Page 100 - GPD-3-2
P. 100

Gene & Protein in Disease                                          A review of exosome-mediated treatments



            88.  Perut F, Roncuzzi L, Avnet S,  et  al. Strawberry-derived   99.  Karin M, Clevers H. Reparative inflammation takes charge
               exosome-like nanoparticles prevent oxidative  stress   of tissue regeneration. Nature. 2016;529(7586):307-315.
               in human mesenchymal stromal cells.  Biomolecules.      doi: 10.1038/nature17039
               2021;11(1):87.
                                                               100. Kahroba H, Davatgaran-Taghipour Y. Exosomal Nrf2: From
               doi: 10.3390/biom11010087
                                                                  anti-oxidant and anti-inflammation response to wound
            89.  Zhang M, Viennois E, Prasad M,  et al. Edible ginger-  healing and tissue regeneration in aged-related diseases.
               derived nanoparticles: A novel therapeutic approach for   Biochimie. 2020;171-172:103-109.
               the  prevention  and treatment  of inflammatory  bowel
               disease  and colitis-associated  cancer.  Biomaterials.      doi: 10.1016/j.biochi.2020.02.011
               2016;101:321-340.                               101. Kim MK, Choi YC, Cho SH, Choi JS, Cho YW. The
                                                                  antioxidant effect of small extracellular vesicles derived
               doi: 10.1016/j.biomaterials.2016.06.018
                                                                  from Aloe vera peels for wound healing. Tissue Eng Regen
            90.  Wang B, Zhuang X, Deng ZB, et al. Targeted drug delivery   Med. 2021;18(4):561-571.
               to intestinal macrophages by bioactive nanovesicles released
               from grapefruit. Mol Ther. Mar 2014;22(3):522-534.     doi: 10.1007/s13770-021-00367-8
               doi: 10.1038/mt.2013.190                        102. Sall IM, Flaviu TA. Plant and mammalian-derived
                                                                  extracellular vesicles: A new therapeutic approach for the
            91.  Cao M, Yan H, Han X, et al. Ginseng-derived nanoparticles   future. Front Bioeng Biotechnol. 2023;11:1215650.
               alter macrophage polarization to inhibit melanoma growth.
               J Immunother Cancer. 2019;7(1):326.                doi: 10.3389/fbioe.2023.1215650
               doi: 10.1186/s40425-019-0817-4                  103. Wang Q, Zhuang X, Mu J,  et al. Delivery of therapeutic
                                                                  agents by nanoparticles made of grapefruit-derived lipids.
            92.  Karamanidou T, Tsouknidas A. Plant-derived extracellular   Nat Commun. 2013;4:1867.
               vesicles as therapeutic nanocarriers.  Int  J  Mol  Sci.
               2021;23(1):191.                                    doi: 10.1038/ncomms2886
               doi: 10.3390/ijms23010191                       104. Di Gioia S, Hossain MN, Conese M. Biological properties
                                                                  and therapeutic effects of plant-derived nanovesicles. Open
            93.  Kim J, Li S, Zhang S, Wang J. Plant-derived exosome-like   Med (Wars). 2020;15(1):1096-1122.
               nanoparticles and their therapeutic activities. Asian J Pharm
               Sci. 2022;17(1):53-69.                             doi: 10.1515/med-2020-0160
               doi: 10.1016/j.ajps.2021.05.006                 105. Meng W, He C, Hao Y, Wang L, Li L, Zhu G. Prospects and
                                                                  challenges of extracellular vesicle-based drug delivery system:
            94.  Ding Y, Wang J, Chun Lai JH, et al. Exo70E2 is essential for   Considering cell source. Drug Deliv. 2020;27(1):585-598.
               exocyst subunit recruitment and EXPO formation in both
               plants and animals. Mol Biol Cell. 2014;25(3):412-426.     doi: 10.1080/10717544.2020.1748758
               doi: 10.1091/mbc.E13-10-0586                    106. Chen H, Wang L, Zeng X, et al. Exosomes, a new star for
                                                                  targeted delivery. Front Cell Dev Biol. 2021;9:751079.
            95.  András IE, Toborek M. Extracellular vesicles of the blood-
               brain barrier. Tissue Barriers. 2016;4(1):e1131804.     doi: 10.3389/fcell.2021.751079
               doi: 10.1080/21688370.2015.1131804              107. Garaeva L, Kamyshinsky R, Kil Y, et al. Delivery of functional
                                                                  exogenous proteins by plant-derived vesicles to human cells
            96.  Rohde E, Pachler K, Gimona M. Manufacturing and   in vitro. Sci Rep. 2021;11(1):6489.
               characterization  of  extracellular  vesicles  from  umbilical
               cord-derived mesenchymal stromal cells for clinical testing.      doi: 10.1038/s41598-021-85833-y
               Cytotherapy. 2019;21(6):581-592.                108. Wang Y, Wang J, Ma J, Zhou Y, Lu R. Focusing on
               doi: 10.1016/j.jcyt.2018.12.006                    future applications and current challenges of plant
                                                                  derived extracellular vesicles.  Pharmaceuticals  (Basel).
            97.  Logozzi M, Di Raimo R, Mizzoni D, Fais S. The potentiality of   2022;15(6):708.
               plant-derived nanovesicles in human health-A comparison
               with human exosomes and artificial nanoparticles. Int J Mol      doi: 10.3390/ph15060708
               Sci. 2022;23(9):4919.                           109. Zhu YG, Shi MM, Monsel A,  et al. Nebulized exosomes
               doi: 10.3390/ijms23094919                          derived from allogenic adipose tissue mesenchymal stromal
                                                                  cells in patients with severe COVID-19: A pilot study. Stem
            98.  Shafi S, Ansari HR, Bahitham W, Aouabdi S. The impact
               of natural antioxidants on the regenerative potential of   Cell Res Ther. 2022;13(1):220.
               vascular cells. Front Cardiovasc Med. 2019;6:28.     doi: 10.1186/s13287-022-02900-5
               doi: 10.3389/fcvm.2019.00028                    110. Sengupta V, Sengupta S, Lazo A, Woods P, Nolan A, Bremer


            Volume 3 Issue 2 (2024)                         16                              doi: 10.36922/gpd.3230
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