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Effects of biological sex mismatch on neural progenitor cell transplantation for spinal cord injury in mice

Author

Listed:
  • Michael Pitonak

    (Texas A&M University)

  • Miriam Aceves

    (Texas A&M University
    Texas A&M University)

  • Prakruthi Amar Kumar

    (Texas A&M University)

  • Gabrielle Dampf

    (Texas A&M University)

  • Peyton Green

    (Ganado High School)

  • Ashley Tucker

    (Texas A&M University
    Texas A&M University)

  • Valerie Dietz

    (Texas A&M University)

  • Diego Miranda

    (Texas A&M University)

  • Sunjay Letchuman

    (Texas A&M University
    Texas A&M University)

  • Michelle M. Jonika

    (Texas A&M University
    Texas A&M University)

  • David Bautista

    (Texas A&M University)

  • Heath Blackmon

    (Texas A&M University)

  • Jennifer N. Dulin

    (Texas A&M University
    Texas A&M University)

Abstract

Despite advancement of neural progenitor cell transplantation to spinal cord injury clinical trials, there remains a lack of understanding of how biological sex of transplanted cells influences outcomes after transplantation. To address this, we transplanted GFP-expressing sex-matched, sex-mismatched, or mixed donor cells into sites of spinal cord injury in adult male and female mice. Biological sex of the donor cells does not influence graft neuron density, glial differentiation, formation of the reactive glial cell border, or graft axon outgrowth. However, male grafts in female hosts feature extensive hypervascularization accompanied by increased vascular diameter and perivascular cell density. We show greater T-cell infiltration within male-to-female grafts than other graft types. Together, these findings indicate a biological sex-specific immune response of female mice to male donor cells. Our work suggests that biological sex should be considered in the design of future clinical trials for cell transplantation in human injury.

Suggested Citation

  • Michael Pitonak & Miriam Aceves & Prakruthi Amar Kumar & Gabrielle Dampf & Peyton Green & Ashley Tucker & Valerie Dietz & Diego Miranda & Sunjay Letchuman & Michelle M. Jonika & David Bautista & Heath, 2022. "Effects of biological sex mismatch on neural progenitor cell transplantation for spinal cord injury in mice," Nature Communications, Nature, vol. 13(1), pages 1-12, December.
  • Handle: RePEc:nat:natcom:v:13:y:2022:i:1:d:10.1038_s41467-022-33134-x
    DOI: 10.1038/s41467-022-33134-x
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    1. Jennifer N. Dulin & Andrew F. Adler & Hiromi Kumamaru & Gunnar H. D. Poplawski & Corinne Lee-Kubli & Hans Strobl & Daniel Gibbs & Ken Kadoya & James W. Fawcett & Paul Lu & Mark H. Tuszynski, 2018. "Injured adult motor and sensory axons regenerate into appropriate organotypic domains of neural progenitor grafts," Nature Communications, Nature, vol. 9(1), pages 1-13, December.
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