In diabetes, impaired wound healing and other tissue abnormalities are considered major concerns. Many factorsaffect the time and quality of wound healing. One of the purposes of medical sciences is wound healing in a short time withreduced side effects. The herbal products are more precious in both prophylaxis as well as curative in delayed diabetic woundhealing activity when compared to synthetic drugs.A wide range of evidence has shown that capers plant possesses differentbiological effects, including antioxidant, anticancer and antibacterial effects. Phytochemical analysis shows thatC. spinosahashigh quantities of bioactive constituents, including polyphenolic compounds, which are responsible for its health-promotingeffects. The healing response emerges subsequently to cells exposure to alarm signals once the skin barrier is disrupted. Thisresponse is ultimately commanded by growth factors (GFs), which act as soluble messengers, establishing a communicationnetwork among the different cells populations and with the extracellular matrix. EGF is produced by platelets, macrophages andfibroblasts and has a paracrine impact on keratinocytes. The expression of EGF at the wound site is highest during activeepithelialization and wound contraction and stimulates the development of granulation tissue.Assessment of immunohistochemicallocalization of EGFin skin wound treated byCapparis spinosa flavonoid extract in alloxan-induced diabetic rats.A total of 30healthy maleWistar rats weighing approximately 250-300 gm were used in this study. A surgical incisional wound with fullskin thickness of 1.5 cm length were done on facial skin of each rat, they were randomly divided into following groups: GroupA: (10 healthy rats) received daily local application of the plant extract. Group B: (10 alloxan-induced diabetic rats) receiveddaily local application of extract of the plant material. Group C: (10 alloxan –induced diabetic rats) where normal saline wasapplied locally instead of plant extract. Scarification of all animals was done for the healing periods (3 and 7 days), andspecimens were prepared for immunohistochemical analysis. The results revealed highest percentage of EGF stromal andepidermal expression noticed in groupA, and in group B respectively at day 7 withhighly significant differene between stromaand epiderms in groups B and C. Results obtained in this study showed that flavonoid rich extract ofCapparis spinosaenhanceswound healing process in diabetic rats (1) (PDF) IMMUNOHISTOCHEMICAL EVALUATION OF EPIDERMAL GROWTH FACTOR EXPRESSION IN SKIN WOUND TREATED BY CAPPARIS SPINOSA FLAVONOID EXTRACT IN ALLOXAN INDUCED DIABETES RATS. Available from: https://www.researchgate.net/publication/342881316_IMMUNOHISTOCHEMICAL_EVALUATION_OF_EPIDERMAL_GROWTH_FACTOR_EXPRESSION_IN_SKIN_WOUND_TREATED_BY_CAPPARIS_SPINOSA_FLAVONOID_EXTRACT_IN_ALLOXAN_INDUCED_DIABETES_RATS [accessed May 16 2023].
Receipt date:3/13/2021 accepted date:5/26/2021 Publication date:12/31/2021
This work is licensed under a Creative Commons Attribution 4.0 International License.
energy is one of the strategic resources within international politics, and this is through the existing competition between the international powers on it, and the global powers have begun to rely on interest in new areas, such as import, depending on new projects an
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... Show MoreIn this paper, we have examined the effectiveness exchange of optical vorticity via three-wave mixing (TWM) technique in a four-level quantum dot (QD) molecule by means of the electron tunneling effect. Our analytical analysis demonstrates that the TWM procedure can result in the production of a new weak signal beam that may be absorbed or amplified within the QD molecule. We have taken into account the electron tunneling as well as the relative phase of the applied lights to assess the absorption and dispersion characteristics of the newly generated light. We have discovered that the slow light propagation and signal amplification can be achieved. Our results show that the exchange o
This study produces an image of theoretical and experimental case of high loading stumbling condition for hip prosthesis. Model had been studied namely Charnley. This model was modeled with finite element method by using ANSYS software, the effect of changing the design parameters (head diameter, neck length, neck ratio, stem length) on Charnley design, for stumbling case as impact load where the load reach to (8.7* body weight) for impact duration of 0.005sec.An experimental rig had been constructed to test the hip model, this rig consist of a wood box with a smooth sliding shaft where a load of 1 pound is dropped from three heights.
The strain produced by this impact is measured by using rosette strain gauge connected to Wheatstone