2025: Umbilical Cord Blood-Derived Regulatory T-Cell Therapy Showed Preliminary Safety
Clinical Safety and Preliminary Efficacy of Regulatory T Cells for ALS — Read Study
This early clinical study evaluated CK0803, an off-the-shelf regulatory T-cell product derived from umbilical cord blood. Six people with ALS received repeated intravenous infusions, with a median of 11 infusions per participant. No dose-limiting toxicity was observed. Among the four participants with sufficient functional data for the exploratory analysis, the mean ALSFRS-R rate of decline changed from 1.66 points per month before treatment to 0.41 points per month during treatment. Because this was a very small safety study without a concurrent control group, the results cannot establish effectiveness, though the findings provide encouraging early support for continued randomized study.
2023: Repeated Intravenous Muse-Cell Treatment Demonstrated Favorable Tolerability
Safety and Clinical Effects of a Muse Cell-Based Product in Patients With Amyotrophic Lateral Sclerosis: Results of a Phase 2 Clinical Trial — Read Study
Five people with ALS received six monthly intravenous doses of CL2020, an allogeneic Muse-cell product. The primary endpoints were safety and tolerability, with ALSFRS-R change evaluated as a secondary outcome. The treatment was well tolerated without serious treatment-related side effects. Three of the five participants showed a decrease in the rate of ALSFRS-R decline, though the overall functional change was not statistically significant.
2022: Neural Progenitor Cells Engineered to Release GDNF Met the Trial’s Safety Endpoint
Transplantation of Human Neural Progenitor Cells Secreting GDNF Into the Spinal Cord of Patients With ALS: A Phase 1/2a Trial — Read Study
Eighteen people with ALS received unilateral transplantation of engineered human neural progenitor cells into the lumbar spinal cord, designed to release glial cell line-derived neurotrophic factor (GDNF). The study met its primary one-year safety endpoint, and investigators observed sustained graft survival and GDNF production in post-mortem tissue. The trial did not demonstrate an overall motor-neuron protective effect, but established an important proof of concept for combining cell and gene therapy approaches in ALS research.
2020: Wharton’s Jelly MSC Study Reported Longer Survival Compared With Matched Historical Controls
Umbilical Cord Mesenchymal Stem Cells in Amyotrophic Lateral Sclerosis: An Original Study — Read Study
This case-control study followed 67 people with ALS who received three intrathecal injections of Wharton’s jelly-derived MSCs approximately two months apart, matched with 67 reference patients from the PRO-ACT clinical-trial database. The authors reported approximately two-fold longer median survival in the treated group, with ALSFRS-R progression slowing in 21 participants and no serious adverse drug reactions reported. Because the comparison relied on matched historical controls rather than randomized concurrent controls, larger randomized trials are needed.
2019: Long-Term Follow-Up Supported the Feasibility of Intraspinal Neural Stem Cell Delivery
Results From Phase I Clinical Trial With Intraspinal Injection of Neural Stem Cells in Amyotrophic Lateral Sclerosis: A Long-Term Outcome — Read Study
Eighteen people with ALS received direct microinjections of human neural stem cells into the lumbar or cervical spinal cord and were followed for as long as 60 months. The investigators reported no severe treatment-related adverse effects or evidence that the procedure accelerated disease progression, providing important feasibility evidence that helped support later-phase research using higher cell doses and more advanced cell-engineering strategies.