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

Differential roles of Na(V)1.2 and Na(V)1.6 in neocortical pyramidal cell excitability.

Na(V)1.2 和 Na(V)1.6 在新皮层锥体细胞兴奋性中的不同作用

Garcia Joshua D, Wang Chenyu, Alexander Ryan P D, Banks Emmie, Fenton Timothy, DeKeyser Jean-Marc, Abramova Tatiana V, George Alfred L Jr, Ben-Shalom Roy, Hackos David H, Bender Kevin J

Differential roles of Na (V) 1.2 and Na (V) 1.6 in neocortical pyramidal cell excitability

Na(V)1.2 和 Na(V)1.6 在新皮层锥体细胞兴奋性中的不同作用

Garcia, Joshua D; Wang, Chenyu; Alexander, Ryan P D; Banks, Emmie; Fenton, Timothy; DeKeyser, Jean-Marc; Abramova, Tatiana V; George, Alfred L; Ben-Shalom, Roy; Hackos, David H; Bender, Kevin J

Whole genome sequencing across clinical trials identifies rare coding variants in GPR68 associated with chemotherapy-induced peripheral neuropathy

临床试验中的全基因组测序发现,GPR68基因中的罕见编码变异与化疗引起的周围神经病变相关。

Khan, Zia; Jung, Min; Crow, Megan; Mohindra, Rajat; Maiya, Vidya; Kaminker, Joshua S; Hackos, David H; Chandler, G Scott; McCarthy, Mark I; Bhangale, Tushar

Cryo-EM reveals an unprecedented binding site for Na(V)1.7 inhibitors enabling rational design of potent hybrid inhibitors

冷冻电镜揭示了Na(V)1.7抑制剂前所未有的结合位点,从而能够合理设计高效的混合抑制剂。

Kschonsak, Marc; Jao, Christine C; Arthur, Christopher P; Rohou, Alexis L; Bergeron, Philippe; Ortwine, Daniel F; McKerrall, Steven J; Hackos, David H; Deng, Lunbin; Chen, Jun; Li, Tianbo; Dragovich, Peter S; Volgraf, Matthew; Wright, Matthew R; Payandeh, Jian; Ciferri, Claudio; Tellis, John C

GluN2A NMDA Receptor Enhancement Improves Brain Oscillations, Synchrony, and Cognitive Functions in Dravet Syndrome and Alzheimer's Disease Models.

GluN2A NMDA 受体增强可改善 Dravet 综合征和阿尔茨海默病模型中的脑振荡、同步性和认知功能

Hanson Jesse E, Ma Keran, Elstrott Justin, Weber Martin, Saillet Sandrine, Khan Abdullah S, Simms Jeffrey, Liu Benjamin, Kim Thomas A, Yu Gui-Qiu, Chen Yelin, Wang Tzu-Ming, Jiang Zhiyu, Liederer Bianca M, Deshmukh Gauri, Solanoy Hilda, Chan Connie, Sellers Benjamin D, Volgraf Matthew, Schwarz Jacob B, Hackos David H, Weimer Robby M, Sheng Morgan, Gill T Michael, Scearce-Levie Kimberly, Palop Jorge J

TRPA1 modulation by piperidine carboxamides suggests an evolutionarily conserved binding site and gating mechanism

哌啶甲酰胺对TRPA1的调节作用表明其结合位点和门控机制在进化上是保守的。

Chernov-Rogan, Tania; Gianti, Eleonora; Liu, Chang; Villemure, Elisia; Cridland, Andrew P; Hu, Xiaoyu; Ballini, Elisa; Lange, Wienke; Deisemann, Heike; Li, Tianbo; Ward, Stuart I; Hackos, David H; Magnuson, Steven; Safina, Brian; Klein, Michael L; Volgraf, Matthew; Carnevale, Vincenzo; Chen, Jun

TRPA1 as a drug target--promise and challenges

TRPA1作为药物靶点——前景与挑战

Chen, Jun; Hackos, David H