• 제목/요약/키워드: Cellular permeability

검색결과 82건 처리시간 0.024초

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

  • 정소영;남상준;최왕근;서미영;김진욱;이승헌;박장서
    • 대한화장품학회지
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    • 제32권1호
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    • pp.17-22
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    • 2006
  • 포스파티딜세린(Phosphatidylserine; PS)은 생체막에서 구조적인 역할을 담당하는 인지질로서, 생체 내 다양한 세포작용에 필수적인 신호전달 효소의 보조인자로서 작용하는 것으로 알려져 있다. 하지만, PS의 생리활성에 대한 연구는 거의 이루어지지 않았고, 특히 피부에서의 생리활성에 대한 연구는 전무한 실정이다. 본 연구에서는 무모생쥐의 피부에 tape-stripping으로 경표피수분손실(TEWL)의 증가를 유도한 후, PS를 도포함으로써 그 손실을 현저히 감소시켰다. 또한, PS 도포군의 피부에서 세라마이드 함량이 증가된 사실을 확인한 바 있다. PS 도포군에서 non-hydroxyl 세라마이드와 glucosyl 세라마이드의 함량이 비처리군과 비교하여 각각 1.4배와 1.6배로 증가하였다. PS는 또한 피부각질세포의 분화를 촉진하였다. 피부각질세포에 PS를 처리함으로써 세포 형태가 분화상을 띄고 있음을 현미경 상에서 확인하였고, 표피분화의 특이적 표지 단백질인 Involucrin (INV)과 Transglutaminase 1 (TG'ase 1)의 발현이 각각 3.5배와 3배로 현저히 증가하였음을 웨스턴 블랏을 통하여 확인하였다. 또한 무모생쥐 피부에 PS를 도포한 결과 INV와 loricrin 단백질 발현이 증가하였다. 본 연구는 PS가 피부에서 생리활성을 나타낸다는 최초의 증거를 제시하며, 구체적으로는 각질세포 분화를 촉진함으로써 피부 세라마이드 함량을 증가시키고 경표피 수분손실을 감소시켜 궁극적으로 피부장벽을 강화하는 작용을 한다는 것을 보여준다.

Luteolin-loaded Phytosomes Sensitize Human Breast Carcinoma MDA-MB 231 Cells to Doxorubicin by Suppressing Nrf2 Mediated Signalling

  • Sabzichi, Mehdi;Hamishehkar, Hamed;Ramezani, Fatemeh;Sharifi, Simin;Tabasinezhad, Maryam;Pirouzpanah, Mohammadbagher;Ghanbari, Parisa;Samadi, Nasser
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권13호
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    • pp.5311-5316
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    • 2014
  • Nuclear factor erythroid 2-related factor 2 (Nrf2) has been recognized as a transcription factor that controls mechanisms of cellular defense response by regulation of three classes of genes, including endogenous antioxidants, phase II detoxifying enzymes and transporters. Previous studies have revealed roles of Nrf2 in resistance to chemotherapeutic agents and high level expression of Nrf2 has been found in many types of cancer. At physiological concentrations, luteolin as a flavonoid compound can inhibit Nrf2 and sensitize cancer cells to chemotherapeutic agents. We reported luteolin loaded in phytosomes as an advanced nanoparticle carrier sensitized MDA-MB 231 cells to doxorubicin. In this study, we prepared nano phytosomes of luteolin to enhance the bioavailability of luteolin and improve passive targeting in breast cancer cells. Our results showed that cotreatment of cells with nano particles containing luteolin and doxorubicin resulted in the highest percentage cell death in MDA-MB 231cells (p<0.05). Furthermore, luteolin-loaded nanoparticles reduced Nrf2 gene expression at the mRNA level in cells to a greater extent than luteolin alone (p<0.05). Similarly, expression of downstream genes for Nrf2 including Ho1 and MDR1 were reduced significantly (p<0.05). Inhibition of Nrf-2 expression caused a marked increase in cancer cell death (p<0.05). Taken together, these results suggest that phytosome technology can improve the efficacy of chemotherapy by overcoming resistance and enhancing permeability of cancer cells to chemical agents and may thus be considered as a potential delivery system to improve therapeutic protocols for cancer patients.

Quinacrin Induces Cytochrome c-dependent Apoptotic Signaling in Human Cervical Carcinoma Cells

  • Fasanmade, Adedigbo A.;Owuor, Edward D.;Ee, Rachel P.L.;Qato, Dima;Heller, Mark;Kong, Ah Ng Tony
    • Archives of Pharmacal Research
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    • 제24권2호
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    • pp.126-135
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    • 2001
  • Quinacrine (QU), a phospholipase-A2 (PLA-2) inhibitor has been used clinically as a chemotherapeutic adjuvant. To understand the mechanisms leading to its chemotherapeutic effect, we have investigated QU-induced apoptotic signaling pathways in human cervical squamous carcinoma HeLa cells. In this study, we found that QU induced cytochrome c-dependent apoptotic signaling. The release of pro-apoptotic cytochrome c was QU concentration- and time-dependent, and preceded activation of caspase-9 and -3. Flow cytometric FACScan analysis using fluorescence intensities of $DiOC_6$/ demonstrated that QU-induced cytochrome c release was independent of mitochondrial permeability transition (MPT), since the concentrations of QU that induced cytochrome c release did not alter mitochondrial membrane potential (${\blacktriangle}{\Psi}_m$). Moreover, kinetic analysis of caspase activities showed that cytochrome c release led to the activation of caspase-9 and downstream death effector caspase-3, Caspase-3 inhibitor (Ac-DEVD-CHO) partially blocked QU-induced apoptosis, suggesting the importance of caspase-3 in this apoptotic signaling mechanism. Supplementation with arachidonic acid (AA) sustained caspase-3 activation induced by QU. Using inhibitors against cellular arachidonate metabolism of lipooxygenase (Nordihydroxyguaiaretic Acid, NDGA) and cyclooxygenase (5,8,11,14-Eicosatetraynoic Acid, ETYA) demonstrated that QU-induced apoptotic signaling may be dependent on its role as a PLA-2 inhibitor. Interestingly, NDCA attenuated QU-induced cytochrome c release, caspase activity as well as apoptotic cell death. The blockade of cytochrome c release by NDCA was much more effective than that attained with cyclosporin A (CsA), a MPT inhibitor. ETYA was not effective in blocking cytochrome c release, except under very high concentrations. Caspase inhibitor z-VAD blocked the release of cytochrome c suggesting that this signaling event is caspase dependent, and caspase-8 activation may be upstream of the mitochondrial events. In summary, we report that QU induced cytochrome c-dependent apoptotic signaling cascade, which may be dependent on its role as a PLA-2 inhibitor. This apoptotic mechanism induced by QU may contribute to its known chemotherapeutic effects.

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The 18-kDa Translocator Protein Inhibits Vascular Cell Adhesion Molecule-1 Expression via Inhibition of Mitochondrial Reactive Oxygen Species

  • Joo, Hee Kyoung;Lee, Yu Ran;Kang, Gun;Choi, Sunga;Kim, Cuk-Seong;Ryoo, Sungwoo;Park, Jin Bong;Jeon, Byeong Hwa
    • Molecules and Cells
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    • 제38권12호
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    • pp.1064-1070
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    • 2015
  • Translocator protein 18 kDa (TSPO) is a mitochondrial outer membrane protein and is abundantly expressed in a variety of organ and tissues. To date, the functional role of TSPO on vascular endothelial cell activation has yet to be fully elucidated. In the present study, the phorbol 12-myristate 13-acetate (PMA, 250 nM), an activator of protein kinase C (PKC), was used to induce vascular endothelial activation. Adenoviral TSPO overexpression (10-100 MOI) inhibited PMA-induced vascular cell adhesion molecule-1 (VCAM-1) and intracellular cell adhesion molecule-1 (ICAM-1) expression in a dose dependent manner. PMA-induced VCAM-1 expressions were inhibited by Mito-TEMPO ($0.1-0.5{\mu}m$), a specific mitochondrial antioxidants, and cyclosporin A ($1-5{\mu}m$), a mitochondrial permeability transition pore inhibitor, implying on an important role of mitochondrial reactive oxygen species (ROS) on the endothelial activation. Moreover, adenoviral TSPO overexpression inhibited mitochondrial ROS production and manganese superoxide dismutase expression. On contrasts, gene silencing of TSPO with siRNA increased PMA-induced VCAM-1 expression and mitochondrial ROS production. Midazolam ($1-50{\mu}m$), TSPO ligands, inhibited PMA-induced VCAM-1 and mitochondrial ROS production in endothelial cells. These results suggest that mitochondrial TSPO can inhibit PMA-induced endothelial inflammation via suppression of VCAM-1 and mitochondrial ROS production in endothelial cells.

Saprolegnia parasitica Isolated from Rainbow Trout in Korea: Characterization, Anti-Saprolegnia Activity and Host Pathogen Interaction in Zebrafish Disease Model

  • Shin, Sangyeop;Kulatunga, D.C.M.;Dananjaya, S.H.S.;Nikapitiya, Chamilani;Lee, Jehee;De Zoysa, Mahanama
    • Mycobiology
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    • 제45권4호
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    • pp.297-311
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    • 2017
  • Saprolegniasis is one of the most devastating oomycete diseases in freshwater fish which is caused by species in the genus Saprolegnia including Saprolegnia parasitica. In this study, we isolated the strain of S. parasitica from diseased rainbow trout in Korea. Morphological and molecular based identification confirmed that isolated oomycete belongs to the member of S. parasitica, supported by its typical features including cotton-like mycelium, zoospores and phylogenetic analysis with internal transcribed spacer region. Pathogenicity of isolated S. parasitica was developed in embryo, juvenile, and adult zebrafish as a disease model. Host-pathogen interaction in adult zebrafish was investigated at transcriptional level. Upon infection with S. parasitica, pathogen/antigen recognition and signaling (TLR2, TLR4b, TLR5b, NOD1, and major histocompatibility complex class I), pro/anti-inflammatory cytokines (interleukin $[IL]-1{\beta}$, tumor necrosis factor ${\alpha}$, IL-6, IL-8, interferon ${\gamma}$, IL-12, and IL-10), matrix metalloproteinase (MMP9 and MMP13), cell surface molecules ($CD8^+$ and $CD4^+$) and antioxidant enzymes (superoxide dismutase, catalase) related genes were differentially modulated at 3- and 12-hr post infection. As an anti-Saprolegnia agent, plant based lawsone was applied to investigate on the susceptibility of S. parasitica showing the minimum inhibitory concentration and percentage inhibition of radial growth as $200{\mu}g/mL$ and 31.8%, respectively. Moreover, natural lawsone changed the membrane permeability of S. parasitica mycelium and caused irreversible damage and disintegration to the cellular membranes of S. parasitica. Transcriptional responses of the genes of S. parasitica mycelium exposed to lawsone were altered, indicating that lawsone could be a potential anti-S. parasitica agent for controlling S. parasitica infection.

국가R&D과제와 신문에서 텍스트마이닝을 통한 그래핀 기술의 지식구조 탐색 (Discovering the Knowledge Structure of Graphene Technology by Text Mining National R&D Projects and Newspapers)

  • 이지연;나혜인;이병희;김태현
    • 한국콘텐츠학회논문지
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    • 제21권2호
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    • pp.85-99
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    • 2021
  • '꿈의 소재'로 불리는 그래핀이 4차 산업혁명 시대를 선도할 획기적인 신소재로 주목받고 있다. 그래핀은 높은 강도와 탁월한 전기 및 열 전도율, 뛰어난 광학적 투과도, 우수한 기체 차단 등 특성을 지닌다. 본 논문에서는 최근 우리 정부의 그린 및 디지털 뉴딜 정책과 코로나19 팬데믹 관련 바이오센서로도 주목받는 그래핀 기술을 분석해 국가 R&D 동향과 지식구조를 파악하고 활용 가능성을 모색한다. 이를 위해 우리나라 국가과학기술지식정보서비스에서 최근 10년간의 국가R&D 과제정보 4,054건을 수집해 그래핀 관련 과제정보 동향을 분석한다. 또 이 가운데 정부의 그린뉴딜 정책과 관련된 녹색기술분류에 해당하는 과제도 함께 분석한다. 이와 더불어 국내 전문지 e신문에서 최근 500건의 그래핀 관련 기사를 수집해 텍스트마이닝 분석을 수행한다. 이러한 국가R&D 과제정보 및 신문기사를 분석한 결과 그래핀을 소재로 한 국가 전체 R&D과제 중 과제 수가 가장 많은 분야가 고효율 2차전지기술로 나타났고, 전체 연구비에서 차지하는 비중도 1위로 가장 높았다. 이번 연구결과를 통해 향후 우리나라가 그래핀 기술개발을 선도해 전기자동차는 물론이고 휴대폰 배터리, 차세대 반도체, 5G 및 바이오센서 분야 등 전 산업군에서 세계적인 선도국으로 도약하기를 기대한다.

Cyclic Phytosphingosine-1-Phosphate Primed Mesenchymal Stem Cells Ameliorate LPS-Induced Acute Lung Injury in Mice

  • Youngheon Park;Jimin Jang;Jooyeon Lee;Hyosin Baek;Jaehyun Park;Sang-Ryul Cha;Se Bi Lee;Sunghun Na;Jae-Woo Kwon;Seok-Ho Hong;Se-Ran Yang
    • International Journal of Stem Cells
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    • 제16권2호
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    • pp.191-201
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    • 2023
  • Background and Objectives: O-cyclic phytosphingosine-1-phosphate (cP1P) is a synthetic chemical and has a structure like sphingosine-1-phosphate (S1P). S1P is known to promote cell migration, invasion, proliferation, and anti-apoptosis through hippocampal signals. However, S1P mediated cellular-, molecular mechanism is still remained in the lung. Acute lung injury (ALI) and its severe form acute respiratory distress syndrome (ARDS) are characterized by excessive immune response, increased vascular permeability, alveolar-peritoneal barrier collapse, and edema. In this study, we determined whether cP1P primed human dermal derived mesenchymal stem cells (hdMSCs) ameliorate lung injury and its therapeutic pathway in ALI mice. Methods and Results: cP1P treatment significantly stimulated MSC migration and invasion ability. In cytokine array, secretion of vascular-related factors was increased in cP1P primed hdMSCs (hdMSCcP1P), and cP1P treatment induced inhibition of Lats while increased phosphorylation of Yap. We next determined whether hdMSCcP1P reduce inflammatory response in LPS exposed mice. hdMSCcP1P further decreased infiltration of macrophage and neutrophil, and release of TNF-α, IL-1β, and IL-6 were reduced rather than naïve hdMSC treatment. In addition, phosphorylation of STAT1 and expression of iNOS were significantly decreased in the lungs of MSCcP1P treated mice. Conclusions: Taken together, these data suggest that cP1P treatment enhances hdMSC migration in regulation of Hippo signaling and MSCcP1P provide a therapeutic potential for ALI/ARDS treatment.

동방결절 활동전압에 대한 아데노신 효과 (Effects of Adenosine on the Action Potentials of Rabbit SA Nodal Cells)

  • 김기환;호원경
    • The Korean Journal of Physiology
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    • 제18권1호
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    • pp.19-35
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    • 1984
  • Since the first report of Drury and $Szent-Gy{\ddot{o}}rgyi$ in 1929, the inhibitory influences of adenosine on the heart have repeatedly been described by many investigators. These studies have shown that adenosine and adenine nucleotides have overall depressant effects, similar to those of acetylcholine. Heart beats become slow and weak. It is also well known that adenosine is a potent endogenous coronary vasodilator. Many investigations on the working mechanisms of adenosine have been focused mainly on the effects of the coronary blood flow. However, the cellular mechanisms underlying the inhibitory action of adenosine on sinus node are not well understood yet. Thus, this study was undertaken to examine the behavior of rabbit SA node under influence of adenosine. In these series of experiments three kinds of preparations were used: whole atrial pair, left atrial strip, and isolated SA node preparations. The electrical activity of SA node was recorded with conventional glass microelectrodes 30 to 50 $M{\Omega}$. The preparations were superfused with bicarbonate-buffered Tyrode solution of pH 7.35 and aerated with a gas mixture of $3%\;CO_2-97%\;O_2$ at $35^{\circ}C$. In whole atrial pair, adenosine suppressed sinoatrial rhythm in a dose-dependent manner. Effect of adenosine on atrial rate appeared at the concentration of $10^{-5}M$ and was enhanced in parallel with the increase in adenosine concentration. Inhibitory action of adenosine on pacemaker activity was more prominent in the preparation pretreated with norepinephrine, which can steepen the slope of pacemaker potential by increasing permeability of $Ca^{+2}$. Calcium ions in perfusate slowly produced a marked change in sinoatrial rhythm. Elevation of the calcium concentration from 0.3 to 8 mM increased the atrial rate from 132 to 174 beats/min, but over 10 mM $Ca^{+2}$ decreased. The inhibitory effect of adenosine on sinoatrial rhythm developed very rapidly. Atrial rate was recovered promptly from the adenosine-induced suppression by the addition of norepinephrine, but extra $Ca^{+2}$ was less suitable to restore the suppression of atrial rate. Adenosine suppressed also atrial contractility in the same dosage range that restricted pacemaker activity, even in the reserpinized preparation. In isolated SA node preparation, spontaneous firing rate of SA node at $35^{\circ}C$(mean{\pm}SEM, n=16) was $154{\pm}3.3\;beats/min. The parameters of action potentials were: maximum diastolic potential(MDP), $-73{\pm}1.7\;mV: overshoot(OS), $9{\pm}1.4\;mV: slope of pacemaker potential(SPP), $94{\pm}3.0\;mV/sec. Adenosine suppressed the firing rate of SA node in a dose-dependent manner. This inhibitory effect appeared at the concentration of $10^{-6}M$ and was in parallel with the increase in adenosine concentration. Changes in action potential by adenosine were dose-dependent increase of MDP and decrease of SPP until $10^{-4}M$. Above this concentration, however, the amplitude of action potential decreased markedly due to the simultaneous decrease of both MDP and OS. All these effects of adenosine were not affected by pretreatment of atropine and propranolol. Lowering extra $Ca^{2+}$ irom 2 mM to 0.3 mM resulted in a marked decrease of OS and SPP, but almost no change of MDP. However, increase of perfusate $Ca^{2+}$ from 2 mM to 6 or 8 mM produced a prominent decrease of MDP and a slight increase of OS and SPP. Dipyridamole(DPM), which is known to block the adenosine transport across the cell membrane, definately potentiated the action of adenosine. The results of this experiment suggest that adenosine suppressed pacemaker activity and atrial contractility simultaneously and directly, by decreasing $Ca^{2+}-permeability$ of nodal and atrial cell membranes.

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백서에서 저체온 전처치가 환기기유발폐손상 억제에 미치는 효과 (Effect of Hypothermia on the Prevention of Ventilator-Induced Lung Injury in Rats)

  • 임채만;홍상범;고윤석;심태선;이상도;김우성;김동순;김원동
    • Tuberculosis and Respiratory Diseases
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    • 제50권5호
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    • pp.540-548
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    • 2001
  • Backgrounds : Because ventilator-induced lung injury is partly dependent on the intensity of vascular flow, we hypothesized that hypothermia may attenuate the degree of such an injury through a reduced cardiac output. Methods : Twenty-seven male Sprague-Dawley rats were randomly assigned to normothermia ($37{\pm}1^{\circ}C$)-injurious ventilation (NT-V) group (n=10), hypothermia ($27{\pm}1^{\circ}C$)-injurious ventilation (HT-V) group (n=10), or nonventilated control group (n=7). The two thermal groups were subjected to injurious mechanical ventilation for 20 min with peak airway pressure 30 cm $H_2O$ at zero positive end-expiratory pressure, which was translated to tidal volume $54{\pm}6\;ml$ in the NT-V group and $53{\pm}4\;ml$ in the HT-V group (p>0.05). Results : Pressure-volume (P-V) curve after the injurious ventilation was almost identical to the baseline P-V curve in the HT-V group, whereas it was shifted rightward in the NT-V group. On gross inspection, the lungs of the HT-V group appeared smaller in size, and showed less hemorrhage especially at the dependent regions, than the lungs of the NT-V group. [Wet lung weight (g)/body weight (kg)] ($1.6{\pm}0.1$ vs $2.4{\pm}1.2$ ; p=0.014) and [wet lung weight/dry lung weight] ($5.0{\pm}0.1$ vs $6.1{\pm}0.8$ ; p=0.046) of the HT-V group were both lower than those of the NT-V group, while not different from those of the control group($1.4{\pm}0.4$, $4.8{\pm}0.4$, respectively). Protein concentration of the BAL fluid of the HT-V group was lower than that of the NT-V group($1,374{\pm}726\;ug/ml$ vs $3,471{\pm}1,985\;ug/ml$;p=0.003). Lactic dehydrogenase level of the BAL fluid of the HT-V group was lower than that of the NT-V group ($0.18{\pm}0.10\;unit/ml$ vs $0.43{\pm}0.22\;unit/ml$;p=0.046). Conclusions : Hypothermia attenuated pulmonary hemorrhage, permeability pulmonary edema, and alveolar cellular injuries associated with injurious mechanical ventilation, and preserved normal P-V characteristics of the lung in rats.

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폐상피세포 장벽에 대한 $H_2O_2$의 영향 (Effect of $H_2O_2$ on Alveolar Epithelial Barrier Properties)

  • 서덕준;조세헌;강창운
    • Tuberculosis and Respiratory Diseases
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    • 제40권3호
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    • pp.236-249
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    • 1993
  • 연구배경 : 정상 폐상피세포에서는 항상 생성되고 있는 활성산소(oxygen radical)에 의한 유해작용에 노출되어 있고, 이들 유해 산소들은 폐기종과 같은 폐질환의 원인 기전으로 생각되고 있다. 본 연구에서는 이 방법을 이용하여 만든 폐상피세포 단일막에서 전기생리학적인 관점에서 물질의 이동지표인 short-circuit current(Isc)와 조직저항(R)에 대한 활성산소의 하나인 $H_2O_2$(hydrogen peroxide)가 어떤 영향을 미치는지를 연구함으로서 세포생리학적 기전을 구명하고자 한다. 방법 : Tissue culture-treated polycarbonant membrane filter 에서 배양시킨 쥐 제 2 형 폐상피세포 배양 단일막에서 $H_2O_2$의 능동적 이온 이동 (Isc) 과 수동적 용질이동에 대한 조직저항(R)에 미치는 효과를 관찰하였다. 배양 제 3 일과 제 4 일째 단일막을 수정된 Ussing chamber에 설치하고 막 양측에 HEPES-buffered Ringer 용액으로 incubation 하였다. 외부에서 0~100 mM 농도의 $H_2O_2$를 apical 또는 basolateral side에 작용시켜 Isc와 R의 변화를 관찰하였다. 폐상피세포 장벽이 외부의 $H_2O_2$에 대하여 방어작용을 가지는 세포내 catalase 활성도를 측정하고, catalase 억제제인 aminotriazol(ATAZ) 20 mM의 효과도 함께 관찰하였다. 결과 : 이 단일막은 형태학적으로 보아서 in vivo 에서의 포유류 제 1 형 폐상피세포 장벽의 특성을 나타내고 세포들 사이는 tight junction을 이루며(조직저항 R: 2,000 ohm-$cm^2$ 이상) sodium ion의 능동적 이동 (Isc: 5 ${\mu}A/cm^2$)을 보였다. $H_2O_2$는 dose-dependent 양식으로 Isc와 R 모두 감소시켰다. Apical side에 작용하는 $H_2O_2$에 있어서는 60분에 50% 억제하는 농도인 $ED_{50}$는 Isc와 R은 약 4mM 이었으나 basolateral side의 경우는 약 0.04mM 로서 그 작용 강도는 apical에 비하여 약 100배 정도 더 컸다. ATAZ 존재시 apical side의 $ED_{50}$는 0.4mM로 감소하였으나 basolateral side의 경우 변화가 없었다. $H_2O_2$의 제거율은 apical 또는 basolateral side 어느 쪽에 존재하든 같았으며, 세포내 catalase 활성도는세포배양기간이 길어짐에 따라 증가함을 보였다. 결론 : 이상의 실험결과는 basolateral side에 작용하는 $H_2O_2$는 세포내 막구성성분 중 basolateral 측에 존재하는 곳에(예, $Na^+,\;K^+$-APTase) 직접 장애를 미칠 것으로 생각된다. 한편 apical side에 작용하는 $H_2O_2$는 막성분에 도달하기 전에 세포내에 존재하는 catalase에 의하여 대부분 그 작용을 잃게 된다. 결론적으로 Isc와 R로 측정된 폐상피세포 장벽의 특성은 $H_2O_2$에 의하여 손상을 받고 apical side 보다는 basolateral side 측정이 더 손상을 잘 받게 된다.

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