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

Environmental exposure to common pesticide induces synaptic deficit and social memory impairment driven by neurodevelopmental vulnerability of hippocampal parvalbumin interneurons.

常见杀虫剂的环境暴露会导致突触缺陷和社会记忆障碍,这是由于海马小白蛋白中间神经元的神经发育脆弱性所致

Di Re Jessica, Koff Leandra, Avchalumov Yosef, Singh Aditya K, Baumgartner Timothy J, Marosi Mate, Matz Lisa M, Hallberg Lance M, Ameredes Bill T, Seeley Erin H, Buffington Shelly A, Green Thomas A, Laezza Fernanda

Uncovering molecular determinants of potency and binding affinity in hit compounds targeting FGF14/Nav1.6 complex

揭示靶向FGF14/Nav1.6复合物的先导化合物的效力和结合亲和力的分子决定因素

Teimouri, Hamid; Haghighijoo, Zahra; Baumgartner, Timothy J; Singh, Aditya K; Wadsworth, Paul A; Zhang, Cun; Chen, Haiying; Zhou, Jia; Laezza, Fernanda

Early Life Exposure to Deltamethrin Impairs Synaptic Function by Altering the Brain-Derived Extracellular Vesicle Proteome.

早期接触溴氰菊酯会改变脑源性细胞外囊泡蛋白质组,从而损害突触功能

Koff Leandra, Di Re Jessica, Chand Subhash, Avchalumov Yosef, Nguyen Nghi M, Baumgartner Timothy J, Singh Aditya K, Goode Nana A, Marosi Mate, Hallberg Lance M, Ameredes Bill T, Green Thomas A, Yelamanchili Sowmya V, Pendyala Gurudutt, Laezza Fernanda

FGF14 Peptide Derivative Differentially Regulates Nav1.2 and Na(v)1.6 Function.

FGF14 肽衍生物差异性地调节 Nav1.2 和 Na(v)1.6 的功能

Arman Parsa, Haghighijoo Zahra, Lupascu Carmen A, Singh Aditya K, Goode Nana A, Baumgartner Timothy J, Singh Jully, Xue Yu, Wang Pingyuan, Chen Haiying, Antunes Dinler A, Lijffijt Marijn, Zhou Jia, Migliore Michele, Laezza Fernanda

Voltage-Gated Na(+) Channels in Alzheimer's Disease: Physiological Roles and Therapeutic Potential

电压门控钠离子通道在阿尔茨海默病中的作用:生理功能和治疗潜力

Baumgartner, Timothy J; Haghighijoo, Zahra; Goode, Nana A; Dvorak, Nolan M; Arman, Parsa; Laezza, Fernanda

Pharmacological Inhibition of Wee1 Kinase Selectively Modulates the Voltage-Gated Na(+) Channel 1.2 Macromolecular Complex

Wee1激酶的药理学抑制选择性地调节电压门控Na(+)通道1.2大分子复合物

Dvorak, Nolan M; Tapia, Cynthia M; Baumgartner, Timothy J; Singh, Jully; Laezza, Fernanda; Singh, Aditya K

Pharmacologically Targeting the Fibroblast Growth Factor 14 Interaction Site on the Voltage-Gated Na(+) Channel 1.6 Enables Isoform-Selective Modulation

通过药物靶向电压门控钠离子通道1.6上的成纤维细胞生长因子14相互作用位点,可实现亚型选择性调节

Dvorak, Nolan M; Tapia, Cynthia M; Singh, Aditya K; Baumgartner, Timothy J; Wang, Pingyuan; Chen, Haiying; Wadsworth, Paul A; Zhou, Jia; Laezza, Fernanda