Anti-angiogenic poly-L-lysine dendrimer binds heparin and neutralizes its activity

Khuloud T. Al-Jamal , Wafa T. Al-Jamal , Kostas Kostarelos , John A. Turton , Alexander T. Florence
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引用次数: 21

Abstract

The interaction between heparin, a polyanion, and a polycationic dendrimer with a glycine core and lysine branches Gly–Lys63(NH2)64 has been investigated. Complexation was assessed by transmission electron microscopy, size and zeta potential measurements, methylene blue spectroscopy, and measuring the anti-coagulant activity of heparin in vitro and in vivo. Complete association between the heparin and the dendrimer occurred a 1:1 mass ratio (2:1 molar ratio or +/−charge ratio) with formation of quasi-spherical complexes in the size range of 99–147 nm with a negative zeta potential (−47 mV). Heparin–dendrimer (dendriplex) formation led to a concentration-dependent neutralization of the anticoagulant activity of heparin in human plasma in vitro, with complete loss of activity at a 1:1 mass ratio. The anticoagulant activity of the dendriplexes in Sprague-Dawley rats was also evaluated after subcutaneous administration with uncomplexed heparin as a comparator. The in vivo anticoagulant activity of heparin in plasma, evaluated using an antifactor Xa assay, was abolished after complexation. Measurement of [3H]-heparin showed that both free heparin and dendriplexes were present in plasma and in organs. Such data confirmed stably the formation of dendriplexes, which could be essential in developing novel dendrimer-based anti-angiogenic therapeutics suitable in combinatory therapeutics and theranostics.

抗血管生成聚l -赖氨酸树突状物结合肝素并中和其活性
研究了肝素、聚阴离子和具有甘氨酸核心和赖氨酸分支的聚阳离子树状大分子Gly-Lys63 (NH2)64之间的相互作用。通过透射电镜、尺寸和zeta电位测量、亚甲基蓝光谱以及肝素在体外和体内的抗凝血活性来评估络合性。肝素与树状大分子以1:1的质量比(2:1的摩尔比或+/−电荷比)完全结合,形成尺寸为99 ~ 147 nm的准球形配合物,zeta电位为负(- 47 mV)。肝素-树突(树突)的形成导致体外人血浆中肝素抗凝活性的浓度依赖性中和,以1:1的质量比完全丧失活性。我们还对Sprague-Dawley大鼠皮下给药后的树突的抗凝血活性进行了评估,并以未配合的肝素作为比较物。血浆中肝素的体内抗凝血活性,用抗因子Xa测定评估,在络合后被消除。[3H]-肝素测定显示血浆和器官中均存在游离肝素和树突。这些数据稳定地证实了树突的形成,这对于开发适用于联合治疗和治疗的新型树突基抗血管生成疗法至关重要。
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