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Dendrimers and Dendritic Polymers as Anti-infective Agents: New Antimicrobial Strategies for Therapeutic Drugs

机译:树状聚合物和树状聚合物作为抗感染剂:治​​疗药物的新抗菌策略

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摘要

Nearly 3 decades ago, a dendritic structure was stepwise synthesized for the first time as a new type of molecules with promising applications. During years a huge effort has been devoted to implement the synthetic skills concerning the synthesis of these molecules and especially, new methods for purification and characterization of these compounds that are in the nanoscale range. The chemical manipulation of the surface and inner core of dendrimers were strategically used to allow a tailor-made control of physical-chemical properties and to discover new applications in material science and biomedicine. Although several examples have been reported in the literature describing applications of functionalized dendrimers and acclaiming a key role of these molecules, very scarce examples are actually close to the market. This review summarizes the state of the art of dendrimers and dendritic polymers as anti-infective agents, with a special focus on the strategies to block receptors used by pathogens for attachment, cell entry and dissemination. These nanometre size molecules are very attractive compounds as new drugs easily to be manipulated to improve their activity and scope. This is already a very active area of research, where we are involved, with interesting potential as demonstrated by the Phase I clinical trial of a functionalized dendrimer with real possibilities to reach the market soon. The success of this compound should provoke an enormous stimulus to scientists working in this area as well as in the industrial companies for investment in this topic.
机译:近三十年前,树突状结构首次逐步合成,是一种具有广阔应用前景的新型分子。多年来,人们投入了巨大的努力来实现有关这些分子合成的合成技术,尤其是用于纯化和表征这些纳米级化合物的新方法。树状聚合物表面和内核的化学处理被策略性地用于允许对物理化学性质进行量身定制的控制,并发现其在材料科学和生物医学中的新应用。尽管在文献中已经报道了几个实例,描述了功能化树枝状聚合物的应用并赞扬了这些分子的关键作用,但实际上很少有实例接近市场。这篇综述总结了树枝状聚合物和树枝状聚合物作为抗感染剂的技术现状,特别关注了阻断病原体用于附着,细胞进入和传播的受体的策略。这些纳米尺寸的分子是非常有吸引力的化合物,因为新药物易于操作以改善其活性和范围。正如我们所参与的,这已经是一个非常活跃的研究领域,它具有有趣的潜力,如功能化树枝状聚合物的I期临床试验所证明的那样,它很快就有可能进入市场。该化合物的成功应激发该领域以及工业公司中的科学家对该领域进行投资的巨大动力。

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