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

Antitubercular potential and pH-driven mode of action of salicylic acid derivatives.

水杨酸衍生物的抗结核潜力和 pH 驱动作用模式

Laudouze Janïs, Francis Thomas, Forest Emma, Mies Frédérique, Bolla Jean-Michel, Crauste Céline, Canaan Stéphane, Shlyonsky Vadim, Santucci Pierre, Cavalier Jean-François

Cell Type-Specific Anti- and Pro-Oxidative Effects of Punica granatum L. Ellagitannins

石榴鞣花单宁的细胞类型特异性抗氧化和促氧化作用

Olchowik-Grabarek, Ewa; Sekowski, Szymon; Mierzwinska, Iga; Zukowska, Izabela; Abdulladjanova, Nodira; Shlyonsky, Vadim; Zamaraeva, Maria

Neurosimilator for Undergraduate Biophysics and Neurophysiology Courses

本科生物物理学和神经生理学课程的神经模拟器

Dupuis, Freddy; Shlyonsky, Vadim; de Prelle, Bertrand; Gall, David

Prophylactic and curative effect of rosemary leaves extract in a bleomycin model of pulmonary fibrosis

迷迭香叶提取物在博来霉素诱导的肺纤维化模型中的预防和治疗作用

Bahri, Sana; Ben Ali, Ridha; Gasmi, Khaoula; Mlika, Mona; Fazaa, Saloua; Ksouri, Riadh; Serairi, Raja; Jameleddine, Saloua; Shlyonsky, Vadim

Rosmarinic acid potentiates carnosic acid induced apoptosis in lung fibroblasts

迷迭香酸增强鼠尾草酸诱导的肺成纤维细胞凋亡

Sana Bahri, Frédérique Mies, Ridha Ben Ali, Mona Mlika, Saloua Jameleddine, Kathleen Mc Entee, Vadim Shlyonsky

Anoctamin 1 (Ano1) is required for glucose-induced membrane potential oscillations and insulin secretion by murine β-cells

Anoctamin 1 (Ano1) 是葡萄糖诱导的膜电位振荡和小鼠 β 细胞胰岛素分泌所必需的

Raphaël Crutzen, Myrna Virreira, Nicolas Markadieu, Vadim Shlyonsky, Abdullah Sener, Willy J Malaisse, Renaud Beauwens, Alain Boom, Philippe E Golstein

Hydrogen Peroxide and Sodium Transport in the Lung and Kidney

肺和肾脏中的过氧化氢和钠转运

Shlyonsky, V; Boom, A; Mies, F

The OpenPicoAmp: an open-source planar lipid bilayer amplifier for hands-on learning of neuroscience

OpenPicoAmp:一款用于神经科学实践学习的开源平面脂双层放大器

Shlyonsky, Vadim; Dupuis, Freddy; Gall, David

Possible role of lysophosphatidic acid in rat model of hypoxic pulmonary vascular remodeling

溶血磷脂酸在大鼠缺氧性肺血管重塑模型中的可能作用

Vadim Shlyonsky, Robert Naeije, Frédérique Mies

Serotonin decreases alveolar epithelial fluid transport via a direct inhibition of the epithelial sodium channel

血清素通过直接抑制上皮钠通道来减少肺泡上皮液体运输

Arnaud Goolaerts, Jérémie Roux, Michael T Ganter, Vadim Shlyonsky, Ahmed Chraibi, Renauld Stéphane, Frédérique Mies, Michael A Matthay, Robert Naeije, Sarah Sariban-Sohraby, Marybeth Howard, Jean-Francois Pittet