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

Microphysiological Systems Evaluation: Experience of TEX-VAL Tissue Chip Testing Consortium

微生理系统评估:TEX-VAL组织芯片测试联盟的经验

Rusyn, Ivan; Sakolish, Courtney; Kato, Yuki; Stephan, Clifford; Vergara, Leoncio; Hewitt, Philip; Bhaskaran, Vasanthi; Davis, Myrtle; Hardwick, Rhiannon N; Ferguson, Stephen S; Stanko, Jason P; Bajaj, Piyush; Adkins, Karissa; Sipes, Nisha S; Hunter, E Sidney; Baltazar, Maria T; Carmichael, Paul L; Sadh, Kritika; Becker, Richard A

Gut-Selective Design of Orally Administered Izencitinib (TD-1473) Limits Systemic Exposure and Effects of Janus Kinase Inhibition in Nonclinical Species

口服伊森替尼(TD-1473)的肠道选择性设计限制了非临床物种中 Janus 激酶抑制剂的全身暴露和效应

Hardwick, Rhiannon N; Brassil, Patrick; Badagnani, Ilaria; Perkins, Kimberly; Obedencio, Glenmar P; Kim, Andrea S; Conner, Michael W; Bourdet, David L; Harstad, Eric B

The adaptive endoplasmic reticulum stress response to lipotoxicity in progressive human nonalcoholic fatty liver disease

进行性人类非酒精性脂肪肝疾病中内质网对脂毒性的适应性应激反应

Lake, April D; Novak, Petr; Hardwick, Rhiannon N; Flores-Keown, Brieanna; Zhao, Fei; Klimecki, Walter T; Cherrington, Nathan J

Systems level metabolic phenotype of methotrexate administration in the context of non-alcoholic steatohepatitis in the rat

甲氨蝶呤治疗对大鼠非酒精性脂肪性肝炎系统代谢表型的影响

Kyriakides, Michael; Hardwick, Rhiannon N; Jin, Zhaosheng; Goedken, Michael J; Holmes, Elaine; Cherrington, Nathan J; Coen, Muireann

Hepatic basolateral efflux contributes significantly to rosuvastatin disposition II: characterization of hepatic elimination by basolateral, biliary, and metabolic clearance pathways in rat isolated perfused liver

肝脏基底外侧膜外排对瑞舒伐他汀的体内分布有显著贡献 II:大鼠离体灌注肝脏中基底外侧膜、胆汁和代谢清除途径的肝脏消除特征

Pfeifer, Nathan D; Bridges, Arlene S; Ferslew, Brian C; Hardwick, Rhiannon N; Brouwer, Kim L R

Molecular mechanism of altered ezetimibe disposition in nonalcoholic steatohepatitis

非酒精性脂肪性肝炎中依泽替米贝代谢改变的分子机制

Hardwick, Rhiannon N; Fisher, Craig D; Street, Stephanie M; Canet, Mark J; Cherrington, Nathan J

Arsenite activates NFκB through induction of C-reactive protein.

亚砷酸盐通过诱导 C 反应蛋白激活 NFαB

Druwe Ingrid L, Sollome James J, Sanchez-Soria Pablo, Hardwick Rhiannon N, Camenisch Todd D, Vaillancourt Richard R