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

Net Fluorescein Flux Across Corneal Endothelium Strongly Suggests Fluid Transport is due to Electro-osmosis

角膜内皮细胞的净荧光素通量强烈提示液体运输是由电渗作用引起的。

Sanchez, J M; Cacace, V; Kusnier, C F; Nelson, R; Rubashkin, A A; Iserovich, P; Fischbarg, J

DPOFA, a Cl⁻/HCO₃⁻ exchanger antagonist, stimulates fluid absorption across basolateral surface of the retinal pigment epithelium

DPOFA是一种Cl⁻/HCO₃⁻交换拮抗剂,可刺激视网膜色素上皮基底外侧表面的液体吸收。

Iserovich, Pavel; Qin, Qiong; Petrukhin, Konstantin

Modulation of tight junction properties relevant to fluid transport across rabbit corneal endothelium

兔角膜内皮细胞紧密连接特性的调控与液体转运相关

Ma, Li; Kuang, Kunyan; Smith, Randall W; Rittenband, David; Iserovich, Pavel; Diecke, F P J; Fischbarg, Jorge

Functional and molecular characterization of multiple K-Cl cotransporter isoforms in corneal epithelial cells

角膜上皮细胞中多种K-Cl共转运蛋白亚型的功能和分子特征

Capó-Aponte, José E; Wang, Zheng; Bildin, Victor N; Iserovich, Pavel; Pan, Zan; Zhang, Fan; Pokorny, Kathryn S; Reinach, Peter S

Corneal endothelium transports fluid in the absence of net solute transport

在没有净溶质转运的情况下,角膜内皮细胞仍能转运液体。

Diecke, Friedrich P J; Ma, Li; Iserovich, Pavel; Fischbarg, Jorge

Predicting the three-dimensional structure of the human facilitative glucose transporter glut1 by a novel evolutionary homology strategy: insights on the molecular mechanism of substrate migration, and binding sites for glucose and inhibitory molecules

利用一种新型进化同源性策略预测人类葡萄糖转运蛋白GLUT1的三维结构:揭示底物迁移的分子机制以及葡萄糖和抑制分子的结合位点

Salas-Burgos, Alexis; Iserovich, Pavel; Zuniga, Felipe; Vera, Juan Carlos; Fischbarg, Jorge

Predictive evidence for a porin-type beta-barrel fold in CHIP28 and other members of the MIP family. A restricted-pore model common to water channels and facilitators

CHIP28 和其他 MIP 家族成员中存在孔蛋白型 β 桶状折叠的预测证据。水通道和促进因子共有的限制性孔道模型。

Fischbarg, J; Li, J; Cheung, M; Czegledy, F; Iserovich, P; Kuang, K