Published May 2021 | Version v1
Journal article

Intramuscularly administered A1 adenosine receptor agonists as delayed treatment for organophosphorus nerve agent-induced Status Epilepticus

  • 1. Neuroscience Department, Medical Toxicology Research Division, US Army Medical Research Institute of Chemical Defense, Aberdeen Proving Ground, MD 21010-5400 (United States)
  • 2. Comparative Pathology Department, Research Support Division, US Army Medical Research Institute of Chemical Defense, Aberdeen Proving Ground, MD 21010-5400 (United States)

Description

Highlights: • Efficacy of 2 adenosine A1 agonists in stopping GB- and GD-induced SE was evaluated. • ENBA & CCPA were given IM at 15, 30, or 60 min after nerve agent (NA) seizure onset. • Both ENBA & CCPA terminate SE when administered up to 30 min after seizure onset. • ENBA offers substantial better neuroprotection in a time-related treatment manner. • ENBA is a promising candidate as a delayed countermeasure for NA-induced SE. Exposure to organophosphorus nerve agents (NAs) like sarin (GB) and soman (GD) can lead to sustained seizure activity, or status epilepticus (SE). Previous research has shown that activation of A1 adenosine receptors (A1ARs) can inhibit neuronal excitability, which could aid in SE termination. Two A1AR agonists, 2-Chloro-N6-cyclopentyladenosine (CCPA) and N-Bicyclo(2.2.1)hept-2-yl-5′-chloro-5′-deoxyadenosine (ENBA), were effective in terminating GD-induced SE in rats when administered via intraperitoneal (IP) injection. However, IP injection is not a clinically relevant route of administration. This study evaluated the efficacy of these agonists in terminating NA-induced SE when administered via intramuscular (IM) route. Adult male rats were exposed subcutaneously (SC) to either GB (150 μg/kg) or GD (90 μg/kg) and were treated with ENBA or CCPA at 15, 30, or 60 min after seizure onset or left untreated. Up to 7 days after exposure, deeply anesthetized rats were euthanized and perfused brains were removed for histologic assessment of neuropathology (i.e., neuronal damage) in six brain regions (amygdala, cerebral cortex, piriform cortex, thalamus, dorsal hippocampus, and ventral hippocampus). A total neuropathy score (0–24) was determined for each rat by adding the scores from each of the six regions. The higher the total score the more severe the neuropathology. With the GB model and 60 min treatment delay, ENBA-treated rats experienced 78.6% seizure termination (N = 14) and reduced neuropathology (11.6 ± 2.6, N = 5), CCPA-treated rats experienced 85.7% seizure termination (N = 14) and slightly reduced neuropathology (20.7 ± 1.8, N = 6), and untreated rats experienced no seizure termination (N = 13) and severe neuropathology (22.3 ± 1.0, N = 4). With the GD model and 60 min treatment delay, ENBA-treated rats experienced 92.9% seizure termination (N = 14) and reduced neuropathology (13.96 ± 1.8, N = 9), CCPA-treated rats experienced 78.6% seizure termination (N = 14) and slightly reduced neuropathology (22.0 ± 0.9, N = 10); and untreated rats experienced 16.7% seizure termination (N = 12) and severe neuropathology (22.0 ± 1.8, N = 5). While ENBA and CCPA both demonstrate a clear ability to terminate SE when administered up to 60 min after seizure onset, ENBA offers more neuroprotection, making it a promising candidate for NA-induced SE.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.taap.2021.115515

Additional details

Identifiers

DOI
10.1016/j.taap.2021.115515;
PII
S0041008X21001228;

Publishing Information

Journal Title
Toxicology and Applied Pharmacology
Journal Volume
419
Journal Page Range
vp.
ISSN
0041-008X
CODEN
TXAPA9

INIS

Country of Publication
United States
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
54051932
Subject category
S60: APPLIED LIFE SCIENCES;
Descriptors DEI
ADENOSINE; CEREBRAL CORTEX; INJECTION; NERVES; RATS; RECEPTORS; THALAMUS; THERAPY; TOXICITY
Descriptors DEC
ANIMALS; BODY; BRAIN; CENTRAL NERVOUS SYSTEM; CEREBRUM; INTAKE; MAMMALS; MEDICINE; MEMBRANE PROTEINS; NERVOUS SYSTEM; NUCLEOSIDES; NUCLEOTIDES; ORGANIC COMPOUNDS; ORGANS; PROTEINS; RIBOSIDES; RODENTS; VERTEBRATES

Optional Information

Notes
Published by Elsevier Inc.