• 제목/요약/키워드: barrier function

검색결과 593건 처리시간 0.024초

Assessment of Reproductive Health Risk of Polychlorinated Biphenyls by Monitoring the Expression of Claudius and Transepithelial Electrical Resistance in Mouse Sertoli Cells

  • Gye, Myung-Chan;Seiichiroh Ohsako;Lee, Ho-Joon
    • Journal of Microbiology and Biotechnology
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    • 제13권4호
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    • pp.495-500
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    • 2003
  • Tight junctions (TJ) between adjacent Sertoli cells in testis are important for the formation of the blood testis barrier (BTB). In an effort to verify the reproductive health risk of endocrine-active chemicals (EACs), changes in the transepithelial electrical resistance (TER) and the expression of TJ genes were examined by co-planar polychlorinated biphenyl (PCB) treatment in cultured mouse Sertoli cells. Although the increase in TER of Sertoli cells was accelerated by 10 nM co-planar PCB, it was downregulated by 100 nM co-planar PCB. The expression of claudin-1 was downregulated by co-planar PCB in a concentration-dependent manner. On the contrary, the expression of claudin-1 was increased in the Sertoli cells by 10 nM co-planar PCB treatment. These results suggest that the structure and function of TJ may be targeted by co-planar PCB in Sertoli cells. Assessment of the structure and function of TJ in Sertoli cells might be useful for screening the reproductive health risk of EACs.

Oxygen matters: hypoxia as a pathogenic mechanism in rhinosinusitis

  • Cho, Hyung-Ju;Kim, Chang-Hoon
    • BMB Reports
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    • 제51권2호
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    • pp.59-64
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    • 2018
  • The airway epithelium is the first place, where a defense mechanism is initiated against environmental stimuli. Mucociliary transport (MCT), which is the defense mechanism of the airway and the role of airway epithelium as mechanical barriers are essential in innate immunity. To maintain normal physiologic function, normal oxygenation is critical for the production of energy for optimal cellular functions. Several pathologic conditions are associated with a decrease in oxygen tension in airway epithelium and chronic sinusitis is one of the airway diseases, which is associated with the hypoxic condition, a potent inflammatory stimulant. We have observed the overexpression of the hypoxia-inducible factor 1 (HIF-1), an essential factor for oxygen homeostasis, in the epithelium of sinus mucosa in sinusitis patients. In a series of previous reports, we have found hypoxia-induced mucus hyperproduction, especially by MUC5AC hyperproduction, disruption of epithelial barrier function by the production of VEGF, and down-regulation of junctional proteins such as ZO-1 and E-cadherin. Furthermore, hypoxia-induced inflammation by HMGB1 translocation into the cytoplasm results in the release of IL-8 through a ROS-dependent mechanism in upper airway epithelium. In this mini-review, we briefly introduce and summarize current progress in the pathogenesis of sinusitis related to hypoxia. The investigation of hypoxia-related pathophysiology in airway epithelium will suggest new insights on airway inflammatory diseases, such as rhinosinusitis for clinical application and drug development.

경사기능성 세라믹/금속 복합재료의 열응력해석 (Thermal Stress Analysis of Functuonally Graded Ceramic/Metal Composites(II))

  • 임재규;송준희
    • 대한기계학회논문집A
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    • 제21권10호
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    • pp.1571-1579
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    • 1997
  • The development of a new material which should be continuously use under severe environment of very high temperature has been urgently requested. For the development of such super-heat resistant materials, the main problem is not only to make the superior thermal barrier properties but also to actively release thermal stress. So, a new concept of functionally graded material(FGM) has been proposed to overcome this problem. A composition and microstructure of FGM are varied continuously from place to place in ways designed to provide it with the maximum function of mitigating the induced thermal stress. So, FGM can be applied in the aerospace, the electronic and the medical field, etc.. In this study, thermal stress analysis of sintering PSZ/NiCrAlY graded material was conducted theoretically using a finite-element program. The temperature condition was sintering temperature assuming a cooling-down process up to room temperature. Fracture damage mechanism was anlayzed by the parameters of residual stress. It could be known that FGM provided with the function of mitigating the induced thermal stress.

Screening of Xerosis Inhibitor from Seaweed Extracts Using HaCaT Keratinocyte

  • Yoon, Seung-Je;Khan, Mohammed N.A.;Kang, Ji-Young;Nam, Ju-Hyun;Ahn, Dong-Hyun;Hong, Yong-Ki
    • 한국해양바이오학회지
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    • 제4권1호
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    • pp.31-34
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    • 2010
  • The primary function of the skin is to protect the body from the unwanted environmental influences. The outermost layer of the skin is stratum corneum which consists of corneocytes surrounded by lipid regions. Ceramides covalently bound to keratinocytes are essential for the barrier function of the skin, which can be disturbed in the disease, like xerosis. Xerosis is an abnormal dryness of the skin which reduced the thickness of stratum corneum and ceramide content decreasing with age. In this study, 36 seaweed extracts have been tested for screening of xerosis inhibitory agent by in vitro HaCaT keratinocyte assay. Ishige sinicola and Helminthocladia australis induced the significant amount of ceramide-like substance I in HaCaT keratinocyte among the tested seaweed extracts. Sargassum fulvellum, Chondrus ecellatus and Gigartina tenella also induced the ceramide-like substance I whereas Helminthocladia australis and Pachymeniopsis elliptica induced the ceramide-like II from HaCaT keratinocyte.

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Effect of Superoxide Dismutase and Low Molecular Mediators on Lignin Degradation

  • Leonowicz, Andrzej;Matuszewska, Anna;Luterek, Jolanta;Ziegenhagen, Dirk;Wojtas-Wasilewska, Maria;Hofrichter, Martin;Rogalski, Jerzy;Cho, Nam-Seok
    • Journal of the Korean Wood Science and Technology
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    • 제27권4호
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    • pp.1-14
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    • 1999
  • As the biodegradation of wood constituents has been understood as a multi-basidiomycetes and enzymatic processes, this review will focus on the roles of low molecular compounds and radicals working in harmony with fungal enzymes. Wood rotting basidiomycete fungi penetrate wood, and lead to more easily metabolize carbohydrates of the wood complex. The white-rot fungi, having versatile enzymes, are able to attack directly the "lignin barrier". They also use a multi-enzyme system including so-called "feedback" type enzymes allowing for simultaneous degradation of lignin and carbohydrates. The multi-enzymes including laccase support the proposed route by explaining how the high molecular weight enzymes can function in the wood complex. These enzymes may function separately or cooperate each other. In addition, veratryl alcohol oxidase, cellobiose dehydrogenase, arylalcohol dehydrogenase, and particularly low molecular mediators and radicals have an important role in wood biodegradation. However, the possibility of other mechanism as well as other enzymes, as operating as feedback systems in the process of wood degradation, could not be excluded.

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Efficient Top-Emitting Organic Light Emitting Diode with Surface Modified Silver Anode

  • Kim, Sung-Jun;Hong, Ki-Hyon;Kim, Ki-Soo;Lee, Ill-Hwan;Lee, Jong-Lam
    • 한국전기전자재료학회논문지
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    • 제23권7호
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    • pp.550-553
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    • 2010
  • The enhancement of quantum efficiency using a surface modified Ag anode in top-emitting organic light emitting diodes (TEOLEDs) is reported. The operation voltage at the current density of $1\;mA/cm^2$ of TEOLEDs decreased from 9.3 V to 4.3 V as the surface of anode coated with $CuO_x$ layer. The work function of these structures were quantitatively determined using synchrotron radiation photoemission spectroscopy. Secondary electron emission spectra revealed that the work function of the Ag/$CuO_x$ structure is higher by 0.6 eV than that of Ag. Thus, the $CuO_x$ structure acts as a role in reducing the hole injection barrier by about 0.6 eV, resulting in a decrease of the turn-on voltage of top-emitting light emitting diodes.

Recent Advance in Very Early Onset Inflammatory Bowel Disease

  • Shim, Jung Ok
    • Pediatric Gastroenterology, Hepatology & Nutrition
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    • 제22권1호
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    • pp.41-49
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    • 2019
  • Recent studies on pediatric inflammatory bowel disease (IBD) have revealed that early-onset IBD has distinct phenotypic differences compared with adult-onset IBD. In particular, very early-onset IBD (VEO-IBD) differs in many aspects, including the disease type, location of the lesions, disease behavior, and genetically attributable risks. Several genetic defects that disturb intestinal epithelial barrier function or affect immune function have been noted in these patients from the young age groups. In incidence of pediatric IBD in Korea has been increasing since the early 2000s. Neonatal or infantile-onset IBD develops in less than 1% of pediatric patients. Children with "neonatal IBD" or "infantile-onset IBD" have higher rates of affected first-degree relatives, severe disease course, and a high rate of resistance to immunosuppressive treatment. The suspicion of a monogenic cause of VEO-IBD was first confirmed by the discovery of mutations in the genes encoding the interleukin 10 (IL-10) receptors that cause impaired IL-10 signaling. Patients with such mutations typically presented with perianal fistulae, shows a poor response to medical management, and require early surgical interventions in the first year of life. To date, 60 monogenic defects have been identified in children with IBD-like phenotypes. The majority of monogenic defects presents before 6 years of age, and many present before 1 year of age. Next generation sequencing could become an important diagnostic tool in children with suspected genetic defects especially in children with VEO-IBD with severe disease phenotypes. VEO-IBD is a phenotypically and genetically distinct disease entity from adult-onset or older pediatric IBD.

COVID-19 팬데믹과 식품의 면역조절 기능 (COVID-19 pandemic and the immune regulatory function of foods)

  • 김근동;이소영;신희순
    • 식품과학과 산업
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    • 제55권3호
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    • pp.244-263
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    • 2022
  • Coronavirus, known as one of the causes of colds including mild upper respiratory tract disease in humans, has mutated into the infectious severe disease, COVID-19 through SARS and MERS. The mortality and symptoms of COVID-19 are related to the ability to regulate innate immunity, which acts as the first barrier against microorganisms and viruses. During the COVID-19 pandemic, the demand for food that helps to strengthen immunity is rapidly increasing. Functional foods promote general health and alleviate the risk of disease symptoms by activating multiple biological functions. A recent, there is an interest in discovering functional substances that can induce enhancement of immunity and prevent viral infection as well as relieve disease symptoms. Therefore, this article focus to understand the concept of immune response and highlights the recent status of functional foods and research trends that can help prevent and treat viral infections by inducing the enhancement of immune function.

Dietary L-arginine Supplementation Improves Intestinal Function in Weaned Pigs after an Escherichia coli Lipopolysaccharide Challenge

  • Liu, Yulan;Han, Jie;Huang, Jingjing;Wang, Xiaoqiu;Wang, Fenglai;Wang, Junjun
    • Asian-Australasian Journal of Animal Sciences
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    • 제22권12호
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    • pp.1667-1675
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    • 2009
  • This study was conducted to determine whether L-arginine (Arg) supplementation could improve intestinal function in weaned pigs after an Escherichia coli lipopolysaccharide (LPS) challenge. Treatments included: i) non-challenged control (CONTR, pigs fed a control diet and injected with sterile saline); ii) LPS-challenged control (LPS, pigs fed the same control diet and challenged by injection with Escherichia coli LPS); iii) LPS+0.5% Arg (pigs fed a 0.5% Arg diet and challenged with LPS); and iv) LPS+1.0% Arg (pigs fed a 1.0% Arg diet and challenged with LPS). On d 16, pigs were administrated with LPS or sterile saline. D-xylose was orally administrated at 2 h following LPS challenge, and blood samples were collected at 3 h following LPS challenge. At 6 h post-challenge, pigs were sacrificed and intestinal mucosa samples were collected. Supplementation of Arg attenuated LPS-induced damage in gut digestive and barrier functions, as indicated by an increase in ileal lactase activity, and duodenal and ileal diamine oxidase activities (p<0.05). Arg administration also prevented the increase of jejunal malondialdehyde content and the decrease of ileal superoxide dismutase activity by LPS challenge (p<0.05). Furthermore, the jejunal nitric oxide level and inducible nitric oxide synthase activity were also improved after Arg supplementation (p<0.05). These results indicate that Arg supplementation has beneficial effects in alleviating the impairment of gut function induced by LPS challenge.

난백(Egg White)에서 추출한 리소좀 추출물(LOE)의 미백 효능 및 피부장벽에 관한 연구 (Study on the Whitening Efficacy and Skin Barrier by Lysosome-related Organelle Extract (LOE) from Egg White)

  • 최다희;전경찬;윤지희;민지호;박시준;김정수;황이택;황형서
    • 대한화장품학회지
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    • 제45권4호
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    • pp.389-397
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    • 2019
  • 리소좀(lysosome)은 진핵세포에서 에너지 대사 및 세포 내 소화 작용에 관여하는 세포 소기관으로 protease, nuclease, glycosidase, lipase, phosphatase 들이 다수 존재한다. 우리는 선행 연구결과들을 통해 난백 리소좀의 멜라닌 색소 탈색능을 보고하였다[8]. 그러나 B16F10 melanocyte 세포주에서 난백 리소좀에 의한 멜라닌 함량 변화 및 피부장벽 조절 연구는 거의 보고되지 않았다. 따라서 우리는 계란 난백(egg white)으로부터 추출한 lysosome-related organelle extract (LOE)에 의한 세포 내 멜라닌 함량 변화 및 피부장벽 강화 효과를 규명하고자 하였다. 먼저 LOE의 미백 효능을 확인하기 위해 B16F10 세포주를 이용하여 세포독성 평가를 진행하였다. B16F10 세포주에서 LOE에 의한 세포독성은 0에서 20 mg/mL 농도에서 관찰되지 않았으나, 40 mg/mL 부터 세포독성이 관찰되어 이후 모든 실험에서 최대 농도값을 20 mg/mL로 설정하였다. 먼저 LOE를 이용한 melanin contents assay 결과, 음성 대조군인 α-MSH 처리군 대비 LOE 처리군 5, 10, 20 mg/mL 농도에서 61.5 ± 4.0%, 61.4 ± 7.3%, 58.3 ± 8.3%로 세포 내 멜라닌 함량이 감소되는 것을 확인하였고, 20 mg/mL 농도 조건에서 MITF 발현 억제도 관찰하였다. LOE의 피부 장벽에 미치는 영향을 관찰하기 위해 각질형성세포주(HaCaT)를 이용하여 TEER (trans-epithelial electrical resistance) assay를 수행한 결과, LOE에 의해 농도 의존적으로 TEER 저항값이 증가하여 LOE가 피부장벽 강화에도 효과가 있음을 알 수 있었다. 또한 피부 염증 유발을 위한 TNF-α 처리조건에서도 LOE는 TEER 저항값을 증가시켜 염증 유발 조건에서도 LOE에 의해 피부장벽이 정상적으로 회복되었음을 알 수 있었다. 마지막으로 cell migration assay를 통해 LOE에 의한 세포이동 촉진 효과를 관찰한 결과, LOE는 세포분열 및 세포이동을 촉진시켰다. 위 결과들을 통해 LOE는 미백 기능 뿐 아니라 피부재생 및 피부장벽 강화에도 효과를 나타내는 소재이며, 효소안정화 및 제형화 기술이 접목된다면 향후 새로운 미백 기능성 화장품 소재로도 개발될 수 있을 것이다.