Possible mechanisms involved in the anti-nociceptive effects of hydro-ethanolic leaf extract of Ziziphus abyssinica

Context: Various parts of Ziziphus abyssinica Hochst ex. A. Rich (Rhamnaceae) have been used in Ghanaian and African traditional medicine as an analgesic. However, there are little scientific data to support the anti-nociceptive effects of the hydro-ethanolic leaf extract of Ziziphus abyssinica (Eth...

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Veröffentlicht in:Pharmaceutical biology 2017, Vol.55 (1), p.1962-1971
Hauptverfasser: Boakye-Gyasi, Eric, Henneh, Isaac Tabiri, Abotsi, Wonder Kofi Mensah, Ameyaw, Elvis Ofori, Woode, Eric
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Sprache:eng
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Zusammenfassung:Context: Various parts of Ziziphus abyssinica Hochst ex. A. Rich (Rhamnaceae) have been used in Ghanaian and African traditional medicine as an analgesic. However, there are little scientific data to support the anti-nociceptive effects of the hydro-ethanolic leaf extract of Ziziphus abyssinica (EthE) as well as the possible mechanisms involved in its anti-nociceptive effects. Purpose: To predict possible nociceptive pathways involved in the anti-nociceptive effects of EthE. Materials and methods: The effect of EthE (30, 100 and 300 mg/kg) on intraplantar injection of pain mediators such as interleukin-1β, tumour necrosis factor-α, prostaglandin E 2 and bradykinin was evaluated in male Sprague Dawley rats using Randall-Selitto test for 5 h. The effect of specific antagonists to the opioidergic, adenosinergic, ATP-sensitive K + channels, nitric oxide, serotonergic, muscarinic, adrenergic and voltage-gated calcium channel on the anti-nociceptive effect of EthE (100 mg/kg) was evaluated using the formalin test in male imprinting control region (ICR) mice for 1 h. Results: Pretreatment of the rats with EthE significantly reversed the hypernociception induced by intraplantar injection of TNF-α (F 4,120  = 10.86, p 
ISSN:1388-0209
1744-5116
DOI:10.1080/13880209.2017.1355927