TY - JOUR
T1 - Integration of in vivo and in vitro approaches to characterize the toxicity of Antalarmin, a corticotropin-releasing hormone receptor antagonist
AU - Horn, Thomas L.
AU - Harder, J. Brooks
AU - Johnson, William D.
AU - Curry, Patrick T.
AU - Parchment, Ralph E.
AU - Morrissey, Robert L.
AU - Mellick, Paul W.
AU - Calis, Karim A.
AU - Gold, Philip W.
AU - Rice, Kenner C.
AU - Contoreggi, Carlo
AU - Charney, Dennis S.
AU - Cizza, Giovanni
AU - Glaze, Elizabeth R.
AU - Tomaszewski, Joseph E.
AU - McCormick, David L.
N1 - Funding Information:
Funding: National Cancer Institute, Division of Cancer Treatment and Diagnosis, Developmental Therapeutics Program (N01-CM-87102, N01-CM-42202, N01-CM-87028); the National Institutes of Health Intramural Research Programs of the National Institute of Diabetes and Digestive and Kidney Diseases, the National Institute on Drug Abuse, the National Institute of Mental Health and the National Institute of Child Health and Human Development.
PY - 2008/6/3
Y1 - 2008/6/3
N2 - Non-clinical studies were conducted to evaluate the toxicity of Antalarmin, a corticotropin-releasing hormone type 1 receptor antagonist being developed for therapy of stress-related pathologies. Antalarmin was not genotoxic in bacterial mutagenesis assays, mammalian cell mutagenesis assays, or in vivo DNA damage assays. In a 14-day range-finding study in rats, Antalarmin doses ≥500 mg/kg/day (3000 mg/m2/day) induced mortality. In a 90-day toxicity study in rats, no gross toxicity was seen at doses of 30, 100, or 300 mg/kg/day (180, 600, or 1800 mg/m2/day, respectively). Antalarmin (300 mg/kg/day) induced mild anemia, increases in serum γ-glutamyl transferase activity, and microscopic hepatic pathology (bile duct hyperplasia and epithelial necrosis, periportal inflammation). Microscopic renal changes (cortical necrosis, inflammation, hypertrophy, nephropathy) were observed in rats at all Antalarmin doses. In a 14-day range-finding study in dogs, Antalarmin doses ≥50 mg/kg/day (1000 mg/m2/day) induced repeated emesis and bone marrow suppression. In a 90-day toxicity study in dogs, Antalarmin (4, 8, or 16 mg/kg/day (80, 160, or 320 mg/m2/day, respectively)) induced bone marrow and lymphoid depletion, but no gross toxicity. Comparative in vitro studies using rat, dog, and human neutrophil progenitors demonstrated that canine bone marrow cells are highly sensitive to Antalarmin cytotoxicity, while rat and human bone marrow cells are relatively insensitive. As such, the bone marrow toxicity observed in dogs is considered likely to over-predict Antalarmin toxicity in humans. The hepatic and renal toxicities seen in rats exposed to Antalarmin identify those tissues as the most likely targets for Antalarmin toxicity in humans.
AB - Non-clinical studies were conducted to evaluate the toxicity of Antalarmin, a corticotropin-releasing hormone type 1 receptor antagonist being developed for therapy of stress-related pathologies. Antalarmin was not genotoxic in bacterial mutagenesis assays, mammalian cell mutagenesis assays, or in vivo DNA damage assays. In a 14-day range-finding study in rats, Antalarmin doses ≥500 mg/kg/day (3000 mg/m2/day) induced mortality. In a 90-day toxicity study in rats, no gross toxicity was seen at doses of 30, 100, or 300 mg/kg/day (180, 600, or 1800 mg/m2/day, respectively). Antalarmin (300 mg/kg/day) induced mild anemia, increases in serum γ-glutamyl transferase activity, and microscopic hepatic pathology (bile duct hyperplasia and epithelial necrosis, periportal inflammation). Microscopic renal changes (cortical necrosis, inflammation, hypertrophy, nephropathy) were observed in rats at all Antalarmin doses. In a 14-day range-finding study in dogs, Antalarmin doses ≥50 mg/kg/day (1000 mg/m2/day) induced repeated emesis and bone marrow suppression. In a 90-day toxicity study in dogs, Antalarmin (4, 8, or 16 mg/kg/day (80, 160, or 320 mg/m2/day, respectively)) induced bone marrow and lymphoid depletion, but no gross toxicity. Comparative in vitro studies using rat, dog, and human neutrophil progenitors demonstrated that canine bone marrow cells are highly sensitive to Antalarmin cytotoxicity, while rat and human bone marrow cells are relatively insensitive. As such, the bone marrow toxicity observed in dogs is considered likely to over-predict Antalarmin toxicity in humans. The hepatic and renal toxicities seen in rats exposed to Antalarmin identify those tissues as the most likely targets for Antalarmin toxicity in humans.
KW - Antalarmin
KW - Bone marrow cytotoxicity
KW - Corticotropin-releasing hormone receptor antagonist
KW - Preclinical toxicology
UR - https://www.scopus.com/pages/publications/42749091980
U2 - 10.1016/j.tox.2008.03.002
DO - 10.1016/j.tox.2008.03.002
M3 - Article
C2 - 18423834
AN - SCOPUS:42749091980
SN - 0300-483X
VL - 248
SP - 8
EP - 17
JO - Toxicology
JF - Toxicology
IS - 1
ER -