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Walking through the wonder years of artificial DNA: peptide nucleic acid

机译:走过人造DNA的奇迹岁月:肽核酸

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Peptide Nucleic Acid (PNA) serves as an artificial functional analog of DNA. Being immune to enzymatic degradation and possessing strong affinity towards DNA and RNA, it is an ideal candidate for many medical and biotechnological applications that are of antisense and antigene in nature. PNAs are anticipated to have its application in DNA and RNA detection as well as quantification, to serve as antibacterial and antiviral agents, and silencing gene for developing anticancer strategies. Although, their restricted entry in both eukaryotic and prokaryotic cells limit their applications. In addition, aggregation of PNA in storage containers reduces the quality and quantity of functional PNA that makes it inadequate for their mass production and storage. To overcome these limitations, researchers have modified PNA either by the addition of diverse functional groups at various loci on its backbone, or by synthesizing chimeras with other moieties associated with various delivery agents that aids their entry into the cell. Here, this review article summarizes few of the structural modifications that are performed with PNA, methods used to improve their cellular uptake and shedding light on the applications of PNA in various prospects in biological sciences.
机译:肽核酸(PNA)用作DNA的人工功能性类似物。免受酶促降解并对DNA和RNA具有强烈亲和力,它是许多医疗和生物技术应用的理想候选者,其在自然界中是反义和抗原的。预计PNA将在DNA和RNA检测中具有其应用以及定量,用作抗菌和抗病毒药物,以及用于制定抗癌策略的沉默基因。虽然,它们在真核和原核细胞中的限制条目限制了它们的应用。此外,储存容器中PNA的聚集降低了功能PNA的质量和数量,使其储存不足。为了克服这些限制,研究人员通过在其骨架上添加各种基因座的不同官能团进行修饰的PNA,或者通过将嵌合体与与各种递送剂相关的其他部分合成,使其进入细胞。在这里,该综述文章总结了使用PNA进行的结构修饰的少数,用于改善其蜂窝摄取和脱落PCA在生物科学中的各种前景中的应用的方法。

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