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

Advanced Molecular Tweezers Effectively Target Membranes Lacking Choline Headgroups for Broad-Spectrum Antiviral Efficacy

先进的分子镊子可有效靶向缺乏胆碱头基的细胞膜,从而实现广谱抗病毒疗效

Weil, Tatjana; Lawrenz, Jan; Taghuo Kaptouom, Estelle; Mieres-Perez, Joel; Hunszinger, Victoria; Sparrer, Konstantin M J; Almeida-Hernandez, Yasser; Schrader, Thomas; Sanchez-Garcia, Elsa; Münch, Jan

Could targeting viruses be a new hope against neurodegenerative diseases?

以病毒为靶点能否成为对抗神经退行性疾病的新希望?

Danzer, Karin M; Sparrer, Konstantin Mj

HIV-1 Vpr is targeted for degradation by autophagy.

HIV-1 Vpr 会被自噬体降解。

Chen Yuexuan, Klute Susanne, Bansal Anju, Sparrer Konstantin Maria Johannes, Serra-Moreno Ruth

Physical Performance, Sarcopenia and Malnutrition-Basic Test Set for Everyday Use in Cancer Therapy

体能、肌肉减少症和营养不良——癌症治疗日常基础测试套装

Einhell, S; Albrecht, M; Windschüttl, S; Sedlmeier, A M; Lüke, F; Sparrer, D; Gärditz, S; Valentini, L; Koller, M; Pukrop, T

Protocol to differentially quantify spatially resolved viral protein-cellular protein interactions via proximity ligation assays.

通过邻近连接分析对空间分辨的病毒蛋白-细胞蛋白相互作用进行差异定量分析的方案。

Hoenigsperger Helene, Klute Susanne, Engels Zoé, Volcic Meta, Sparrer Konstantin Maria Johannes

Retinol Binding Protein 4 reactivates latent HIV-1 by triggering canonical NF-κB, JAK/STAT5 and JNK signalling

视黄醇结合蛋白4通过触发经典的NF-κB、JAK/STAT5和JNK信号通路重新激活潜伏的HIV-1病毒。

Chiara Pastorio #,Khumoekae Richard #,Shariq Usmani #,Ann-Kathrin Kissmann #,Grigory Bolotnikov,Guillermo Gosálbez,Manuel Hayn,Lennart Koepke,Alina Sauertnik,Andrea Preising,Nico Preising,Ludger Ständker,Matthew Fair,Jessicamarie Morris,Emmanouil Papasavvas,Qin Liu,Honghong Sun,Armando Rodríguez,Karam Mounzer,Sebastian Wiese,Pablo Tebas,Yangzhu Du,Gregory M Laird,Markus Jaritz,Frank Rosenau,Moritz M Gaidt,Konstantin M J Sparrer,Luis J Montaner,Frank Kirchhoff

Primary and secondary metastatic dissemination: multiple routes to cancer-related death

原发性和继发性转移扩散:导致癌症相关死亡的多种途径

Sparrer, D; Blazquez, R; Keil, F; Einhell, S; Lüke, F; Uderhardt, S; Gerner, C; Wendl, C H R; Proescholdt, M; Schulz, C; Kandulski, A; Haferkamp, S; Schlitt, H J; Bäuerle, T; Franze, K; Mayr, R; Rechenmacher, M; Hau, P; Hirsch, D; Heudobler, D; Evert, K; Pukrop, T

Publisher Correction: TRIM23 mediates cGAS-induced autophagy in anti-HSV defense

出版商更正:TRIM23介导cGAS诱导的自噬在抗HSV防御中的作用

Acharya, Dhiraj; Sayyad, Zuberwasim; Hoenigsperger, Helene; Hirschenberger, Maximilian; Zurenski, Matthew; Balakrishnan, Kannan; Zhu, Junji; Gableske, Sebastian; Kato, Jiro; Zhang, Shen-Ying; Casanova, Jean-Laurent; Moss, Joel; Sparrer, Konstantin M J; Gack, Michaela U

TRIM23 mediates cGAS-induced autophagy in anti-HSV defense.

TRIM23介导cGAS诱导的自噬,从而发挥抗HSV防御作用

Acharya Dhiraj, Sayyad Zuberwasim, Hoenigsperger Helene, Hirschenberger Maximilian, Zurenski Matthew, Balakrishnan Kannan, Zhu Junji, Gableske Sebastian, Kato Jiro, Zhang Shen-Ying, Casanova Jean-Laurent, Moss Joel, Sparrer Konstantin M J, Gack Michaela U

α-Synuclein fibrils enhance HIV-1 infection of human T cells, macrophages and microglia

α-突触核蛋白原纤维增强HIV-1对人类T细胞、巨噬细胞和小胶质细胞的感染。

Lia-Raluca Olari # ,Sichen Liu # ,Franziska Arnold ,Julia Kühlwein ,Marta Gil Miró ,Ajeet Rijal Updahaya ,Christina Stürzel ,Dietmar Rudolf Thal ,Paul Walther ,Konstantin M J Sparrer ,Karin M Danzer ,Jan Münch ,Frank Kirchhoff