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Demonstrating specificity of bioactive peptide nucleic acids (PNAs) targeting microRNAs for practical laboratory classes of applied biochemistry and pharmacology

机译:展示针对microRNA的生物活性肽核酸(PNA)的特异性,适用于应用生物化学和药理学的实用实验室类别

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摘要

Practical laboratory classes teaching molecular pharmacology approaches employed in the development of therapeutic strategies are of great interest for students of courses in Biotechnology, Applied Biology, Pharmaceutic and Technology Chemistry, Translational Oncology. Unfortunately, in most cases the technology to be transferred to learning students is complex and requires multi-step approaches. In this respect, simple and straightforward experimental protocols might be of great interest. This study was aimed at presenting a laboratory exercise focusing (a) on a very challenging therapeutic strategy, i.e. microRNA therapeutics, and (b) on the employment of biomolecules of great interest in applied biology and pharmacology, i.e. peptide nucleic acids (PNAs). The aims of the practical laboratory were to determine: (a) the possible PNA-mediated arrest in RT-qPCR, to be eventually used to demonstrate PNA targeting of selected miRNAs; (b) the possible lack of activity on mutated PNA sequences; (c) the effects (if any) on the amplification of other unrelated miRNA sequences. The results which can be obtained support the following conclusions: PNA-mediated arrest in RT-qPCR can be analyzed in a easy way; mutated PNA sequences are completely inactive; the effects of the employed PNAs are specific and no inhibitory effect occurs on other unrelated miRNA sequences. This activity is simple (cell culture, RNA extraction, RT-qPCR are all well-established technologies), fast (starting from isolated and characterized RNA, few hours are just necessary), highly reproducible (therefore easily employed by even untrained students). On the other hand, these laboratory lessons require some facilities, the most critical being the availability of instruments for PCR. While this might be a problem in the case these instruments are not available, we would like to underline that determination of the presence or of a lack of amplified product can be also obtained using standard analytical approaches based on agarose gel electrophoresis.
机译:生物技术,应用生物学,药学和技术化学,转化肿瘤学课程的学生对在治疗策略发展中采用的分子药理学方法的实用实验室课程教学非常感兴趣。不幸的是,在大多数情况下,要转让给正在学习的学生的技术很复杂,需要多步方法。在这方面,简单而直接的实验方案可能会引起人们的极大兴趣。这项研究的目的是提出一种实验室练习,其重点是(a)一种非常具有挑战性的治疗策略,即microRNA治疗,以及(b)使用应用生物学和药理学中非常感兴趣的生物分子,即肽核酸(PNA)。实际实验室的目的是确定:(a)RT-qPCR中可能由PNA介导的停滞,最终用于证明PNA靶向选定的miRNA; (b)突变的PNA序列可能缺乏活性; (c)对其他无关的miRNA序列扩增的影响(如果有)。获得的结果支持以下结论:可以轻松地分析RT-qPCR中PNA介导的阻滞;突变的PNA序列完全无效;使用的PNA的作用是特异性的,对其他无关的miRNA序列没有抑制作用。此活动简单(细胞培养,RNA提取,RT-qPCR都是公认的技术),快速(从分离和表征的RNA开始,仅需要几个小时),高度可重复(因此即使未经培训的学生也容易使用)。另一方面,这些实验室课程需要一些设备,最关键的是PCR仪器的可用性。尽管在无法使用这些仪器的情况下可能会出现问题,但我们想强调的是,也可以使用基于琼脂糖凝胶电泳的标准分析方法来确定扩增产物的存在与否。

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