• Title/Summary/Keyword: 피부장벽기능

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The effects of the Reynoutria japonica on skin-barrier and moisturizing in HaCaT cells (인간유래각질형성세포에서 호장근 추출물이 피부장벽 보호능과 보습능에 미치는 영향)

  • Eun Jeong Kang;Jia Bak;Yun-Sik Choi
    • Journal of the Korean Applied Science and Technology
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    • v.40 no.5
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    • pp.965-976
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    • 2023
  • Reynoutria japonica is a perennate plant belonging to Polygonaceae and grows wild in East Asia containing Korea. Roots of Reynoutria japonica (R. japonica), part of roots of Reynoutria japonica, has been used for anti-inflammation and antispasmodics and contains emodin as active compound. Epidermis of skin is crucial roles to defense our body against stimulants, harmful substance and prevent water loss. In this study, we examined the effect of R. japonica and emodin, its active compound, on skin-barrier and moisturizing on HaCaT cells. First, antioxidant effect of R. japonica was prominent by scavenging ABTS+ radicals. Next, we conducted real time PCR and expression of filaggrin mRNA which is crucial role in differentiation of keratinocyte increased by R. japonica and emodin dose-dependently. In addition, R. japonica and emodin significantly elevated the expression of HAS-2 mRNA which play a role in hyaluronic acid synthesis on HaCaT cells. Taken together, R. japonica containing emodin, as active compound has potential as a cosmetic material for enhancing the function of skin-barrier and moisturizing in epidermis.

Novel Sporichthyaceae Bacterium Strain K-07 Skin Barrier, Moisturizing and Anti-inflammatory Activity (신규 Sporichthyaceae Bacterium Strain K-07 배양액의 피부장벽, 보습 및 항염증 활성)

  • Lee, Dong-Geol;Kim, Minji;Kang, Seunghyun;Kim, Youn-Joon
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.43 no.2
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    • pp.137-147
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    • 2017
  • The human skin is an ecosystem that provides habitat to various microorganisms. These comprise the skin microbiome and provide numerous benefits in addition to maintaining a symbiotic relation with the host. Various metabolites generated by the skin microbiome exert beneficial effects such as strengthening the skin barrier, and anti-aging and anti-inflammatory functions. In this study, we isolated a novel bacterium, designated Sporichthyacae strain K-07, from the human skin. Analysis of 16S rRNA gene sequences showed that the newly found bacterium shares 93.4% homology with the genus Sporichthya, thus corroborating the discovery of a novel genus. We further analyzed the effect of the novel strain in vitro, by treating HaCaT cells with bacterial metabolite products. Treatment resulted in changes in the mRNA expression levels of filaggrin, claudin1, claudin4, SMase, CERS3, HAS3, aquaporin3, IL-6, TNF-${\alpha}$, TSLP, and TARC. Specifically, the levels of filaggrin, claudin1, claudin4, SMase, CERS3, HAS3, and aquaporin3 were higher in strain K-07 metabolite product-treated cells than in control cells. These results showed that metabolite products of the novel strain K-07 enhanced the skin barrier and exert anti-inflammatory effects. Therefore, these metabolite products could be potentially used for treatment of skin conditions.

Study on Reinforcing Skin Barrier and Anti-aging of Exosome-like Nanovesicles Isolated from Malus domestica Fruit Callus (사과 캘러스로부터 분리된 엑소좀-유사 Nanovesicles 의 피부 장벽 및 피부 노화 방지 개선 연구)

  • Seo, Yu-Ri;Lee, Kwang-Soo;Kang, Yong-Won
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.47 no.2
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    • pp.139-145
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    • 2021
  • Plant-derived exosome-like nanovesicles (PELNs) are known to include various biological activities and possess high biocompatibility. Because PELNs can influence immune responses, cell differentiation, and proliferation regulation, they can be applied in multiple industries. However, the studies on the skin physiological of exosome-like nanovesicles derived from plant callus are insignificant compared to nanovesicles derived from mammalian cells. In this study, callus was induced from apple fruit (Malus domestica), and exosome-like nanovesicles (ACELNs) were isolated for improving skin barrier and anti-aging. The yield of ACELNs was 6.42 × 109 particles/mL, and the particle size was ranged from 100 to 200 nm. HDF cells and HaCaT cells were concentration-dependent, increased in cell, and decreased in cytotoxicity. The cornified envelope formation was significantly increased compared to the control group. The COL1A1 expression and the FBN1 expression in HDF cells were increased. In addition, the ACELNs promoted collagen biosynthesis in UVA-irradiated HDF cells. These results might be considered as potential materials that could improve skin barrier and prevent skin aging.

The effects of Chamaecyparis obtusa oil on anti-wrinkle, skin-barrier and moisturizing (편백 오일의 항주름, 피부 장벽 및 보습능 평가)

  • Eun Jeong Kang;Young-Ah Jang;Jin-Tae Lee;Sung Hee Kim;Sohyun Kim;Jia Bak;Yun-Sik Choi
    • Journal of the Korean Applied Science and Technology
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    • v.40 no.2
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    • pp.309-321
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    • 2023
  • Chamaecyparis obtusa (C. obtusa) belongs to Cupressaceae and grows wild in southern area of Korea. C. obtusa has been used for furnitures because of the superior quality of the lumber and remaining branches and leaves were used for extraction of essential oil (C. obtusa oil). C. obtusa oil has numerous health effects, including anti-inflammation, antibacterial, deodorization, sedative effect. This study was performed to evaluate the effects of C. obtusa oil on anti-wrinkles, skin-barrier and moisturizing. First, DPPH and ABTS assay were conducted to evaluate antioxidant effect and C. obtusa oil showed significance scavenging activity on both radicals. And elastase activity was examined for anti-wrinkle effect. At the result, elastase activity was significantly reduced by C. obtusa oil. Next, real-time PCR was performed to evaluate gene expression. At the results, MMP-1 mRNA expression was significantly reduced by C. obtusa oil in HDF cells. In addition, filaggrin and HAS-2 mRNA expression significantly increased by C. obtusa oil in HaCaT cells. Taken together, these results indicate that C. obtusa oil has potential as a cosmetic material for anti-aging by enhancing anti-wrinkle, skin-barrier and moisturizing effects.

A Study on Skin Permeability and Skin Whitening Effect of High Pressure Emulsification Processed Cosmetic (고압유화 공정이 적용된 화장품의 피부흡수 및 피부 미백효과 연구)

  • Jang, Sue Im;Lee, So Mi;Paik, Byung Ryol;Han, Jiyeon;Kim, Eun Joo;Lee, Hae Kwang
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.43 no.3
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    • pp.189-194
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    • 2017
  • Skin has a strong barrier function to protect the body from external harmful factors. This strong barrier function of the skin makes for any effective substance difficult to permeate through the skin. The purpose of this study was to evaluate skin permeability of the reduced particle size by non-invasive method. The particles were prepared by high-pressure emulsification. The niacinamide prepared in a high-pressure emulsification was absorbed 1.56 times higher than the control sample. In addition, it was found from the sixth layer of keratin that was removed by tape-stripping method. This was significantly deeper penetration. The whitening efficacy of the sample containing niacinamide was evaluated before and after 6 weeks of use. The skin color was significantly improved in both pigmented area and non-pigmented area. Through this study, it was possible to visually and quantitatively confirm the permeability confirm the permeability of the reduced particle sample into skin.

The Study on the Skin Penetration of Cosmetic Ingredient with in vivo Raman Spectroscopy and in vitro Franz Cell (라만 분광 피부 측정기를 이용한 기능성 화장품 성분의 in vivo 피부 투과 측정 및 in vitro 비교 평가 연구)

  • Jeon, Serim;Han, Min-Hee;Chung, Dae-Kyun;Hwang, Jae-Sung
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.40 no.1
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    • pp.1-10
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    • 2014
  • At present, there are few research papers on skin penetration of cosmeceutical ingredients. What is worse is that in vivo studies are hard to find. In this study, we measured skin epidermal penetration of cosmeceutical ingredients using in vivo Raman spectroscopy and compared with the results obtained from experiments using in vitro franz cell. Results showed that ascorbyl-2-glucoside, retinol, retinyl palmitate, and kojic acid were good for penetration ratio in measurement in vitro and retinol, vitamin C, and arbutin were good in measurement in vivo. Among them, retinol was best in skin penetration in vivo experiment using Raman spectroscopy and ascorbyl-2-glucoside was best in skin penetration in vitro experiment using Franz cell system. It is estimated that the differences were originated from the experimental procedures of two different methods; in vivo Raman experiment can be sensitive to the effect of epidermis and dermis as characteristics of matter by estimating the stratum corneum and in vitro measurement is evaluation of material to penetrate skin of hairless mouse. However, most penetration barrier is the stratum corneum, thus it is important to examine movement of material in the stratum corneum. We expect that these results provided useful information for many cosmetic related research.

The histological structure and the pathologic lesions of teleost skin (어류피부의 조직학적 구조와 병변)

  • Huh, Min-Do
    • Journal of fish pathology
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    • v.5 no.2
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    • pp.159-164
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    • 1992
  • The skin of fishes is also the important external barrier against a variety of the environmental detrimental agents, allowing normal internal physiological function, so its condition is very important in many disease processes. Since fishes are aquatic, morphologically and physiologically they posses specific characteristics lacking in terrestial animals. Thus, it is necessary to keep in mind various specific histologic characteristics for a precise interpretation of the histopathological lesions. In the normal environment the fish skin is more subtly adapted for its physiological requirements as a limiting barrier than the skin of higher terrestial vertebrates. However, its delicacy makes it high vulnerable to damage in fish culture facilities or polluted waters. Although changes in the skin of fish such as discoloration, ulcerative lesions, are the the most readily observed clinical features of fish, there is a wide variety of possible responses, which are best considered in terms of their site within the skin. Up to now, there are relatively few sytematically described information on the histological structure of the teleost skin as well as integrated reviews of the range of pathological processes that can occur in teleost skin. Therefore it was tried in this article to rearrange the information already described by other investigators on the histological structure and histopathological changes of teleost skin.

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The Anti-bacterial Effects and Epidermal Permeability Barrier Function of Red Onion Juice Produced in Jeon-Nam province in Korea (전남 함평산 자색양파 추출물의 항균효과와 피부장벽 보호효과)

  • Youn, Dae-Hwan;Shin, Heon-Tae
    • Journal of Society of Preventive Korean Medicine
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    • v.16 no.1
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    • pp.43-56
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    • 2012
  • Objective : In this study, we assessed the anti-bacterial effects and epidermal permeability barrier function of red onion juice comparing to yellow onion juice and $Houttuynia$ $cordata$ extract $in$ $vitro$. Methods : 3types of red and yellow onion juice were prepared as antibacterial agent candidates with Houttuynia cordata hot water extract using 4 different bacterial strains ($Escherichia$ $coil$, $Salmonella$ $enterica$ $subsp.$ $enterica$, $Staphylococcus$ $epidermidis$, $Staphylococcus$ $aureus$ $subsp$) by colony counting method. The expression of filaggrin, a marker of keratinocyte differentiation, and serine palmitoyl transferase (SPT), a marker of the formation of the stratum corneum lipid barrier, in human HaCat keratinocytes were analyzed using HaCaT cell line. The expression of COX-2 and AP-1 which is a factor of COX-2 transcription were also analyzed by western blotting method. Results : There was detectable anti-bacterial effects on $Staphylococcus$ $epidermidis$, $Staphylococcus$ $aureus$ $subsp$ among 1%, 5%, 10% extracts of yellow and red onion.(81%-100%) The bacteriocidal effects were not shown on $Escherichia$ $coil$, $Salmonella$ $enterica$ $subsp.$ $enterica$ among $Houttuynia$ $cordata$, yellow onion and red onion extracts. The in vitro results showed the concentration-dependent effects on the expression of both filaggrin and SPT in HaCat cells among 0.01%, 0.05%, 0.1%, 0.5% extracts in Houttuynia cordata and red onion, reflecting the notion that $Houttuynia$ $cordata$ and red onion can induce epidermal keratinocyte differentiation and improve the recovery of skin barrier functions. The concentration-dependent effects also have been shown on the expression of both COX-2 and AP-1 among 0.01%, 0.05%, 0.1%, 0.5% extracts in $Houttuynia$ $cordata$ and red onion, while slight effect in yellow onion. Conclusion : Red onion juice could be a potential candidate enhanser for the skin care and cosmetology.

Phosphatidylserine Enhances Skin Barrier Function Through Keratinocyte Differentiation (포스파티딜세린의 각질세포 분화 유도를 통한 피부장벽 기능 강화)

  • Chung, So-Young;Nam, Sang-June;Choi, Wang-Keun;Seo, Mi-Young;Kim, Jin-Wook;Lee, Seung-Hun;Park, Chang-Seo
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.32 no.1 s.55
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    • pp.17-22
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    • 2006
  • Phosphatidyiserine (PS) is a phospholipid which plays the structural role in membranes and serves as a cofactor of signaling enzymes for diverse cellular functions. In this study, we observed that topical treatment with PS significantly decreased trans-epidermal water loss (TEWL) induced by tape-stripping in hairless mice. Also, ceramides in epidermis were increased in PS-treated group compared to vehicle-treated one in vivo. the amounts of non-hydroxyl ceramide (NHCER) (1.4 fold) and glucosylceramide (glucosylCER) (1.6 fold), in the skin of hairless mice, were increased by topical treament with PS. Also, we demonstrated that PS stimulated keratinocyte differentiation. We observed that PS treatment morphologically altered normal human keratinocyte (NHK) from the proliferating phase to the differentiating one, suggesting that PS stimulated epidermal differentiation in NHK. We also showed that the expressions of the specific markers for epidermal differentiation, involucrin (INV) (3.5 fold up) and transglutaminase 1 (TG'ase 1) (3 fold up), were significantly increased by PS treatment, compared to untreated control in vitro. In addition, topical treatment with PS resulted in a progressive increase in INV and loricrin protein levels in vivo. In conclusion, we provide the first evidence for the physiological activities of PS in skin, and we suggest that PS strengthen the epidermal permeability harrier by stimulation of keratinocyte differentiation.

Antimicrobial activities and skin barrier improvement effect of Eruca sativa extract (루꼴라(Eruca sativa) 추출물의 항균활성과 피부장벽 개선 효과)

  • Kim, Bora;Kim, Hyun-Soo
    • Food Science and Preservation
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    • v.24 no.2
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    • pp.320-324
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    • 2017
  • Eruca sativa is a rocket plant and a member of the Brassicaceae, which is considered to be an important chemo-preventive plant family. Although Eruca sativa has positive biological effects, the effect of Eruca sativa extract (ES) on improvement of skin barrier function has not been reported. In this study, we investigated the applicability of functional materials by examining a variety of physiological activities of Eruca sativa extract. ES showed anti-microbial activities against Bacillus subtilis, Escherichia coli, and Candida albicans. In particular, antimicrobial activities of ES against B. subtilis was the highest. Additionally, immunohistochemical analysis of protein marker related to keratinocyte differentiation was determined. The treatment by ES (50 mg/L) showed a significant increase of involucrin expression compared with treatment by 0.1% DMSO as a control in skin equivalents, the ES-treated group showed similar level in the expression of involucrin compared to the group treated with the same concentration of WY14643 in $EpiDerm^{TM}$, a three-dimensional model of skin equivalents. These results indicate that ES promotes the expression of protein related to barrier properties of the skin. Therefore, ES may be an effective ingredient for skin barrier improvement.