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Polyvalent nucleic acid aptamers and modulation of their activity: A focus on the thrombin binding aptamer

机译:多价核酸适体及其活性调节:凝血酶结合适体的研究

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Nucleic acid-based aptamers can be selected from combinatorial libraries of synthetic oligonucleotides to bind, with affinity and specificity similar to antibodies, a wide range of biomedically relevant targets. Compared to protein therapeutics, aptamers exhibit significant advantages in terms of size, non-immunogenicity and wide synthetic accessibility. Various chemical modifications have been introduced in the natural oligonucleotide backbone of aptamers in order to increase their half-life, as well as their pharmacological properties. Very effective alternative approaches, devised in order to improve both the aptamer activity and stability, were based on the design of polyvalent aptamers, able to establish multivalent interactions with the target: thus, multiple copies of an aptamer can be assembled on the same molecular- or nanomaterial-based scaffold. In the present review, the thrombin binding aptamers (TBAs) are analyzed as a model system to study multiple-aptamer constructs aimed at improving their anticoagulation activity in terms of binding to the target and stability to enzymatic degradation. Indeed - even if the large number of chemically modified TBAs investigated in the last 20 years has led to encouraging results - a significant progress has been obtained only recently with bivalent or engineered dendritic TBA aptamers, or assemblies of TBAs on nanoparticles and DNA nanostructures. Furthermore, the modulation of the aptamers activity by means of tailored drug-active reversal agents, especially in the field of anticoagulant aptamers, as well as the reversibility of the TBA activity through the use of antidotes, such as porphyrins, complementary oligonucleotides or of external stimuli, are discussed.
机译:可以从合成寡核苷酸的组合文库中选择基于核酸的适体,以与抗体相似的亲和力和特异性结合多种生物医学相关靶标。与蛋白质治疗剂相比,适体在大小,非免疫原性和广泛的合成可及性方面显示出显着的优势。已将各种化学修饰引入适体的天然寡核苷酸主链中以增加其半衰期以及其药理特性。为了提高适体活性和稳定性而设计的非常有效的替代方法是基于多价适体的设计,能够与靶标建立多价相互作用:因此,可以在同一分子上组装适体的多个拷贝,或基于纳米材料的支架。在本综述中,将凝血酶结合适体(TBA)作为模型系统进行分析,以研究旨在改善其抗凝活性的多适体构建体与靶标的结合以及对酶促降解的稳定性。的确-即使在过去20年中对大量化学修饰的TBA进行了研究,结果令人鼓舞-直到最近,二价或工程化的树枝状TBA适体或纳米颗粒和DNA纳米结构上的TBA组装才取得了重大进展。此外,通过量身定制的药物活性逆转剂调节适体活性,特别是在抗凝适体领域,以及通过使用解毒剂(如卟啉,互补寡核苷酸或外用)可逆转TBA活性刺激,进行讨论。

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