Kablaoui Natasha, Vanase-Frawley Michelle, Sciabola Simone
Pfizer Worldwide Research and Development, 610 Main Street, Cambridge, MA 02139, United States; Pfizer Worldwide Research and Development, Eastern Point Rd, Groton, CT 026340, United States.
Pfizer Worldwide Research and Development, 610 Main Street, Cambridge, MA 02139, United States; Pfizer Worldwide Research and Development, Eastern Point Rd, Groton, CT 026340, United States.
Bioorg Med Chem Lett. 2018 Feb 1;28(3):415-419. doi: 10.1016/j.bmcl.2017.12.027. Epub 2017 Dec 13.
Oxytocin (OT) is a peptide hormone agonist of the oxytocin receptor (OTR) that has been proposed as a therapeutic to treat a number of social and emotional disorders in addition to its current clinical use to induce labor and treat postpartum bleeding. OT is administered intravenously and intranasally rather than orally, in part because its low passive permeability causes low oral bioavailability. Non-peptidic OTR agonists have also been reported, but none with the exquisite potency of the peptide based agonists. In this report, we describe the OTR agonist activity and exposed polarity of a set of truncated OT analogs as well as hybrid peptide-small molecule analogs of OT. Examples of both truncated analogs and peptide-small molecule hybrid analogs are potent and selective OTR agonists. Hybrid agonist 13, which is 232 Da smaller than OT, still retains subnanomolar potency, full agonist activity, and selectivity over V1a. While these compounds were designed to address the low permeability of OT and other full length analogs, we found that reduction in molecular weight and the removal or replacement of the three amino acid tail of OT did not have a significant effect on passive permeability.
催产素(OT)是一种催产素受体(OTR)的肽类激素激动剂,除了目前用于引产和治疗产后出血的临床用途外,它还被提议作为治疗多种社会和情感障碍的药物。OT通过静脉内和鼻内给药,而非口服给药,部分原因是其低被动通透性导致口服生物利用度低。也有非肽类OTR激动剂的报道,但没有一种具有基于肽的激动剂那样的高活性。在本报告中,我们描述了一组截短的OT类似物以及OT的杂合肽 - 小分子类似物的OTR激动剂活性和暴露的极性。截短类似物和肽 - 小分子杂合类似物的实例都是有效的和选择性的OTR激动剂。杂合激动剂13比OT小232 Da,仍然保留了亚纳摩尔级别的效力、完全激动剂活性以及对V1a的选择性。虽然这些化合物旨在解决OT和其他全长类似物的低通透性问题,但我们发现分子量的降低以及OT三个氨基酸尾巴的去除或替换对被动通透性没有显著影响。