Annona muricata leaves accelerate wound healing in rats via involvement of Hsp70 and antioxidant defence

番荔枝 伤口愈合 医学 超氧化物歧化酶 丙二醛 谷胱甘肽过氧化物酶 传统医学 抗氧化剂 过氧化氢酶 H&E染色 三色染色 药理学 外科 免疫组织化学 氧化应激 病理 生物 生物化学 内科学
作者
Soheil Zorofchian Moghadamtousi,Elham Rouhollahi,Maryam Hajrezaie,Hamed Karimian,Mahmood Ameen Abdulla,Habsah Abdul Kadir
出处
期刊:International Journal of Surgery [Wolters Kluwer]
卷期号:18: 110-117 被引量:93
标识
DOI:10.1016/j.ijsu.2015.03.026
摘要

INTRODUCTION: Annona muricata, a member of the Annonaceae family, is commonly known as soursop and graviola. The leaves of this tropical fruit tree are widely used in folk medicine against skin diseases and abscesses, however there is no scientific evidence justifying the use of A. muricata leaves. The aim of the present study is to evaluate the wound healing potential of ethyl acetate extract of A. muricata leaves (EEAM) towards excisional wound models in rats. METHODS: Sprague Dawley rats (24) were randomly divided into four groups, viz. (A) vehicle control, (B) low dose of EEAM (5% w/w), (C) high dose of EEAM (10% w/w) and (D) positive control with excisional wound created on the neck area. Wounds were topically dressed twice a day for 15 days. On the 15th day, animals were sacrificed and then processed for immunohistochemical and histological evaluations, including Hematoxylin & Eosin and Masson Trichrome stainings. The activity of antioxidants, namely catalase, glutathione peroxidase and superoxide dismutase, and malondialdehyde (MDA) was measured in wound tissue homogenate. RESULTS: Macroscopic and microscopic analysis of wounds demonstrated a significant wound healing activity shown by EEAM at two doses. Treatment of wounds with ointment containing EEAM caused significant surge in antioxidants activities and decrease in the MDA level of wound tissues compared with vehicle control. The immunohistochemical evaluation revealed conspicuous up-regulation of Hsp70 in treated wounds with EEAM, suggesting the anti-inflammatory effect of EEAM. CONCLUSION: EEAM exhibited a promising wound healing potential towards excisional wound models in rats.
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