Allogenic umbilical cord‐derived mesenchymal stromal cells improve motor function in prenatal surgical repair of myelomeningocele: An ovine model study

Author:

Athiel Yoann12ORCID,Jouannic Jean‐Marie123ORCID,Mauffré Vincent45,Dehan Coralie45,Adam Clovis6,Blot Stéphane7,Lallemant Pauline89,De Saint Denis Timothé10,Larghero Jérôme111,Nasone Justine111,Guilbaud Lucie12

Affiliation:

1. Université Paris Cité, INSERM, U976 et Centre d'Investigation Clinique en Biothérapies CIC‐BT CBT501, INSERM Paris France

2. Service de médecine fœtale, APHP, Hôpital Trousseau DMU ORIGYNE, Sorbonne Université Paris France

3. Working Group Spina Bifida and Other Dysraphisms European Reference Network ITHACA Paris France

4. Université Paris‐Saclay, UVSQ, INRAE, BREED Jouy‐en‐Josas France

5. École Nationale Vétérinaire d'Alfort, BREED Maison‐Alfort France

6. Service d'anatomopathologie, Hôpital Bicêtre Le Kremlin Bicêtre France

7. U955‐IMRB, Inserm, École Nationale Vétérinaire d'Alfort, Unité de Neurologie Maisons‐Alfort France

8. National Reference Center for Rare Disease: Vertebral and Spinal Cord Anomalies (MAVEM Center) AP‐HP, Trousseau Hospital Paris France

9. Sorbonne University, AP‐HP, Trousseau Hospital Paris France

10. Service de Neurochirurgie Pédiatrique Centre de Référence Chiari, Syringomyélie et Malformations du Rachis et de la Moelle C‐MAVEM, et Centre de Référence des Malformations Craniofaciales‐CRMR Paris France

11. Unité de Thérapie Cellulaire et Centre MEARY de Thérapie Cellulaire et Génique AP‐HP, Hôpital Saint‐Louis Paris France

Abstract

AbstractObjectiveTo investigate the effects of an adjuvant allogenic umbilical cord mesenchymal stromal cell (UC‐MSC) patch applied during fetal surgery on motor and sphincter function in the ovine MMC model.DesignMMC defects were surgically created at 75 days of gestation and repaired 14 days later.PopulationOvine MMC model: fetal lambs.MethodsWe compared lambs that received a UC‐MSC patch with a control group of lambs that received an acellular patch.Main Outcome MeasuresClinical neurological assessment was performed at 2 and 24 hours of life and included determination of the Sheep Locomotor Rating scale (SLR), which has been validated in the ovine MMC model. Electrophysical examinations, spine scans and histological analyses were also performed.ResultsOf the 13 operated lambs, nine were born alive: five had of these had received a UC‐MSC patch and four an acellular patch. At 24 hours of life, lambs in the UC‐MSC group had a significantly higher score (14 versus 5, P = 0.04). Amyotrophy was significantly more common in the control group (75% versus 0%, P = 0.02). All the lambs in the control group and none of those in the UC‐MSC group were incontinent. No significant differences were observed between the UC‐MSC and control groups in terms of the presence of spontaneous EMG activity, nerve conduction or spinal evoked potentials. In the microscopic examination, lambs in the UC‐MSC group had less fibrosis between the spinal cord and the dermis (mean thickness, 453 versus 3921 μm, P = 0.03) and around the spinal cord (mean thickness, 47 versus 158 μm, P < 0.001). Examination of the spinal cord in the area of the MMC defect showed a higher large neuron density in the UC‐MSC group (14.5 versus 5.6 neurons/mm2, P < 0.001). No tumours were observed.ConclusionsFetal repair of MMC using UC‐MSC patches improves motor and sphincter function as well as spinal preservation and reduction of fibrosis.

Funder

Fondation de l'Avenir pour la Recherche Médicale Appliquée

Fondation pour la Recherche Médicale

Publisher

Wiley

Subject

Obstetrics and Gynecology

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