Doxorubicin covalently conjugated heparin displays anti-cancer activity as a self-assembled nanoparticle with a low-anticoagulant effect

阿霉素 肝素 共轭体系 共价键 抗凝剂 化学 纳米颗粒 药理学 纳米技术 聚合物 材料科学 生物化学 医学 化疗 内科学 有机化学
作者
Jae-Hyeon Lee,Seong-Bin Yang,Jun Hyuck Lee,Hansol Lim,Seokwoo Lee,Tae‐Bong Kang,Ji-Hong Lim,Young Jun Kim,Jooho Park
出处
期刊:Carbohydrate Polymers [Elsevier BV]
卷期号:314: 120930-120930 被引量:30
标识
DOI:10.1016/j.carbpol.2023.120930
摘要

Heparin is a glycosaminoglycans (GAGs) member and well-known FDA-approved anticoagulant that has been widely used in the clinic for 100 years. It has also been evaluated in various fields for further clinical applications, such as in anti-cancer or anti-inflammatory therapy beyond its anticoagulant effect. Here, we sought to utilize heparin molecules as drug carriers by directly conjugating the anticancer drug doxorubicin to the carboxyl group of unfractionated heparin. Given the molecular action of doxorubicin in intercalating DNA, it is expected to be less effective when structurally combined with other molecules. However, by utilizing doxorubicin molecules to produce reactive oxygen species (ROS), we found that the heparin–doxorubicin conjugates have significant cytotoxic ability to kill CT26 tumor cells with low anticoagulant activity. Several doxorubicin molecules were bound to heparin to provide sufficient cytotoxic capability and self-assembly ability due to their amphiphilic properties. The self-assembled formation of these nanoparticles was demonstrated through DLS, SEM and TEM. The cytotoxic ROS-generating doxorubicin-conjugated heparins could inhibit tumor growth and metastasis in CT26-bearing Balb/c animal models. Our results demonstrate that this cytotoxic doxorubicin-based heparin conjugate can significantly inhibit tumor growth and metastasis, thus showing promise as a potential new anti-cancer therapeutic.
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