112學年度陽明交通大學生物科技學院碩士班考試入學備取通知
112學年度碩士班考試入學備取生名單及報到注意事項
即日起至112年6月30日(五)下午3點前 (不含六、日、國定假日)完成報到手續
一、報到地點:新竹市博愛街75號賢齊館325室。
二、報到登記時需攜帶以下資料:大學成績單正本、畢業證書正本(如為應屆畢業生,請填寫切結書)
※未報到者視同放棄,缺額將由備取生依序遞補登記報到。
如欲放棄請填寫回覆放棄聲明書或回覆信件告知。
分醫所
4600015備10
楊進木教授研究團隊發表研究成果於Environment International
連結網址:https://www.sciencedirect.com/science/article/pii/S0160412023003008?via%3Dihub
Abstract
Over 400,000 people are estimated to have been exposed to World Trade Center particulate matter (WTCPM) since the attack on the Twin Towers in Lower Manhattan on September 11, 2001. Epidemiological studies have found that exposure to dust may cause respiratory ailments and cardiovascular diseases. However, limited studies have performed a systematic analysis of transcriptomic data to elucidate the biological responses to WTCPM exposure and the therapeutic options. Here, we developed an in vivo mouse exposure model of WTCPM and administered two drugs (i.e., rosoxacin and dexamethasone) to generate transcriptomic data from lung samples. WTCPM exposure increased the inflammation index, and this index was significantly reduced by both drugs. We analyzed the transcriptomics derived omics data using a hierarchical systems biology model (HiSBiM) with four levels, including system, subsystem, pathway, and gene analyses. Based on the selected differentially expressed genes (DEGs) from each group, WTCPM and the two drugs commonly affected the inflammatory responses, consistent with the inflammation index. Among these DEGs, the expression of 31 genes was affected by WTCPM exposure and consistently reversed by the two drugs, and these genes included Psme2, Cldn18, and Prkcd, which are involved in immune- and endocrine-related subsystems and pathways such as thyroid hormone synthesis, antigen processing and presentation, and leukocyte transendothelial migration. Furthermore, the two drugs reduced the inflammatory effects of WTCPM through distinct pathways, e.g., vascular-associated signaling by rosoxacin, whereas mTOR-dependent inflammatory signaling was found to be regulated by dexamethasone. To the best of our knowledge, this study constitutes the first investigation of transcriptomics data of WTCPM and an exploration of potential therapies. We believe that these findings provide strategies for the development of promising optional interventions and therapies for airborne particle exposure.
陸志豪副教授研究團隊發表研究成果於 Antiviral Research
連結網址:https://www.sciencedirect.com/science/article/pii/S0166354223001316?dgcid=coauthor
Abstract
The main protease (Mpro) of SARS-CoV-2 is essential for viral replication, which suggests that the Mpro is a critical target in the development of small molecules to treat COVID-19. This study used an in-silico prediction approach to investigate the complex structure of SARS-CoV-2 Mpro in compounds from the United States National Cancer Institute (NCI) database, then validate potential inhibitory compounds against the SARS-CoV-2 Mpro in cis- and trans-cleavage proteolytic assays. Virtual screening of ∼280,000 compounds from the NCI database identified 10 compounds with highest site-moiety map scores. Compound NSC89640 (coded C1) showed marked inhibitory activity against the SARS-CoV-2 Mpro in cis-/trans-cleavage assays. C1 strongly inhibited SARS-CoV-2 Mpro enzymatic activity, with a half maximal inhibitory concentration (IC50) of 2.69 μM and a selectivity index (SI) of >74.35. The C1 structure served as a template to identify structural analogs based on AtomPair fingerprints to refine and verify structure-function associations. Mpro-mediated cis-/trans-cleavage assays conducted with the structural analogs revealed that compound NSC89641 (coded D2) exhibited the highest inhibitory potency against SARS-CoV-2 Mpro enzymatic activity, with an IC50 of 3.05 μM and a SI of >65.57. Compounds C1 and D2 also displayed inhibitory activity against MERS-CoV-2 with an IC50 of <3.5 μM. Thus, C1 shows potential as an effective Mpro inhibitor of SARS-CoV-2 and MERS-CoV. Our rigorous study framework efficiently identified lead compounds targeting the SARS-CoV-2 Mpro and MERS-CoV Mpro.
112學年度陽明交通大學生物科技學院碩士班考試入學備取通知
112學年度碩士班考試入學備取生名單及報到注意事項
即日起至112年5月17日(三)下午3點前 (不含六、日、國定假日)完成報到手續
一、報到地點:新竹市博愛街75號賢齊館325室。
二、報到登記時需攜帶以下資料:大學成績單正本、畢業證書正本(如為應屆畢業生,請填寫切結書)
※未報到者視同放棄,缺額將由備取生依序遞補登記報到。
如欲放棄請填寫回覆放棄聲明書或回覆信件告知。
生科系
4600005備16
1. 於資格考口試一週前填寫資格考學位考試申請表,並將考試申請表擲交系辦相關事務負責人。
註1:博士班口試委員5-9位(含指導教授,不限校內外,學校僅付最多三位校外委員,若超過三位校外委員及校內委員請自行支付口試委員費用)
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2. 口試前請先查詢是否以符合下列事項:(請配合博士班研究生入學與修讀辦法)
(1)候選人當於考試前修滿9學分(含)以上之課程,其成績必需在70分以上。
(2)必需已通過二學期博士班書報討論。
(3)繳交博士論文研究計畫及初步成果之書面報告,或加上其他成為候選人值得參考之書面資料。
(4)一般生研究生第四年結束前(休學不計入年限)需發表SCI論文總點數2.0以上(含)或SCI領域學門在前20%之論文一篇;在職生第六年結束前(休學不計入年限)需發表SCI論文總點數2.0以上(含)或SCI領域學門在前20%之論文一篇。
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王雲銘教授研究團隊發表研究成果於 Sensors and Actuators B: Chemical
連結網址:
https://www.sciencedirect.com/science/article/pii/S0925400523006755
Abstract
The COVID-19 pandemic has become a global catastrophe, affecting the health and economy of the human community. It is required to mitigate the impact of pandemics by developing rapid molecular diagnostics for SARS-CoV-2 virus detection. In this context, developing a rapid point-of-care (POC) diagnostic test is a holistic approach to the prevention of COVID-19. In this context, this study aims at presenting a real-time, biosensor chip for improved molecular diagnostics including recombinant SARS-CoV-2 spike glycoprotein and SARS-CoV-2 pseudovirus detection based on one-step-one-pot hydrothermally derived CoFeBDCNH2-CoFe2O4 MOF-nanohybrids. This study was tested on a PalmSens-EmStat Go POC device, showing a limit of detection (LOD) for recombinant SARS-CoV-2 spike glycoprotein of 6.68 fg/mL and 6.20 fg/mL in buffer and 10% serum-containing media, respectively. To validate virus detection in the POC platform, an electrochemical instrument (CHI6116E) was used to perform dose dependent studies under similar experimental conditions to the handheld device. The results obtained from these studies were comparable indicating the capability and high detection electrochemical performance of MOF nanocomposite derived from one-step-one-pot hydrothermal synthesis for SARS-CoV-2 detection for the first time. Further, the performance of the sensor was tested in the presence of Omicron BA.2 and wild-type D614G pseudoviruses.


