bioRxiv Science⌕ Search

Biology subjects

Glac, W.

Publications and source records attributed to Glac, W..

2 recordsLinked to original sources

Repeated administration of cannabidiol decreases splenic lymphocyte numbers in rats: involvement of CB2 receptors

Cannabidiol (CBD), the major non-psychotropic compound of Cannabis sp., is an effective treatment for inflammatory and autoimmune diseases and produces various anti-tumor effects but the mechanisms of its long-term actions in vivo remain unclear. We have previously shown that CBD administration (5 mg/kg) in healthy rats significantly decreased lymphocyte numbers in peripheral blood, involving B, T CD4+ and T CD8+ lymphocyte subsets, but not natural killer (NK) cells. To examine the effects of CBD on lymphocyte subsets in the spleen and NK cellular cytotoxicity (NKCC), adult male Wistar rats (n = 63) were administered intraperitoneal injections of CBD (2.5 or 5 mg/kg/day) for 14 consecutive days and lymphocyte counts were obtained using flow cytometry. NKCC in the peripheral blood and spleen was quantified using a Chromium-51 release assay. Furthermore, CB2 receptors were blocked using selective receptor antagonist AM630 (1 mg/kg). The results indicate that repeated administration of CBD at a dose of 5 mg/kg/day resulted in a decrease in splenic lymphocyte number, involving T and B lymphocytes but not NK cells. The decrease in lymphocyte number was partially blocked by pretreatment with CB2 receptor antagonist while no changes in NKCC were observed following CBD administration. These results reveal that in healthy rats, CBD produces similar lymphopenic effects in the spleen as it does in peripheral blood and that the effects of CBD on lymphocyte numbers in vivo are at least partially mediated by CB2 receptors.

immunology↗

Intravenous haloperidol and cocaine alter the distribution of T CD4+ and B lymphocytes and NKT cells in rats

Modulation of dopamine transmission evokes strong behavioral effects that can be achieved by psychoactive drugs such as haloperidol or cocaine. Cocaine non-specifically increases dopamine transmission by blocking dopamine active transporter (DAT) and evokes behavioral arousal, while haloperidol is a non-specific dopamine D2 receptor antagonist with sedative effects. Interestingly, dopamine has been found to affect immune cells in addition to its action in the central nervous system. Here we address the possible interactions between haloperidol and cocaine and their effects on both immune cells and behavior in freely moving rats. We use an intravenous model of haloperidol and binge cocaine administration to evaluate the drugs impact on the distribution of lymphocyte subsets in both the peripheral blood and the spleen. We assess the drugs behavioral effects by measuring locomotor activity. Cocaine evoked a pronounced locomotor response and stereotypic behaviors, both of which were completely blocked after pretreatment with haloperidol. The results suggest that blood lymphopenia which was induced by haloperidol and cocaine (except for NKT cells), is independent of dopaminergic activity and most likely results from the massive secretion of corticosterone. Haloperidol pretreatment prevented the cocaine-induced decrease in NKT cell numbers. On the other hand, the increased systemic dopaminergic activity after cocaine administration is a significant factor in retaining T CD4+ and B lymphocytes in the spleen. O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=90 SRC="FIGDIR/small/470229v2_ufig1.gif" ALT="Figure 1"> View larger version (37K): org.highwire.dtl.DTLVardef@1275eb3org.highwire.dtl.DTLVardef@1ba7afcorg.highwire.dtl.DTLVardef@1e070b9org.highwire.dtl.DTLVardef@886bf_HPS_FORMAT_FIGEXP M_FIG C_FIG

pharmacology and toxicology↗