Department of Coatings and Polymeric Materials, North Dakota State University, Fargo, ND 58105, USA.
Institute of Chemistry and Biochemistry, Freie Universität Berlin, Berlin 14195, Germany.
Molecules. 2018 May 26;23(6):1281. doi: 10.3390/molecules23061281.
Hyperbranched polyglycerol (hPG) has been used as a multivalent scaffold to develop a series of nanocarriers capable of high-affinity encapsulation of copper (Cu). A rationally selected set of Cu-complexing motifs has been conjugated to hPG hydroxyl groups to render the constructs potentially usable as exogenous sources of Cu for addressing different pathological conditions associated with Cu-deficiency. We have utilized a newly discovered route to attach Cu-binding domains exclusively within a hPG core by selective differentiation between the primary and secondary hydroxyl groups of the polyol. These hPG-derivatives were found to form a stable complex with Cu ions depending on the type of immobilized ligands and corresponding degree of functionalization. In addition, these Cu-bearing nano-complexes demonstrated moderately cationic surface charge resulting in adjustable protein-binding characteristics and low cellular toxicity profile. We envision that these Cu-loaded hPG nanocarriers can be used as a stable platform to transport the metal ion across the systemic circulation to supply bioavailable quantity of Cu in disease-afflicted tissues.
超支化聚甘油(hPG)已被用作多价支架,以开发一系列能够高亲和力包封铜(Cu)的纳米载体。一组经过合理选择的 Cu 络合基序已被共轭到 hPG 羟基上,使这些构建体有可能作为 Cu 的外源性来源,用于解决与 Cu 缺乏相关的不同病理状况。我们利用一种新发现的方法,通过选择性区分多元醇的伯羟基和仲羟基,在 hPG 核内专一地附着 Cu 结合结构域。这些 hPG 衍生物与 Cu 离子形成稳定的配合物,这取决于固定配体的类型和相应的官能化程度。此外,这些带 Cu 的纳米配合物表现出适度的正表面电荷,从而导致可调节的蛋白质结合特性和低细胞毒性。我们设想这些负载 Cu 的 hPG 纳米载体可用作稳定的平台,将金属离子输送穿过全身循环,为患病组织提供生物可利用量的 Cu。