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

Caveolin-3: therapeutic target for diabetic myocardial ischemia/reperfusion injury

Caveolin-3:糖尿病心肌缺血/再灌注损伤的治疗靶点

Wen, Xinyu; Ji, Yanwei; Tang, Hepeng; Jin, Zhenshuai; Su, Wating; Zhou, Lu; Xia, Zhong-Yuan; Li, Lin; Lei, Shaoqing

CCL5 Induces a Sarcopenic-like Phenotype via the CCR5 Receptor

CCL5 通过 CCR5 受体诱导肌肉减少症样表型

Francisco Aguirre, Franco Tacchi, Mayalen Valero-Breton, Josué Orozco-Aguilar, Sabrina Conejeros-Lillo, Josefa Bonicioli, Renata Iturriaga-Jofré, Daniel Cabrera, Jorge A Soto, Mauricio Castro-Sepúlveda, Marianny Portal-Rodríguez, Álvaro A Elorza, Andrea Matamoros, Felipe Simon, Claudio Cabello-Verru

Caveolin-3 and Caveolin-1 Interaction Decreases Channel Dysfunction Due to Caveolin-3 Mutations

Caveolin-3 和 Caveolin-1 的相互作用可减少 Caveolin-3 突变引起的通道功能障碍

Benzoni, Patrizia; Gazzerro, Elisabetta; Fiorillo, Chiara; Baratto, Serena; Bartolucci, Chiara; Severi, Stefano; Milanesi, Raffaella; Lippi, Melania; Langione, Marianna; Murano, Carmen; Meoni, Clarissa; Popolizio, Vera; Cospito, Alessandro; Baruscotti, Mirko; Bucchi, Annalisa; Barbuti, Andrea

Caveolin-3 Nitration Drives Insulin Resistance in Prediabetic Hearts

Caveolin-3硝化作用导致糖尿病前期心脏胰岛素抵抗

Sadoshima, Junichi

Nitrative Modification of Caveolin-3: A Novel Mechanism of Cardiac Insulin Resistance and a Potential Therapeutic Target Against Ischemic Heart Failure in Prediabetic Animals

Caveolin-3的硝化修饰:一种新的心脏胰岛素抵抗机制及治疗糖尿病前期动物缺血性心力衰竭的潜在靶点

Meng, Zhijun; Zhang, Zhen; Zhao, Jianli; Liu, Caihong; Yao, Peng; Zhang, Ling; Xie, Dina; Lau, Wayne Bond; Tsukuda, Jumpei; Christopher, Theodore A; Lopez, Bernard; Zhu, Di; Liu, Demin; Zhang, John Ry; Gao, Erhe; Ischiropoulos, Harry; Koch, Walter; Ma, Xinliang; Wang, Yajing

Genetic Defect in Submucosal Gland-Associated Caveolin-3: A New Paradigm in Esophageal Adenocarcinoma Risk

黏膜下腺相关 Caveolin-3 基因缺陷:食管腺癌风险的新范式

Garman, Katherine S; Purkayastha, Biswa P D; Hogue, Joyce A; Fecteau, Ryan; Guda, Kishore; Chak, Amitabh

Functional LTCC-β(2)AR Complex Needs Caveolin-3 and Is Disrupted in Heart Failure

功能性LTCC-β(2)AR复合物需要Caveolin-3,并且在心力衰竭中会受到破坏。

Sanchez-Alonso, Jose L; Fedele, Laura; Copier, Jaël S; Lucarelli, Carla; Mansfield, Catherine; Judina, Aleksandra; Houser, Steven R; Brand, Thomas; Gorelik, Julia

C-Terminal Region of Caveolin-3 Contains a Stretch of Amino Acid Residues Capable of Diminishing Symptoms of Experimental Autoimmune Encephalomyelitis but Not Rheumatoid Arthritis Modeled in Rats

Caveolin-3 的 C 端区域包含一段氨基酸残基,能够减轻实验性自身免疫性脑脊髓炎的症状,但对大鼠类风湿性关节炎模型无效。

Danilkovich, Alexey V; Turobov, Valery I; Palikov, Victor A; Palikova, Yulia A; Shepelyakovskaya, Anna O; Mikhaylov, Evgeniy S; Slashcheva, Gulsara A; Shadrina, Tatiana E; Shaykhutdinova, Elvira R; Rasskazova, Ekaterina A; Tukhovskaya, Elena A; Khokhlova, Oksana N; Dyachenko, Igor A; Ismailova, Alina M; Zinchenko, Dmitry V; Navolotskaya, Elena V; Lipkin, Valery M; Murashev, Arkady N; Udovichenko, Igor P

Effect of Verapamil, an L-Type Calcium Channel Inhibitor, on Caveolin-3 Expression in Septic Mouse Hearts

维拉帕米(一种L型钙通道抑制剂)对脓毒症小鼠心脏中Caveolin-3表达的影响

Rattis, Bruna A C; Freitas, Ana C; Oliveira, Jordana F; Calandrini-Lima, João L A; Figueiredo, Maria J; Soave, Danilo F; Ramos, Simone G; Celes, Mara R N

A Role for Caveolin-3 in the Pathogenesis of Muscular Dystrophies

Caveolin-3在肌营养不良症发病机制中的作用

Pradhan, Bhola Shankar; Prószyński, Tomasz J