2024
DOI: 10.1038/s41598-024-57328-z
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X-irradiated umbilical cord blood cells retain their regenerative effect in experimental stroke

Kazuta Yasui,
Yuko Ogawa,
Orie Saino
et al.

Abstract: Although regenerative therapy with stem cells is believed to be affected by their proliferation and differentiation potential, there is insufficient evidence regarding the molecular and cellular mechanisms underlying this regenerative effect. We recently found that gap junction-mediated cell–cell transfer of small metabolites occurred very rapidly after stem cell treatment in a mouse model of experimental stroke. This study aimed to investigate whether the tissue repair ability of umbilical cord blood cells is… Show more

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“…Importantly, cryopreservation has been demonstrated not to significantly alter the clonogenic or tolerogenic properties of UCB cells [58][59][60], further enhancing its utility in clinical settings. Intriguingly, UCB-derived therapies retain their regenerative properties, facilitating the restoration of functional hematopoiesis even in cases of compromised hematopoietic function following radiotherapy, as evidenced in rodent models [61,62].…”
Section: Discussionmentioning
confidence: 99%
“…Importantly, cryopreservation has been demonstrated not to significantly alter the clonogenic or tolerogenic properties of UCB cells [58][59][60], further enhancing its utility in clinical settings. Intriguingly, UCB-derived therapies retain their regenerative properties, facilitating the restoration of functional hematopoiesis even in cases of compromised hematopoietic function following radiotherapy, as evidenced in rodent models [61,62].…”
Section: Discussionmentioning
confidence: 99%