98%
921
2 minutes
20
Stem cell therapy holds promise for multiple sclerosis (MS), with efficacy of different stem cell types reported across a range of preclinical MS animal models. While stem cell therapy has been approved for a small number of diseases in humans, extracellular vesicles (EVs) may provide an efficacious, cost-effective, and safer alternative to stem cell therapy. To this end, we conducted a systematic review with meta-analysis to assess the effectiveness of stem cell-derived secretome (EV and conditioned media (CM)) in animal models of MS. The data were extracted to calculate standardized mean differences for primary outcome measure of disease severity, using a random effect model. Additionally, several subgroup analyses were conducted to assess the impact of various study variables such as stem cell type and source, stem cell modification, route and time of administration, number of animals and animal's age, and EV isolation methods on secondary outcome. Publication quality and risk of bias were assessed. Overall, 19 preclinical studies were included in the meta-analysis where stem cell EV/CM was found to significantly reduce disease severity in EV-treated (SMD = 2, 95% CI: 1.18-2.83, P < .00001) and CM-treated animals (SMD = 2.58, 95% CI: 1.34-3.83, P < .00001) compared with controls. Our analysis indicated that stem cell secretome has a positive effect on reducing demyelination, systemic neuroinflammation, and disease severity in preclinical models of MS. These findings indicate a potential therapeutic effect that merits investigation and validation in clinical settings.
Download full-text PDF |
Source |
---|---|
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11092271 | PMC |
http://dx.doi.org/10.1093/stcltm/szae011 | DOI Listing |
J Pediatr Hematol Oncol
September 2025
Division of Pediatric Hematology-Oncology, Mayo Clinic Children's, Rochester, MN.
Post-transplant lymphoproliferative disorder is a rare and serious complication of organ and stem cell transplant secondary to immunosuppressive therapies, most commonly of monomorphic B-cell subtype. Here we describe the first reported case of a pediatric heart transplant patient who developed both monomorphic B-cell and nondestructive PTLD with plasmacytic hyperplasia followed by an unrelated case of monomorphic T-cell and nondestructive PTLD with plasmacytic hyperplasia, which later relapsed. We detail the patient's risk factors for development of PTLD and her successful treatment regimens.
View Article and Find Full Text PDFBlood Adv
September 2025
AP-HP, Hôpital Saint Louis and University of Paris, INSERM U944 and THEMA insitute, Paris, France.
Germline DDX41 mutations (DDX41mut) are identified in approximately 5% of myeloid malignancies with excess of blasts, representing a distinct MDS/AML entity. The disease is associated with better outcomes compared to DDX41 wild-type (DDX41WT), but patients who do not undergo allogeneic hematopoietic stem cell transplantation (HSCT) may experience late relapse. Due to the recent identification of DDX41mut, data on post-HSCT outcomes remain limited.
View Article and Find Full Text PDFJ Pediatr Hematol Oncol
September 2025
Nuclear Medicine, Gujarat Cancer and Research Institute, Ahmedabad, Gujarat, India.
Pediatric pancreatic neuroblastoma is a rare cancer in children, with only limited cases available in the literature. We report a case of a 4-year-old girl diagnosed with high-risk pancreatic neuroblastoma. The girl was treated with induction chemotherapy followed by autologous stem cell transplant and maintenance with 13-cis-retinoic acid.
View Article and Find Full Text PDFACS Nano
September 2025
Department of Emergency and Critical Care Medicine, The Fourth Affiliated Hospital of Soochow University, Suzhou 215124, China.
Acute lung injury (ALI) is characterized by the excessive accumulation of reactive oxygen species (ROS), which triggers a severe inflammatory cascade and the destruction of the alveolar-capillary barrier, leading to respiratory failure and life-threatening outcomes. Considering the limitations and adverse effects associated with current therapeutic interventions, developing effective and safe strategies that target the complex pathophysiological mechanisms of ALI is crucial for improving patient outcomes. Herein, we developed an inhalable, multifunctional nanotherapeutic (MSCNVs@CAT) by encapsulating catalase (CAT) in mesenchymal-stem-cell-derived nanovesicles (MSCNVs).
View Article and Find Full Text PDFClin Transplant
September 2025
Centro De Hematología y Medicina Interna, Clínica Ruiz, Puebla, Mexico.