Blood-brain barrier permeation models: Discriminating between potential CNS and non-CNS drugs including P-glycoprotein substrates

被引:108
作者
Adenot, M [1 ]
Lahana, R [1 ]
机构
[1] Syntem, F-30000 Nimes, France
来源
JOURNAL OF CHEMICAL INFORMATION AND COMPUTER SCIENCES | 2004年 / 44卷 / 01期
关键词
D O I
10.1021/ci034205d
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The aim of this article is to present the design of a large heterogeneous CNS library (similar to1700 compounds) from WDI and mapping CNS drugs using QSAR models of blood-brain barrier (BBB) permeation and P-gp substrates. The CNS library finally includes 1336 BBB-crossing drugs (BBB+), 259 molecules non-BBB-crossing (BBB-), and 91 P-gp substrates (either BBB+ or BBB-). Discriminant analysis and PLS-DA have been used to model the passive diffusion component of BBB permeation and potential physicochemical requirement of P-gp substrates. Three categories of explanatory variables (C-diff, BBBpred, PGP(pred)) have been suggested to express the level of permeation within a continuous scale, starting from two classes data (BBB+/ BBB-), allowing that the degree to Which each compound belongs to an activity class is given using a membership score. Finally, statistical data analyses have shown that some very simple descriptors are sufficient to evaluate BBB permeation in most cases, with a high rate of well-classified drugs. Moreover, a "CNS drugs" map, including P-gp substrates and accurately reflecting the in vivo behavior of drugs, is proposed as a tool for CNS drug virtual screening.
引用
收藏
页码:239 / 248
页数:10
相关论文
共 33 条
[1]   HYDROGEN-BONDING .33. FACTORS THAT INFLUENCE THE DISTRIBUTION OF SOLUTES BETWEEN BLOOD AND BRAIN [J].
ABRAHAM, MH ;
CHADHA, HS ;
MITCHELL, RC .
JOURNAL OF PHARMACEUTICAL SCIENCES, 1994, 83 (09) :1257-1268
[2]   Designing libraries with CNS activity [J].
Ajay ;
Bemis, GW ;
Murcko, MA .
JOURNAL OF MEDICINAL CHEMISTRY, 1999, 42 (24) :4942-4951
[3]   Predicting blood-brain transport of drugs: A computational approach [J].
Basak, SC ;
Gute, BD ;
Drewes, LR .
PHARMACEUTICAL RESEARCH, 1996, 13 (05) :775-778
[4]   Rapid calculation of polar molecular surface area and its application to the prediction of transport phenomena. 2. Prediction of blood-brain barrier penetration [J].
Clark, DE .
JOURNAL OF PHARMACEUTICAL SCIENCES, 1999, 88 (08) :815-821
[5]   Predicting blood-brain barrier permeation from three-dimensional molecular structure [J].
Crivori, P ;
Cruciani, G ;
Carrupt, PA ;
Testa, B .
JOURNAL OF MEDICINAL CHEMISTRY, 2000, 43 (11) :2204-2216
[6]  
Ecker G, 1999, MOL PHARMACOL, V56, P791
[7]   Computer-assisted rational design of immunosuppressive compounds [J].
Grassy, G ;
Calas, B ;
Yasri, A ;
Lahana, R ;
Woo, JK ;
Iyer, S ;
Kaczorek, M ;
Floc'h, R ;
Buelow, R .
NATURE BIOTECHNOLOGY, 1998, 16 (08) :748-752
[8]  
Jorgensen FS, 2001, RATIONAL APPROACHES TO DRUG DESIGN, P281
[9]   Polar molecular surface as a dominating determinant for oral absorption and brain penetration of drugs [J].
Kelder, J ;
Grootenhuis, PDJ ;
Bayada, DM ;
Delbressine, LPC ;
Ploemen, JP .
PHARMACEUTICAL RESEARCH, 1999, 16 (10) :1514-1519
[10]   High-throughput prediction of blood-brain partitioning:: A thermodynamic approach [J].
Keserü, GM ;
Molnár, L .
JOURNAL OF CHEMICAL INFORMATION AND COMPUTER SCIENCES, 2001, 41 (01) :120-128