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Extension of the PNA world by functionalized PNA monomers eligible candidates for inverse Diels Alder Click Chemistry

机译:通过功能化的PNA单体资格的逆Diels Alder Click化学候选物扩展PNA世界

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摘要

Progress in genome research led to new perspectives in diagnostic applications and to new promising therapies. On account of their specificity and sensitivity, nucleic acids (DNA/RNA) increasingly are in the focus of the scientific interest. While nucleic acids were a target of therapeutic interventions up to now, they could serve as excellent tools in the future, being highly sequence-specific in molecular diagnostics. Examples for imaging modalities are the representation of metabolic processes (Molecular Imaging) and customized therapeutic approaches (“Targeted Therapy”). In the individualized medicine nucleic acids could play a key role; this requires new properties of the nucleic acids, such as stability. Due to evolutionary reasons natural nucleic acids are substrates for nucleases and therefore suitable only to a limited extent as a drug. To use DNA as an excellent drug, modifications are required leading e.g. to a peptide nucleic acid (PNA). Here we show that an easy substitution of nucleobases by functional molecules with different reactivity like the Reppe anhydride and pentenoic acid derivatives is feasible. These derivatives allow an independent multi-ligation of functionalized compounds, e.g. pharmacologically active ones together with imaging components, leading to local concentrations sufficient for therapy and diagnostics at the same time. The high chemical stability and ease of synthesis could enhance nucleic chemistry applications and qualify PNA as a favourite for delivery. This system is not restricted to medicament material, but appropriate for the development of new and highly efficient drugs for a sustainable pharmacy.
机译:基因组研究的进展带来了诊断应用和新的有希望的疗法的新观点。由于其特异性和敏感性,核酸(DNA / RNA)越来越成为科学关注的焦点。迄今为止,核酸一直是治疗干预的目标,但它们在将来可以作为分子诊断中高度序列特异性的优秀工具。成像方式的示例是代谢过程的表示(分子成像)和定制的治疗方法(“靶向治疗”)。在个体化医学中,核酸可能起关键作用;这需要核酸的新特性,例如稳定性。由于进化的原因,天然核酸是核酸酶的底物,因此仅在有限程度上适合作为药物。为了使用DNA作为优良的药物,需要进行修饰,例如先进行修饰。肽核酸(PNA)。在这里,我们表明,用具有不同反应活性的功能分子(如Reppe酸酐和戊烯酸衍生物)轻松取代核碱基是可行的。这些衍生物可以使官能化的化合物,例如N-甲基-异戊二烯独立地多重连接。具有药理活性的物质和成像成分,导致局部浓度足以同时进行治疗和诊断。高化学稳定性和易于合成可以增强核酸化学应用,并使PNA成为最喜欢的递送方式。该系统不限于药物材料,而是适用于开发新型和高效药物以实现可持续药房。

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