[Elsevier] Multiple Behavioral Effects of Cocaine- and Amphetamine-Regulated Transcript (CART) Peptides in Mice: CART 42每89 and CART 49每89 Differ in Potency and Activity

kvsang Post time Half hour(s) ago | Show all posts |Read mode
This post will be closed automatically in 2026-09-13 13:44
Reward10points

Anthony W. Bannon, Jennifer Seda, Michelle Carmouche, Jonathan M. Francis, Mark A. Jarosinski, James Douglass,
Multiple Behavioral Effects of Cocaine- and Amphetamine-Regulated Transcript (CART) Peptides in Mice: CART 42每89 and CART 49每89 Differ in Potency and Activity,
The Journal of Pharmacology and Experimental Therapeutics,
Volume 299, Issue 3,
2001,
Pages 1021-1026,
ISSN 0022-3565,
https://doi.org/10.1016/S0022-3565(24)29225-9.
(https://www.sciencedirect.com/sc ... i/S0022356524292259)
Abstract: ABSTARCT
Cocaine- and amphetamine-regulated transcript (CART) encodes a neuropeptide precursor protein that is highly abundant in cells of the hypothalamus. To date, the major research focus into the function of CART peptides has been feeding behavior. However, CART mRNA is found in other areas of the brain as well as some peripheral tissues, suggesting possible broader functions of this peptide. In this study, we investigated the effects of two CART peptides, CART 42每89 and CART 49每89, in several behavioral assays. Peptides were administered by i.c.v. route of administration. Both CART 42每89 and CART 49每89 inhibited food intake with the minimally effective dose of CART 42每89 (0.5 米g) being 5-fold greater than that of CART 49每89 (0.1 米g). Both peptides also produced significant antinociceptive effects in the hot-plate assay with similar potency differences. CART 42每89 significantly inhibited the acoustic startle response (ASR) of pulse alone trials at doses of 0.1 and 0.5 米g. In contrast, CART 49每89 did not affect ASR of pulse alone trials at doses of 0.05 and 0.1 (米g). For prepulse inhibition (PPI) trials, in general, both peptides appeared to enhance the magnitude of PPI and CART 42每89 was less potent than CART 49每89. Overall, these data suggest CART peptides may have multiple roles in central nervous system function and there may be biological differences between two processed forms of CART peptide.

Reply

Use magic Donate Report

All Reply0 Show all posts

Reply

You have to log in before you can reply Login | Register

Points Rules

Junior Member
  • post

  • reply

  • points

    110


Return to the list