• 제목/요약/키워드: Presence Agent

검색결과 733건 처리시간 0.028초

Protective Effects of Ursolic Acid on Osteoblastic Differentiation via Activation of IER3/Nrf2

  • Lee, Sang-im
    • 치위생과학회지
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    • 제19권3호
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    • pp.198-204
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    • 2019
  • Background: Oxidative stress is a known to be associated with in the pathogenesis of many inflammatory diseases, including periodontitis. Ursolic acid is a pentacyclic triterpenoid with has antimicrobial, antioxidative, and anticancer properties. However, the role of ursolic acid in the regulating of osteogenesis remains undetermined. This study was aimed to elucidate the crucial osteogenic effects of ursolic acid and its ability to inhibit oxidative stress by targeting the immediate early response 3 (IER3)/nuclear factor erythroid 2-related factor 2 (Nrf2) pathway. Methods: Cell proliferation was determined using water-soluble tetrazolium salt assay, cell differentiation was evaluated by alkaline phosphatase (ALP) activity, and formation of calcium nodules was detected using alizarin red S stain. Generation of reactive oxygen species (ROS) was determined using by DCFH-DA fluorescence dye in hydrogen peroxide ($H_2O_2$)-treated MG-63 cells. Expression levels of IER3, Nrf2, and heme oxygenase-1 (HO-1) were analyzed using western blot analysis. Results: Our results showed that ursolic acid up-regulated the proliferation of osteoblasts without any cytotoxic effects, and promoted ALP activity and mineralization. $H_2O_2$-induced ROS generation was found to be significantly inhibited on treatment with ursolic acid. Furthermore, in $H_2O_2$-treated cells, the expression of the early response genes: IER3, Nrf2, and Nrf2-related phase II enzyme (HO-1) was enhanced in the presence of ursolic acid. Conclusion: The key findings of the present study elucidate the protective effects of ursolic acid against oxidative stress conditions in osteoblasts via the IER3/Nrf2 pathway. Thus, ursolic acid may be developed as a preventative and therapeutic agent for mineral homeostasis and inflammatory diseases caused due to oxidative injury.

A Child of Severe Mycoplasma pneumoniae pneumonia with Multiple Organ Failure Treated with ECMO and CRRT

  • Hwang, Woojin;Lee, Yoonjin;Lee, Eunjee;Lee, Jiwon M.;Kil, Hong Ryang;Yu, Jae Hyeon;Chung, Eun Hee
    • Pediatric Infection and Vaccine
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    • 제26권1호
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    • pp.71-79
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    • 2019
  • 8세 남아가 호흡곤란과 기면증을 보이며 응급실에 내원하였다. 극도의 호흡부전을 보이고 있었고 고유량의 산소 공급을 함에도 불구하고 88-90%로 밖에 유지되지 않았고 단순 흉부 방사선 검사에서 전 폐야에 불투과도가 증가하였고 중등도의 흉수를 보였다. 마이코플라스마 폐렴 진단 하에 정맥 macrolide 를 포함한 항생제 치료를 시작하였으나 2병일 째 간, 신장에 다기관 부전 및 급성 호흡부전 증상을 보였다. 정맥-정맥 체외순환막성산소화기를 삽입하였고 지속적 신대체요법도 병행하였다. 18병일 째 성공적으로 체외순환막성산소화기에서 이탈하였고 저산소성 뇌 손상 없이 성공적으로 치료되었기에 본 사례를 보고한다.

금속화재 위험감소 방안에 관한 이론적 연구 (Study on the effective response method to reduce combustible metal fire)

  • 남기훈;이준식
    • 한국산학기술학회논문지
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    • 제19권12호
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    • pp.600-606
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    • 2018
  • 금속화재는 나트륨(Na), 리튬(Li) 등과 같은 가연성 금속이 연소하는 화재이다. 일반적인 물계, 가스계 소화약제에는 적응성이 없으며 금속화재용 소화약제 또는 건조사로 화재를 진화할 수 있다. 위험물안전관리법상 가연성 금속에 속하는 2류 및 3류 위험물 화재가 최근 5년간 104건이 발생했으며, 가연성 금속을 사용하는 연료전지, 반도체 산업의 발전으로 화재 건수는 더욱 증가할 것으로 예상되고 있다. 하지만 국내에는 금속화재와 관련된 법적 기준이 마련되어 있지 않아 금속화재용 소화약제 및 소화기 개발은 물론 화재 예방 및 대응 시스템 구축이 이루어지지 않고 있다. 이에 본 연구에서는 금속화재의 위험성을 감소시킬 수 있는 방안을 마련하기 위해 국내외 관련 법령 분석 및 금속화재 사례 11건을 분석하였다. 이를 통해 금속화재의 위험성을 감소를 위해 관련 법령 마련에 필요한 요소를 도출하였으며 금속화재 발생 시 소화약제로 사용되고 있는 건조사의 관리 및 지원방안을 제시하였다. 또한, 금속화재의 예방 및 대응에 필요한 안전교육 및 시설 관리 방안을 제시하였다.

마우스 수지상세포의 항원 제시 능력에 대한 이온화 규소수의 biphasic 면역조절 효과 (Biphasic immunomodulatory effects of ionized biosilica water on the antigen-presenting capability of mouse dendritic cells)

  • 이유정;주홍구
    • 대한수의학회지
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    • 제61권2호
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    • pp.14.1-14.7
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    • 2021
  • Biosilica is a silica-based substance derived from the cell walls (frustules) of diatoms. Recently, research into biosilica's biological functions is underway, but little has been reported on the effects of biosilica on immune cells. In this study, we investigated the effect of ionized biosilica water (iBW) on dendritic cells (DCs), which play crucial roles as antigen (Ag)-presenting cells. Treatment with iBW increased the expression of immune response-related markers, closely connected to the maturation of DCs, and the production of tumor necrosis factor-alpha. In addition, iBW-treated DCs (iBW-DCs) had a lower uptake of fluorescein isothiocyanate-dextran than that of control DCs. Mixed leukocyte response analysis used for measuring the Ag-presenting capability of DCs, showed iBW-DCs had a higher capability than that of control DCs. Interestingly, DCs treated with lipopolysaccharide (LPS) and iBW had a lower level of Ag-presenting capability than that of LPS-treated DCs. Taken together, the results indicate that iBW alone can mature DCs, but it decreases the Ag-presenting capability of DCs in the presence of LPS, a representative agent of inflammation. This study may provide valuable information regarding the effect of iBW on immune cells. Further research is needed to investigate how iBW induces the observed biphasic immunomodulatory activity.

Proteomic and Phenotypic Analyses of a Putative Glycerol-3-Phosphate Dehydrogenase Required for Virulence in Acidovorax citrulli

  • Kim, Minyoung;Lee, Jongchan;Heo, Lynn;Lee, Sang Jun;Han, Sang-Wook
    • The Plant Pathology Journal
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    • 제37권1호
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    • pp.36-46
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    • 2021
  • Acidovorax citrulli (Ac) is the causal agent of bacterial fruit blotch (BFB) in watermelon, a disease that poses a serious threat to watermelon production. Because of the lack of resistant cultivars against BFB, virulence factors or mechanisms need to be elucidated to control the disease. Glycerol-3-phosphate dehydrogenase is the enzyme involved in glycerol production from glucose during glycolysis. In this study, we report the functions of a putative glycerol-3-phosphate dehydrogenase in Ac (GlpdAc) using comparative proteomic analysis and phenotypic observation. A glpdAc knockout mutant, AcΔglpdAc(EV), lost virulence against watermelon in two pathogenicity tests. The putative 3D structure and amino acid sequence of GlpdAc showed high similarity with glycerol-3-phosphate dehydrogenases from other bacteria. Comparative proteomic analysis revealed that many proteins related to various metabolic pathways, including carbohydrate metabolism, were affected by GlpdAc. Although AcΔglpdAc(EV) could not use glucose as a sole carbon source, it showed growth in the presence of glycerol, indicating that GlpdAc is involved in glycolysis. AcΔglpdAc(EV) also displayed higher cell-to-cell aggregation than the wild-type bacteria, and tolerance to osmotic stress and ciprofloxacin was reduced and enhanced in the mutant, respectively. These results indicate that GlpdAc is involved in glycerol metabolism and other mechanisms, including virulence, demonstrating that the protein has pleiotropic effects. Our study expands the understanding of the functions of proteins associated with virulence in Ac.

Novel Antibacterial, Cytotoxic and Catalytic Activities of Silver Nanoparticles Synthesized from Acidophilic Actinobacterial SL19 with Evidence for Protein as Coating Biomolecule

  • Wypij, Magdalena;Ostrowski, Maciej;Piska, Kamil;Wojcik-Pszczola, Katarzyna;Pekala, Elzbieta;Rai, Mahendra;Golinska, Patrycja
    • Journal of Microbiology and Biotechnology
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    • 제32권9호
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    • pp.1195-1208
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    • 2022
  • Silver nanoparticles (AgNPs) have potential applications in medicine, photocatalysis, agriculture, and cosmetic fields due to their unique physicochemical properties and strong antimicrobial activity. Here, AgNPs were synthesized using actinobacterial SL19 strain, isolated from acidic forest soil in Poland, and confirmed by UV-vis and FTIR spectroscopy, TEM, and zeta potential analysis. The AgNPs were polydispersed, stable, spherical, and small, with an average size of 23 nm. The FTIR study revealed the presence of bonds characteristic of proteins that cover nanoparticles. These proteins were then studied by using liquid chromatography with tandem mass spectrometry (LC-MS/MS) and identified with the highest similarity to hypothetical protein and porin with molecular masses equal to 41 and 38 kDa, respectively. Our AgNPs exhibited remarkable antibacterial activity against Escherichia coli and Pseudomonas aeruginosa. The combined, synergistic action of these synthesized AgNPs with commercial antibiotics (ampicillin, kanamycin, streptomycin, and tetracycline) enabled dose reductions in both components and increased their antimicrobial efficacy, especially in the case of streptomycin and tetracycline. Furthermore, the in vitro activity of the AgNPs on human cancer cell lines (MCF-7, A375, A549, and HepG2) showed cancer-specific sensitivity, while the genotoxic activity was evaluated by Ames assay, which revealed a lack of mutagenicity on the part of nanoparticles in Salmonella Typhimurium TA98 strain. We also studied the impact of the AgNPs on the catalytic and photocatalytic degradation of methyl orange (MO). The decomposition of MO was observed by a decrease in intensity of absorbance within time. The results of our study proved the easy, fast, and efficient synthesis of AgNPs using acidophilic actinomycete SL19 strain and demonstrated the remarkable potential of these AgNPs as anticancer and antibacterial agents. However, the properties and activity of such particles can vary by biosynthesized batch.

Pathogenesis and Prevention of Intraventricular Hemorrhage in Preterm Infants

  • Pei-Chen Tsao
    • Journal of Korean Neurosurgical Society
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    • 제66권3호
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    • pp.228-238
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    • 2023
  • Intraventricular hemorrhage (IVH) is a serious concern for preterm infants and can predispose such infants to brain injury and poor neurodevelopmental outcomes. IVH is particularly common in preterm infants. Although advances in obstetric management and neonatal care have led to a lower mortality rate for preterm infants with IVH, the IVH-related morbidity rate in this population remains high. Therefore, the present review investigated the pathophysiology of IVH and the evidence related to interventions for prevention. The analysis of the pathophysiology of IVH was conducted with a focus on the factors associated with cerebral hemodynamics, vulnerabilities in the structure of cerebral vessels, and host or genetic predisposing factors. The findings presented in the literature indicate that fluctuations in cerebral blood flow, the presence of hemodynamic significant patent ductus arteriosus, arterial carbon dioxide tension, and impaired cerebral venous drainage; a vulnerable or fragile capillary network; and a genetic variant associated with a mechanism underlying IVH development may lead to preterm infants developing IVH. Therefore, strategies focused on antenatal management, such as routine corticosteroid administration and magnesium sulfate use; perinatal management, such as maternal transfer to a specialized center; and postnatal management, including pharmacological agent administration and circulatory management involving prevention of extreme blood pressure, hemodynamic significant patent ductus arteriosus management, and optimization of cardiac function, can lower the likelihood of IVH development in preterm infants. Incorporating neuroprotective care bundles into routine care for such infants may also reduce the likelihood of IVH development. The findings regarding the pathogenesis of IVH further indicate that cerebrovascular status and systemic hemodynamic changes must be analyzed and monitored in preterm infants and that individualized management strategies must be developed with consideration of the risk factors for and physiological status of each preterm infant.

The presence of carcinogenic radon in the Padma River water, adjacent to the Rooppur Nuclear Power Plant

  • M.M. Mahfuz Siraz;M.S. Alam;Jubair A.M.;S.C. Das;J. Ferdous;Z. Hossain;S. Das;Mayeen Uddin Khandaker;D.A. Bradley;Shinji Tokonami;S. Yeasmin
    • Nuclear Engineering and Technology
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    • 제55권8호
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    • pp.3046-3053
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    • 2023
  • Radon is a naturally occurring carcinogenic agent, poses a serious health hazard when inhaled or ingested in significant amounts. The water of the Padma river will be used as a tertiary coolant for the soon-to-be-commissioned 'Rooppur Nuclear Power Plant'. Hence, it is important to assess the radiological status of the river prior to the commission of this power plant. Therefore, for the first time, 25 samples of water were collected from various locations of the Padma River and analyzed for radon concentration using the RAD H2O (DURRIDGE) radon monitoring device. The radon concentrations were found in the range from 0.077 ± 0.036 to 0.494 ± 0.211 Bq/L with a mean of 0.250 ± 0.093 Bq/L. All the concentrations were found to be below the recommended limits of WHO (100 Bq/L) and USEPA (11.1 Bq/L). The mean annual effective dose due to the radon exposure via inhalation and ingestion pathways were 0.638 µSv/y and 0.629 µSv/y, respectively, which were all well below the annual effective dose recommended by WHO (0.1 mSv/y). Since Bangladesh lacks a national safety limit of radon in water, this pioneering study provides baseline data on radon levels for the environment around Rooppur Nuclear Power Plant.

Synthesis of 18F-labeled Novel Phosphonium cations as PET Myocardial Perfusion Imaging Agents: Pilot Imaging Studies

  • Ayoung Pyo;Jung-Joon Min;Dong-Yeon Kim
    • 대한방사성의약품학회지
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    • 제8권2호
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    • pp.63-70
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    • 2022
  • The development of myocardial perfusion imaging (MPI) agents has been motivated because coronary artery disease has been one of the leading causes of death worldwide since the 1960s. Several positron emission tomography (PET) MPI agents were developed, and 18F-labeled phosphonium cations were reported actively among them. In this study, we synthesized novel 18F-labeled phosphonium cations, (5-[18F]fluoropentyl)diphenyl(pyridin-2-yl)phosphonium and (2-(2-[18F]fluoroethoxy)ethyl)diphenyl(pyridin-2-yl)phosphonium, and evaluated potential as MPI agents. Two labeled compounds were synthesized via nucleophilic substitution reactions of 18F-fluoride with the appropriate tosylate precursor in the presence of Kryptofix 2.2.2 and K2CO3. MicroPET studies were performed in normal rats to evaluate in vivo distribution of radiolabeled phosphonium cations for 60 min. The radiolabeled compounds were synthesized with 5%-10% yield. The radiochemical purity of labeled compounds was > 98% by analytical HPLC, and the specific activity was > 11.8 GBq/µmol. The result of microPET studies of these labeled compounds in rats showed intense uptake in the myocardium at 30 and 60 min. The results suggest that these 18F-labeled novel phosphonium cations would have potential as promising candidates for myocardial perfusion imaging.

미생물막 형성을 막기 위한 살균 물질 함유 막: 총설 (Membrane Containing Biocidal Material for Reduced Biofilm Formation: A Review)

  • 손수현;라즈쿠마 파텔
    • 멤브레인
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    • 제32권1호
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    • pp.23-32
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    • 2022
  • 세균은 분리막, 식품 포장 필름 및 바이오 의료 기기와 같은 다양한 미생물 막의 표면 위에서 자란다. 미생물 막의 성장은 엑소폴리사카라이드의 복잡한 구조 형성과 밀접한 관련이 있다. 미생물 막이 항균제의 대량 수송의 어려움으로 성장하게 될 경우 항균효과는 급격하게 감소한다. 항균 활동을 활성화하기 위해서 막의 표면은 살균 특성이 있는 기능성 물질들로 변형, 코팅 또는 고정한다. 한 가지 아이디어는 막 표면에 양전하 이온을 도입하는 것이다. 양전하 이온인 4차 암모늄 그룹의 존재는 마그네슘이나 칼슘같이 세균 세포벽에 존재하는 2가 금속이온을 대체할 수 있다. 세포막 파괴의 효능은 표면환경에서 사용 가능한 작용제들의 이동성에 달려있다. 이 리뷰에서는 4차 암모늄 그룹, 헬라민(helamine), 쌍성이온(zwitterion)과 같이 여러 살생물제를 포함하고 있는 막들을 다룬다.