[HTML][HTML] STIM1 deficiency in intestinal epithelium attenuates colonic inflammation and tumorigenesis by reducing ER stress of goblet cells

X Liang, J Xie, H Liu, R Zhao, W Zhang, H Wang… - Cellular and molecular …, 2022 - Elsevier
Background & Aims As an indispensable component of store-operated Ca 2+ entry, stromal
interaction molecule 1 (STIM1) is known to promote colorectal cancer and T-cell–mediated …

[HTML][HTML] STIM1 Deficiency In Intestinal Epithelium Attenuates Colonic Inflammation and Tumorigenesis by Reducing ER Stress of Goblet Cells

X Liang, J Xie, H Liu, R Zhao, W Zhang… - Cellular and …, 2022 - cmghjournal.org
Background & Aims As an indispensable component of store-operated Ca 2+ entry, stromal
interaction molecule 1 (STIM1) is known to promote colorectal cancer and T-cell–mediated …

[HTML][HTML] STIM1 Deficiency In Intestinal Epithelium Attenuates Colonic Inflammation and Tumorigenesis by Reducing ER Stress of Goblet Cells

X Liang, J Xie, H Liu, R Zhao, W Zhang… - Cellular and …, 2022 - ncbi.nlm.nih.gov
Methods Inflammatory and matched normal intestinal tissues were collected from IBD
patients to investigate the expression of STIM1. Intestinal epithelium-specific STIM1 …

STIM1 Deficiency In Intestinal Epithelium Attenuates Colonic Inflammation and Tumorigenesis by Reducing ER Stress of Goblet Cells

X Liang, J Xie, H Liu, R Zhao… - Cellular and …, 2022 - pubmed.ncbi.nlm.nih.gov
Background & aims As an indispensable component of store-operated Ca 2+ entry, stromal
interaction molecule 1 (STIM1) is known to promote colorectal cancer and T-cell-mediated …

STIM1 Deficiency In Intestinal Epithelium Attenuates Colonic Inflammation and Tumorigenesis by Reducing ER Stress of Goblet Cells.

X Liang, J Xie, H Liu, R Zhao, W Zhang… - Cellular and …, 2022 - europepmc.org
Methods Inflammatory and matched normal intestinal tissues were collected from IBD
patients to investigate the expression of STIM1. Intestinal epithelium-specific STIM1 …