389628-23-3Relevant academic research and scientific papers
Inhibitors of HIV-1 attachment. Part 8: The effect of C7-heteroaryl substitution on the potency, and in vitro and in vivo profiles of indole-based inhibitors
Yeung, Kap-Sun,Qiu, Zhilei,Yin, Zhiwei,Trehan, Ashok,Fang, Haiquan,Pearce, Bradley,Yang, Zheng,Zadjura, Lisa,D'Arienzo, Celia J.,Riccardi, Keith,Shi, Pei-Yong,Spicer, Timothy P.,Gong, Yi-Fei,Browning, Marc R.,Hansel, Steven,Santone, Kenneth,Barker, Jonathan,Coulter, Thomas,Lin, Ping-Fang,Meanwell, Nicholas A.,Kadow, John F.
, p. 203 - 208 (2013/02/23)
As part of the SAR profiling of the indole-oxoacetic piperazinyl benzamide class of HIV-1 attachment inhibitors, substitution at the C7 position of the lead 4-fluoroindole 2 with various 5- and 6-membered heteroaryl moieties was explored. Highly potent (picomolar) inhibitors of pseudotyped HIV-1 in a primary, cell-based assay were identified and select examples were shown to possess nanomolar inhibitory activity against M- and T-tropic viruses in cell culture. These C7-heteroaryl-indole analogs maintained the ligand efficiency (LE) of 2 and were also lipophilic efficient as measured by LLE and LELP. Pharmacokinetic studies of this class of inhibitor in rats showed that several possessed substantially improved IV clearance and half-lives compared to 2. Oral exposure in the rat correlated with membrane permeability as measured in a Caco-2 assay where the highly permeable 1,2,4-oxadiazole analog 13 exhibited the highest exposure.
Inhibitors of HIV-1 attachment. Part 9: An assessment of oral prodrug approaches to improve the plasma exposure of a tetrazole-containing derivative
Yeung, Kap-Sun,Qiu, Zhilei,Yang, Zheng,Zadjura, Lisa,D'Arienzo, Celia J.,Browning, Marc R.,Hansel, Steven,Huang, Xiaohua Stella,Eggers, Betsy J.,Riccardi, Keith,Lin, Ping-Fang,Meanwell, Nicholas A.,Kadow, John F.
, p. 209 - 212 (2013/02/23)
7-(2H-Tetrazol-5-yl)-1H-indole 3 was found to be a potent inhibitor of HIV-1 attachment but the compound lacked oral bioavailability in rats. The cause of the low exposure was believed to be poor absorption attributed to the acidic nature of the tetrazole moiety and, in an effort to address this liability, three more lipohilic tetrazole analogs, N-acetoxymethyl 4, N-pivaloyloxymethyl 5, and N-methyl 6, were evaluated as potential oral prodrugs in rats. Prodrug 5 was ineffective in improving the plasma concentration of 3 in vivo but compound 4 provided a 15-fold enhancement of the plasma concentration of 3. Most interestingly, oral dosing of analog 6 afforded a substantial increase in the plasma concentration of the parent in rats when compared to dosing of parent. This represents a novel example of a methyl tetrazole that acts as a prodrug for a free NH tetrazole-containing compound.
