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The use of a rat model to evaluate the in vivo toxicity and wound healing activity of selected Combretum and Terminalia (Combretaceae) species extracts
2010
Peter Masoko | Jackie Picard | Jacobus N. Eloff
Wound healing is a fundamental response to tissue injury and several natural products have been shown to accelerate the healing process. The present study was undertaken to determine the safety and efficacy of the topical treatment of acetone leaf extracts of <em>Combretum imberbe, Combretum nelsonii,Combretum albopuntactum</em> and <em>Terminalia sericea</em> based on their in <em>vitro</em> antimicrobial activity. Four circular full-thickness skin wounds were made on the backs of eight anaesthetised Wistar rats using aseptic techniques. The treatments were administrated topically using 10% and 20% concentrations of each extract in aqueous cream in separate treatments. Indications of erythema, exudate, crust formation,swelling and ulceration were used to determine the wound healing process. All of the wounds closed completely within 17 days. Throughout the experiment, a subcutaneous probe was used to determine that the body temperature and body weight of the rats were within the normal range. <em>C. imberbe</em> and <em>C. nelsonii</em> extracts accelerated wound healing, but there was no significant difference in wound contraction using 10% and 20% concentrations of the extracts in cream. The results also showed the potential usefulness of this model to measure accelerating wound healing.The extracts could perhaps overcome defects associated with healing failure in chronic wounds and prevent secondary bacterial and fungal infections.
Показать больше [+] Меньше [-]Abortion and shedding of Brucella abortus RB51 in vaginal exudates of vaccinated cows
2005
H. I. Hosein | M. N. Shalaby | R. A. Azzam3
In this study, Brucella abortus RB51 could be detected in the vaginal exudates of 5out of 26 aborted cows following vaccination of three dairy cattle herds of 3810animals including heifers and pregnant and non-pregnant cows by RB51 vaccine.Abortion associated with isolation of RB51 vaccinal strain from recently vaccinatedcows in this study served as evidence that the vaccinal RB51 strain was the cause of abortion due to extensive bacterial multiplication and colonization in the uterus ofvaccinated pregnant cows
Показать больше [+] Меньше [-]The use of a rat model to evaluate the in vivo toxicity and wound healing activity of selected Combretum and Terminalia (Combretaceae) species extracts
2010
Masoko, Peter(University of Pretoria Department of Paraclinical Sciences Phytomedicine Programme) | Picard, Jackie(University of Pretoria Department of Veterinary Tropical Diseases , Faculty of Veterinary Science) | Eloff, Jacobus N.(University of Pretoria Department of Paraclinical Sciences Phytomedicine Programme)
Wound healing is a fundamental response to tissue injury and several natural products have been shown to accelerate the healing process. The present study was undertaken to determine the safety and efficacy of the topical treatment of acetone leaf extracts of Combretum imberbe, Combretum nelsonii, Combretum albopuntactum and Terminaliasericea based on their in vitro antimicrobial activity. Four circular full-thickness skin wounds were made on the backs of eight anaesthetised Wistar rats using aseptic techniques. The treatments were administrated topically using 10% and 20% concentrations of each extract in aqueous cream in separate treatments. Indications of erythema, exudate, crust formation, swelling and ulceration were used to determine the wound healing process. All of the wounds closed completely within 17 days. Throughout the experiment, a subcutaneous probe was used to determine that the body temperature and body weight of the rats were within the normal range. C. imberbe and C. nelsonii extracts accelerated wound healing, but there was no significant difference in wound contraction using 10% and 20% concentrations of the extracts in cream. The results also showed the potential usefulness of this model to measure accelerating wound healing. The extracts could perhaps overcome defects associated with healing failure in chronic wounds and prevent secondary bacterial and fungal infections.
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