Talhami Alaa, Swed Avi, Hess Shmuel, Ovadia Oded, Greenberg Sarit, Schumacher-Klinger Adi, Rosenthal David, Shalev Deborah E, Hurevich Mattan, Lazarovici Philip, Hoffman Amnon, Gilon Chaim
Department of Organic Chemistry, Institute of Chemistry, The Hebrew University of Jerusalem, Jerusalem, Israel.
School of Pharmacy, Institute for Drug Research, The Hebrew University of Jerusalem, Jerusalem, Israel.
Front Chem. 2020 Nov 12;8:532577. doi: 10.3389/fchem.2020.532577. eCollection 2020.
Painkillers are commonly used medications. Native peptide painkillers suffer from various pharmacological disadvantages, while small molecule painkillers like morphine are highly addictive. We present a general approach aimed to use backbone-cyclization to develop a peptidomimetic painkiller. Backbone-cyclization was applied to transform the linear peptide Tyr-Arg-Phe-Sar (TAPS) into an active backbone-cyclic peptide with improved drug properties. We designed and synthesized a focused backbone-cyclic TAPS library with conformational diversity, in which the members of the library have the generic name TAPS c(n-m) where n and m represent the lengths of the alkyl chains on the nitrogens of Gly and Arg, respectively. We used a combined screening approach to evaluate the pharmacological properties and the potency of the TAPS c(n-m) library. We focused on an active compound, , which is metabolically stable and has the potential to become a peripheral painkiller being a full μ opioid receptor functional agonist. To prepare a large quantity of , we optimized the conditions of the on-resin reductive alkylation step to increase the efficiency of its SPPS. NMR was used to determine the solution conformation of the peptide lead .
止痛药是常用药物。天然肽类止痛药存在各种药理学缺点,而像吗啡这样的小分子止痛药具有高度成瘾性。我们提出了一种通用方法,旨在利用主链环化来开发一种拟肽类止痛药。应用主链环化将线性肽Tyr-Arg-Phe-Sar(TAPS)转化为具有改善药物特性的活性主链环肽。我们设计并合成了一个具有构象多样性的聚焦主链环化TAPS文库,其中文库成员具有通用名称TAPS c(n-m),其中n和m分别代表Gly和Arg氮原子上烷基链的长度。我们使用组合筛选方法来评估TAPS c(n-m)文库的药理学特性和效力。我们重点关注一种活性化合物,它代谢稳定,作为完全μ阿片受体功能激动剂有潜力成为一种外周止痛药。为了大量制备该化合物,我们优化了树脂上还原烷基化步骤的条件以提高其固相肽合成的效率。使用核磁共振来确定肽先导物的溶液构象。