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BPC 157, L-NAME, L-Arginine, NO-Relation, in the Suited Rat Ketamine Models Resembling “Negative-Like” Symptoms of Schizophrenia

Andrea Zemba Čilić, M. Zemba, M. Cilic, S. Štrbe, Spomenko Ilić, J. Vukojević, Z. Zoričić, I. Filipčić, A. Kokot, I. M. Smoday, Iva Rukavina, A. Boban Blagaić, A. Tvrdeić, Božidar Duplancic, V. Stambolija, D. Marcinko, A. Škrtić, S. Seiwerth, P. Sikiric

Biomedicines June 21, 2022 DOI: 10.3390/biomedicines10071462 (opens in new tab) via Semantic Scholar

Summary

AI-generated from the abstract

In rats, the peptide BPC 157 counteracted ketamine-induced negative-like schizophrenia symptoms, including cognitive dysfunction, social withdrawal, and anhedonia, and also produced an anxiolytic effect. The study employed NO-system agents L-NAME and L-arginine to explore the role of nitric oxide. Ketamine at various doses caused distinct symptom profiles that responded differently to L-NAME and L-arginine. BPC 157, given immediately after ketamine, reversed these effects and, in some cases, overcame the effects of the NO agents. Gene expression analysis in brain tissue showed that BPC 157 and ketamine produced overlapping overexpression patterns, and BPC 157 specifically altered expression of Nos1, Nos2, Plcg1, Prkcg, and Ptgs2.

Study at a glance

Characteristics Animal study Peer reviewed
Population Rats
Interventions BPC 157 L-NAME L-arginine ketamine
Dose ketamine: 3 mg, 30 mg, 8 mg/3 days; L-NAME: 5 mg; L-arginine: 100 mg; BPC 157: 0.01 mg (all mg/kg intraperitoneally)
Keywords Medicine Psychology
Key finding BPC 157 counteracted ketamine-induced cognitive dysfunction, social withdrawal, and anhedonia, and exerted an additional anxiolytic effect in rats.

Abstract

We attempted throughout the NO-system to achieve the particular counteraction of the ketamine-induced resembling “negative-like” schizophrenia symptoms in rats using pentadecapeptide BPC 157, and NO-agents, NG-nitro-L-arginine methylester (L-NAME), and/or L-arginine, triple application. This might be the find out the NO-system organized therapy (i.e., simultaneously implied NO-system blockade (L-NAME) vs. NO-system over-stimulation (L-arginine) vs. NO-system immobilization (L-NAME+L-arginine)). The ketamine regimen (intraperitoneally/kg) included: 3 mg (cognitive dysfunction, novel object recognition test), 30 mg (anxiogenic effect (open field test) and anhedonia (sucrose test)), and 8 mg/3 days (social withdrawal). Medication (mg/kg intraperitoneally) was L-NAME (5), L-arginine (100), and BPC 157 (0.01), alone and/or together, given immediately before ketamine (L-NAME, L-arginine, and combination) or given immediately after (BPC 157 and combinations). BPC 157 counteracted ketamine-cognition dysfunction, social withdrawal, and anhedonia, and exerted additional anxiolytic effect. L-NAME (antagonization, social withdrawal) and L-arginine (antagonization, cognitive dysfunction, anhedonia) both included worsening cognitive dysfunction, anhedonia, and anxiogenic effect (L-NAME), social withdrawal, and anxiogenic effect (L-arginine). Thus, ketamine-induced resembling “negative-like” schizophrenia symptoms were “L-NAME non-responsive, L-arginine responsive” (cognition dysfunction), “L-NAME responsive, L-arginine non-responsive” (social withdrawal), “L-NAME responsive, L-arginine responsive, opposite effect” (anhedonia) and “L-NAME responsive, L-arginine responsive, parallel effect” (both anxiogening). In cognition dysfunction, BPC 157 overwhelmed NO-agents effects. The mRNA expression studies in brain tissue evidenced considerable overlapping of gene overexpression in healthy rats treated with ketamine or BPC 157. With the BPC 157 therapy applied immediately after ketamine, the effect on Nos1, Nos2, Plcg1, Prkcg, and Ptgs2 (increased or decreased expression), appeared as a timely specific BPC 157 effect on ketamine-specific targets.

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