• 제목/요약/키워드: skin wound

검색결과 742건 처리시간 0.034초

Effects of Danggwieumja on the Healing of Full-Thickness Skin Injury in Rat

  • Kim, Bum-Hoi
    • 동의생리병리학회지
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    • 제25권5호
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    • pp.887-893
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    • 2011
  • The purpose of this study was to investigate the wound healing effects of Danggwieumja (DG), which is commonly used for skin inflammation, skin wound, skin pruritus, and chronic hives etc. The 1.5 cm ${\times}$ 1.5 cm full-thickness skin wound was induced to two groups, DG (n=16) and Saline (n=16) group. The DG extract and Saline were orally administrated daily for 15 days after skin wound induction. Then, the body weight of rats and the congestion indices were daily measured for 15 days after skin wound induction. The wound contractions and epithelizations were also measured. The wound contractions were daily measured for 15 days after wound induction and wound epithelizations were measured for 8 days from day 7 after wound induction. For evaluating angiogenesis, the immunoreactivities of vWF and VEGF protein were measured immunohistochemistrically on day 15. In results, although the percentage increases in mean body weight of rats in the DG and Saline groups hve no significant differences, DG extract decreased the time of wound healing and congestion around wound, and improved wound contraction and epithelization. The contraction percentage of DG group was significantly increased on day 5 (P<0.05) and day 7 (P<0.01) than that of Saline group. DG group showed significant increase of wound epithelization on day 7 (P<0.05) as compared to Saline group. Moreover, DG extract reduced the inflammation of skin dermis and promoted the growth of vascular vessels of dermis by accelerating vascular endothelial growth factor (VEGF) protein. These results suggest that DG has the beneficial effects on skin incision wound and can be the suitable wound healing agent for various surgical wounds.

흰쥐의 전층피부상처 동물모델에서 소풍산(消風散)이 VEGF 및 TGF-β1발현에 미치는 영향 (Sopung-san Extract Enhances healing potential on Full-thickness Skin Wound in Rats: Role of VEGF and TGF-β1)

  • 김범회
    • 대한한의학방제학회지
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    • 제25권2호
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    • pp.123-134
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    • 2017
  • Wounds are commonly created during almost every kind of surgery, trauma and skin diseases. Delayed wound healing affects a plenty of patients and requires prolonged treatments that seriously reduce the quality of life for patients. Skin damage involving large areas or great severity can lead to disability or even death. Wound healing involves a complicated series of actions, of various tissues and cell lineages, concerning inflammation, migration, proliferation, reepithelialization, and remodeling. Sopung-san is reported to have anti-inflammatory effect and has been used for various skin diseases such as allergic dermatitis and atopic dermatitis. In this study, the hypothesis that oral treatment with Sopung-san could enhances healing potential on rat full thickness skin wounds was tested. Twenty young male Sprague-Dawley rats were used for the studies. A full-thickness skin wound was made on the dorsal skin of the rats. Either Sopung-san water extract (SPS) or saline (Control) was orally administrated every day. The wound area was measured and the percentages of wound contraction, wound healed and wound epithelization were calculated. Wound tissue samples were excised following injection for histopathological and immunohistological examination. Wound area in rats of SPS group significantly was decreased compared to Control. SPS group showed significant promotion of wound healing compared to Cotrol group in the percentages of wound contraction, wound healed and wound epithelization. Histopathological examination revealed that SPS induces neo-vascularization potential in wound healing process. SPS treatment in rats significantly accelerated cutaneous wound healing in the neo-vascularization process by increasing VEGF and $TGF-{\beta}1$ synthesis. The results suggest that Sopung-san affects key cellular processes responsible for wound repair and point to a unique potential for this molecule in the therapy of skin wounds, particularly as an angiogenic agent.

Skin wound healing effects of (+)-syringaresinol from ginseng berry

  • Jee-hyun Hwang;Yeonsoo Kang;Heui-Jin Park;Seolyeong Kim;Su-Hyun Lee;Hangun Kim;Sang-Jip Nam;Kyung-Min Lim
    • Journal of Ginseng Research
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    • 제47권5호
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    • pp.654-661
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    • 2023
  • Background: Ginseng has been used as a traditional medicine and functional cosmetic ingredients for many years. Recent studies have focused on the potential biological effects of the ginseng berry and its ingredients. (+)-Syringaresinol (SYR) is enriched in ginseng berry and its beneficial effects on the skin have been recently reported. However, little is known about the its effects on the wound healing process of skin. Methods: Here, we evaluated the skin wound healing effect of (+)-SYR using the human fibroblast Hs68 cell and ex vivo pig and human skin tissue model. Scratch wound test and hydrogen peroxide (HPO) induce chemical wound model were employed. Results: (+)-SYR promoted the migration and proliferation of Hs68 cells without significant cytotoxicity at the tested concentrations. Especially, in ex vivo pig and human skin tissue, HPO-induced chemical wound was recovered almost completely by (+)-SYR. In line with the finding in Hs68, the protein expression levels of TGF-β and PCNA, a proliferation marker were increased, demonstrating the beneficial effects of (+)-SYR on skin wound repair. Conclusion: Collectively, we demonstrated that (+)-SYR from ginseng berry, can enhance the wound healing effect by accelerating cell proliferation and skin regeneration, suggesting the potential utility of (+)-SYR for skin wound repair.

콜라겐과 무세포진피를 이용한 혼합형 인공피부 개발 및 쥐 모델에서 창상치료 적용 (Application of a Composite Skin Equivalent using Collagen and Acellular Dermal Matrix as the Scaffold in a Mouse Model of Full-thickness Wound)

  • 이동혁;윤진철;이정희;김인섭
    • KSBB Journal
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    • 제29권1호
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    • pp.42-49
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    • 2014
  • The aim of this study was to develop a composite human skin equivalent for wound healing. Collagen type1 and acellular dermal matrix powder were utilized as the scaffold with dermal fibroblasts and keratinocytes for the development of a composite human skin equivalent. Fibroblast maintained the volume of composite skin equivalent and also induced keratinocytes to attach and proliferate on the surface of composite skin equivalent. The composite human skin equivalent had a structure and curvature similar to those of real skin. Balb-C nu/nu mice were used for the evaluation of full-thickness wound healing effect of the composite human skin equivalent. Graft of composite skin equivalent on full-thickness wound promoted re-epithelialization and granulation tissue formation at 9 days. Given the average wound-healing time (14 days), the wound in the developed composite skin equivalent healed quickly. The overall results indicated that this three-dimensional composite human skin equivalent can be used to effectively enhance wound healing.

흰쥐의 피부상처 동물모델에서 고삼(苦蔘)이 신생혈관형성에 미치는 영향 (Enhancement of Angiogenesis by Sophorae Radix in Full-thickness Skin Wound of Rats)

  • 김범회;강경화
    • 동의생리병리학회지
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    • 제31권6호
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    • pp.334-340
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    • 2017
  • Wound healing is the restoration in injured skin tissue and one of the most important therapeutic targets. The process consists of inflammation, proliferation, and remodeling. There have been reported multiple factors that accelerate and delay wound healing. In this study we tested the hypothesis that Sophorae Radix extract would improve the recovery of wound healing after full-thickness skin wound in rats. Twenty young male Sprague-Dawley rats were used for the studies. A full-thickness skin wound was made on the dorsal skin of the rats. Either Sophorae Radix water extract (SR) or saline (Control) was orally administrated every day. The wound area was measured and the percentages of wound contraction, wound healed and wound epithelization were evaluated. After 15 days, the skin tissues were excised and examined by histopathological and immunohistochemistrical method. In results, wound area in SR group was significantly decreased to compared with Control. SR group showed the significant enhancements in the percentages of wound contraction, wound healed and wound epithelization. Histopathological examination revealed that SR induces neo-vascularization potential in wound healing process. SR treatment in rats significantly accelerated cutaneous wound healing in the angiogenesis process by increasing VEGF and TGF-${\beta}1$ synthesis. These results suggest that Sophorae Radix enhance skin wound repair by increasing the angiogenic agents such as VEGF and TGF-${\beta}1$.

A Skin Fixation Method for Decreasing the Influence of Wound Contraction on Wound Healing in a Rat Model

  • Bae, Seong Hwan;Bae, Yong Chan;Nam, Su Bong;Choi, Soo Jong
    • Archives of Plastic Surgery
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    • 제39권5호
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    • pp.457-462
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    • 2012
  • Background The elasticity of the back skin of the rat reduced the tension around wounds during the wound healing process in that region, and thus activates wound contraction. The authors proposed two skin fixation methods using readily available materials to decrease the influence of wound contraction on wound healing and designed an experiment to determine their effects. Methods The authors made 36 skin wounds on the backs of 18 rats, and they divided them into three groups. Each group was treated with three different kinds of dressing materials, each with different skin fixing characteristics. Group A was a control group. Group B and group C were dressed by the first and the second skin fixation method. We measured the areas of the wounds post-surgically and calculated the wound area reduction rates. Results The two skin fixation methods both reduced the effect of wound contraction compared to the control group. Each of the two methods had different outcomes in reducing wound contraction. Conclusions The experiment demonstrated significant differences among the wound areas and the wound area reduction rates of the three groups as a result of differences in the degree of wound contraction. To obtain accurate results from wound healing experiments, appropriate skin fixation methods must be adopted.

Ginseng-derived nanoparticles induce skin cell proliferation and promote wound healing

  • Song Yang;Shuyan Lu;Limei Ren;Shuai Bian;Daqing Zhao;Meichen Liu;Jiawen Wang
    • Journal of Ginseng Research
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    • 제47권1호
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    • pp.133-143
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    • 2023
  • Background: Past studies suggested that ginseng extracts and ginseng-derived molecules exerted significant regulatory effects on skin. However, no reports have described the effects of ginseng-derived nanoparticles (GDNPs) on skin cell proliferation and wound healing. In this study, we investigated whether GDNPs regulate the proliferation of skin cells and promote wound healing in a mouse model. Methods: GDNPs were separated and purified via differential centrifugation and sucrose/D2O gradient ultracentrifugation. GDNP uptake, cell proliferation and cell cycle progression were measured by confocal microscopy, CCK-8 assay and flow cytometry, respectively. Cell migration and angiogenic effects were assessed by the wound scratch assay and tube formation assay, respectively. ELISA was used to detect extracellular matrix secretion. The relevant signaling pathway was confirmed by western blotting. The effects of GDNPs on skin wound healing were assessed by wound observation, HE staining, and western blotting. Results: GDNPs possessed the essential features of exosomes, and they were accumulated by skin cells. Treatment with GDNPs notably enhanced the proliferation of HaCaT, BJ and HUVECs. GDNPs also enhanced the migration in HaCaT cells and HUVECs and angiogenesis in HUVECs. GDNPs increased the secretion of MMP-1, fibronectin-1, elastin-1, and COL1A1 in all three cell lines. GDNPs regulated cell proliferation through the ERK and AKT/ mTOR pathways. Furthermore, GDNPs facilitated skin wound healing and decreased inflammation in a mouse skin wound model. Conclusion: GDNPs can promote skin wound healing through the ERK and AKT/mTOR pathways. GDNPs thus represent an alternative treatment for chronic skin wounds.

토끼 피부창상 치유에 있어서 Polyphosphate의 효과 (Effects of Polyphosphate on Skin Wound Healing in Rabbits)

  • 이광인;한정희;채수경;김홍렬;이창훈;정성목;서강문
    • 한국임상수의학회지
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    • 제20권2호
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    • pp.198-206
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    • 2003
  • The purpose of the present study was to investigate the effect of polyphosphate on healing of skin wound in rabbits. Four skin wounds of 8mm in diameter were induced bilaterally(4 wounds/rabbit) on the dorsolateral aspect of the trunk of 15 male New Zealand white rabbits. Ten percent polyphosphate(poly P) type 25, 10% poly P type 35, 10% poly P type 25+10% poly P type 35 and 0.85% sterile saline solution were applied on the wound area and examined grossly and histopathologically. The rate of wound contraction and histopathological changes after poly P application on the skin wound were investigated. In gross findings, the wound contraction rates of 10% poly P 25 group were significantly decreased from day 2 to day 7 after operation than those of 0.85% sterile saline solution treated group (p < 0.01). Although the hemorrhage and inflammation were observed on days 3, 6 and 9 after operation in all groups, but in 10% poly P 25 was gradually decreased. Revascularization and reepithelialization were seen 3, 6 and 9 days after operation in all groups, especially in 10% poly P 25 was formed completely on 9 days. Fibroplasia were seen 3. 6 and 9 days after operation in all groups, especially in 10% poly P 25 was compact than other groups on 9 days. The results suggested that polyphosphate, especially 10% poly P 25 would be effective on healing of skin wound in rabbits through decrease of would contraction rate, increase of revascularization, reepithelialization and fibroplasia.

소아 개심술에 있어서 수직흉골절개술을 병용한 양측성 유방하피부절개술에 따른 창상상태 (Wound States in Pediatric Open Heart Surgery with Bilateral Submammary Skin Incision Combined with Vertical Sternotomy)

  • 공준혁;이응배;전상훈;장봉현;이종태;김규태
    • Journal of Chest Surgery
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    • 제33권1호
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    • pp.20-25
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    • 2000
  • Background: Median sternotomy remains the standard approach used by surgeons for most intracardiac operations but the residual scar is cosmetically unsatisfactory. To avoid an unsightly midline scar we have tried to use alternative skin incision (bilateral subm-ammary skin incision) to median sternal skin incision, In this study we have tried to compare different postoperative results of wound between two different skin incisional methods. Material and Method: Between June 1997 and June 1998, a bilateral subma-mmary skin incision combined with vertical sternotomy was performed in 21 pediatric female patients (submammary group)to repair acyanotic congenital heart disease. after the period we carried out a retrograde study about postoperative wound states comparing this incision with median sternal skin incision controls in whom there were 23 pediatric pat-ients (control group). Result: Patients' age ranged from 14 to 96 months(mean 38.2 months) Mean duration of subcutaneous drains using Hemovac which was used only in the patients of submammary group was 4.2 days and total amount of the drained effusion was 51.1 ml. Postoperative wound complications included wound eruption in one patient wound disruption in one patient and skin necrosis in 3 patients in submammary group and included wound disruption in 4 patients in controls. mean duration required for wound healing was 15,5 days in submammary group versus 10.4 days in controls. The mean scar length was 12.5 cm in submammary group versus 11.3 cm in controls. The average follow-up was 8.2 months in submammary group versus 9.0 months in controls. In submammary group 3 patients parents(14.3%) were pleased with their cosmetic results of wound scar but 8(38.1%) were dissatisfied. Among the 23 patients in control group 8(34.8%) were pleased but 8(34.8%) complained ofunhappiness with the scar.

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The effect of Korean Red Ginseng on full-thickness skin wound healing in rats

  • Park, Ki-Soo;Park, Dae-Hwan
    • Journal of Ginseng Research
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    • 제43권2호
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    • pp.226-235
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    • 2019
  • Background: Panax ginseng is regarded as one of the best compounds for promoting health, and it has been used traditionally as a medicinal herb. Recently, Korean Red Ginseng (RG) has been shown to protect skin from aging and wrinkling; it can also relieve atopic dermatitis and allergy symptoms. This study aimed to evaluate RG's effects on the regeneration of the full-thickness skin wounds in rat. Methods: Full-thickness skin wounds were generated in rats, and then RG was administered either orally or topically. The wound-healing effects of RG were investigated by assessing wound size, mRNA expression patterns of genes related to wound healing, histological staining, and measurements of lipid, moisture, and elasticity in skin tissues. Results: The wound size was smaller, and tissue regeneration rate was faster in the RG-treated group than that in the control group on days 15 and 20 after initiating treatment. On postoperative day 20, skin lipid and moisture content had increased significantly in the RG-treated group. Significant increases in the gene expression levels of transforming growth $factor-{\beta}1$ and vascular endothelial growth factor were found in the RG group during the early stages of wound healing. Matrix metalloproteinase-1 and matrix metalloproteinase-9 showed significant increases in gene expression levels on day 20. Conclusion: The results suggested that RG may promote healing of full-thickness skin wounds in rats. They also provided basic insights into the effects of RG on skin regeneration, supporting its use as a dressing material for wound treatment and its development as a functional food.