1 Institute of Chemical Kinetics and Combustion , Novosibirsk, Russia .
2 Laboratory of Nitrogen Compounds, Novosibirsk Institute of Organic Chemistry , Novosibirsk, Russia .
Antioxid Redox Signal. 2018 May 20;28(15):1394-1403. doi: 10.1089/ars.2017.7406. Epub 2018 Jan 3.
Chemotherapy is currently the principal method for treating many malignancies. Thus, the development of improved antitumor drugs with enhanced efficacy and selectivity remains a high priority. Recent Advances: Anthracycline antibiotics (AAs), for example, doxorubicin, daunomycin, and mitomycin C, belong to an important family of antitumor agents widely used in chemotherapy. These compounds are all quinones. They are, thus, capable of being reduced by appropriate chemicals or reductases. One of their important properties is that under aerobic conditions their reduced forms undergo oxidation, with concomitant generation of reactive oxygen species (ROS), namely, superoxide anion radicals, hydrogen peroxide, and hydroxyl radicals. The presence of metal ions is essential for the generation of ROS by AAs in biological systems.
A fundamental shortcoming of the AAs is their high cardiotoxicity. We have proposed, and experimentally realized, a new type of quinones that is capable of coordinating metal ions. We have demonstrated in vitro that they can be reduced by electron transfer chains and glutathione with concomitant generation of ROS. They can also produce ROS under photo-excitation. The mechanisms of these reactions have been characterized by using nuclear magnetic resonance and electron paramagnetic resonance.
To enhance their therapeutic effectiveness, and decrease cardiotoxicity and other side effects, we intend to conjugate the quinone chelators with monoclonal antibodies and peptide hormones that are specifically targeted to receptors on the cancer cell surface. Some such candidates have already been synthesized. An alternative approach for delivery of our compounds involves the use of specific peptide-based nanoparticles. In addition, our novel approach for treating malignancies is also suitable for photodynamic therapy. Antioxid. Redox Signal. 28, 1394-1403.
化疗是目前治疗许多恶性肿瘤的主要方法。因此,开发具有更好疗效和选择性的改良抗肿瘤药物仍然是当务之急。 最新进展:例如蒽环类抗生素(AA),多柔比星、柔红霉素和丝裂霉素 C 属于广泛用于化疗的一类重要抗肿瘤药物。这些化合物都是醌类。因此,它们可以被适当的化学物质或还原酶还原。它们的一个重要特性是,在有氧条件下,其还原形式会发生氧化,同时产生活性氧(ROS),即超氧阴离子自由基、过氧化氢和羟基自由基。金属离子的存在对于 AA 在生物系统中产生 ROS 是必不可少的。 关键问题:AA 的一个根本缺点是其高心脏毒性。我们已经提出并在实验中实现了一种新型醌类化合物,它能够与金属离子配位。我们已经在体外证明,它们可以通过电子传递链和谷胱甘肽还原,并伴随着 ROS 的产生。它们也可以在光激发下产生 ROS。这些反应的机制已经通过使用核磁共振和电子顺磁共振来表征。 未来方向:为了提高它们的治疗效果,降低心脏毒性和其他副作用,我们打算将醌螯合剂与专门针对癌细胞表面受体的单克隆抗体和肽激素结合。已经合成了一些这样的候选物。我们的化合物的另一种传递方法涉及使用基于特定肽的纳米颗粒。此外,我们治疗恶性肿瘤的新方法也适用于光动力疗法。抗氧化剂。氧化还原信号。28,1394-1403。