Cell cycle properties in lymphocytes from children with myelomeningocele

W D Graf1, O E Oleinik

  • 1Department of Pediatrics, University of Washington School of Medicine, Seattle 98105, USA.

Insights

Children with spina bifida may have altered lymphocyte cell cycles. Some patients showed increased mitogen response and faster cell cycle progression, contrasting initial hypotheses. Further research is needed to confirm these findings.

Area of Science:

  • Developmental Biology
  • Immunology
  • Genetics

Background:

  • Spina bifida involves growth retardation, allergies, and infections, potentially stemming from inherent susceptibility rather than just CNS malformation.
  • Folic acid and methylation are crucial for neurulation and cell proliferation, suggesting a link to susceptibility during cell division in myelomeningocele.
  • Understanding cellular behavior in spina bifida can illuminate underlying metabolic factors.

Purpose of the Study:

  • To investigate cell cycle properties of peripheral blood lymphocytes (PBL) in children with spina bifida compared to healthy controls.
  • To explore potential in vitro correlates of proliferative activity in the context of spina bifida.
  • To assess if PBL from children with spina bifida exhibit altered responses to mitogenic stimulation.

Main Methods:

  • Peripheral blood lymphocytes (PBL) from four children with myelomeningocele and Chiari II malformation were isolated.
  • PBL were stimulated with phytohemagglutinin in the presence of bromodeoxyuridine.
  • Bivariate flow cytometry was used to analyze cell cycle progression and mitogen responsiveness.

Main Results:

  • Three of four patients showed a higher percentage of mitogen-responsive PBL compared to controls.
  • Cells from these patients also demonstrated faster progression into second and third cell cycles.
  • One patient exhibited an inverse pattern with reduced responsiveness and slower cell cycle progression.

Conclusions:

  • Preliminary findings suggest altered PBL cell cycle dynamics in children with spina bifida, with some exhibiting enhanced proliferation.
  • These results contrast with expectations based on the roles of folic acid and methionine in cell division.
  • Further studies are necessary to validate these observations and elucidate their biological and clinical significance in neural tube defects (NTD).