TY - JOUR
T1 - Mu and delta opioid receptor analgesia, binding density, and mRNA levels in mice selectively bred for high and low analgesia
AU - Kest, Benjamin
AU - Jenab, Shirzad
AU - Brodsky, Marina
AU - Sadowski, Bogdan
AU - Belknap, John K.
AU - Mogil, Jeffrey S.
AU - Inturrisi, Charles E.
N1 - Funding Information:
The authors wish to thank Dr. Gavril Pasternak for help with the binding assays and Mirtha Munoz in assisting with the collection of tissue samples. This work was supported by NIDA grants DA01457, DA07274, and DA00198 (C.E.I.). B.K. was an Aaron Diamond Postdoctoral Fellow and this work was supported in part by a grant from the Aaron Diamond Foundation.
PY - 1999/1/23
Y1 - 1999/1/23
N2 - The present study examined mu and delta opioid analgesia, receptor binding, and receptor mRNA levels in lines of mice from two selective breeding projects of relevance to opioid analgesia. Large differences were observed in the analgesic potency of [D-Ala2, NMPhe4, Gly-ol]enkephalin (DAMGO), [D-Pen2,5]enkephalin (DPDPE), and [D-Ala2]deltorphin II (DELT), selective mu, delta1, and delta2 opioid receptor agonists, respectively, in mice selectively bred for high (HA) and low (LA) swim stress-induced analgesia (SIA). HAR and LAR mice, selectively bred for high and low levorphanol analgesia, respectively, display equally large differences in their analgesic sensitivity to DAMGO, modest differences in sensitivity to DPDPE, and no differences in sensitivity to DELT. These sizable genotypic differences in analgesic potency were accompanied by HA/LA and HAR/LAR differences in whole-brain homogenate [3H]DPDPE and/or [3H]DELT, but paradoxically not [3H]DAMGO, binding. Solution hybridization of mRNA extracts encoding mu (MOR-1) or delta (DOR-1) opioid receptors indicated some regional differences in gene expression between high and low lines. Surprisingly, differences in these in vitro markers were often in the direction of LAR > HAR. The present data indicate that selection for either SSIA or levorphanol analgesia produces differential effects on mu and delta opioid analgesia that are accompanied by alterations on in vitro assays, the significance of which remains to be determined. The data are discussed with regard to the utility of in vitro biological markers and genetic models of analgesia.
AB - The present study examined mu and delta opioid analgesia, receptor binding, and receptor mRNA levels in lines of mice from two selective breeding projects of relevance to opioid analgesia. Large differences were observed in the analgesic potency of [D-Ala2, NMPhe4, Gly-ol]enkephalin (DAMGO), [D-Pen2,5]enkephalin (DPDPE), and [D-Ala2]deltorphin II (DELT), selective mu, delta1, and delta2 opioid receptor agonists, respectively, in mice selectively bred for high (HA) and low (LA) swim stress-induced analgesia (SIA). HAR and LAR mice, selectively bred for high and low levorphanol analgesia, respectively, display equally large differences in their analgesic sensitivity to DAMGO, modest differences in sensitivity to DPDPE, and no differences in sensitivity to DELT. These sizable genotypic differences in analgesic potency were accompanied by HA/LA and HAR/LAR differences in whole-brain homogenate [3H]DPDPE and/or [3H]DELT, but paradoxically not [3H]DAMGO, binding. Solution hybridization of mRNA extracts encoding mu (MOR-1) or delta (DOR-1) opioid receptors indicated some regional differences in gene expression between high and low lines. Surprisingly, differences in these in vitro markers were often in the direction of LAR > HAR. The present data indicate that selection for either SSIA or levorphanol analgesia produces differential effects on mu and delta opioid analgesia that are accompanied by alterations on in vitro assays, the significance of which remains to be determined. The data are discussed with regard to the utility of in vitro biological markers and genetic models of analgesia.
KW - Antinociception
KW - Genetics
KW - Selective breeding
KW - Solution hybridization
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U2 - 10.1016/S0006-8993(98)01141-X
DO - 10.1016/S0006-8993(98)01141-X
M3 - Article
C2 - 9878841
AN - SCOPUS:0033596546
SN - 0006-8993
VL - 816
SP - 381
EP - 389
JO - Brain Research
JF - Brain Research
IS - 2
ER -