Extracellular Vesicle-Derived miR-124 Resolves Radiation-Induced Brain Injury

被引:38
作者
Leavitt, Ron J. [1 ]
Acharya, Munjal M. [1 ]
Baulch, Janet E. [1 ]
Limoli, Charles L. [1 ]
机构
[1] Univ Calif Irvine, Dept Radiat Oncol, Irvine, CA 92697 USA
关键词
STEM-CELL TRANSPLANTATION; INDUCED COGNITIVE IMPAIRMENT; MESENCHYMAL STROMAL CELLS; NEUROVASCULAR PLASTICITY; CRANIAL TRANSPLANTATION; FUNCTIONAL RECOVERY; EXOSOMES; MICROGLIA; INFLAMMATION; CONTRIBUTES;
D O I
10.1158/0008-5472.CAN-20-1599
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Radiation-induced cognitive dysfunction (RICD) is a progressive and debilitating health issue facing patients following cranial radiotherapy to control central nervous system cancers. There has been some success treating RICD in rodents using human neural stem cell (hNSC) transplantation, but the procedure is invasive, requires immunosuppression, and could cause other complications such as teratoma formation. Extracellular vesicles (EV) are nanoscale membrane-bound structures that contain biological contents including mRNA, miRNA, proteins, and lipids that can be readily isolated from conditioned culture media. It has been previously shown that hNSC-derived EV resolves RICD following cranial irradiation using an immuno-compromised rodent model. Here, we use immunocompetent wild-type mice to show that hNSC-derived EV treatment administered either intravenously via retro-orbital vein injection or via intracranial transplantation can ameliorate cognitive deficits following 9 Gy head-only irradiation. Cognitive function assessed on the novel place recognition, novel object recognition, and temporal order tasks was not only improved at early (5 weeks) but also at delayed (6 months) postirradiation times with just a single EV treatment. Improved behavioral outcomes were also associated with reduced neuroinflammation as measured by a reduction in activated microglia. To identify the mechanism of action, analysis of EV cargo implicated miRNA (miR-124) as a potential candidate in the mitigation of RICD. Furthermore, viral vector-mediated overexpression of miR-124 in the irradiated brain ameliorated RICD and reduced microglial activation. Our findings demonstrate for the first time that systemic administration of hNSC-derived EV abrogates RICD and neuroinflammation in cranially irradiated wild-type rodents through a mechanism involving miR-124. Significance: Radiation-induced neurocognitive decrements in immunocompetent mice can be resolved by systemic delivery of hNSC-derived EVs involving a mechanism dependent on expression of miR-124.
引用
收藏
页码:4266 / 4277
页数:12
相关论文
共 64 条
  • [1] Pathogenesis of irradiation-induced cognitive dysfunction
    Abayomi, OK
    [J]. ACTA ONCOLOGICA, 1996, 35 (06) : 659 - 663
  • [2] New concerns for neurocognitive function during deep space exposures to chronic, low dose rate, neutron radiation
    Acharya, M. M.
    Baulch, J. E.
    Kleine, P. M.
    Baddour, A. A. D.
    Apodaca, L. A.
    Kramar, E. A.
    Alikhani, L.
    Garcia, C., Jr.
    Angulo, M. C.
    Batra, R. S.
    Fallgren, C. M.
    Borak, T. B.
    Stark, C. E. L.
    Wood, M. A.
    Britten, R. A.
    Soltesz, I
    Limoli, C. L.
    [J]. ENEURO, 2019, 6 (04)
  • [3] Elimination of microglia improves cognitive function following cranial irradiation
    Acharya, Munjal M.
    Green, Kim N.
    Allen, Barrett D.
    Najafi, Allison R.
    Syage, Amber
    Minasyan, Harutyun
    Le, Mi T.
    Kawashita, Takumi
    Giedzinski, Erich
    Parihar, Vipan K.
    West, Brian L.
    Baulch, Janet E.
    Limoli, Charles L.
    [J]. SCIENTIFIC REPORTS, 2016, 6
  • [4] Human Neural Stem Cell Transplantation Provides Long-Term Restoration of Neuronal Plasticity in the Irradiated Hippocampus
    Acharya, Munjal M.
    Rosi, Susanna
    Jopson, Timothy
    Limoli, Charles L.
    [J]. CELL TRANSPLANTATION, 2015, 24 (04) : 691 - 702
  • [5] Defining the Optimal Window for Cranial Transplantation of Human Induced Pluripotent Stem Cell-Derived Cells to Ameliorate Radiation-Induced Cognitive Impairment
    Acharya, Munjal M.
    Martirosian, Vahan
    Christie, Lori-Ann
    Riparip, Lara
    Strnadel, Jan
    Parihar, Vipan K.
    Limoli, Charles L.
    [J]. STEM CELLS TRANSLATIONAL MEDICINE, 2015, 4 (01) : 74 - 83
  • [6] Long-term cognitive effects of human stem cell transplantation in the irradiated brain
    Acharya, Munjal M.
    Martirosian, Vahan
    Christie, Lori-Ann
    Limoli, Charles L.
    [J]. INTERNATIONAL JOURNAL OF RADIATION BIOLOGY, 2014, 90 (09) : 816 - 820
  • [7] Human Neural Stem Cell Transplantation Ameliorates Radiation-Induced Cognitive Dysfunction
    Acharya, Munjal M.
    Christie, Lori-Ann
    Lan, Mary L.
    Giedzinski, Erich
    Fike, John R.
    Rosi, Susanna
    Limoli, Charles L.
    [J]. CANCER RESEARCH, 2011, 71 (14) : 4834 - 4845
  • [8] Consequences of ionizing radiation-induced damage in human neural stem cells
    Acharya, Munjal M.
    Lan, Mary L.
    Kan, Vickie H.
    Patel, Neal H.
    Giedzinski, Erich
    Tseng, Bertrand P.
    Limoli, Charles L.
    [J]. FREE RADICAL BIOLOGY AND MEDICINE, 2010, 49 (12) : 1846 - 1855
  • [9] Rescue of radiation-induced cognitive impairment through cranial transplantation of human embryonic stem cells
    Acharya, Munjal M.
    Christie, Lori-Ann
    Lan, Mary L.
    Donovan, Peter J.
    Cotman, Carl W.
    Fike, John R.
    Limoli, Charles L.
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2009, 106 (45) : 19150 - 19155
  • [10] Remediation of Radiation-Induced Cognitive Dysfunction through Oral Administration of the Neuroprotective Compound NSI-189
    Allen, Barrett D.
    Acharya, Munjal M.
    Lu, Celine
    Giedzinski, Erich
    Chmielewski, Nicole N.
    Quach, David
    Hefferan, Mike
    Johe, Karl K.
    Limoli, Charles L.
    [J]. RADIATION RESEARCH, 2018, 189 (04) : 345 - 353