Copyright
©The Author(s) 2020.
World J Stem Cells. Feb 26, 2020; 12(2): 100-109
Published online Feb 26, 2020. doi: 10.4252/wjsc.v12.i2.100
Published online Feb 26, 2020. doi: 10.4252/wjsc.v12.i2.100
In vitro study | In vivo study (animal model / clinical use) | Results | Ref. | |
Liver disease | + | Liver injury model (Rat) | Improves liver regeneration and recovery | Damania et al[23], 2018 |
Liver disease | + | Liver fibrosis model (Rat) | Reduces liver fibrosis | Rong et al[24], 2019 |
Intervertebral disc degeneration | - | Tail model (Rat) | Prevents disc degeneration progression | Liao et al[25], 2019 |
Intervertebral disc degeneration | + | IDD model (Rabbit) | Prevents the progression of degeneration via anti-oxidant and anti-inflammatory effects | Xia et al[26], 2019 |
Cancer | + | Xenografted with glioblastoma cells (Nude mice) | Improves glioblastoma | Wang et al[27], 2019 |
Cancer | + | Pancreatic cancer cells xenografted (Nude mice) | Inhibits cancer development | Wu et al[28], 2019 |
Bone regeneration | + | Calvarian defect (Rat) | Promotes bone regeneration and neovascularization | Zhu et al[30], 2019 |
Graft vs host disease | + | GvHD model (Mouse) | Enhances Treg production in vitro and in vivo | Zhang et al[34], 2018 |
Graft vs host disease | + | GvHD model (Mouse) | Ameliorates aGvHD via the therapeutic infusion of BM MSC-Ex | Fuji et al[33], 2018 |
Graft vs host disease | - | Clinical patient | Patient stable for several months after exosome application | Kordelas et al[32], 2014 |
Condition | In vitro study | In vivo study (animal model / clinical use) | Results | Ref. |
Atopic dermatitis | - | Atopic dermatitis model (Mouse) | Reduces clinical symptoms | Cho et al[35], 2018 |
Acute cutaneous wound healing | - | Acute cutaneous wound healing (Nude mice) | Promotes fibroblast activities, re-epithelialization, vascularization in wound healing | Liu et al[36], 2019 |
Wound healing | + | Mouse full-thickness incision wound model | Accelerates wound healing by optimizing fibroblast function | Zhang et al[37], 2018 |
Corneal stromal cells | + | - | Role of ASC-Ex in corneal stromal cell and extra cellular matrix remodeling | Shen et al[38], 2018 |
Apoptosis in cardiomyocyte caused by oxidative stress | + | - | Prevents apoptosis | Liu et al[39], 2019 |
Ovarian cancer | + | - | Ovarian cancer cells inhibited by exosomes | Reza et al[40], 2016 |
Neural injury | + | - | Could inhibit the activation of microglia cells and prevent neuroinflammation | Feng et al[41], 2019 |
Condition | In vitro study | In vivo study (animal model / clinical use) | Results | Ref. |
Cutaneous wound healing | + | Wound model (Rat) | Proangiogenic effect | Zhang et al[42], 2015 |
Bone healing | + | Femoral fracture model (Rat) | Accelerated fracture healing via the promotion of angiogenesis | Zhang et al[43], 2019 |
Bone healing | - | Fracture model (Rat) | Repairs fractures in rats through the Wnt signaling pathway | Zhou et al[44], 2019 |
Inflammatory bowel disease | + | Inflammatory bowel disease model (Mouse) | Alleviates induced inflammatory bowel disease | Mao et al[45], 2017 |
Acute liver failure | + | Liver injury model (Mouse) | Decreases acute liver failure in that model | Jiang et al[49], 2019 |
Colitis | + | Colitis model (Mouse) | Improves colon damage in an animal disease model and has immunosuppressive effects in vitro | Ma et al[46], 2019 |
Autoimmune uveitis | + | Autoimmune uveitis model (Rat) | Ameliorates autoimmune uveitis by inhibiting the migration of inflammatory cells | Bai et al[47], 2017 |
Idiopathic macular hole | - | Clinical patients (5) | May improve anatomic and visual outcomes of surgery for that disease | Zhang et al[48], 2018 |
Myocardial infarction | + | Myocardial infarction model (Rat) | UcMSC-Ex encapsulated in a functional peptide hydrogel could be effective for cardiac regeneration | Han et al[50], 2019 |
- Citation: Álvarez-Viejo M. Mesenchymal stem cells from different sources and their derived exosomes: A pre-clinical perspective. World J Stem Cells 2020; 12(2): 100-109
- URL: https://www.wjgnet.com/1948-0210/full/v12/i2/100.htm
- DOI: https://dx.doi.org/10.4252/wjsc.v12.i2.100