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Lee, Jin-Hyung,Kim, Yong-Guy,Lee, Kayeon,Kim, Chang-Jin,Park, Dong-Jin,Ju, Yoonjung,Lee, Jae-Chan,Wood, Thomas K.,Lee, Jintae Informa UK (TaylorFrancis) 2016 BIOFOULING -CHUR- Vol.32 No.1
<P>Staphylococcus aureus is a versatile human pathogen that produces diverse virulence factors, and its biofilm cells are difficult to eradicate due to their inherent ability to tolerate antibiotics. The anti-biofilm activities of the spent media of 252 diverse endophytic microorganisms were investigated using three S. aureus strains. An attempt was made to identify anti-biofilm compounds in active spent media and to assess their anti-hemolytic activities and hydrophobicities in order to investigate action mechanisms. Unlike other antibiotics, actinomycin D (0.5 mu g ml(-1)) from Streptomyces parvulus significantly inhibited biofilm formation by all three S. aureus strains. Actinomycin D inhibited slime production in S. aureus and it inhibited hemolysis by S. aureus and caused S. aureus cells to become less hydrophobic, thus supporting its anti-biofilm effect. In addition, surface coatings containing actinomycin D prevented S. aureus biofilm formation on glass surfaces. Given these results, FDA-approved actinomycin D warrants further attention as a potential antivirulence agent against S. aureus infections.</P>
Quantitative shotgun proteomic analysis of rice anther under the cold stress
Joohyun Lee,Mijeong Kim,Yoonjung Lee 한국육종학회 2015 한국육종학회 심포지엄 Vol.2015 No.07
In rice, the stage of the meiosis in the pollen is sensitive stage resulted in the pollen sterility to reduce yield. Dianxi4 is a cold tolerant line. To monitoring the proteome expression patterns in the pollen of Dianxi4 under the cold stress, shotgun proteomic analysis was conducted to the anther of Dianxi4. The rice plant was grown in the peedy rice field then in the 10 DBH(days before heading), one individual rice plant was moved in the growth chamber under the condition of12℃/RH70%(12h day/12h night). Also the plant used as control was moved in the growth chamber unde the condition of 28℃/RH70%(12h day/12h night). after 4 days treatment, the plant were moved in a greenhouse. The treated rice anther were collected in the one day before heading. From the shotgun proteomic analysis, total of 3,855 non-redundant proteins were identified. Among them, 2,360 proteins were reproducibly identified through the treatment and replications. By the T-test, 1,181 differentially expressed proteins were detected. Through the GO analysis, proteins related in gene expression, cellular process, cellular biosynthetic process were enriched.
Hwang, Yoonjung,Park, Bo-In,Lee, Byung-Seok,Kim, Jin Young,Jeong, Jeung-Hyun,Kim, Honggon,Ko, Min Jae,Kim, BongSoo,Son, Hae Jung,Lee, Seung Yong,Lee, Jae-Seung,Park, Jong-Ku,Cho, So-Hye,Lee, Doh-Kwon American Chemical Society 2014 The Journal of Physical Chemistry Part C Vol.118 No.48
<P>Kesterite Cu<SUB>2</SUB>ZnSnSe<SUB>4</SUB> (CZTSe) thin films prepared by the selenization of mechanochemically synthesized Cu<SUB>2</SUB>ZnSnS<SUB>4</SUB> (CZTS) nanocrystal films are systematically investigated as a function of the annealing time in terms of the phase purity, microstructure, composition, and device characteristics. It is shown that selenization for an extended time does not cause a noticeable amount of Sn loss or segregation of Zn-rich layers. Thus, the prolonged annealing leads to improvements (reduction) in the shunt conductance, reverse saturation current, and diode ideality factor. However, it also leads to a deterioration of the series resistance, of which influence turned out to overwhelm all of the aforementioned positive effects on the device performance. As a consequence, the CZTSe solar cell exhibits its highest efficiency (5.43%) at the shortest annealing time (10 min). Impedance spectroscopy is demonstrated to be of good use in detecting the change in the back contact of CZTSe solar cells during annealing. The impedance spectra of the CZTSe solar cells are analyzed in association with the microstructures of the back-contact electrodes, demonstrating that the increase in the series resistance is attributed to the formation of the resistive MoSe<SUB>2</SUB> layer.</P><P><B>Graphic Abstract</B> <IMG SRC='http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/jpccck/2014/jpccck.2014.118.issue-48/jp508028t/production/images/medium/jp-2014-08028t_0007.gif'></P><P><A href='http://pubs.acs.org/doi/suppl/10.1021/jp508028t'>ACS Electronic Supporting Info</A></P>
Jeewon Lee,YoungSook Kwak,YoonJung Kim,EunJi Kim,EJin Park,Yunmi Shin,BunHee Lee,SoHee Lee,HeeYeon Jung,Inseon Lee,JungIm Hwang,Dongsik Kim,Soyoung Irene Lee 대한신경정신의학회 2018 PSYCHIATRY INVESTIGATION Vol.15 No.4
“Comfort women” refers to young women and girls who were forced into sexual slavery by the Imperial Japanese military during World War II. They were abducted from their homes in countries under Imperial Japanese rule, mostly from Korea, and the rest from China, Philippines, Malaysia, Taiwan, Indonesia, the Netherlands, etc. “Comfort women” endured extreme trauma involving rape, sexual torture, physical abuse, starvation, threats of death, and witnessed many others being tortured and killed. This article reviews all the studies that have investigated the psychiatric or psychosocial sequelae of the survivors of the Japanese military sexual slavery. Most importantly, a recent study which conducted a psychiatric evaluation on the former “comfort women” currently alive in South Korea is introduced. The participants’ unmarried rate was relatively high and their total fertility rate was relatively low. Majority of the participants reported having no education and being the low economic status. They showed high current and lifetime prevalence of posttraumatic disorder, major depressive disorder, somatic symptom disorder, social anxiety disorder, panic disorder, and alcohol use disorder. Participants showed high suicidality and majority of the participants still reported being ashamed of being former “comfort women” after all these years. This article highlights the fact that the trauma has affected the mental health and social functioning of former “comfort women” throughout their lives, and even to the present day.
( Da Hyun Lee ),( Buhyun Lee ),( Jeong Su Park ),( Yu Seol Lee ),( Jin Hee Kim ),( Yejin Cho ),( Yoonjung Jo ),( Hyun-seok Kim ),( Yong-ho Lee ),( Ki Taek Nam ),( Soo Han Bae ) 생화학분자생물학회(구 한국생화학분자생물학회) 2019 BMB Reports Vol.52 No.3
Acetaminophen (APAP) overdose can cause hepatotoxicity by inducing mitochondrial damage and subsequent necrosis in hepatocytes. Sirtuin2 (Sirt2) is an NAD<sup>+</sup>-dependent deacetylase that regulates several biological processes, including hepatic gluconeogenesis, as well as inflammatory pathways. We show that APAP decreases the expression of Sirt2. Moreover, the ablation of Sirt2 attenuates APAP-induced liver injuries, such as oxidative stress and mitochondrial damage in hepatocytes. We found that Sirt2 deficiency alleviates the APAP-mediated endoplasmic reticulum (ER) stress and phosphorylation of the p70 ribosomal S6 kinase 1 (S6K1). Moreover, Sirt2 interacts with and deacetylates S6K1, followed by S6K1 phosphorylation induction. This study elucidates the molecular mechanisms underlying the protective role of Sirt2 inactivation in APAP-induced liver injuries. [BMB Reports 2019; 52(3): 190-195]
Polymer Thin Film–Induced Tumor Spheroids Acquire Cancer Stem Cell–like Properties
Choi, Minsuk,Yu, Seung J.,Choi, Yoonjung,Lee, Hak R.,Lee, Eunbeol,Lee, Eunjung,Lee, Yumi,Song, Junhyuk,Son, Jin G.,Lee, Tae G.,Kim, Jin Y.,Kang, Sukmo,Baek, Jieung,Lee, Daeyoup,Im, Sung G.,Jon, Sangyo American Association for Cancer Research 2018 Cancer Research Vol.78 No.24
<P>A new cell culture technology enables highly tumorigenic 3D spheroids to be easily generated from various cancer cell sources in the common laboratory.</P><P><B></B></P><P>Although cancer stem cells (CSC) are thought to be responsible for tumor recurrence and resistance to chemotherapy, CSC-related research and drug development have been hampered by the limited supply of diverse, patient-derived CSC. Here, we present a functional polymer thin film (PTF) platform that promotes conversion of cancer cells to highly tumorigenic three-dimensional (3D) spheroids without the use of biochemical or genetic manipulations. Culturing various human cancer cells on the specific PTF, poly(2,4,6,8-tetravinyl-2,4,6,8-tetramethyl cyclotetrasiloxane) (pV4D4), gave rise to numerous multicellular tumor spheroids within 24 hours with high efficiency and reproducibility. Cancer cells in the resulting spheroids showed a significant increase in the expression of CSC-associated genes and acquired increased drug resistance compared with two-dimensional monolayer-cultured controls. These spheroids also exhibited enhanced xenograft tumor-forming ability and metastatic capacity in nude mice. By enabling the generation of tumorigenic spheroids from diverse cancer cells, the surface platform described here harbors the potential to contribute to CSC-related basic research and drug development.</P><P><B>Significance:</B></P><P>A new cell culture technology enables highly tumorigenic 3D spheroids to be easily generated from various cancer cell sources in the common laboratory.</P>