| Literature DB >> 29410682 |
Lin Cheng1, Kun Zhang2, Shuying Wu1, Manhua Cui1, Tianmin Xu1.
Abstract
Mesenchymal stem cells have been at the forefront of regenerative medicine for many years. Exosomes, which are nanovesicles involved in intercellular communication and the transportation of genetic material transportation that can be released by mesenchymal stem cells, have been recently reported to play a role in cell-free therapy of many diseases, including myocardial infarction, drug addiction, and status epilepticus. They are also thought to help ameliorate inflammation-induced preterm brain injury, liver injury, and various types of cancer. This review highlights recent advances in the exploration of mesenchymal stem cell-derived exosomes in therapeutic applications. The natural contents, drug delivery potency, modification methods, and drug loading methods of exosomes are also discussed.Entities:
Year: 2017 PMID: 29410682 PMCID: PMC5749272 DOI: 10.1155/2017/6305295
Source DB: PubMed Journal: Stem Cells Int Impact factor: 5.443
Characterization of various extracellular vesicles.
| Exosomes | MVs | Apoptotic bodies | |
|---|---|---|---|
| Size | 30–100 nm | 50–2000 nm | 500–4000 nm |
| Surface markers (used most) | CD63 | ARF6 | TSP |
| CD9 | VCAMP3 | C3b |
Figure 1The main functions of MSC-derived exosomes. The external bilayer (green circle) is the membrane and the internal bilayer (white circle) is packed with various bioactive compounds.
Studies focusing on MSC-derived exosomes, their loading methods, therapeutic cargos, and biological function.
| Origin | Disease models | Biological function | Contributing factors | Artificial modification & loading methods | Articles |
|---|---|---|---|---|---|
| Mouse bone marrow-derived MSCs (BM-MSCs) | Breast cancer | Suppress angiogenesis and tumor progression | miR-16 | / | Lee et al. [ |
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| Human adult liver stem cells (HLSCs) | Hepatoma | Transfer genetic information that interferes with the deregulated survival and proliferation | miR451, miR223, miR31, and so on | / | Fonsato et al. [ |
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| MSCs | Glioma | Reduce glioma xenograft growth in rat brain | miR-146b | Transfection and electroporation | Katakowski et al. [ |
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| Mouse BM-MSCs | Pancreatic adenocarcinoma | Inhibit in vitro tumor growth | Paclitaxel | Incubation | Pascucci et al. [ |
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| Human umbilical cord Wharton's jelly mesenchymal stem cells (hWJMSCs) | Bladder tumor | Downregulated phosphorylation of Akt protein kinase and upregulated cleaved caspase 3 during the process of antiproliferation and proapoptosis | Akt and caspase 3 | / | Wu et al. [ |
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| MSCs | Liver injury | Induces an anti-inflammatory effect | Cationized pullulan | Incubation | Tamura et al. [ |
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| Mouse embryonic fibroblast (MEF) glioblastoma cells | / | Engineer exosomes containing Cre recombinase that have been used to identify functional delivery of exosomes across the blood-brain barrier to recipient neurons in the brain | Labeling of a target protein, Cre recombinase, with a WW tag | Transfection | Sterzenbach et al. [ |
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| BM-MSCs | Colonic carcinoma gastric carcinoma | Promote VEGF and CXCR4 expression in tumor cells through ERK1/2 and p38 MAPK pathways | / | / | Zhu et al. [ |
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| Mouse immature dendritic cells (imDCs) | Breast cancer | Target tumor therapy | Doxorubicin | Electroporation transfection | Tian et al. [ |
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| Human umbilical cord-derived MSCs (hucMSCs) | Acute myocardial infarction | Accelerate endothelium cell proliferation, migration, and vessel formation | Platelet-derived growth factor D (PDGF-D) | Transfection | Ma et al. [ |
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| BM-MSCs | Status epilepticus (SE) | Minimize the adverse effects of SE in the hippocampus and prevent SE-induced cognitive and memory impairments | / | / | Long et al. [ |
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| BM-MSCs | Ameliorate inflammation-inducedpreterm brain injury | Ameliorate inflammation-induced neuronal cellular degeneration, reduce microgliosis, and prevent reactive astrogliosis | / | / | Drommelschmidt et al. [ |
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| hucMSCs | PBMCs | Immunosuppressive function | / | / | Monguio-Tortajada et al. [ |
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| Cardiomyocyte progenitor cell (CMPC) MSCs | Human microvascular endothelial cells (HMECs) and human umbilical vein endothelial cells (HUVECs) | Proangiogenic effects | Extracellular matrix metalloproteinase inducer (EMMPRIN) | / | Vrijsen et al. [ |
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| MSCs | Breast cancer | Deliver antagomiRs to chemosensitize the BCCs and to prevent dormancy | Anti-miR-222/-223 | Transfection | Bliss et al. [ |
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| BM-MSCs | PBMCs | Incorporated by monocytes, lowering the effect on lymphocyte populations | / | / | Di Trapani et al. [ |
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| BM-MSCs | Hepatocellular carcinoma, ovarian cancer, Kaposi's sarcoma | Induce in vitro cell cycle arrest and apoptosis or necrosis of different tumor cell lines and in vivo inhibit growth of established tumors | / | / | Bruno et al. [ |
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| BM-MSCs | Breast cancer | Induce dormant phenotypes through the suppression of a target gene, MARCKS, which encodes a protein that promotes cell cycling and motility | miR-23b | / | Ono et al. [ |
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| hucMSCs | Hepatitis C virus (HCV) | Suppress HCV RNA replication | let-7f, miR-145, miR-199a, and miR-221 | / | Qian et al. [ |
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| BM-MSCs | Osteosarcoma | Suppress the migration of the 143B osteosarcoma cell line | miR-143 | Transfection | Shimbo et al. [ |
Clinical trials of exosome–based therapies.
| Study title | Disease | Intervention | Phase | NCT |
|---|---|---|---|---|
| Effect of plasma-derived exosomes on intractable cutaneous wound healing: prospective trial | Ulcer | Autologous exosomes | Early phase 1 | NCT02565264 |
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| Study investigating the ability of plant exosomes to deliver curcumin to normal and colon cancer tissue | Colon cancer | Curcumin delivery by exosomes | Phase 1 | NCT01294072 |
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| Effect of microvesicles and exosomes therapy on | Type I diabetes mellitus | Umbilical cord blood-derived MSC microvesicles | Phase 2 | NCT02138331 |
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| Preliminary clinical trial investigating the ability of plant exosomes to abrogate oral mucositis induced by combined chemotherapy and radiation in head and neck cancer patients | Head and neck cancer | Dietary Supplement: grape extract | Phase 1 | NCT01668849 |
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| Pilot study of metformin in head and neck cancer and its effect on proinflammatory cytokines and exosomes implicated in acute and chronic toxicity | Head and neck cancer | Radiation: external beam radiation therapy | Early phase 1 | NCT03109873 |
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| Phase II trial of a vaccination with tumor antigen-loaded dendritic cell-derived exosomes on patients with unresectable non-small-cell lung cancer responding to induction chemotherapy | Non-small-cell lung cancer | Tumor antigen-loaded dendritic cell-derived exosomes | Phase 2 | NCT01159288 |
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| Clinical trial of tumor cell-derived microparticles packaging chemotherapeutic drugs to treat malignant pleural effusion | Malignant pleural effusion | Biological: tumor-derived microparticles | Phase 2 | NCT02657460 |