• 제목/요약/키워드: Skin tissue

검색결과 1,578건 처리시간 0.027초

Three-Dimensional Skin Tissue Printing with Human Skin Cell Lines and Mouse Skin-Derived Epidermal and Dermal Cells

  • Jin, Soojung;Oh, You Na;Son, Yu Ri;Kwon, Boguen;Park, Jung-ha;Gang, Min jeong;Kim, Byung Woo;Kwon, Hyun Ju
    • Journal of Microbiology and Biotechnology
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    • 제32권2호
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    • pp.238-247
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    • 2022
  • Since the skin covers most surfaces of the body, it is susceptible to damage, which can be fatal depending on the degree of injury to the skin because it defends against external attack and protects internal structures. Various types of artificial skin are being studied for transplantation to repair damaged skin, and recently, the production of replaceable skin using three-dimensional (3D) bioprinting technology has also been investigated. In this study, skin tissue was produced using a 3D bioprinter with human skin cell lines and cells extracted from mouse skin, and the printing conditions were optimized. Gelatin was used as a bioink, and fibrinogen and alginate were used for tissue hardening after printing. Printed skin tissue maintained a survival rate of 90% or more when cultured for 14 days. Culture conditions were established using 8 mM calcium chloride treatment and the skin tissue was exposed to air to optimize epidermal cell differentiation. The skin tissue was cultured for 14 days after differentiation induction by this optimized culture method, and immunofluorescent staining was performed using epidermal cell differentiation markers to investigate whether the epidermal cells had differentiated. After differentiation, loricrin, which is normally found in terminally differentiated epidermal cells, was observed in the cells at the tip of the epidermal layer, and cytokeratin 14 was expressed in the lower cells of the epidermis layer. Collectively, this study may provide optimized conditions for bioprinting and keratinization for three-dimensional skin production.

Elevated Aurora Kinase A Protein Expression in Diabetic Skin Tissue

  • Cho, Moon Kyun;An, Je Min;Kim, Chul Han;Kang, Sang Gue
    • Archives of Plastic Surgery
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    • 제41권1호
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    • pp.35-39
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    • 2014
  • Background Aurora kinase A (Aurora-A) plays an important role in the regulation of mitosis and cytokinesis. Dysregulated Aurora-A leads to mitotic faults and results in pathological conditions. No studies on Aurora-A expression in human diabetic skin tissue have been reported. In light of this, we explored the expression of Aurora-A in human diabetic skin tissue. Methods Aurora-A protein was evaluated by western blotting in 6 human diabetic skin tissue and 6 normal skin specimens. Results Increased expression of Aurora-A protein was detected in all diabetic skin tissue samples in both western blot analysis and immunohistochemical staining. However, in the case of the normal skin tissue, no bands of Aurora-A protein were detected in either the western blotting analysis or the immunohistochemical staining. Conclusions Thus far, there have been no studies on the expression of Aurora-A in diabetic skin tissue. However, we believe that oxidative DNA damage related to the expression of Aurora-A protein and Aurora-A could be involved inhuman diabetic skin tissue.

저주파 펄스 전자기장 자극에 의한 피부 조직괴사 완화 효과 (Effect of Skin Tissue Necrosis Relaxation by Low Frequency Pulsed Electromagnetic Fields (LF-PEMF) Stimulation)

  • 이자우;김준영;이용흠
    • 대한의용생체공학회:의공학회지
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    • 제42권1호
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    • pp.25-30
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    • 2021
  • Objective: The aim of this study is to consider the effect of skin tissue necrosis by improving blood flow in animal skin models for low frequency pulsed electromagnetic fields (LF_PEMF) stimulation. Methods: Twenty rats (Wistar EPM-1 male, 280-320 g) were randomly divided into control groups (n=10) and the PEMF groups (n=10). To induce necrosis of the skin tissue, skin flap was treated in the back of the rat, followed by isolation film and skin flap suturing. Subsequently, the degree of necrosis of the skin tissue was observed for 7 days. The control group did not perform any stimulation after the procedure. For the PEMF group, LF_PEMF (1 Hz, 10 mT) was stimulated in the skin flap area, for 30 minutes a day and 7 days. Cross-polarization images were acquired at the site and skin tissue necrosis patterns were analyzed. Results: In the control group, skin tissue necrosis progressed rapidly over time. In the PEMF group, skin tissue necrosis was slower than the control group. In particular, no further skin tissue necrosis progress on the day 6. Over time, a statistically significant difference from the continuous necrosis progression pattern in the control group was identified (p<0.05). Conclusions: It was confirmed that low frequency pulsed electromagnetic fields (LF_PEMF) stimulation can induce relaxation of skin tissue necrosis.

Expression of Extracellular Superoxide Dismutase Protein in Diabetes

  • Kim, Chul Han
    • Archives of Plastic Surgery
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    • 제40권5호
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    • pp.517-521
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    • 2013
  • Background Diabetes is characterized by chronic hyperglycemia, which can increase reactive oxygen species (ROS) production by the mitochondrial electron transport chain. The formation of ROS induces oxidative stress and activates oxidative damage-inducing genes in cells. No research has been published on oxidative damage-related extracellular superoxide dismutase (EC-SOD) protein levels in human diabetic skin. We investigated the expression of EC-SOD in diabetic skin compared with normal skin tissue in vivo. Methods The expression of EC-SOD protein was evaluated by western blotting in 6 diabetic skin tissue samples and 6 normal skin samples. Immunohistochemical staining was also carried out to confirm the EC-SOD expression level in the 6 diabetic skin tissue samples. Results The western blotting showed significantly lower EC-SOD protein expression in the diabetic skin tissue than in the normal tissue. Immunohistochemical examination of EC-SOD protein expression supported the western blotting analysis. Conclusions Diabetic skin tissues express a relatively small amount of EC-SOD protein and may not be protected against oxidative stress. We believe that EC-SOD is related to the altered metabolic state in diabetic skin, which elevates ROS production.

초기변형률에 의한 미소바늘의 피부조직 관통력 감소 (Prestrain-induced Reduction in Skin Tissue Puncture Force of Microneedle)

  • 김종훈;박성민;남경목;윤상희
    • 대한기계학회논문집A
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    • 제40권10호
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    • pp.851-856
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    • 2016
  • 최근 미세가공기술이 발전함에 따라 생체분해성 소재 기반의 미소바늘 혹은 미소바늘 주사기에 대한 연구가 각광을 받고 있다. 일반적으로 생체분해성 소재는 기계적 강도가 낮아 생체분해성 소재 기반의 미소바늘은 피부조직 관통 시 구부려지거나 파손되는 문제점을 가지고 있다. 본 연구에서는 기계적 강도가 향상된 생체적합성 소재를 새로이 합성하는 대신에 미소바늘 삽입 전 피부조직에 1축 혹은 등2축 초기변형률을 가해 미소바늘의 피부조직 관통력을 감소시키는 방법에 대해 살펴본다. 실험에서는 1축 혹은 등 2축 초기변형률을 가해 준 돼지 피부조직에 미소바늘을 삽입시키면서 힘-시간 데이터를 획득함으로써 초기변형률에 의한 미소바늘의 관통력 변화를 측정하였다. 본 연구를 통해 미소바늘의 피부조직 관통력은 피부조직에 초기변형률을 가해주는 방법으로 감소시킬 수 있음을 확인하였다.

피부화상이 피부 및 간에 미치는 영향 (Effect of Skin Burn on the Skin and Liver)

  • 남철현;서현규;황태연;최현임;이동호
    • 대한물리치료과학회지
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    • 제8권2호
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    • pp.1091-1097
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    • 2001
  • The main experiments was investigated the skin tissue damage changing for the skin bum having influence on the skin and the liver and also observed the radical liver weight, ALT in the serum, the fluctuating of AST for the skin bum causing to the liver damage. Anatomically the edema formation of skin after thermal injury was showed, and skin bum increased liver weight (% of body weight, p<0.05) and the activity of serum aniline aminotrasferase (p<0.05), and also histologically induced wes of epidermal layer, protein degeneration of connective tissue, local hemorrhage and degeneration of glandular epithelium in the skin tissue. Liver tissue showed the evidences of postbum damage, they were sinusoidal dilatation, cell swelling, infiltration of inflammatory cells.

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Tumors Involving Skin, Soft Tissue and Skeletal Muscle: Benign, Primary Malignant or Metastatic?

  • Hsieh, Chi-Ying;Tsai, Huang-Wen;Chang, Chih-Chun;Lin, Tsuo-Wu;Chang, Ke-Chung;Chen, Yo-Shen
    • Asian Pacific Journal of Cancer Prevention
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    • 제16권15호
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    • pp.6681-6684
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    • 2015
  • Background: Metastatic cancer with invasion of skin, soft tissue and skeletal muscle is not common. Examples presenting as soft tissue masses could sometimes lead to misdiagnosis with delayed or inappropriate management. The purpose of current study was to investigate clinical characteristics in the involvement of metastatic cancer. Materials and Methods: A total of 1,097 patients complaining of skin or soft tissue masses and/or lesions were retrospectively reviewed from January 2012 to June 2013. Tumors involving skin, soft tissue and skeletal muscle of head and neck, chest wall, abdominal wall, pelvic region, back, upper and lower extremities were included in the study. Results: Fifty-seven (5.2%) patients were recognized as having malignancies on histopathological examination. The most common involvement of malignancy was basal cell carcinoma, followed by cutaneous squamous cell carcinoma, sarcoma and melanoma. The most common anatomical location in skin and soft tissue malignancies was head and neck (52.6% of the malignancies). Four (0.36%) of the malignant group were identified as metastatic cancer with the primary cancer source from lung, liver and tonsil and the most common site was upper extremities. One of them unexpectedly expired during the operation of metastatic tumor excision at the scalp. Conclusions: Discrimination between benign and malignant soft tissue tumors is crucial. Performance of imaging study could assist in the differential diagnosis and the pre-operative risk evaluation of metastatic tumors involving skin, soft tissue and skeletal muscle.

돼지피부를 사용한 방사선 체외 장해모델 구현연구 (Implementation of Radiation Damage in Vitro Model using Swine Skin)

  • 정홍문;원도연;정동경;정재은
    • 한국방사선학회논문지
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    • 제10권2호
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    • pp.139-144
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    • 2016
  • 사람 피부 조직에서의 방사선 장해를 연구하는 방법은 실험동물에게 직접적으로 방사선을 노출하여 연구를 수행하게 된다. 이러한 연구방법은 방사선을 실험동물에게 노출시킨 후에 방사선에 의해 손상된 장해조직의 세포를 획득하여 분석을 하게한다. 이것은 시간적으로나 경제적으로도 많은 손실을 수반하게 된다. 이번 연구는 돼지의 피부를 사람의 피부로 가정하여 실험하였다. 돼지피부의 두께를 정하여 돼지피부를 통과한 후 피하조직 밑에서 세포가 직접적으로 받을 수 있는 방사선량을 얻어내어 수식화 하였다. 이번연구의 결과에 따르면 피부조직의 방사선 노출 후 피하조직 밑에서 발생되는 방사선량을 유추해낼 수 있다. 더 나아가 동물실험이 아닌 세포만을 가지고도 방사선에 의한 생체장해분석을 할 수 있는 데 효과적으로 사용할 수 있을 것이다.

누드마우스를 이용한 다양한 피부 대체물의 성능비교 (Evaluation of the Various Artificial Skin Substitutes Implanted onto Nude Mice)

  • 이원재;이동원;허재영;이영대;박병윤;나동균
    • Archives of Plastic Surgery
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    • 제35권2호
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    • pp.127-133
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    • 2008
  • Purpose: The purpose of this study is to evaluate the remodeling process of the various skin substitutes in 4th and 6th weeks following the transplantation when transplanted onto nude mice. Methods: Three types of artificial skin substitutes, such as PLGA scaffold with keratinocyte sheets(group 1), acellular human dermis($Surederm^{(TM)}$) and keratinocyte sheet(group 2), bioengineered skin($Neoderm^{(TM)}$)(group 3), were applied to the wound on nude mice. All mice were killed in 2, 4 weeks and/or 6 weeks after grafting and tissue samples were harvested from the back of mice. The changes in wound size, degree of angiogenesis, formation of basement membrane and epidermis, density of collagen fibers and neural restoration were examined. Results: There was no significant changes in wound size among the three groups. However, the size of wound decreased in the non-substituted group due to contracture. Degree of angiogenesis and systhesis of collagen or neurofilaments were mostly increased in bioengineered skin($Neoderm^{(TM)}$)(group 3), followed by acellular human dermis($Surederm^{(TM)}$) and keratinocyte sheet(group 2), PLGA scaffold with keratinocyte sheets (group 1). However, group 3 and group 2 showed similar thickness of basement membrane and epidermis. Conclusion: We found that degree of angiogenesis, formation of basement membrane and skin appendages, density of collagen fibers and neurofilaments can be the categories to evaluate the success of artificial skin substitution in early stages.

치자엑스 가수분해물 제제의 피부투과 및 생체 피부조직과의 교차결합에 관한 연구 (Skin Permeation and Crosslinking with Biological Tissue of the Hydrolyzed Products of Gardeniae Fructus Extract)

  • 양재헌;이남희
    • Journal of Pharmaceutical Investigation
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    • 제35권1호
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    • pp.7-16
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    • 2005
  • Gardeniae Fructus is consisted of geniposide and it's derivatives. For the purpose of treatment of skin disease, geniposide and hydrolyzed products (HP) of Gardeniae Fructus were studied on skin permeation and cross1inking with biological tissue. The hydrolyzed products (HP) and active ingredients of Gardeniae Fructus were identified and investigated about skin permeability. Genipin has provided low cytotoxic cross1inking reagents and formed stable and biocompatible crosslinked products. The permeation enhancing effects of geniposide and genipin under the hydrolyzed products of cream and hydrogel preparations were tested using Franz type diffusion cell and the skin of hairless mouse. The remaining proportions of geniposide and genipin were measured in the hydrolyzed products of cream and hydrogel preparations. The crosslinking of epidermic and endodermic tissue with genipin under the hydrolyzed prodcuts of cream and hydrogel preparation was observed using light microscopy. Increased absorption ratio of the skin of hairless mouse about genipin was higher than that of geniposide. Loads at break, tensile strengths and skin permeation rate of the hydrolyzed products (HP) of cream and hydrogel preparations were higher than the nonhydrolyzed products (NHP). The hydrolyzed products (HP) of cream and hydrogel of Gardeniae Fructus Extracts were proper preparations and crosslinking agents to increase the transdermal absorption with epidermic and endodermic tissue.