| Literature DB >> 28684664 |
Verena Börger1, Michel Bremer2, Rita Ferrer-Tur3, Lena Gockeln4, Oumaima Stambouli5, Amina Becic6, Bernd Giebel7.
Abstract
Extracellular vesicles (EVs), such as exosomes and microvesicles, have been identified as mediators of a newly-discovered intercellular communication system. They are essential signaling mediators in various physiological and pathophysiological processes. Depending on their origin, they fulfill different functions. EVs of mesenchymal stem/stromal cells (MSCs) have been found to promote comparable therapeutic activities as MSCs themselves. In a variety of in vivo models, it has been observed that they suppress pro-inflammatory processes and reduce oxidative stress and fibrosis. By switching pro-inflammatory into tolerogenic immune responses, MSC-EVs very likely promote tissue regeneration by creating a pro-regenerative environment allowing endogenous stem and progenitor cells to successfully repair affected tissues. Accordingly, MSC-EVs provide a novel, very promising therapeutic agent, which has already been successfully applied to humans. However, the MSC-EV production process has not been standardized, yet. Indeed, a collection of different protocols has been used for the MSC-EV production, characterization and application. By focusing on kidney, heart, liver and brain injuries, we have reviewed the major outcomes of published MSC-EV in vivo studies.Entities:
Keywords: cell therapy; exosomes; extracellular vesicles; immunomodulation; mesenchymal stem/stromal cells; microvesicles
Mesh:
Substances:
Year: 2017 PMID: 28684664 PMCID: PMC5535941 DOI: 10.3390/ijms18071450
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Experimental parameters of the MSC expansion and EV harvesting and characterization strategies reported for MSC-EV in vivo studies.
| Ref. | EV Harvesting Conditioning | ||||||||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Disease | MSC Origin | Tissue Source | MSC Isolation | Supplement | Media | Time | EV Isolation | Pre-Processing | Filter | Final Purification Step | Characterization | Tested EV-Marker | |||||||||
| NTA/DLS | Protein | TEM | FLOW | Other | CD9 | CD63 | CD81 | TSG101 | Other | ||||||||||||
| [ | AKI | Human | UC | unfractionated | 10% | serum free | 48 h | UF + sucrose + UC | 1000× | 100 kDa, 0.22 µm | 100,000× | ||||||||||
| [ | AKI | Human | BM | Ficoll | 10% FBS | 0.5% BSA | o.n. | UC | 2000× | 100,000× | |||||||||||
| [ | AKI | Human | BM | commercial | serum free | 0.5% BSA | o.n. | UC | 10,000× | 100,000× | |||||||||||
| [ | AKI | Rat | BM | unfractionated | 20% FCS | EV depletion | 48 h | UC | 800× | 0.1 µm | 100,000× | ||||||||||
| [ | I/R AKI | Human | UC | unfractionated | 10% FBS | 0.5% BSA | o.n. | UC | 2000× | 100,000× | |||||||||||
| [ | I/R AKI | Human | WJ | unfractionated | 10% FBS | 0.5% BSA | o.n. | UC | 2000× | 100,000× | |||||||||||
| [ | I/R AKI | Human | UC | Ficoll | 10% FBS | serum free | 24 h/ 48 h | UC | 2000× | 100,000× | |||||||||||
| [ | I/R AKI | Human | BC | unfractionated | n.d. | serum free | o.n. | UC + Optiprep | 3000× | 100,000× | |||||||||||
| [ | I/R AKI | Rat | AT | unfractionated | 10% FBS | EV depletion | 96 h | UC | 4500 rpm | 0.22 µm | 120,000× | ||||||||||
| [ | I/R renal injury | Mouse | BM | commercial | 10% FBS | EV depletion | 48 h | UC | 0.22 µm | n.d. | |||||||||||
| [ | Renal Injury | Mouse | BM | unfractionated | 10% FBS | n.d. | n.d. | UC | 2000× | 100,000× | |||||||||||
| [ | Retinal Injury | Human | UC | unfractionated | 10% FBS | serum free | n.d. | UC | 200× | 110,000× | |||||||||||
| [ | Renal Allograft | Rat | BM | unfractionated | 20% FBS | EV depletion | 16 h | UC | 2000× | 100,000× | |||||||||||
| [ | CKD | Human | UC | n.d. | serum free | 0.5% HSA | o.n. | UC | 2000× | 100,000× | |||||||||||
| [ | AMI | Human | BM | Ficoll | 10% FCS | EV depletion | n.d. | UC | 1500× | 100,000× | |||||||||||
| [ | AMI | Human | UC | unfractionated | 10% FBS | EV depletion, | 48 h | UC+ sucrose | 300× | 100 kDa | 100,000× | ||||||||||
| [ | AMI | Rat | BM | unfractionated | 10% FBS | EV depletion | 48 h | Precipitation (kit) | 2000× | 10,000× | |||||||||||
| [ | AMI | Rat | BM | n.d. | n.d. | EV depletion | 48 h | Exoquick | 1500× | ||||||||||||
| [ | AMI | Human | UC | unfractionated | 10% FBS | EV depletion | 48 h | UF + sucrose + UC | 300× | 100 kDa, | 100,000× | ||||||||||
| [ | AMI | Rat | BM | unfractionated | 15% FBS | EV depletion | 48 h | Exoquick | 3000× | 100 kDa | 1500× | ||||||||||
| [ | AMI | Human | ESC | sorting of CD105+ | 10% FCS | n.d. | n.d. | TFF + filter steps | 10, 1000, 500, 300 kDa | 100 kDa | |||||||||||
| [ | AMI | Mouse | BM | unfractionated | serum free | serum free | n.d. | Exoquick | 3000× | 0.3 µm | 1500× | ||||||||||
| [ | AMI | Human | UC | unfractionated | 10% FBS | EV depletion | 48 h | UF + sucrose + UC | 300× | 100 kDa | 100,000× | ||||||||||
| [ | I/R injury | Human | ESC | sorting of CD105 + | n.d. | serum free | 72 h | TFF + HPLC | 500× | 0.22 µm, 100 kDa | Chromatography | ||||||||||
| [ | ALiI | Human | ESC | sorting of CD105+ | 10% FCS | serum free | 72 h | TFF+HPLC | 100 kDa | Chromatography | |||||||||||
| [ | ALiI | Human | UC | unfractionated | 10% FCS | EV depletion | 48 h | UC + Sucrose +UF | 2.000× | 100 kDa, 0.22 µm | 100,000× | ||||||||||
| [ | Hepatic failure | Human | MB | Ficoll | 20% FBS | 20 % FBS | 24 h | Exoquick | 2000× | 0.22 µm, 30 kDa | 1500× | ||||||||||
| [ | Hepatic failure | Mouse | BM | commercial | FBS | EV depletion | 48 h | UC | 300× | 100,000× | |||||||||||
| [ | Liver fibrosis | Human | UC | unfractionated | 10% FBS | EV depletion | 24 h | UF + Sucrose + UC | 1000× | 100,000× | |||||||||||
| [ | I/R injury | Human | iPSC | iPS derived | 10% FBS | serum free | 48 h | UF | 300× | 0.22 µm | Amicon Ultra 15 | ||||||||||
| [ | Stroke | Rat | BM | unfractionated | 20% FBS | EV depletion | 24 h | UC | 10,000× | 0.22 µm | 100,000× | ||||||||||
| [ | Stroke | Rat | BM | unfractionated | 20% FBS | EV depletion | 24 h | UC + Sucrose | 100,000× | 0.22 µm | 100.000× | ||||||||||
| [ | Stroke | Rat | BM | unfractionated | 20% FBS | EV depletion | 24 h | UC | 3000× | 0.22 µm | 100,000× | ||||||||||
| [ | Stroke | Rat | BM | unfractionated | 20% FCS | EV depletion | 24 h | UC | 3000× | 0.22 µm | 100,000× | ||||||||||
| [ | Stroke | Human | BM | Ficoll | 5% PL | 5% PL | 48 h | PEG + UC | 0.22 µm | 110,000× | |||||||||||
| [ | Stroke | mini-pigs | AT | unfractionated | 10% FBS | EV depletion | 96 h | UC | 4500 rpm | 0.22 µm | 120,000× | ||||||||||
| [ | TBI | Human | BM | Ficoll | 20% FBS | EV depletion | 48 h | Exoquick | 1500× | ||||||||||||
| [ | TBI | Human | BM | unfractionated | 17% FBS | serum free | 6-48 h | UC | 2565× | 100,000× | |||||||||||
| [ | TBI | Rat | BM | unfractionated | 20% FBS | EV depletion | 48 h | Exoquick | 1500× | ||||||||||||
| [ | Brain injury | Human | BM | Ficoll | 10% PL | 10% PL | 48 h | PEG + UC | 10,000× | 0.22 µm | 110,000× | ||||||||||
| [ | Brain injury | Human | BM | unfractionated | 10% PL | 10% PL | 48 h | PEG | 10,000× | 0.22 µm | 1500× | ||||||||||
| [ | Cerebral apoplexy | Human | BM | Ficoll | 5% PL | culture media | 48 h | PEG | 0.22 µm | n.d. | |||||||||||
| [ | SCI | Rat | AT | digestion | n.d. | EV depletion | 24 h | Kit (miRCURY) | 3200× | ||||||||||||
| [ | GvHD | Human | BM | unfractionated | 5% PL | culture media | 48 h | PEG + UC | 0.22 µm | 100,000× | |||||||||||
| [ | GvHD | Human | UC | unfractionated | serum free | serum free | 48 h | UC | 2000× | 100,000× | |||||||||||
| [ | Enterocolitis | Mouse | BM | unfractionated | 10% FBS | serum free | 48 h | Kit (P100 Pure Exo) | |||||||||||||
| [ | Diabetes | Rat | BM | unfractionated | 15% FBS | EV depletion | 24 h | Precipitation (Kit) | 10,000× | ||||||||||||
| [ | Radiation damage | Human | BM | commercial | 15% FBS | EV depletion | 7 days | UC | 300× | 100,000× | |||||||||||
| [ | Wound healing | Human | UC | unfractionated | serum free | serum free | 48 h | UC + sucrose | 1000× | 100 kDa, 0.22 µm | 100,000× | ||||||||||
| [ | Wound healing | Human | UC | unfractionated | 10% FBS | n.d. | 24 h | UC | 10,000× | 0.22 µm | 100,000× | ||||||||||
| [ | ALuI | Human | BM | n.d. | n.d. | 0.5% HSA | 48 h | UC | 3000× | 100,000× | |||||||||||
| [ | ALuI | Human | BM | commercial | 10% FCS | 0.5% HSA | 48 h | UC | 10,000× | 100,000× | |||||||||||
| [ | Airway inflammation | Human | BM | n.d. | 20% FBS | serum free | 48 h | UC | 3000× | 100,000× | |||||||||||
| [ | Graft rejection | Human | ESC | differentiation | serum free | serum free | 72 h | TFF + HPLC | 100 kDa | Chromatography | |||||||||||
| [ | Sepsis | Mouse | BM | unfractionated | 15% FBS | EV depletion | 24 h | UC | 3000× | 0.22 µm | 36,000 rpm, 180 min | ||||||||||
| [ | Colitis | Rat | BM | unfractionated | 10% FBS | serum free | 48 h | UC | 2000× | 100,000× | |||||||||||
EV, extracellular vesicle; AKI, acute kidney injury; I/R, ischemia/reperfusion; AMI, acute myocardial injury; ALiI, acute liver injury; TBI, traumatic brain injury; SCI, subortical Stroke; GvHD, graft-versus-host-disease; ALuI, acute lung injury; UC, umbilical cord; BM, bone marrow; WJ, Wharton jelly; BC, bowman’s capsule; AT, adipose tissue; ESC, embryonic stem cells; MB, menstrual blood; iPSC, induced pluripotent cells; n.d., not defined; FBS, fetal bovine serum; FCS, fetal calf serum; PL, platelet lysate; BSA, bovine serum albumin; HSA, human serum albumin; h, hours; o.n., over night; UF, ultrafiltration; TFF, tangential flow filtration; UC, Ultracentrifugation; HPLC, high-performance liquid chromatography; PEG, Polyethylene glycol; g, g-force; kDa, kilo Dalton; µm, micrometre; min, minutes; rpm, rounds per minute; NTA, nanoparticle tracking analysis; DLS, dynamic light scattering; TEM, transmission electron microscopy; FLOW, Flow cytometry; CD, cluster of differentiation.
Application and analyses schemes of MSC-EV in vivo studies.
| Organ | Reference | Disease | Animal | Xenogenic Application | Functional Testing In Vitro | Application | EV Dose | No. of Injections | Factors | Immunomodulatory Effects | Described Effects After MSC-EV Application | ||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Species | Strain | Gender | |||||||||||
| Kidney | [ | AKI | Rat | SD | f | y | Renal capsule | 200 µg | 1 | Bcl-2, Bax | Reduced apoptosis | ||
| [ | AKI | Mouse | SCID | m | y | EV uptake | i.v. | 15 µg | 1 | mRNA dependent | RNA shuttled in MV associated with immune regulation | Morphological recovery | |
| [ | AKI | Mouse | SCID | m | y | Apoptosis assay | i.v. | 100 µg | 1 or 5 | RNA dependent, ACTB, POLR2E SUMO-1 | Improved survival | ||
| [ | AKI | Rat | Wistar | f | n | i.v. | 100 µg/mL | 1 | mRNA dependent | Infiltrated lymphocytes T-B cell count higher, NK reduced TNFα transcripts reduced | Increased cell proliferation | ||
| [ | I/R AKI | Rat | n.d. | m | y | i.v. | 100 µg | 1 | RNA dependent, VEGF, HIF-1α | Reduced fibrosis | |||
| [ | I/R AKI | Rat | SD | m | y | i.v. | 100 µg | 1 | miR16, miR15b, miR15a | Reduced infiltration of macrophages (CD68 +) | Reduced apoptosis | ||
| [ | I/R AKI | Rat | SD | m | y | T-reg induction | i.a. | n.d. | 1 | Apolipoprotein, galectins CD73, CD90 | No necrosis | ||
| [ | I/R AKI | Mouse | SCID | m | y | i.v. | 1 × 105 CE | 1 | RNA dependent | Increased tubular cell proliferation | |||
| [ | I/R AKI | Rat | SD | m | n | i.v. | 100 µg | 1 | NFĸB, IL-1ß, MIF, PAI-1, COX-2 re | Reduced inflammatory reaction reduced TNFα | Reduced oxidative stress | ||
| [ | I/R renal injury | Mouse | Balb/C | n.d. | n | Renal capsule | 200 µg | 1 | CCR-2 | Inhibition effect on recruitment of Monocytes and Macrophages | CCR2 enriched in Evs → binding to extracellular CCL-2 | ||
| [ | Renal injury | Mouse | C57BL/6 | n.d. | n | i.v. | 30 µg | 3 | Lymphocyte infiltration | Improved renal function | |||
| [ | Renal allograft | Rat | Lewis | m | n | n.d. | n.d. | 1 | Infiltrated lymphocytes T- and B-cell count higher, NK cells reduced TNFα transcripts reduced | no difference in kidney function | |||
| Heart | [ | AMI | Rat | Wistar | m | y | Border zone heart | 20 µL | 4 | Formation of new blood vessels | |||
| [ | AMI | Rat | SD | n.d. | y | Apoptosis assay | i.v. | 400 µg | 1 | AKT overexpression, PDGF-D | Formation of new blood vessels | ||
| [ | AMI | Rat | SD | m | n | Infarct border | 20 µg | 1 | miR29, miR24 upregulated | Reduced inflammation | No fibrosis | ||
| [ | AMI | Rat | SD | m | n | T-cell proliferation | Infarct border | 80 µg | 1 | Decreased proliferation of inflammatory cells | Formation of new blood vessels | ||
| [ | AMI | Rat | SD | m | y | Tube formation | i.v. | 400 µg | 1 | Bcl2 | Improved cardiac function | ||
| [ | AMI | Rat | SD | f | n | Intramyocardial | 4 × 106 CE | 1 | miR22, miR19, PTEN | Improved cardiac function | |||
| [ | AMI | Mouse | n.d. | n.d. | y | i.v. | 0.4 µg | 1 | Independent of immune cells | Reduced infarct size | |||
| [ | AMI | Mouse | C57BL/6 | n.d. | n | Infarct border | 1 µg | 1 | miR122 | Reduced apoptosis | |||
| Liver | [ | Acute liver injury | Mouse | C57BL/6 | m | y | i.s. | 0.4 µg | 1 | HGF, HGFR protein, IL6ST/gp130, TNFRSF1A/TNFR1, CXCL2/MIP-2 protein, iNOS, NO, COX2, MIP-2 | Decreased apoptosis | ||
| [ | Acute liver injury | Mouse | BALB/c | n.d. | y | i.v. or oral | 8/16/32 mg/kg BW | 1 | GPX1, Bcl2, ROS, MDA | Reduced serum levels of pro-inflammatory cytokines | Rescued liver failure | ||
| [ | Hepatic failure | Mouse | C57BL/6 | m | y | EV uptake | i.v. | 1 µg/µL | 1 | Caspase-3, TNF-α, IL-6, IL-1ß | Inhibitory immunomodulation of activated MNCs decreased NK-cells | Reduced apoptosis | |
| [ | Hepatic failure | Mouse | C57BL/6 | m | Y * | i.p./i.v. | 2 ×108 to 2 × 1010 EVs | 1 | Y-RNA-1, MIP2, IL-6, IL-1 alpha, MIP-3 beta, IP-10, MCP-1, MCP-3 | No apoptosis | |||
| [ | Hepatic I/R injury | Rat | SD | m | y | i.v. | 600 µg | 1 | TNF-α, IL-6, HMGB-1 | Reduced inflammatory markers Reduced infiltration of inflammatory cells | Reduced necrosis/ apoptosis | ||
| Brain | [ | Stroke | Rat | Wistar | m | n | i.v. | 100 µg | 1 | Improved neurological function | |||
| [ | Stroke | Rat | Wistar | m | n | n.d. | 100 µg | 1 | miR-133 | Improved functional recovery | |||
| [ | Stroke | Rat | Wistar | m | n | i.v. | 100 µg | 1 | miR17-92 Cluster | Improved neurological function | |||
| [ | Stroke | Mouse | C57BL/6 | m | y | i.v. | 2 × 106 CE | 3 | Reduced T-call activation B-cell, NK-cell, T-cell lymphopenia | Long-term neuroprotection | |||
| [ | Stroke | Rat | n.d. | m | y | i.v. | 100 µg | 1 | MMP-9, IL-1ß, TNFα, RANTES, PAI-1, NF-KB, iNOS, NOX-1, NOX-2, c-casp3, c-PARP | Reduced infiltration of CD11+ and CD68+cells | Decreased oxidative stress | ||
| [ | TBI | Rat | Wistar | m | y | i.v. | 100 µg | 1 | Reduced neuroinflammation reduced CD68+ cells at infarct zone | Improved functional recovery | |||
| [ | TBI | Rat | Wistar | m | n | i.v. | 100 µg | 1 | Reduced neuroinflammation reduced CD68+ cells at infarct zone | Improved functional recovery | |||
| [ | TBI | Mouse | C57BL/6 | m | y | i.v. | 30 µg | 1 | Suppressing Neuroinflammation | Rescue cognitive impairments | |||
| [ | Brain injury | Rat | Wistar | n.d. | y | i.p. | 1 × 108 CE/kg BW | 1 | Modulated inflammatory responses | Improved cognitive function | |||
| [ | Preterm brain injury | Sheep | Texel | n.d. | y | i.v. | 2 × 107 CE | 2 | IBA-1 | Increased immunoreactivity | Decreased structural injury | ||
| [ | Cerebral apoplexy | Rat | n.d. | n.d. | y | i.v. | 2.4 × 104 EVs | 3 | Reduced quantity of B-cells, NK cells, and T-cells all increased; neuroinflammation (fewer CD68+ cells in infarct zone) attenuated immunosuppression (reduced numbers of activated T-cells) | Identical effect of MSCs and MSC-EVs | |||
| [ | SCI | Rat | SD | male | n | i.v. | 100 µg | 1 | OPC | Improved functional recovery | |||
AKI, acute kidney injury; I/R, ischemia/reperfusion; AMI, acute myocardial injury; TBI, traumatic brain injury; SIC, subcortical ischemic stroke; n.d., not defined; SD, Sprague Dawley; SCID, severe combined immunodeficiency; f, female; m, male; y, yes; n, no; EV, extracellular vesicles; i.v., intravenously; i.a., intraabdominal; i.p., intraperitoneal; i.s., intrasplenic; µg, microgram; CE, cell equivalent; ml, milliliter; MV, microvesicle; CD, cluster of differentiation; IL, Interleukin.
Figure 1Overview of the MSC-EV-mediated therapeutic effects observed in animal models for kidney, heart, liver and brain injuries. MSC, mesenchymal stem cells, EV, extracellular vesicles.