Apoptosis in mesenchymal stromal cells induces in vivo recipient-mediated immunomodulation.
Antonio GalleuYanira Riffo-VasquezCristina TrentoCara LomasLuigi DolcettiTik Shing CheungMalte von BoninLaura BarbieriKrishma HalaiSophie WardLing WengRonjon ChakravertyGiovanna LombardiFiona M WattKim H OrchardDavid I MarksJane ApperleyMartin BornhauserHenning WalczakClare L BennettFrancesco DazziPublished in: Science translational medicine (2018)
The immunosuppressive activity of mesenchymal stromal cells (MSCs) is well documented. However, the therapeutic benefit is completely unpredictable, thus raising concerns about MSC efficacy. One of the affecting factors is the unresolved conundrum that, despite being immunosuppressive, MSCs are undetectable after administration. Therefore, understanding the fate of infused MSCs could help predict clinical responses. Using a murine model of graft-versus-host disease (GvHD), we demonstrate that MSCs are actively induced to undergo perforin-dependent apoptosis by recipient cytotoxic cells and that this process is essential to initiate MSC-induced immunosuppression. When examining patients with GvHD who received MSCs, we found a striking parallel, whereby only those with high cytotoxic activity against MSCs responded to MSC infusion, whereas those with low activity did not. The need for recipient cytotoxic cell activity could be replaced by the infusion of apoptotic MSCs generated ex vivo. After infusion, recipient phagocytes engulf apoptotic MSCs and produce indoleamine 2,3-dioxygenase, which is ultimately necessary for effecting immunosuppression. Therefore, we propose the innovative concept that patients should be stratified for MSC treatment according to their ability to kill MSCs or that all patients could be treated with ex vivo apoptotic MSCs.
Keyphrases
- mesenchymal stem cells
- umbilical cord
- cell death
- end stage renal disease
- bone marrow
- cell cycle arrest
- newly diagnosed
- oxidative stress
- chronic kidney disease
- low dose
- endoplasmic reticulum stress
- induced apoptosis
- peritoneal dialysis
- diabetic rats
- high glucose
- stem cells
- prognostic factors
- acute myeloid leukemia
- cell proliferation
- signaling pathway
- drug induced
- patient reported