Abstract
During HIV-1 encephalitis, the chemotaxis-inducing activity of Tat may enhance the viral life cycle through recruitment of additional susceptible microglial cells to foci of infection. Benzodiazepines (BDZs) readily penetrate the blood-brain barrier and are known to possess anti-inflammatory properties. Pretreatment of human microglial cells with peripheral (Ro5-4864) and mixed (diazepam), but not central (clonazepam), benzodiazepine receptor ligands was found to potently suppress HIV-1 Tat-induced chemotaxis. Application of Tat to microglial cells evokes an increase in intracellular calcium concentration ([Ca(2+)]i) that rapidly desensitizes the cells. Diazepam's inhibitory effect was associated with its ability to block Tat-induced [Ca(2+)]i mobilization. These data support the notion that through their effects on microglia, peripheral BDZ receptor ligands could alter the neuropathogenesis of HIV-1.
MeSH Terms
Adjuvants, Immunologic/pharmacology
Benzodiazepinones/pharmacology
Calcium Signaling/drug effects
Chemotaxis/drug effects
Clonazepam/pharmacology
Diazepam/pharmacology
Gene Products, tat/antagonists & inhibitors,physiology
HIV-1/drug effects
Humans
Microglia/drug effects,virology
Nerve Tissue Proteins/drug effects,genetics,physiology
Receptors, CCR5/biosynthesis,genetics
Receptors, GABA-A/drug effects,physiology
Up-Regulation/drug effects
tat Gene Products, Human Immunodeficiency Virus
Chemicals
Adjuvants, Immunologic
Benzodiazepinones
Gene Products, tat
Nerve Tissue Proteins
Receptors, CCR5
Receptors, GABA-A
tat Gene Products, Human Immunodeficiency Virus
4'-chlorodiazepam
Clonazepam
Diazepam
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Lokensgard J R
Neuroimmunology Laboratory, Minneapolis Medical Research Foundation, Minneapolis, Minnesota 55404, USA. loken006@tc.umn.edu
Hu S
Hegg C C
Thayer S A
Gekker G
Peterson P K
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