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Diseases Commons

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Digestive System Diseases

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The Texas Medical Center Library

2023

Inflammation

Articles 1 - 3 of 3

Full-Text Articles in Diseases

Gata6-As1 Regulates Intestinal Epithelial Mitochondrial Functions, And Its Reduced Expression Is Linked To Intestinal Inflammation And Less Favourable Disease Course In Ulcerative Colitis, Katya E Sosnovski, Tzipi Braun, Amnon Amir, Danielle Moshel, Marina Benshoshan, Kelli L Vandussen, Nina Levhar, Haya Abbas-Egbariya, Katia Beider, Rakefet Ben-Yishay, Syed Asad Ali, Sean R Moore, Subra Kugathasan, Ifat Abramovich, Efrat Glick Saar, Batya Weiss, Iris Barshack, Eyal Gottlieb, Tamar Geiger, Shomron Ben-Horin, Igor Ulitsky, Jeffrey S Hyams, Lee A Denson, Yael Haberman Jun 2023

Gata6-As1 Regulates Intestinal Epithelial Mitochondrial Functions, And Its Reduced Expression Is Linked To Intestinal Inflammation And Less Favourable Disease Course In Ulcerative Colitis, Katya E Sosnovski, Tzipi Braun, Amnon Amir, Danielle Moshel, Marina Benshoshan, Kelli L Vandussen, Nina Levhar, Haya Abbas-Egbariya, Katia Beider, Rakefet Ben-Yishay, Syed Asad Ali, Sean R Moore, Subra Kugathasan, Ifat Abramovich, Efrat Glick Saar, Batya Weiss, Iris Barshack, Eyal Gottlieb, Tamar Geiger, Shomron Ben-Horin, Igor Ulitsky, Jeffrey S Hyams, Lee A Denson, Yael Haberman

Student and Faculty Publications

BACKGROUND AND AIMS: Widespread dysregulation of long non-coding RNAs [lncRNAs] including a reduction in GATA6-AS1 was noted in inflammatory bowel disease [IBD]. We previously reported a prominent inhibition of epithelial mitochondrial functions in ulcerative colitis [UC]. However, the connection between reduction of GATA6-AS1 expression and attenuated epithelial mitochondrial functions was not defined.

METHODS: Mucosal transcriptomics was used to conform GATA6-AS1 reduction in several treatment-naïve independent human cohorts [n=673]. RNA pull-down followed by mass spectrometry was used to determine the GATA6-AS1 interactome. Metabolomics and mitochondrial respiration following GATA6-AS1 silencing in Caco-2 cells were used to elaborate on GATA6-AS1 functions.

RESULTS: GATA6-AS1 …


Cachexia, Chorea, And Pain In Chronic Nonbacterial Osteitis And Inflammatory Bowel Disease: A Case Report, Ladan Agharokh, Katherine Mamola, Andrew G Yu, Annette L Medina, Bhaskar Gurram, Julie Fuller, Jason Y Park, Weina Chen, Veena Rajaram, Matthew R Hammer, Jeff L Waugh May 2023

Cachexia, Chorea, And Pain In Chronic Nonbacterial Osteitis And Inflammatory Bowel Disease: A Case Report, Ladan Agharokh, Katherine Mamola, Andrew G Yu, Annette L Medina, Bhaskar Gurram, Julie Fuller, Jason Y Park, Weina Chen, Veena Rajaram, Matthew R Hammer, Jeff L Waugh

Student and Faculty Publications

BACKGROUND: Inflammatory bowel disease is an inflammatory disorder that primarily impacts the gastrointestinal tract, leading to malnutrition and chronic microscopic intestinal blood loss. Uncontrolled systemic inflammation can impact other parts of the body, known as extraintestinal manifestations. Up to 25% of patients with inflammatory bowel disease are reported to have these complications in their skin, joints, bones, eyes, liver, lung, and pancreas (Rogler et al. in Gastroenterology 161(4):1118-1132, 2021). Neurologic involvement as extraintestinal manifestations are less common, reported at 3-19%, including neuropathies, demyelination, and cerebrovascular events (Morís in World J Gastroenterol. 20(5):1228-1237, 2014).

CASE PRESENTATION: A 13-year-old Caucasian boy presented …


The Gastrointestinal-Brain-Microbiota Axis: A Promising Therapeutic Target For Ischemic Stroke, Yan-Hao Wei, Ren-Tang Bi, Yan-Mei Qiu, Chun-Lin Zhang, Jian-Zhuang Li, Ya-Nan Li, Bo Hu Jan 2023

The Gastrointestinal-Brain-Microbiota Axis: A Promising Therapeutic Target For Ischemic Stroke, Yan-Hao Wei, Ren-Tang Bi, Yan-Mei Qiu, Chun-Lin Zhang, Jian-Zhuang Li, Ya-Nan Li, Bo Hu

Student and Faculty Publications

Ischemic stroke is a highly complex systemic disease characterized by intricate interactions between the brain and gastrointestinal tract. While our current understanding of these interactions primarily stems from experimental models, their relevance to human stroke outcomes is of considerable interest. After stroke, bidirectional communication between the brain and gastrointestinal tract initiates changes in the gastrointestinal microenvironment. These changes involve the activation of gastrointestinal immunity, disruption of the gastrointestinal barrier, and alterations in gastrointestinal microbiota. Importantly, experimental evidence suggests that these alterations facilitate the migration of gastrointestinal immune cells and cytokines across the damaged blood-brain barrier, ultimately infiltrating the ischemic brain. …