Me. Castro et al., Affinity of (+/-)-pindolol, (-)-penbutolol, and (-)-tertatolol for pre- and postsynaptic serotonin 5-HT1A receptors in human and rat brain, J NEUROCHEM, 75(2), 2000, pp. 755-762
There is considerable interest in the use of drugs that selectively block p
resynaptic (somatodendritic) serotonin 5-HT1A receptors for the adjunctive
treatment of major depressive disorder. The 5-HT1A/beta-adrenoceptor ligand
s (+/-)-pindolol, (-)-tertatolol, and (-)-penbutolol are currently under cl
inical investigation, and knowledge of their affinity at different populati
ons of central 5-HT1A receptors is needed. Here we have determined the affi
nity of these drugs for presynaptic and postsynaptic 5-HT1A receptors in po
stmortem human and rat brain using receptor autoradiography and the selecti
ve 5-HT1A radioligand [H-3]WAY-100635. The binding of [H-3]WAY-100635 was s
pecific and saturable and showed high affinity in the rat dorsal raphe nucl
eus and hippocampus (K-D = 1.5-1.7 nM). In competition studies, the three c
ompounds had nanomolar affinity and produced monophasic displacement of [H-
3]WAY-100635 binding in all regions of both species. (-)-Penbutolol and (-)
-tertatolol had similar affinity for pre- and postsynaptic 5-HT1A receptors
in both rat and human brain. However, in the human, but not the rat, the a
ffinity of (+/-)-pindolol in dorsal raphe nucleus (K-i = 8.9 +/- 1.1 nM) wa
s slightly but significantly higher than that in hippocampus (K-i = 14.4 +/
- 1.5 n/M in CA1). In summary, our data show that (+/-)-pindolol, (-)-terta
tolol, and (-)-penbutolol are all high-affinity ligands at native human and
rat 5-HT1A receptors. (-)-Penbutolol and (-)-tertatolol do not discriminat
e between the pre- and postsynaptic 5-HT1A sites tested in either species,
but (+/-)-pindolol showed a slightly higher affinity for the presynaptic si
te in human brain. Further work is needed to establish whether the latter d
ifference is clinically relevant.