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- Ensayo clínico NCT07667049
Gut Permeability and Microbiome in Preterm Infants
1 de septiembre de 2026 actualizado por: Sripriya Sundararajan, University of Maryland, Baltimore
Gut Permeability and Microbiome in Very Low Birth Weight Preterm Neonates.
NEC, a life-threatening, GI emergency characterized by increased IP, affects approximately 7 to 10% of preterm neonates, and typically occurs within 7 to 14 days of birth with mortality as high as 30-50%.
NEC symptoms mainly involve GI dysfunction, such as abdominal distension and feeding intolerance, but the presentation can be non-specific with few warning signs.
Current therapies may be invasive, including surgical interventions that are often ineffective due to the rapid progression of the disease.
Prematurity is the greatest risk factor for development of NEC due to physiological immaturity of the GI tract and altered levels of the normal GI microbiota.
Several studies suggest that the initiation of an intense systemic and local inflammatory cascade leads to intestinal necrosis .
Antenatal exposure to infection/inflammation may predispose the developing intestinal mucosa to subsequent injury or dysregulated inflammatory responses.
Previous studies have linked presence of amniotic fluid infection/elevated cytokines, cord blood cytokines, and umbilical cord inflammation with risk for NEC in preterm neonates.
In a rat model of NEC, maternal prenatal exposure to microbial LPS led to increased frequency and severity of intestinal injury.
Taken together, these observations suggest that intestinal injury may be initiated in utero and contributes to increased IP at birth in the preterm neonate.
Many of the defense mechanisms present in the mature intestine, such as peristalsis and tight junctions between intestinal epithelial cells are decreased in an immature intestine, and thus bacteria normally confined to the intestinal lumen are able to reach systemic organs and tissues.
Bacterial translocation triggers the activation of an exaggerated inflammatory response, which leads to further epithelial damage.
Our analysis of the initial cohort of 43 preterm infants, and others' previous studies have shown that IP is high at birth in preterms (<33wk gestation) with a rapid maturation of the intestinal barrier over the first 2 weeks.
However, in some infants, high IP persisted and/or recurred in association with altered levels of the normal microbiota (bacteria community composition).
Specifically, the investigators observed that (1) rapid maturation of intestinal barrier function, characterized by decreased IP, correlates with increased microbial community diversity (Figure 1), and most outstandingly, the increased abundance of beneficial bacteria Clostridiales (Figure 2); (2) Clostridiales is highly transcriptionally active and co-active with the probiotic bacterium Bifidobacterium; (3) neonatal factors, including early introduction of breast milk, shorter period of antibiotic exposure, and later gestational age, favor the early colonization of the gut microbiota by members of Clostridiales and Bifidobacterium, which altogether are associated with improved intestinal barrier in preterm infants; (4) low Clostridiales spp.
abundance (<5%) and early gestational age (<31.7wk) were identified to be the most discriminatory features for elevated IP by supervised learning scheme, reaching an accuracy of 86.1%.
(5) Clostridiales and Bifidobacteriales are the most abundant bacteria groups in later stages (phase II/III at 6-18 months of age) as shown in Figure 2, suggesting a process of gaining prosperity of these two bacterial groups during intestine development after birth.
Altogether our preliminary results suggest the early colonization of the natural occurring probiotics strains Clostridiales and Bifidobacterium strongly associate with rapid maturation of intestinal barrier function, and their measurement are highly promising for early detection and as potential nutritional supplement to prevent NEC in the high-risk preterm population.
Investigators propose in this study to recruit additional 150 mother-infant dyads (justified in study size analysis in research design), to address our hypothesis that the two naturally occurring beneficial bacteria Clostridiales and Bifidobacterium are rapidly gaining prosperity during normal intestine development in association with improved barrier function measured by La/Rh ratio.
This continuation of the initial study builds on the previous findings that identified commensal bacteria Clostridiales and Bifidobacterium species as a strong indicator to the lowered IP and rapid maturation of intestinal barrier, to substantiate measurement of these probiotic strains combined with associated neonatal factors to form an accurate, rapid detection of intestinal permeability abnormality.
The investigators propose in this study to recruit additional 150 mother-infant dyads (justified in study size analysis in research design), to address our hypothesis that the two naturally occurring beneficial bacteria Clostridiales and Bifidobacterium are rapidly gaining prosperity during normal intestine development in association with improved barrier function measured by La/Rh ratio.
Descripción general del estudio
Estado
Aún no reclutando
Condiciones
Intervención / Tratamiento
Tipo de estudio
Intervencionista
Inscripción (Estimado)
150
Fase
- Fase 1
Contactos y Ubicaciones
Esta sección proporciona los datos de contacto de quienes realizan el estudio e información sobre dónde se lleva a cabo este estudio.
Estudio Contacto
- Nombre: Sripriya Sundararajan, MD
- Número de teléfono: 4103286003
- Correo electrónico: ssundararajan@som.umaryland.edu
Copia de seguridad de contactos de estudio
- Nombre: Bing Ma, PhD
- Número de teléfono: 608-334-4877
- Correo electrónico: ssundararajan@som.umaryland.edu
Criterios de participación
Los investigadores buscan personas que se ajusten a una determinada descripción, denominada criterio de elegibilidad. Algunos ejemplos de estos criterios son el estado de salud general de una persona o tratamientos previos.
Criterio de elegibilidad
Edades elegibles para estudiar
- Niño
Acepta Voluntarios Saludables
No
Descripción
Inclusion Criteria:
<5 days Gestational age 24-32 weeks
Exclusion Criteria:
Nonviable or planned withdrawal of care
- Significant GI dysfunction (e.g. heme-positive stools, abdominal distension (girth >2 cm baseline), or bilious emesis/ aspirates.
- Triplet or higher order multiple
- Severe asphyxia
- Lethal chromosome abnormalities
- Cyanotic congenital heart disease
- Intestinal atresia or perforation
- Abdominal wall defects
- Known galactosemia or other galactose intolerance
Plan de estudios
Esta sección proporciona detalles del plan de estudio, incluido cómo está diseñado el estudio y qué mide el estudio.
¿Cómo está diseñado el estudio?
Detalles de diseño
- Propósito principal: Poner en pantalla
- Asignación: N / A
- Modelo Intervencionista: Asignación de un solo grupo
- Enmascaramiento: Ninguno (etiqueta abierta)
Armas e Intervenciones
Grupo de participantes/brazo |
Intervención / Tratamiento |
|---|---|
|
Otro: Lactulose-Rhamnose solution
|
Measure intestinal permeability by use of non-digestable sugars known to not cross the intestinal barrier in normal healthy intestinal tissue.
|
¿Qué mide el estudio?
Medidas de resultado primarias
Medida de resultado |
Medida Descripción |
Periodo de tiempo |
|---|---|---|
|
Measurement of intestinal permeability
Periodo de tiempo: 1 year
|
The study outcome measures will be intestinal permeability (quantitative) and leaky gut (binary).
Increased levels of urine Lactulose/Rhamnose [La/Rh] ratio >0.05 will identify infants with increased intestinal permeability (IP).
|
1 year
|
Colaboradores e Investigadores
Aquí es donde encontrará personas y organizaciones involucradas en este estudio.
Patrocinador
Investigadores
- Investigador principal: Marcela Pasetti, PhD, University of Maryland
Publicaciones y enlaces útiles
La persona responsable de ingresar información sobre el estudio proporciona voluntariamente estas publicaciones. Estos pueden ser sobre cualquier cosa relacionada con el estudio.
Publicaciones Generales
- Fasano A. Physiological, pathological, and therapeutic implications of zonulin-mediated intestinal barrier modulation: living life on the edge of the wall. Am J Pathol. 2008 Nov;173(5):1243-52. doi: 10.2353/ajpath.2008.080192. Epub 2008 Oct 2.
- Bjarnason I. Intestinal permeability. Gut. 1994 Jan;35(1 Suppl):S18-22. doi: 10.1136/gut.35.1_suppl.s18.
- van Wijck K, Bessems BA, van Eijk HM, Buurman WA, Dejong CH, Lenaerts K. Polyethylene glycol versus dual sugar assay for gastrointestinal permeability analysis: is it time to choose? Clin Exp Gastroenterol. 2012;5:139-50. doi: 10.2147/CEG.S31799. Epub 2012 Jul 19.
- van Wijck K, Verlinden TJ, van Eijk HM, Dekker J, Buurman WA, Dejong CH, Lenaerts K. Novel multi-sugar assay for site-specific gastrointestinal permeability analysis: a randomized controlled crossover trial. Clin Nutr. 2013 Apr;32(2):245-51. doi: 10.1016/j.clnu.2012.06.014. Epub 2012 Aug 11.
- Beach RC, Menzies IS, Clayden GS, Scopes JW. Gastrointestinal permeability changes in the preterm neonate. Arch Dis Child. 1982 Feb;57(2):141-5. doi: 10.1136/adc.57.2.141.
- Piena-Spoel M, Albers MJ, ten Kate J, Tibboel D. Intestinal permeability in newborns with necrotizing enterocolitis and controls: Does the sugar absorption test provide guidelines for the time to (re-)introduce enteral nutrition? J Pediatr Surg. 2001 Apr;36(4):587-92. doi: 10.1053/jpsu.2001.22288.
- Rouwet EV, Heineman E, Buurman WA, ter Riet G, Ramsay G, Blanco CE. Intestinal permeability and carrier-mediated monosaccharide absorption in preterm neonates during the early postnatal period. Pediatr Res. 2002 Jan;51(1):64-70. doi: 10.1203/00006450-200201000-00012.
- Albers MJ, Steyerberg EW, Hazebroek FW, Mourik M, Borsboom GJ, Rietveld T, Huijmans JG, Tibboel D. Glutamine supplementation of parenteral nutrition does not improve intestinal permeability, nitrogen balance, or outcome in newborns and infants undergoing digestive-tract surgery: results from a double-blind, randomized, controlled trial. Ann Surg. 2005 Apr;241(4):599-606. doi: 10.1097/01.sla.0000157270.24991.71.
- Piena M, Albers MJ, Van Haard PM, Gischler S, Tibboel D. Introduction of enteral feeding in neonates on extracorporeal membrane oxygenation after evaluation of intestinal permeability changes. J Pediatr Surg. 1998 Jan;33(1):30-4. doi: 10.1016/s0022-3468(98)90355-4.
- Malagon I, Onkenhout W, Klok M, van der Poel PF, Bovill JG, Hazekamp MG. Gut permeability in neonates after a stage 1 Norwood procedure. Pediatr Crit Care Med. 2005 Sep;6(5):547-9. doi: 10.1097/01.pcc.0000175990.72753.97.
- Noone C, Menzies IS, Banatvala JE, Scopes JW. Intestinal permeability and lactose hydrolysis in human rotaviral gastroenteritis assessed simultaneously by non-invasive differential sugar permeation. Eur J Clin Invest. 1986 Jun;16(3):217-25. doi: 10.1111/j.1365-2362.1986.tb01332.x.
- van Elburg RM, Fetter WP, Bunkers CM, Heymans HS. Intestinal permeability in relation to birth weight and gestational and postnatal age. Arch Dis Child Fetal Neonatal Ed. 2003 Jan;88(1):F52-5. doi: 10.1136/fn.88.1.f52.
Fechas de registro del estudio
Estas fechas rastrean el progreso del registro del estudio y los envíos de resultados resumidos a ClinicalTrials.gov. Los registros del estudio y los resultados informados son revisados por la Biblioteca Nacional de Medicina (NLM) para asegurarse de que cumplan con los estándares de control de calidad específicos antes de publicarlos en el sitio web público.
Fechas importantes del estudio
Inicio del estudio (Estimado)
15 de septiembre de 2026
Finalización primaria (Estimado)
30 de septiembre de 2027
Finalización del estudio (Estimado)
30 de diciembre de 2027
Fechas de registro del estudio
Enviado por primera vez
18 de junio de 2026
Primero enviado que cumplió con los criterios de control de calidad
18 de junio de 2026
Publicado por primera vez (Actual)
24 de junio de 2026
Actualizaciones de registros de estudio
Última actualización publicada (Actual)
2 de septiembre de 2026
Última actualización enviada que cumplió con los criterios de control de calidad
1 de septiembre de 2026
Última verificación
1 de septiembre de 2026
Más información
Términos relacionados con este estudio
Palabras clave
Términos MeSH relevantes adicionales
Otros números de identificación del estudio
- HP-00110340
- 125-10212000-M33003-TPPRGGRT-2 (Otro número de subvención/financiamiento: University of Maryland School of Medicine)
Plan de datos de participantes individuales (IPD)
¿Planea compartir datos de participantes individuales (IPD)?
NO
Información sobre medicamentos y dispositivos, documentos del estudio
Estudia un producto farmacéutico regulado por la FDA de EE. UU.
Sí
Estudia un producto de dispositivo regulado por la FDA de EE. UU.
No
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