日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Evaluation of In Vitro Efficiency of Ciclopirox Against Yersinia pestis and Francisella tularensis

环吡酮抗鼠疫耶尔森菌和土拉弗朗西斯菌的体外药效评价

Hefetz, Idan; Ber, Raphael; Gur, David; Gal, Yoav

A Novel Virulent Clinical Isolate of Burkholderia pseudomallei Imported from Thailand Exhibiting Resistance to Trimethoprim-Sulfamethoxazole.

从泰国进口的新型毒力伯克霍尔德氏菌临床分离株对甲氧苄啶-磺胺甲噁唑表现出耐药性

Amit Sharon, Gur David, Aftalion Moshe, Biber Asaf, David Paula, Cohen-Gihon Inbar, Cohen Hila, Alcalay Ron, Zaide Galia, Israeli Ofir, Ber Raphael, Rotem Shahar, Israeli Ma'ayan, Lazar Shirley, Zvi Anat, Beth-Din Adi, Bar-Haim Erez, Elia Uri, Weiss Shay, Cohen Ofer, Mamroud Emanuelle, Chitlaru Theodor

Global transcriptomic analysis of Francisella tularensis SchuS4 differentially expressed genes in response to doxycycline or ciprofloxacin exposure

对土拉弗朗西斯菌 SchuS4 基因在多西环素或环丙沙星暴露后的差异表达进行全球转录组分析

Zaide, Galia; Cohen-Gihon, Inbar; Shifman, Ohad; Israeli, Ofir; Aftalion, Moshe; Maoz, Sharon; Chitlaru, Theodor; Ber, Raphael; Zvi, Anat; Steinberger-Levy, Ida

Whole genome sequencing and taxonomic profiling of two Pantoea sp. isolated from environmental samples in Israel

对从以色列环境样本中分离出的两种泛菌属(Pantoea sp.)进行全基因组测序和分类学分析

Guedj-Dana, Yehoudit; Cohen-Gihon, Inbar; Israeli, Ofir; Shifman, Ohad; Aminov, Tamar; Rotem, Shahar; Ber, Raphael; Zvi, Anat

Rapid Antibiotic Susceptibility Determination for Yersinia pestis Using Flow Cytometry Spectral Intensity Ratio (SIR) Fluorescence Analysis.

利用流式细胞仪光谱强度比(SIR)荧光分析快速测定鼠疫耶尔森菌的抗生素敏感性

Zahavy Eran, Rotem Shahar, Gur David, Aloni-Grinstein Ronit, Aftalion Moshe, Ber Raphael

Interaction of Yersinia pestis with macrophages: limitations in YopJ-dependent apoptosis

鼠疫耶尔森菌与巨噬细胞的相互作用:YopJ依赖性细胞凋亡的局限性

Zauberman, Ayelet; Cohen, Sara; Mamroud, Emanuelle; Flashner, Yehuda; Tidhar, Avital; Ber, Raphael; Elhanany, Eytan; Shafferman, Avigdor; Velan, Baruch

Generation of Yersinia pestis attenuated strains by signature-tagged mutagenesis in search of novel vaccine candidates

利用标记诱变技术生成鼠疫耶尔森菌减毒株,以寻找新型候选疫苗。

Flashner, Yehuda; Mamroud, Emanuelle; Tidhar, Avital; Ber, Raphael; Aftalion, Moshe; Gur, David; Lazar, Shirley; Zvi, Anat; Bino, Tamar; Ariel, Naomi; Velan, Baruch; Shafferman, Avigdor; Cohen, Sara