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        Ion-Imprinted Polymers Modified Sensor for Electrochemical Detection of Cu2+

        Zhuolin An,Weifeng Liu,Qi Liang,Guang Yan,Lei Qin,Lin Chen,Meiling Wang,Yongzhen Yang,Xuguang Liu 성균관대학교(자연과학캠퍼스) 성균나노과학기술원 2018 NANO Vol.13 No.12

        An electrochemical sensor (Cu2+-IIPs/GCE) was developed for detection of Cu2+ in water. Cu2+-IIPs/GCE was prepared by dispersing Cu2+ imprinted polymers (Cu2+-IIPs) on a preprocessed glassy carbon electrode. Cu2+-IIPs were synthesized on the surface of modified carbon spheres by ion imprinting technology. The electrochemical performance of Cu2+-IIPs/GCE was evaluated by differential pulse voltammetry method. The response of Cu2+-IIPs/GCE to Cu2+ was linear in 1.0 x 10 -5 mol/L to 1.0 x 10 -3 mol/L. The detection limit was 5.99 x 10 -6 mol/L (S/N = 3). The current response value of Cu2+-IIPs/GCE was 2.14 times that of the nonimprinted electrode. These results suggest that Cu2+-IIPs/GCE can detect the concentration of Cu2+ in water, providing a new way for heavy metal ions adsorption and testing.

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        Multilingualism in the Linguistic Landscape of Konkuk University Glocal Campus

        장인철,황병후,Liu Zhuolin 건국대학교 GLOCAL(글로컬)캠퍼스 스토리앤이미지텔링연구소 2019 스토리&이미지텔링 Vol.18 No.-

        The globalization of higher education has reshaped language use and practice on campus. As increasing numbers of international students change the campus into a more multilingual space, a variety of multilingual signs posted on bulletin boards and streets on campus become commonplace. Against such a backdrop of sociolinguistic changes on the globalizing campus in higher education, this study explores the ways in which multiple languages are chosen and used in South Korean higher education. Drawing on the framework of linguistic landscape, the present project analyzes multilingual signs displayed in public spaces of Konkuk University Glocal Campus, a local university that has pursued internationalization policies over the past decade. For this purpose, 208 public signs were collected from thirteen locations and analyzed in terms of language, producers, and communicative functions. The analysis reveals that a typical multilingual sign is in English and Korean and is created by the university authorities for referential functions. The most multilingual spaces are the library, a building for international education, and the dormitory, as these locations display various languages and language combinations. English is the most dominant foreign language in multilingual signage. Chinese and Vietnamese signs have begun to be increasingly present at KU, but their communicative functions are relatively limited. Based on such findings, implications for the university’s language and internationalization policies are also discussed.

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        Detection of Rare Mutations in EGFR-ARMS-PCR-Negative Lung Adenocarcinoma by Sanger Sequencing

        Chaoyue Liang,Zhuolin Wu,Xiaohong Gan,Yuanbin Liu,You You,Chenxian Liu,Chengzhi Zhou,Ying Liang,Haiyun Mo,Allen M. Chen,Jiexia Zhang 연세대학교의과대학 2018 Yonsei medical journal Vol.59 No.1

        Purpose: This study aimed to identify potential epidermal growth factor receptor (EGFR) gene mutations in non-small cell lung cancer that went undetected by amplification refractory mutation system-Scorpion real-time PCR (ARMS-PCR). Materials and Methods: A total of 200 specimens were obtained from the First Affiliated Hospital of Guangzhou Medical University from August 2014 to August 2015. In total, 100 ARMS-negative and 100 ARMS-positive specimens were evaluated for EGFR gene mutations by Sanger sequencing. The methodology and sensitivity of each method and the outcomes of EGFR-tyrosine kinase inhibitor (TKI) therapy were analyzed. Results: Among the 100 ARMS-PCR-positive samples, 90 were positive by Sanger sequencing, while 10 cases were considered negative, because the mutation abundance was less than 10%. Among the 100 negative cases, three were positive for a rare EGFR mutation by Sanger sequencing. In the curative effect analysis of EGFR-TKIs, the progression-free survival (PFS) analysis based on ARMS and Sanger sequencing results showed no difference. However, the PFS of patients with a high abundance of EGFR mutationwas 12.4 months [95% confidence interval (CI), 11.6−12.4 months], which was significantly higher than that of patients with a low abundance of mutations detected by Sanger sequencing (95% CI, 10.7−11.3 months) (p<0.001). Conclusion: The ARMS method demonstrated higher sensitivity than Sanger sequencing, but was prone to missing mutations due to primer design. Sanger sequencing was able to detect rare EGFR mutations and deemed applicable for confirming EGFR status. A clinical trial evaluating the efficacy of EGFR-TKIs in patients with rare EGFR mutations is needed.

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        circ_SPEF2 Regulates the Balance of Treg Cells by Regulating miR-16-5p/BACH2 in Lymphoma and Participates in the Immune Response

        Zhou Jie,Xu Min,Chen ZhaoZhao,Huang LinLin,Wu ZhuoLin,Huang ZhongPei,Liu Lin 한국조직공학과 재생의학회 2023 조직공학과 재생의학 Vol.20 No.7

        BACKGROUND: This study aims to explore the potential mechanism of action of the newly discovered hsa_- circ_0128899 (circSPEF2) in diffuse large B-cell lymphoma (DLBCL). METHODS: circSPEF2, miR-16-5p and BTB and CNC homologue 2 (BACH2) expression patterns in DLBCL patients and cell lines were studied by RT-qPCR. The biological function of circSPEF2 in vitro and in vivo was investigated by function acquisition experiments. The proliferation activity of lymphoma cells was detected by MTT. Bax, Caspase-3, and Bcl-2 were determined by Western Blot. Apoptosis and the ratio of CD4 to Treg of immune cells in the co-culture system were analyzed by flow cytometry. The mechanism of action of circSPEF2 in DLBCL progression was further investigated by RIP and dual luciferase reporter experiments. RESULTS: circSPEF2 was a circRNA with abnormally down-regulated expression in DLBCL. Increasing circSPEF2 expression inhibited the proliferative activity and induced apoptosis of lymphoma cells in vitro and in vivo, as well as increased CD4?T cells and decreased Treg cell proportion of immune cells in the tumor microenvironment. Mechanically, circSPEF2 was bound to miR-16-5p expression, while BACH2 was targeted by miR-16-5p. circSPEF2 overexpressionmediated effects on lymphoma progression were reversible by upregulating miR-16-5p or downregulating BACH2. CONCLUSIONS: circSPEF2 can influence DLBCL progression by managing cellular proliferation and apoptosis and the proportion of immune cells Treg and CD4 through the miR-16-5p/BACH2 axis.

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