We previously disclosed the discovery of rationally designed N-((1-(4-(propylsulfonyl)piperazin-1-yl)cycloalkyl)methyl)benzamide inhibitors of glycine transporter-1 (GlyT-1), represented by analogues 10 and 11. We describe herein further structure-activity relationship exploration of this series via an optimization strategy that primarily focused on the sulfonamide and benzamide appendages of the scaffold. These efforts led to the identification of advanced leads possessing a desirable balance of excellent in vitro GlyT-1 potency and selectivity, favorable ADME and in vitro pharmacological profiles, and suitable pharmacokinetic and safety characteristics. Representative analogue (+)-67 exhibited robust in vivo activity in the cerebral spinal fluid glycine biomarker model in both rodents and nonhuman primates. Furthermore, rodent microdialysis experiments also demonstrated that oral administration of (+)-67 significantly elevated extracellular glycine levels within the medial prefrontal cortex (mPFC).
The design, synthesis, and structure–activity relationships (SAR) of a series of N-((1-(4-(propylsulfonyl)piperazin-1-yl)cycloalkyl)methyl)benzamide inhibitors of glycine transporter-1 (GlyT-1) are described. Optimization of the benzamide and central ring components of the core scaffold led to the identification of a GlyT-1 inhibitor that demonstrated in vivo activity in a rodent cerebral spinal fluid (CSF) glycine model.
Process development and production of a novel tubulin inhibitor are described. The desired API was obtained through selective iodination of the 12′ position of vinblastine and subsequent thiomethylation. Most of the impurities were identified, and process parameters were adjusted to control such impurities. The optimized process was scaled up under cGMP conditions to afford 230 g of the desired API.
Novel 4-phenyl tetrahydroisoquinolines that inhibit both dopamine and norepinephrine transporters were designed and prepared. In this Letter, we describe the synthesis, in vitro activity and associated structure-activity relationships of this series. We also report the ex vivo NET occupancy of a representative compound, 41.
An indazole based series of glucocorticoid receptor agonists is reported. The SAR exploration of this scaffold yielded compounds with nanomolar affinity for the glucocorticoid receptor with indications of selectivity for the preferred transrepression mechanism; in vivo efficacy was observed in the mouse LPS induced TNFalpha model for compound 28.
Abstract Purpose: ALB-109564 is a novel semi-synthetic Vinca alkaloid which is currently in a Phase I clinical trial. The antitumor activity of ALB-109564 was compared to vinorelbine in human tumor xenograft studies when dosed ip and iv. Methods: The maximum tolerated dose (MTD) of ALB-109564 and vinorelbine was determined in athymic nude mice using both ip and iv dosing on q4dx4 and q7dx4 schedules. Athymic nude mice (n = 10) were implanted sc with a number of human tumor cell lines. Following establishment of measurable tumors, mice received equivalent therapeutic doses, based on their MTDs, of vinorelbine and ALB-109564. Vinorelbine and ALB-109564 were compared by dosing ip (q4dx4) in a panel of five xenografts (H460 NSCLC, Colo205 colon cancer, PC3 prostate cancer, H69 SCLC, and MX-1 breast cancer). Additionally, a comparison of ALB-109564 and vinorelbine was run dosing iv on a q7dx4 schedule in two xenograft models (PC3 and H460). Results: It was discovered that ALB-109564 and vinorelbine were better tolerated when dosed iv rather than ip, allowing higher dose levels of both agents. For example, the MTD for ALB-109564 using the q4dx4 schedule was 6 mpk ip compared with 14 mpk iv. ALB-109564 demonstrated antitumor activity superior to vinorelbine when dosed at their respective MTDs ip. Statistically significant tumor growth delays (TGDs) were observed with ALB-109564 in four of the five xenografts studied while vinorelbine did not significantly delay tumor growth in any of the models when dosing ip. A comparison of the two agents dosed iv in the PC3 and H460 xenograft models showed that both agents induced significant TGDs in both models with ALB-109564 showing superior efficacy in the H460 study (35.7 days TGD vs. 15.7 days at respective MTDs). Conclusions: Preclinical evaluation of tubulin inhibitor ALB-109564 (12′-methylthiovinblastine dihydrochloride) demonstrated in vivo oncolytic activity against several human tumor cell types in xenograft models greater than that seen with vinorelbine. These results demonstrate that minor structural modifications of vinca alkaloids can have a large impact on activity. Based on these results a Phase I clinical study with ALB-109564 was initiated in August 2008 and is ongoing through dose-escalation. Citation Information: Mol Cancer Ther 2009;8(12 Suppl):C232.
We report the synthesis of benzoazepine-derived cyclic malonamides (2) and aminoamides (3) as gamma-secretase inhibitors for the potential treatment of Alzheimer's disease. The in vitro structure-activity relationships of 2 and 3 along with dog pharmacokinetic results are described. (C) 2007 Elsevier Ltd. All rights reserved.
AbstractChemInform is a weekly Abstracting Service, delivering concise information at a glance that was extracted from about 100 leading journals. To access a ChemInform Abstract of an article which was published elsewhere, please select a “Full Text” option. The original article is trackable via the “References” option.
AbstractChemInform is a weekly Abstracting Service, delivering concise information at a glance that was extracted from about 100 leading journals. To access a ChemInform Abstract of an article which was published elsewhere, please select a “Full Text” option. The original article is trackable via the “References” option.