Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Marmara University, Istanbul, Turkey.
Anticancer Agents Med Chem. 2019;19(10):1205-1222. doi: 10.2174/1871520619666190227174137.
Cancer is one of the most life-threatening diseases worldwide. Since inflammation is considered to be one of the known characteristics of cancer, the activity of PGE2 has been paired with different tumorigenic steps such as increased tumor cell proliferation, resistance to apoptosis, increased invasiveness, angiogenesis and immunosuppression.
It has been successfully demonstrated that inhibition of mPGES-1 prevented inflammation in preclinical studies. However, despite the crucial roles of mPGEs-1 and PGE2 in tumorigenesis, there is not much in vivo study on mPGES-1 inhibition in cancer therapy. The specificity of mPGEs-1 enzyme and its low expression level under normal conditions makes it a promising drug target with a low risk of side effects.
A comprehensive literature search was performed for writing this review. An updated view on PGE2 biosynthesis, PGES isoenzyme family and its pharmacology and the latest information about inhibitors of mPGES-1 have been discussed.
In this study, it was aimed to highlight the importance of mPGES-1 and its inhibition in inflammationrelated cancer and other inflammatory conditions. Information about PGE2 biosynthesis, its role in inflammationrelated pathologies were also provided. We kept the noncancer-related inflammatory part short and tried to bring together promising molecules or scaffolds.
The information provided in this review might be useful to researchers in designing novel and potent mPGES-1 inhibitors for the treatment of cancer and inflammation.
癌症是全球最具威胁生命的疾病之一。由于炎症被认为是癌症的已知特征之一,因此 PGE2 的活性与不同的肿瘤发生步骤相关联,如增加肿瘤细胞增殖、抗细胞凋亡、增加侵袭性、血管生成和免疫抑制。
在临床前研究中,已经成功证明抑制 mPGES-1 可预防炎症。然而,尽管 mPGEs-1 和 PGE2 在肿瘤发生中起着至关重要的作用,但在癌症治疗中关于 mPGES-1 抑制的体内研究并不多。mPGEs-1 酶的特异性及其在正常条件下的低表达水平使其成为具有低副作用风险的有前途的药物靶点。
为撰写这篇综述进行了全面的文献检索。讨论了关于 PGE2 生物合成、PGES 同工酶家族及其药理学以及 mPGES-1 抑制剂的最新信息的最新观点。
在这项研究中,旨在强调 mPGES-1 及其在炎症相关癌症和其他炎症性疾病中的抑制的重要性。还提供了有关 PGE2 生物合成、其在炎症相关病理中的作用的信息。我们将非癌症相关炎症部分缩短,并试图将有前途的分子或支架汇集在一起。
本文提供的信息可能对研究人员设计用于治疗癌症和炎症的新型有效 mPGES-1 抑制剂有用。