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一种叶酸受体靶向的二氮杂环庚三烯环开环吡咯并苯并二氮杂卓前药共轭物的设计与合成。

Design and synthesis of a folate-receptor targeted diazepine-ring-opened pyrrolobenzodiazepine prodrug conjugate.

作者信息

Vlahov Iontcho R, Qi Longwu, Santhapuram Hari Krishna R, Felten Albert, Parham Garth L, Zou Ning, Wang Kevin, You Fei, Vaughn Jeremy F, Hahn Spencer J, Klein Hanna F, Kleindl Paul J, Reddy Joe, Reno Dan, Nicoson Jeff, Leamon Christopher P

机构信息

Endocyte Inc., 3000 Kent Ave., W. Lafayette, IN 47906, USA.

Endocyte Inc., 3000 Kent Ave., W. Lafayette, IN 47906, USA.

出版信息

Bioorg Med Chem Lett. 2020 Apr 1;30(7):126987. doi: 10.1016/j.bmcl.2020.126987. Epub 2020 Jan 27.

DOI:10.1016/j.bmcl.2020.126987
PMID:32029324
Abstract

Pyrrolobenzodiazepines (PBDs) and their dimers (bis-PBDs) have emerged as some of the most potent chemotherapeutic compounds and are currently under development as novel payloads in antibody-drug conjugates (ADCs). However, when used as stand-alone therapeutics or as warheads for small molecule drug conjugates (SMDCs), dose-limiting toxicities are often observed. As an elegant solution to this inherent problem, we designed and synthesized a diazepine-ring-opened bis-PBD prodrug (pro-PBD-PBD) folate conjugate lacking the one of the two imine moieties found in the corresponding free bis-PBD. Upon entering a targeted cell, cleavage of the linker system, including the hydrolysis of an oxazolidine moiety, results in the formation of a reactive intermediate which possesses a newly formed aldehyde as well as an aromatic amine. A fast and spontaneous intramolecular ring-closing reaction subsequently takes place as the aromatic amine adds to the aldehyde with the loss of water to give the imine, and as a result, the diazepine ring, thereby delivering the bis-PBD to the targeted cell. The in vitro and in vivo activity of this conjugate has been evaluated on folate receptor positive KB cells. Sub-nanomolar activity with good specificity and high cure rates with minimal toxicity have been observed.

摘要

吡咯并苯二氮卓类化合物(PBDs)及其二聚体(双PBDs)已成为一些最有效的化疗化合物,目前正作为抗体药物偶联物(ADCs)中的新型有效载荷进行研发。然而,当用作单独的治疗药物或小分子药物偶联物(SMDCs)的弹头时,经常会观察到剂量限制性毒性。作为解决这一固有问题的巧妙方法,我们设计并合成了一种二氮卓环开环的双PBD前药(前体-PBD-PBD)叶酸偶联物,该偶联物缺少相应游离双PBD中存在的两个亚胺基团之一。进入靶向细胞后,连接系统的裂解,包括恶唑烷部分的水解,导致形成一种反应性中间体,该中间体具有新形成的醛以及芳香胺。随后发生快速且自发的分子内环合反应,因为芳香胺与醛加成并失去水生成亚胺,结果形成二氮卓环,从而将双PBD递送至靶向细胞。已在叶酸受体阳性的KB细胞上评估了该偶联物的体外和体内活性。观察到其具有亚纳摩尔活性,特异性良好,治愈率高且毒性极小。

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