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Evaluation of the Translational Readiness of Pluripotent Stem Cell-Derived Vascular Cell Therapy for Limb Ischemia: A Systematic Review and Meta-analysis

Preprint Created on 09 Sep 2026 bioRxiv

Background: For the first time, pluripotent stem cell (PSC)-derived endothelial cells were administered to a human for peripheral artery disease (PAD), in August 2026. This translation is based on a large preclinical literature claiming that donor cells build blood vessels in animal models of limb ischemia, but whether it supports that claim has not been assessed systematically. Methods: In this systematic review and meta-analysis, we searched MEDLINE, Web of Science, Europe PMC, and Embase to August 2026 for studies of PSC-derived vascular cells in animal models of limb ischemia with an acellular control. Limb perfusion at each experiment's primary timepoint was pooled as Hedges' g in a three-level random-effects model with cluster-robust variance. Donor-cell fate and a seven-level ordinal of vascular contribution were graded for every study. This meta-analysis was registered on PROSPERO (CRD420261465308). Results: Sixty-eight studies in 69 reports met the criteria; 51 contributed 114 comparisons at primary timepoints. Cell therapy increased perfusion (Hedges' g 2.26, 95% CI 1.72-2.79; P=4.1x10-11; I2=87.5%; 95% prediction interval -1.47 to 5.98). No prespecified moderator survived Holm-Bonferroni adjustment, including the donor-cell fate grade (P=0.30). A donor cell was resolved in a vessel wall in 35 studies, and flow through such a vessel in 7. Small-study effects were strong (Egger t=6.25, P=9x10-8) but were not reproduced by a sample-size-based test (P=0.80); trim-and-fill moved the estimate to 1.15. On the natural scale, treated limbs recovered about twice the control perfusion (ratio of means 1.96, 95% CI 1.66-2.33). Limb preservation favored cell therapy in 11 studies with countable events (risk ratio 4.88, 95% CI 2.28-10.45), but 43 of 68 studies reported no functional outcome, and only 22 comparisons from 8 studies were both randomized and blindly assessed. In a post hoc analysis that did not survive multiplicity adjustment, effects were largest in studies whose images could not resolve their incorporation claims (g 3.23) versus those that resolved incorporation (g 2.33). Conclusions: PSC-derived vascular cell therapy improved limb perfusion in animal models, consistently across every sensitivity analysis, although the magnitude is uncertain given heterogeneity and small-study effects. Benefit was not associated with the degree of donor-cell incorporation across studies and was largest where incorporation was least resolvable, a pattern more consistent with reporting and measurement bias than with a true mechanistic effect. The first rigorous, blinded test of that benefit may come not from animals but from the patients now receiving these cells.

Shin, M., Choi, H., Kim, T., Jeon, J. P., Jung, S., Cho, K.

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