Development of Ligands for the Peripheral Benzodiazepine Receptor

被引:85
作者
James, Michelle L. [2 ]
Selleri, Silvia [3 ]
Kassiou, Michael [1 ,2 ]
机构
[1] Royal Prince Alfred Hosp, Dept PET & Nucl Med, Camperdown, NSW 2050, Australia
[2] Univ Sydney, Dept Pharmacol, Sydney, NSW 2006, Australia
[3] Univ Florence, Dipartimento Sci Farmaceut, I-50121 Florence, Italy
关键词
Benzoxazepines; Diazepam-binding inhibitor (DBI); Indoleacetamide; Isoquinoline carboxamides; Pyrazolopyrimidines; Vinca alkaloids;
D O I
10.2174/092986706777584979
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The peripheral benzodiazepine receptor (PBR) initially characterised as a high affinity binding site for diazepam, is densely distributed in most peripheral organs whilst only moderately expressed in the healthy brain. The predominant cell type expressing the PBR at regions of central nervous system (CNS) pathology are activated microglial cells. Under neuroinflammatory conditions there is an over-expression of PBR binding sites indicating that measurements of PBR density can act as a useful index of brain disease activity. The PBR is now considered a significant therapeutic and diagnostic target which has provided the impetus for PBR ligand development. There are several classes of PBR ligands available including benzodiazepines (Ro54864), isoquinoline carboxamides (PK 11195), indoleacetamides (FGIN-1-27), phenoxyphenyl-acetamides (DAA1106) and pyrazolopyrimidines (DPA-713). Subsequent conformationally restrained isoquinoline and indoleacetamide analogues have been synthesised in an attempt to yield PBR ligands with superior affinity and brain kinetics. Even though the PBR has been linked to a number of biochemical processes, including cell proliferation, apoptosis, steroidogenesis, porphyrin transport and immunomodulation, its exact physiological role is yet to be deciphered. Selective PBR ligands with favourable in vivo binding properties and kinetics is required to gain a more complete understanding on the normal functioning of the PBR and the chemical pathways underlying several pathological conditions. Novel PBR ligands with unique binding properties and functional activity may also generate information on the localisation of the PBR and the possibility of PBR subtypes. This review highlights the main classes of PBR ligands to date. In addition the biological activity and therapeutic potential of certain PBR ligands is discussed.
引用
收藏
页码:1991 / 2001
页数:11
相关论文
共 77 条
[1]  
ALHO H, 1994, CELL GROWTH DIFFER, V5, P1005
[2]  
ANHOLT RRH, 1986, J BIOL CHEM, V261, P576
[3]   Visualising microglial activation in vivo [J].
Banati, RB .
GLIA, 2002, 40 (02) :206-217
[4]   CYTOTOXICITY OF MICROGLIA [J].
BANATI, RB ;
GEHRMANN, J ;
SCHUBERT, P ;
KREUTZBERG, GW .
GLIA, 1993, 7 (01) :111-118
[5]   PK ('peripheral benzodiazepine') - Binding sites in the CNS indicate early and discrete brain lesions: Microautoradiographic detection of [H-3]PK11195 binding to activated microglia [J].
Banati, RB ;
Myers, R ;
Kreutzberg, GW .
JOURNAL OF NEUROCYTOLOGY, 1997, 26 (02) :77-82
[6]   The peripheral benzodiazepine binding site in the brain in multiple sclerosis -: Quantitative in vivo imaging of microglia as a measure of disease activity [J].
Banati, RB ;
Newcombe, J ;
Gunn, RN ;
Cagnin, A ;
Turkheimer, F ;
Heppner, F ;
Price, G ;
Wegner, F ;
Giovannoni, G ;
Miller, DH ;
Perkin, GD ;
Smith, T ;
Hewson, AK ;
Bydder, G ;
Kreutzberg, GW ;
Jones, T ;
Cuzner, ML ;
Myers, R .
BRAIN, 2000, 123 :2321-2337
[7]   CYCLIC-NUCLEOTIDE PHOSPHODIESTERASES - FUNCTIONAL IMPLICATIONS OF MULTIPLE ISOFORMS [J].
BEAVO, JA .
PHYSIOLOGICAL REVIEWS, 1995, 75 (04) :725-748
[8]   Evaluation of three quinoline-carboxamide derivatives as potential radioligands for the in vivo pet imaging of neurodegeneration [J].
Belloli, S ;
Moresco, RM ;
Matarrese, M ;
Biella, G ;
Sanvito, F ;
Simonelli, P ;
Turolla, E ;
Olivieri, S ;
Cappelli, A ;
Vomero, S ;
Galli-Kienle, M ;
Fazio, F .
NEUROCHEMISTRY INTERNATIONAL, 2004, 44 (06) :433-440
[9]   The peripheral benzodiazepine receptors: a review [J].
Beurdeley-Thomas, A ;
Miccoli, L ;
Oudard, S ;
Dutrillaux, B ;
Poupon, MF .
JOURNAL OF NEURO-ONCOLOGY, 2000, 46 (01) :45-56
[10]   Role of sodium channel inhibition in neuroprotection: Effect of vinpocetine [J].
Bönöczk, P ;
Gulyás, B ;
Adam-Vizi, V ;
Nemes, A ;
Kárpáti, E ;
Kiss, B ;
Kapás, M ;
Szántay, C ;
Koncz, I ;
Zelles, T ;
Vas, A .
BRAIN RESEARCH BULLETIN, 2000, 53 (03) :245-254