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

Soluble α2δ-1, altered in disease CSF, modulates network homeostasis and rescues deficits in a neuropsychiatric mouse model

疾病脑脊液中可溶性α2δ-1的改变,能够调节网络稳态并挽救神经精神疾病小鼠模型中的缺陷。

Dos Santos, Marc; Forrest, Marc P; Bomba-Warczak, Ewa; Dey, Soumil; Parnell, Euan; Christiansen, Jessica M; Edassery, Seby L; Yang, Kun; Hayes, Lindsay N; Coughlin, Jennifer M; Eckman, Blair L; Lammert, Catherine R; Martin-de-Saavedra, M Dolores; Barbolina, Maria V; Martina, Marco; Sawa, Akira; Savas, Jeffrey N; Penzes, Peter

The lactate sensor NDRG3 decelerates ER-to-Golgi transport through interaction with the long isoform of syntaxin-5

乳酸传感器NDRG3通过与syntaxin-5的长亚型相互作用来减缓内质网到高尔基体的运输。

Ferle, Pia E; Krause, Niklas; Koliwer, Judith; Völker, Jörn Michael; Becker, Fabia; Hillebrand, Alexander; Schröder, Leonie F; Jäger, Stefanie; Edassery, Seby; Liu, Dali; Krogan, Nevan J; Savas, Jeffrey N; Fischer von Mollard, Gabriele; Schwake, Michael

Calcium-Activated Sarcomere Contractility Drives Cardiomyocyte Maturation and the Response to External Mechanical Cues but is Dispensable for Sarcomere Formation

钙激活的肌节收缩力驱动心肌细胞成熟和对外部机械信号的反应,但对肌节形成并非必需。

Sherer, Laura A; Nagle, Abigail; Papadaki, Mary; Edassery, Seby; Yoo, Dasom; D'Amico, Lauren; Brambila-Diaz, Daniel; Regnier, Michael; Kirk, Jonathan A

Atrial Fibrillation Induces Sarcomere Remodeling, Enhanced Sarcomere Contractility, and Loss of Atrial Identity

心房颤动可诱发肌节重塑、肌节收缩力增强和心房特征丧失。

Kirk, Jonathan; Delligatti, Christine; Gokhan, Ilhan; Desai, Parth; Barrows, Rosie; Zied, Ahmed; Fritzmann, Geena; Edassery, Seby; Barefield, David; Niederer, Steven; Campbell, Stuart; Door, Michaela

Heat-shock pathway activation by TRC051384 protects spiral ganglion neurons from noise-induced hearing loss.

TRC051384 激活热休克通路可保护螺旋神经节神经元免受噪声引起的听力损失。

Yu Jintao, Ramirez Miguel A, Wang Yi-Zhi, Edassery Seby, Shramuk Maxwell, Cheatham Mary Ann, Rutherford Mark A, Welty Leah J, Savas Jeffrey N

Proteolytic degradation of atrial sarcomere proteins underlies contractile defects in atrial fibrillation.

心房肌节蛋白的蛋白水解降解是心房颤动收缩缺陷的根本原因

Cizauskas Hannah E, Burnham Hope V, Panni Azaria, Peña Alexandra, Alvarez-Arce Alejandro, Davis M Therese, Araujo Kelly N, Delligatti Christine E, Edassery Seby, Kirk Jonathan A, Arora Rishi, Barefield David Y

Proteomic profiling of regenerated urinary bladder tissue in a non-human primate augmentation model.

在非人灵长类动物膀胱增大模型中对再生膀胱组织进行蛋白质组学分析

Sharma Tiffany T, Edassery Seby L, Rajinikanth Nachiket, Karra Vikram, Bury Matthew I, Sharma Arun K

Multipotent bone marrow cell-seeded polymeric composites drive long-term, definitive urinary bladder tissue regeneration

多能骨髓细胞接种的聚合物复合材料可促进膀胱组织的长期、永久性再生。

Bury, Matthew I; Fuller, Natalie J; Wang, Xinlong; Chan, Yvonne Y; Sturm, Renea M; Oh, Sang Su; Sofer, Laurel A; Arora, Hans C; Sharma, Tiffany T; Nolan, Bonnie G; Feng, Wei; Rabizadeh, Rebecca R; Barac, Milica; Edassery, Sonia S; Goedegebuure, Madeleine M; Wang, Larry W; Ganesh, Balaji; Halliday, Lisa C; Seniw, Mark E; Edassery, Seby L; Mahmud, Nadim B; Hofer, Matthias D; McKenna, Kevin E; Cheng, Earl Y; Ameer, Guillermo A; Sharma, Arun K

Exceptional longevity of mammalian ovarian and oocyte macromolecules throughout the reproductive lifespan

哺乳动物卵巢和卵母细胞大分子在整个生殖生命周期中表现出非凡的持久性

Bomba-Warczak, Ewa K; Velez, Karen M; Zhou, Luhan T; Guillermier, Christelle; Edassery, Seby; Steinhauser, Matthew L; Savas, Jeffrey N; Elizabeth Duncan, Francesca

Proteomic profiling of regenerated urinary bladder tissue with stem cell seeded scaffold composites in a non-human primate bladder augmentation model.

在非人灵长类动物膀胱增大模型中,利用干细胞接种支架复合材料对再生膀胱组织进行蛋白质组学分析

Sharma Tiffany T, Edassery Seby L, Rajinikanth Natchiket, Karra Vikram, Bury Matthew I, Sharma Arun K