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1.
JPGN Rep ; 5(3): 374-376, 2024 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-39149173

RESUMO

A 4-year-old male with Klinefelter syndrome (KS), speech delay, and intermittent history of coughing and choking during meals was referred for evaluation. Prior evaluation with computed tomography showed a dilated esophagus at the gastroesophageal junction. The patient was unable to tolerate a barium swallow. Upper endoscopy was performed, and an intraoperative esophagogram, demonstrated a "birds beak" appearance suggestive of achalasia. There is no documented relationship between achalasia and KS. However, we utilized TriNetX (a large-scale data clearinghouse) to demonstrate a higher prevalence of achalasia in patients with KS as compared to the general population.

2.
JPGN Rep ; 5(3): 357-359, 2024 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-39149190

RESUMO

We report a case of a 13-year-old male who presented to the Pediatric Gastroenterology clinic with complaints of abdominal pain and frequent stooling, worsened by hematochezia. Despite undergoing endoscopic evaluation twice within a 1-year period, the diagnosis of an Inflammatory Cloacogenic Polyp (ICP) was only revealed during the second evaluation, in which rectal retroflexion was performed. This case highlights the importance of maintaining the ICP at the anorectal transitional zone as part of the differential diagnosis when evaluating patients with symptoms of distal colitis.

3.
Cells ; 13(5)2024 Feb 26.
Artigo em Inglês | MEDLINE | ID: mdl-38474371

RESUMO

Toll-like receptors (TLRs) are a collection of pattern recognition sensors that form a first line of defence by detecting pathogen- or damage-associated molecular patterns and initiating an inflammatory response. TLR activation in microglia, the major immune cells in the brain, can trigger the release of inflammatory molecules, which may contribute to various CNS diseases including Alzheimer's disease. Recently, some microRNAs were shown to serve as signalling molecules for TLRs. Here, we present miR-154-5p as a novel TLR7 ligand. Exposing microglia to miR-154-5p results in cytokine release and alters expression of the TLR signalling pathway dependent on TLR7. Additionally, miR-154-5p causes neuronal injury in enriched cortical neuron cultures and additive toxicity in the presence of microglia. Finally, intrathecal injection of miR-154-5p into mice leads to neuronal injury and accumulation of microglia in the cerebral cortex dependent on TLR7 expression. In conclusion, this study establishes miR-154-5p as a direct activator of TLR7 that can cause neuroinflammation and neuronal injury, which may contribute to CNS disease.


Assuntos
MicroRNAs , Microglia , Receptor 7 Toll-Like , Animais , Camundongos , Ligantes , Microglia/metabolismo , MicroRNAs/metabolismo , Neurônios/metabolismo , Receptor 7 Toll-Like/metabolismo , Humanos
4.
Gastro Hep Adv ; 2(3): 283-290, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-39132653

RESUMO

Background and Aims: Irritable bowel syndrome (IBS) is characterized by abdominal pain and changes in bowel habits. Fermentable oligosaccharides, disaccharides, monosaccharides, and polyols (FODMAPs) are poorly absorbed short-chain carbohydrates that may drive commensal microbial gas production, promoting abdominal pain in IBS. Low-FODMAP diet can result in symptomatic improvement in 50%-80% of IBS patients. However, this diet is not meant to be sustained long term, with concern for downstream nutrition and microbial issues. In this study, we evaluate the function of a targeted FODMAP enzymatic digestion food supplement FODMAP enzymatic digestion (FODZYME) containing a fructan-hydrolase enzyme (with significant inulinase activity) in a simulated gastrointestinal environment. Methods: Using SHIME (Simulator of the Human Intestinal Microbial Ecosystem), a multi-compartment simulator of the human gut, FODZYME dose finding assay in modeled gastrointestinal conditions assessed enzymatic ability to hydrolyze 3 g of inulin. Full intestinal modeling assessing digestion of inulin, absorption of fructose, gas production, and other measures of commensal microbial behavior was completed using 1.125 g of FODZYME. Results: After 30 minutes, 90% of the inulin was converted to fructose by 1.125 g of FODZYME. Doubling dosage showed no significant improvement in conversion, whereas a half dose decreased performance to 77.2%. Seventy percent of released fructose was absorbed during simulated small intestinal transit, with a corresponding decrease in microbial gas production, and a small decrease in butyrate and short-chain fatty acid production. Conclusion: FODZYME specifically breaks down inulin in representative gastrointestinal conditions, resulting in decreased gas production while substantially preserving short-chain fatty acid and butyrate production in the model colon. Our results suggest dietary supplementation with FODZYME would decrease intestinal FODMAP burden and gas production.

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