Biomedicines (Feb 2023)

An Artificial Placenta Experimental System in Sheep: Critical Issues for Successful Transition and Survival up to One Week

  • Elisenda Eixarch,
  • Miriam Illa,
  • Raquel Fucho,
  • Kambiz Rezaei,
  • Ameth Hawkins-Villarreal,
  • Sara Bobillo-Pérez,
  • Paula C. Randanne,
  • Miguel Moran,
  • Marina Chorda,
  • Sergio Sanchez-Martinez,
  • Yolanda J. D. de Roo-Puente,
  • Maria del Mar Velilla,
  • Ruth del Rio,
  • Marc Gallego,
  • Daniel Sanin-Ramirez,
  • Victor Narvaez,
  • Fatima Crispi,
  • Elisenda Bonet-Carne,
  • Eduard Gratacos

DOI
https://doi.org/10.3390/biomedicines11030702
Journal volume & issue
Vol. 11, no. 3
p. 702

Abstract

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Objective: To describe the development of an artificial placenta (AP) system in sheep with learning curve and main bottlenecks to allow survival up to one week. Methods: A total of 28 fetal sheep were transferred to an AP system at 110–115 days of gestation. The survival goal in the AP system was increased progressively in three consecutive study groups: 1–3 h (n = 8), 4–24 h (n = 10) and 48–168 h (n = 10). Duration of cannulation procedure, technical complications, pH, lactate, extracorporeal circulation (EC) circuit flows, fetal heart rate, and outcomes across experiments were compared. Results: There was a progressive reduction in cannulation complications (75%, 50% and 0%, p = 0.004), improvement in initial pH (7.20 ± 0.06, 7.31 ± 0.04 and 7.33 ± 0.02, p = 0.161), and increment in the rate of experiments reaching survival goal (25%, 70% and 80%, p = 0.045). In the first two groups, cannulation accidents, air bubbles in the extracorporeal circuit, and thrombotic complications were the most common cause of AP system failure. Conclusions: Achieving a reproducible experimental setting for an AP system is extremely challenging, time- and effort-consuming, and requires a highly multidisciplinary team. As a result of the learning curve, we achieved reproducible transition and survival up to 7 days. Extended survival requires improving instrumentation with custom-designed devices.

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