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RESEARCH PRODUCT

Modulating endothelial adhesion and migration impacts stem cell therapies efficacy

Frank K. GehringKaren BiebackMassimo DominiciMarcel A. KruegerCarsten CalaminusAndreas Von Ameln-mayerhoferClaus D. ClaussenTorsten KlubaStefanie ElserErhard SeifriedAnne EckertGiulia GrisendiGeorg SiegelJana SchlechterDirk M. HermannRichard SchäferRichard SchäferAnne Kathrin FinzelDominic GrossHinnak NorthoffRoland A. KlaffschenkelKerstin BarthMatthias SchwabEva-maria Krämer-albersThorsten R. DoeppnerThorsten R. DoeppnerEva ScheerHans Peter WendelLusine DanielyanAnja KretschmerMarine BuadzeAli LourhmatiGabriele SpohnJoerg Schmehl

subject

0301 basic medicineHomingCell- and Tissue-Based TherapyMedizinCCR4lcsh:MedicineStem cellsMiceChemokine receptor0302 clinical medicineCell MovementCells CulturedMigrationlcsh:R5-920Cell DifferentiationAdhesion; Glioma; Homing; Migration; Stem cells; StrokeGeneral MedicineGlioma3. Good healthCell biologyStrokemedicine.anatomical_structureCellular Microenvironment030220 oncology & carcinogenesisAdhesionStem celllcsh:Medicine (General)Research PaperEndotheliumBiologyMesenchymal Stem Cell TransplantationGeneral Biochemistry Genetics and Molecular BiologyCell LineImmunophenotyping03 medical and health sciencesIn vivoCell AdhesionmedicineAnimalsHumansEndotheliumMesenchymal stem celllcsh:RMesenchymal Stem CellsXenograft Model Antitumor AssaysIn vitroRatsDisease Models Animal030104 developmental biologyBiomarkersStem Cell TransplantationHoming (hematopoietic)

description

Abstract Background Limited knowledge of stem cell therapies` mechanisms of action hampers their sustainable implementation into the clinic. Specifically, the interactions of transplanted stem cells with the host vasculature and its implications for their therapeutic efficacy are not elucidated. We tested whether adhesion receptors and chemokine receptors on stem cells can be functionally modulated, and consequently if such modulation may substantially affect therapeutically relevant stem cell interactions with the host endothelium. Methods We investigated the effects of cationic molecule polyethylenimine (PEI) treatment with or without nanoparticles on the functions of adhesion receptors and chemokine receptors of human bone marrow-derived Mesenchymal Stem Cells (MSC). Analyses included MSC functions in vitro, as well as homing and therapeutic efficacy in rodent models of central nervous system´s pathologies in vivo. Findings PEI treatment did not affect viability, immunomodulation or differentiation potential of MSC, but increased the CCR4 expression and functionally blocked their adhesion receptors, thus decreasing their adhesion capacity in vitro. Intravenously applied in a rat model of brain injury, the homing rate of PEI-MSC in the brain was highly increased with decreased numbers of adherent PEI-MSC in the lung vasculature. Moreover, in comparison to untreated MSC, PEI-MSC featured increased tumour directed migration in a mouse glioblastoma model, and superior therapeutic efficacy in a murine model of stroke. Interpretation Balanced stem cell adhesion and migration in different parts of the vasculature and tissues together with the local microenvironment impacts their therapeutic efficacy. Funding Robert Bosch Stiftung, IZEPHA grant, EU grant 7 FP Health

10.1016/j.ebiom.2020.102987http://www.sciencedirect.com/science/article/pii/S2352396420303637