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Decreased Expression of KLF4 Leading to Functional Deficit in Pediatric Patients with Intestinal Failure and Potential Therapeutic Strategy Using Decanoic Acid. | LitMetric

AI Article Synopsis

  • Pediatric intestinal failure (IF) occurs when gut function is insufficient for nutrient absorption, requiring intravenous support for health and growth.
  • Research indicates that decreased levels of the gene Kruppel-Like Factor 4 (KLF4) may lead to functional deficits in the gut cells of IF patients, causing nutrient malabsorption.
  • The study suggests that supplementing decanoic acid (DA) could enhance KLF4 expression and improve gut cell function, offering potential strategies for nutritional management in IF.

Article Abstract

Pediatric intestinal failure (IF) is the reduction in gut function to below the minimum necessary for the absorption of macronutrients and/or water and electrolytes, such that intravenous supplementation is required to maintain health and/or growth. The overall goal in treating IF is to achieve intestinal adaptation; however, the underlying mechanisms have not been fully understood. In this study, by performing single-cell RNA sequencing in pediatric IF patients, we found that decreased Kruppel-Like Factor 4 (KLF4) may serve as the hub gene responsible for the functional deficit in mature enterocytes in IF patients, leading to the downregulation of solute carrier (SLC) family transporters (e.g., SLC7A9) and, consequently, nutrient malabsorption. We also found that inducible KLF4 was highly sensitive to the loss of certain enteral nutrients: in a rodent model of total parenteral nutrition mimicking the deprivation of enteral nutrition, the expression of KLF4 dramatically decreased only at the tip of the villus and not at the bottom of crypts. By using IF patient-derived intestinal organoids and Caco-2 cells as in vitro models, we demonstrated that the supplementation of decanoic acid (DA) could significantly induce the expression of KLF4 along with SLC6A4 and SLC7A9, suggesting that DA may function as a potential therapeutic strategy to promote cell maturation and functional improvement. In summary, this study provides new insights into the mechanism of intestinal adaptation depending on KLF4, and proposed potential strategies for nutritional management using DA.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10305161PMC
http://dx.doi.org/10.3390/nu15122660DOI Listing

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