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國際期刊Antibiotics一期?疊acterial Death開始征稿
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大家好!國際期刊《antibiotics 》(2019 impact factor 3.9 )正在組織一期專題"molecular mechanisms of stress-mediated bacterial death",旨在總結細菌細胞應激外界壓力死亡的規(guī)律和機理,希望相關知識能夠幫助到病原菌的臨床治療、抑制耐藥性產生、保護有益腸道菌群、有益于利用與控制工業(yè)微生物和環(huán)境微生物。專題接收research article和review。 投稿截止日期為2021年9月30日。有意向投稿的朋友可以先發(fā)200字左右英文摘要給dr. karl drlica (喹諾酮領域著名專家;drlicaka@njms.rutgers.edu )進行意向詢問,也可以將摘要發(fā)給我(洪宇植,蘇州大學,郵箱yzhong@suda.edu.cn)。我們對于符合專題的稿件,將發(fā)出正式邀請,正式邀請會幫助大家讓編輯部豁免30%發(fā)表費用;特別優(yōu)秀的3篇稿件將豁免全部費用。 有關專題的描述和投稿請見 https://www.mdpi.com/journal/ant ... sues/bacteria_death 謝謝大家!歡迎有合適稿源的朋友積極投稿,也希望朋友們幫忙轉發(fā)此消息。 以下為專題信息:special issue "molecular mechanisms of stress-mediated bacterial death" deadline for manuscript submissions: 30 september 2021. special issue editors dr. Karl Drlica guest editor public health research institute and department of microbiology, biochemistry and molecular genetics, new jersey medical school, rutgers biomedical and health sciences, newark, new jersey, usa interests: antibiotic action and resistance; bacterial cell death; flioroquinolones; gyrase; topoisomerase; reactive oxygen species prof. dr. Yuzhi Hong guest editor institute of molecular enzymology and school of basic biology & medical sciences, soochow university, suzhou, china interests: antibiotics; bacterial cell death; cellular responses; lethal stress; reactive oxygen species; pathogenicity; signaling special issue information dear colleagues, death is a central feature of microbial biology. understanding and controlling microbial death are keys to antimicrobial effectiveness, limiting tolerance and persistence, and protecting gut microbiota during antimicrobial treatment. they are also important for the industrial production of toxic compounds by microbes. lethal stressors have recently gained attention because of the possibility that they kill bacteria through a common mechanism, even though the classes differ with respect to primary targets. this special issue of antibiotics will focus on novel observations concerning a variety of topics related to stress-induced death. suitable subjects include antimicrobial tolerance and persistence, the roles of metabolic changes and signaling pathways, the accumulation of reactive oxygen and nitrogen species, death during differentiation, and programmed cell death. we invite the submission of both primary research reports and reviews of recent literature. all articles will be peer-reviewed. dr. karl drlica prof. dr. yuzhi hong guest editors |
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