Duke University, Durham, North Carolina 27708, USA.
Duke-NUS Graduate Medical School Singapore, Singapore 169857, Singapore.
Adv Funct Mater. 2017 Mar 24;27(12). doi: 10.1002/adfm.201605421. Epub 2017 Feb 7.
Encapsulating hydrophilic chemotherapeutics into the core of polymeric nanoparticles can improve their therapeutic efficacy by increasing their plasma half-life, tumor accumulation and intracellular uptake, and by protecting them from premature degradation. To achieve these goals, we designed a recombinant asymmetric triblock polypeptide (ATBP) that self-assembles into rod-shaped nanoparticles, and which can be used to conjugate diverse hydrophilic molecules, including chemotherapeutics, into their core. These ATBPs consist of three segments: a biodegradable elastin-like polypeptide, a hydrophobic Tyrosine-rich segment, and a short Cysteine-rich segment, that spontaneously self-assemble into rod-shaped micelles. Covalent conjugation of a structurally diverse set of hydrophilic small molecules, including a hydrophilic chemotherapeutic -gemcitabine- to the Cysteine residues also leads to formation of nanoparticles over a range of ATBP concentrations. Gemcitabine-loaded ATBP nanoparticles have significantly better tumor regression compared to free drug in a murine cancer model. This simple strategy of encapsulation of hydrophilic small molecules by conjugation to an ATBP can be used to effectively deliver a range of water-soluble drugs and imaging agents in vivo.
将亲水性化疗药物封装到聚合物纳米颗粒的核心中,可以通过延长其血浆半衰期、提高肿瘤蓄积和细胞内摄取,并保护它们不被过早降解,从而提高其治疗效果。为实现这些目标,我们设计了一种重组不对称三嵌段多肽(ATBP),它能自组装成棒状纳米颗粒,可用于将包括化疗药物在内的各种亲水分子共轭到其核心中。这些ATBP由三个部分组成:一个可生物降解的类弹性蛋白多肽、一个富含酪氨酸的疏水片段和一个富含半胱氨酸的短片段,它们能自发地自组装成棒状胶束。将包括亲水性化疗药物吉西他滨在内的一系列结构多样的亲水性小分子与半胱氨酸残基共价共轭,在一系列ATBP浓度范围内也会导致纳米颗粒的形成。在小鼠癌症模型中,载有吉西他滨的ATBP纳米颗粒与游离药物相比,具有显著更好的肿瘤消退效果。这种通过与ATBP共轭来封装亲水性小分子的简单策略,可用于在体内有效递送一系列水溶性药物和成像剂。