The Role of Nucleated Rbc in the Diagnosis of Neonatal Asphyxia with Meconium-Stained and Clear Amniotic Fluid

Authors

  • Janga. Tarun Siva Nagi Reddy
  • M. Thiyagarajan
  • Sudarshan. N. E

Keywords:

Perinatal asphyxia, nucleated red blood cells, Lactate, Meconium-stained amniotic fluid, Neonatal hypoxia, Cord blood biomarkers

Abstract

Introduction:Perinatal asphyxia remains a significant contributor to neonatal morbidity and mortality, particularly in low- and middle-income countries. Early identification of at-risk neonates is critical for initiating timely neuroprotective interventions. Nucleated red blood cells (NRBCs) and lactate levels in cord blood have emerged as promising markers of hypoxia. This study aims to evaluate the diagnostic value of NRBCs and lactate levels in neonates born through meconium-stained and clear amniotic fluid.

Materials & Methods:A comparative cross-sectional study was conducted at Meenakshi Medical College Hospital and Research Institute between January and June 2024. Fifty term neonates were enrolled and divided into Group 1 (meconium-stained amniotic fluid) and Group 2 (clear amniotic fluid). Umbilical cord blood was analysed for NRBC count and lactate levels. Statistical analysis was performed using SPSS, and significance was determined at p < 0.05.

Results:Group 1 neonates had significantly higher mean NRBC counts (18.63 ± 4.63) compared to Group 2 (5.87 ± 1.06; p < 0.001). Mean lactate levels were also elevated in Group 1 (5.63 ± 1.63 mmol/L) versus Group 2 (3.11 ± 0.6 mmol/L; p < 0.001). The diagnostic cut-off for NRBCs >6.5/100 WBCs showed 85% sensitivity and 95% specificity, while lactate >5.1 mmol/L demonstrated 88.9% sensitivity and 100% specificity for predicting neonatal asphyxia.

Conclusion:Elevated NRBC and lactate levels in umbilical cord blood are reliable early indicators of perinatal asphyxia. Their high sensitivity and specificity make them valuable, cost-effective tools for the timely identification and management of at-risk neonates, especially in resource-limited settings.

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References

Lawn JE, Cousens S, Zupan J. 4 million neonatal deaths: when? Where? Why? Lancet. 2005;365(9462):891–900.

Volpe JJ. Neonatal encephalopathy: an inadequate term for hypoxic-ischemic encephalopathy. Ann Neurol. 2012;72(2):156–166.

Shankaran S. Hypoxic-ischemic encephalopathy and novel strategies for neuroprotection. Clin Perinatol. 2012;39(4):919–929.

Azzopardi D, et al. Moderate hypothermia to treat perinatal asphyxial encephalopathy. N Engl J Med. 2009;361(14):1349–1358.

Hermansen MC. Nucleated red blood cells in the fetus and newborn. Arch Dis Child Fetal Neonatal Ed. 2001;84(3):F211–F215.

Basu S, Kumar A, Murmu U. Elevated cord blood nucleated red blood cell counts in term neonates with perinatal asphyxia. Pediatr Int. 2009;51(2):200–204.

Steer P, Eigbe F, Lissauer TJ, Beard RW. Inter-relationships among abnormal cardiotocograms in labor, meconium-stained amniotic fluid, arterial cord blood pH and Apgar scores. Obstet Gynecol. 1989;74(5):715–721.

Raghavan S, Sood M. Predictors of outcome in neonates with meconium aspiration syndrome. Indian Pediatr. 2005;42(1):17–21.

Wiswell TE. Handling the meconium-stained infant. Semin Neonatol. 2001;6(3):225–231.

Liu WF, Harrington T. Delivery room management of meconium-stained amniotic fluid and prevention of meconium aspiration syndrome. NeoReviews. 2003;4(9):e233–e240.

Bakker J, et al. Serial blood lactate levels can predict the development of multiple organ failure following septic shock. Am J Surg. 1996;171(2):221–226.

Arad I, Bar-Oz B, Fainaru O, Bar-Oz B, Merlob P. Nucleated red blood cells in infants of diabetic mothers. Obstet Gynecol. 1997;89(3):403–406.

Wen SW, Smith G, et al. Fetal and neonatal morbidity and mortality associated with meconium-stained amniotic fluid: a population-based study. Am J Obstet Gynecol. 2005;193(3):927–933.

Maymon E, et al. Meconium-stained amniotic fluid in very low birth weight neonates. Obstet Gynecol. 1998;91(4):600–604.

Hermansen M, Nelsen TC. Nucleated red blood cells as a marker in the differential diagnosis of perinatal asphyxia. J Pediatr Hematol Oncol. 2001;23(7):411–419.

Phelan JP, Ahn MO, Korst LM, Martin GI. Nucleated red blood cells: A marker for fetal asphyxia? Am J Obstet Gynecol. 1995;173(2):538-541.

Basu P, Som S, Choudhuri N, Das H. Nucleated red blood cell count as a predictor of perinatal outcome in neonatal asphyxia. Pediatr Res. 2009;65(6):653–658.

Martin-Ancel A, Garcia-Alix A, Gaya F, Cabanas F, Burgueros M, Quero J. Multiple organ involvement in perinatal asphyxia. Acta Paediatr. 1995;84(2):156-161.

Mehta S, Bhandari V, Reddy V. Value of cord blood lactate and nucleated RBCs in predicting perinatal asphyxia. Indian Pediatr. 2010;47(9):749-753

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Published

2025-06-02

How to Cite

1.
Nagi Reddy JTS, Thiyagarajan M, N. E S. The Role of Nucleated Rbc in the Diagnosis of Neonatal Asphyxia with Meconium-Stained and Clear Amniotic Fluid. J Neonatal Surg [Internet]. 2025Jun.2 [cited 2025Sep.16];14(29S):860-4. Available from: https://www.jneonatalsurg.com/index.php/jns/article/view/6903