In Algerian traditional medicine, Arisarum vulgare O. Targ. Tozz. (Araceae), locally known as “Elbgouga,” is widely used to treat eczema, wounds, and burns. The aim of this study was to investigate, for the first time and by using in vivo and in silico molecular docking techniques, the possible effects of A. vulgare ultrasound-assisted aqueous extract (AVAE) on wound healing. The phytochemical profile was elucidated by LC-ESI-MS/MS analysis. Wistar albino rats were used to evaluate the AVAE ointment's acute cutaneous toxicity and wound-healing potential (1%, 2%, and 5% AVAEO). Through in silico investigations, TNF-α, IL-1β, MMP-9, TGF-β, VEGF, and EGFR were examined as possible therapeutic targets. Twenty-seven phytochemicals, belonging mainly to the flavonoids and phenolic acids' class, were identified and semi-quantified. The 5% AVAEO-treated group showed a significantly greater (p < 0.001) wound contraction (8–20 days) with respect to untreated and petroleum jelly groups, whereas no statistically significant difference was observed with respect to the Madecassol-treated group. On the contrary, the two lower doses (1% and 2% AVAEO) showed no statistically significant effects. Docking studies showed that A. vulgare bioactive compounds may have therapeutic effects on wound healing by targeting with high affinity TNFα, IL-1β, MMP-9, TGF-βR1, VEGF, and EGFR, counteracting inflammation, angiogenesis, and oxidative unbalance, and promoting wound repair. This study demonstrated that AVAE possesses in vivo wound healing properties and no dermal toxicity, shedding light also on the potential therapeutic targets involved.

In Vivo Wound-Healing and Molecular Docking Studies Support the Traditional Use of Arisarum vulgare Aqueous Extract

Smeriglio, Antonella;Trombetta, Domenico
2025-01-01

Abstract

In Algerian traditional medicine, Arisarum vulgare O. Targ. Tozz. (Araceae), locally known as “Elbgouga,” is widely used to treat eczema, wounds, and burns. The aim of this study was to investigate, for the first time and by using in vivo and in silico molecular docking techniques, the possible effects of A. vulgare ultrasound-assisted aqueous extract (AVAE) on wound healing. The phytochemical profile was elucidated by LC-ESI-MS/MS analysis. Wistar albino rats were used to evaluate the AVAE ointment's acute cutaneous toxicity and wound-healing potential (1%, 2%, and 5% AVAEO). Through in silico investigations, TNF-α, IL-1β, MMP-9, TGF-β, VEGF, and EGFR were examined as possible therapeutic targets. Twenty-seven phytochemicals, belonging mainly to the flavonoids and phenolic acids' class, were identified and semi-quantified. The 5% AVAEO-treated group showed a significantly greater (p < 0.001) wound contraction (8–20 days) with respect to untreated and petroleum jelly groups, whereas no statistically significant difference was observed with respect to the Madecassol-treated group. On the contrary, the two lower doses (1% and 2% AVAEO) showed no statistically significant effects. Docking studies showed that A. vulgare bioactive compounds may have therapeutic effects on wound healing by targeting with high affinity TNFα, IL-1β, MMP-9, TGF-βR1, VEGF, and EGFR, counteracting inflammation, angiogenesis, and oxidative unbalance, and promoting wound repair. This study demonstrated that AVAE possesses in vivo wound healing properties and no dermal toxicity, shedding light also on the potential therapeutic targets involved.
2025
Inglese
Inglese
Si
No
Si
John Wiley and Sons Ltd
39
11
5043
5061
19
Internazionale
Esperti anonimi
Arisarum vulgare O. Targ. Tozz; LC‐ESI‐MS/MS analysis; in silico molecular docking studies; in vivo wound healing activity; polyphenols; traditional medicine
info:eu-repo/semantics/article
Bouafia, Zineb; Boudjelal, Amel; Bouaziz-Terrachet, Souhila; Smeriglio, Antonella; Bouhenna, Mustapha Mounir; Yıldız, Ilyas; Demirtas, Ibrahim; Trombe...espandi
14.a Contributo in Rivista::14.a.1 Articolo su rivista
8
262
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11570/3353752
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