The effectiveness of ethanolic extract of propolis on wound healing in albino rats

2020 ◽  
Vol 23 (07) ◽  
pp. 543-554
Author(s):  
Ahmad Hassan Sahib ◽  
Maan Abdul Azeez Shafeeq ◽  
Salah Mahdi Mohsen
2016 ◽  
Vol 2016 ◽  
pp. 1-8 ◽  
Author(s):  
Hemant Kumar Nagar ◽  
Amit Kumar Srivastava ◽  
Rajnish Srivastava ◽  
Madan Lal Kurmi ◽  
Harinarayan Singh Chandel ◽  
...  

Objectives. The present study was aimed at investigating the wound healing effect of ethanolic extract of Cestrum nocturnum (L.) leaves (EECN) using excision and incision wound model. Methods. Wistar albino rats were divided into five groups each consisting of six animals; group I (left untreated) considered as control, group II (ointment base treated) considered as negative control, group III treated with 5% (w/w) povidone iodine ointment (Intadine USP), which served as standard, group IV treated with EECN 2% (w/w) ointment, and group V treated with EECN 5% (w/w) ointment were considered as test groups. All the treatments were given once daily. The wound healing effect was assessed by percentage wound contraction, epithelialization period, and histoarchitecture studies in excision wound model while breaking strength and hydroxyproline content in the incision wound model. Result. Different concentration of EECN (2% and 5% w/w) ointment promoted the wound healing activity significantly in both the models studied. The high rate of wound contraction (P<0.001), decrease in the period for epithelialization (P<0.01), high skin breaking strength (P<0.001), and elevated hydroxyproline content were observed in animal treated with EECN ointments when compared to the control and negative control group of animals. Histopathological studies of the EECN ointments treated groups also revealed the effectiveness in improved wound healing. Conclusions. Ethanolic extract of Cestrum nocturnum (EECN) leaves possesses a concentration dependent wound healing effect.


Author(s):  
Reza Tayfeh-Ebrahimi ◽  
Amir Amniattalab ◽  
Rahim Mohammadi

Wound healing is interaction of a complex cascade of cellular/biochemical actions leading to restoration of structural and functional integrity with regain of injured tissues strength. This study was aimed at evaluation of application of ethanolic extract of propolis-loaded poly(-lactic-co-glycolic acid) nanoparticles (EEP-PLGA NPs) on wound healing in diabetic rats. Sixty rats were randomized into four groups of 15 rats each: In control group (Control) diabetic wound was treated with normal saline. In Carrier 1 group diabetic wound was treated with PLGA nanoparticles based solution. In Carrier 2 group the diabetic wound was treated with EEP. In Treatment group animals received EEP-PLGA NPs on the wound. Wound size was measured on 7, 14 and 21 days after surgery. The expression of p53, bcl-2, Caspase III, were evaluated using reverse-transcription PCR and Immunohistochemical staining. The Treatment group had significantly reduced the wound size compared to other groups ( P = 0.001). histological and morphometric studies, and mean rank of the qualitative studies demonstrated that there was significant difference between Treatment group and other groups ( P < .05). Observations demonstrated that ethanolic extract of propolis-loaded PLGA nanoparticles significantly shortened the inflammatory phase and accelerated the cellular proliferation. Accordingly, the animals in Treatment group revealed significantly ( P < .05) higher fibroblast distribution/one mm2 of wound area and rapid re epithelialization. The mRNA levels of bcl-2, p53 and caspase III were remarkably ( P < .05) higher in Treatment group compared to control and animals. The immunohistochemical analyzes confirmed the RT-PCR findings. EEP-PLGA NPs offered potential advantages in wound healing acceleration and improvement through angiogenesis stimulation, fibroblast proliferation and granulation tissue formation in early days of healing phases, acceleration in diabetic wound repair associated with earlier wound contraction and stability of damaged area by rearrangement of granulation tissue and collagen fibers.


2011 ◽  
Vol 47 (4) ◽  
pp. 855-860 ◽  
Author(s):  
Krishna Murti ◽  
Vijay Lambole ◽  
Mayank Panchal

Ethanolic extract of roots of Ficus hispida was investigated in normal and dexamethasone depressed healing conditions, using incision, excision and dead space wound models in albino rats. The root extract of Ficus hispida has shown the maximum breaking strength compared to control group. The rate of epithelialization and wound contraction in excision model was better as compared to control groups. There was significant increase in granulation tissue weight and hydroxyproline content in dead space model compared to control group. The antihealing effect of dexamethasone was also reverted by the administration of ethanolic extract of Ficus hispida in all the wound models .The results indicated that the root extract of Ficus hispida has a significant wound healing activity and also promotes healing in dexamethasone depressed healing conditions.


Author(s):  
B. Rajarajeswari ◽  
B. Praveen Kumar ◽  
Amrutha V. Audipudi

Aim: To identify and compare the bioactive compounds in the ethanolic leaves extracts of Cassia occidentalis and Pithecellobium dulce and to evaluate the wound healing efficiency in Wistar Albino rats. Study Design: The leaves ethanolic extracts was analysed by GC-MS and the extract was prepared in the form of a cream by ethanolic leaves extracts of C. occidentalis and P. dulce at 5% (w/v), 10% (w/v), and also in combination, a simple ointment base was developed with a composition of (1:1) Topical application of 5% (w/v) and 10% (w/v) was utilised in excision wound models. For excision wound models, the treatment duration was ten days. The day on which the wound was inflicted was designated as day '0'. Wound healing Activity: Excision wound Model: The animals were randomly separated into eight groups of six rats each: Group I: Control.; Group II: Standard group, treated with Framycetin sulfate cream (Soframycin, Aventis);. Group III: Treated with ethanolic extract of C. occidentalis (ELCO) (5% w/v); Group IV: Treated with ethanolic extract of C. occidentalis (ELCO) (10% w/v);Group V: Treated with ethanolic extract of P. dulce (ELPD)(5% w/v); Group VI: Treated with ethanolic extract of P. dulce (ELPD) (10 % w/v);Group VII: Treated with ethanolic extract of C. occidentalis and P. dulce (ELCO & ELPD 1:1) (5% w/v); Group VIII: Treated with ethanolic extract of C. occidentalis and P. dulce (ELCO & ELPD 1:1) (10 % w/v) till complete epithelization. Next dead space wound model and histology was studied. Place and Duration of Study: The GC-MS was carried out at Lab in Chennai. The extraction procedures were done at Department of Microbiology, Acharya Nagarjuna University, Guntur and treatment of wound healing activities were conducted at Ratnam Institute of Pharmacy in Nellore, Andhra Pradesh, India, and housed in the Department of Pharmacology between October to January 2016. Methodology: To study bioactive compounds, GC-MS was adopted, for wound healing activity: Excision wound Model, Dead space wound model and histology procedures was applied. Results:  In the current study, ethanol leaves extract (EL) of Cassia occidentalis and Pithecellobium dulce were compared using GC-MS and their wound healing efficacy in wistar rats was examined. The GC-MS analysis of EL from both plants revealed 14-16 distinct bioactive phytochemical components with varying molecular weights and retention duration (RT). Excision and dead space wound models were utilised to assess the wound healing activities of EL extracts on rats. Wound concentration, full epithelialzation time, granulation, tissue weight, and hydroxyproline content were used to measure healing. In the excision wound model, the standard group (Framycetin sulphate cream) and group-VII (10% w/v; 1:1) combination EL treatment exhibited 98.5 ± 0.54 % and 98.4 ± 0.46 % wound healing activity, respectively. When compared to the control, the granulation tissue weight and hydroxyproline content in the dead space wound rose considerably. Histological examination revealed fewer inflammatory cells and more collagen, indicating a role in accelerating wound healing activity. Conclusion: The results of our investigation indicate unequivocally that ethanolic leaf extracts of these plant species are effective at encouraging wound healing. The 10% (ELCO+ELPD) tropical treatment drastically reduced the wound as compared to standard and also increased granulation and hydroxyproline content. However, it requires more clinical examination before being considered for wound therapy.


INDIAN DRUGS ◽  
2020 ◽  
Vol 57 (07) ◽  
pp. 58-62
Author(s):  
Pushpendra Kumar Jain ◽  
Yogesh Pounikar ◽  
Navneet Khurana

This study was undertaken to investigate the in vivo wound healing activity of ethanol extracts of the aerial parts of Euphorbia hirta Linn. and its polyherbal formulation with Tridax procumbens and Eclipta alba. The in vivo wound healing activity was assessed in albino rats by using three wound models i.e. excision wound, incision wound and dead space wound models. Level of biochemical markers and histological changes were monitored to evaluate the enhancement of wound healing. The results showed that ethanolic extract ointment possesses a definite prohealing action. This was demonstrated by a significant increase in the rate of wound contraction and by enhanced epithelization. Significant increase in tensile strength, hydroxyproline content and collagen levels were observed, which was further supported by histopathological studies and gain in granuloma breaking strength.


2012 ◽  
Vol 2 (9) ◽  
pp. 56-58
Author(s):  
Vasanthalaxmi K Vasanthalaxmi K ◽  
◽  
Saraswathi Udupa ◽  
Laximinarayana Udupa

Author(s):  
Emmanuel Tiyo Ayikobua ◽  
Josephine Kasolo ◽  
Keneth Iceland Kasozi ◽  
Ejike Daniel Eze ◽  
Abass Safiriyu ◽  
...  

AbstractBackgroundThe Phosphatase and tensin-induced putative kinase 1 (PINK1B9) mutant for Drosophila melanogaster is a key tool that has been used in assessing the pathology of Parkinsonism and its possible remedy. This research was targeted toward determining the effects of ethanolic extract of propolis, with levodopa therapy in the management of Parkinsonism.MethodThe PINK1B9 flies were divided into groups and fed with the different treatment doses of ethanoic extract of propolis. The treatment groups were subjected to 21 days of administration of propolis and the levodopa at different doses after which percentage climbing index, antioxidant activity and lifespan studies were done.ResultsPropolis alone improved motor activity, antioxidant and lifespan in Drosophila melanogaster than in PINK1 flies. Propolis in combination with levodopa significantly (P<0.05) improved physiological parameters at higher than lower concentrations in Parkinsonism Drosophila melanogaster demonstrating its importance in managing side effects associated with levodopa.ConclusionPropolis is a novel candidate as an alternative and integrative medicinal option to use in the management of Parkinsonism in both animals and humans at higher concentrations.


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