AIMS: Redox homeostasis is critical in regulating the fate and function of multipotent cells in the central nervous system (CNS). Here, we investigated whether low dose charged particle irradiation could elicit oxidative stress in neural stem and precursor cells and whether radiation-induced changes in redox metabolism would coincide with cognitive impairment. RESULTS: Low doses (<1 Gy) of charged particles caused an acute and persistent oxidative stress. Early after (<1 week) irradiation, increased levels of reactive oxygen and nitrogen species were generally dose responsive, but were less dependent on dose weeks to months thereafter. Exposure to ion fluences resulting in less than one ion traversal per cell was sufficient to elicit radiation-induced oxidative stress. Whole body irradiation triggered a compensatory response in the rodent brain that led to a significant increase in antioxidant capacity 2 weeks following exposure, before returning to background levels at week 4. Low dose irradiation was also found to significantly impair novel object recognition in mice 2 and 12 weeks following irradiation. INNOVATION: Data provide evidence that acute exposure of neural stem cells and the CNS to very low doses and fluences of charged particles can elicit a persisting oxidative stress lasting weeks to months that is associated with impaired cognition. CONCLUSIONS: Exposure to low doses of charged particles causes a persistent oxidative stress and cognitive impairment over protracted times. Data suggest that astronauts subjected to space radiation may develop a heightened risk for mission critical performance decrements in space, along with a risk of developing long-term neurocognitive sequelae.
AIMS: Redox homeostasis is critical in regulating the fate and function of multipotent cells in the central nervous system (CNS). Here, we investigated whether low dose charged particle irradiation could elicit oxidative stress in neural stem and precursor cells and whether radiation-induced changes in redox metabolism would coincide with cognitive impairment. RESULTS: Low doses (<1 Gy) of charged particles caused an acute and persistent oxidative stress. Early after (<1 week) irradiation, increased levels of reactive oxygen and nitrogen species were generally dose responsive, but were less dependent on dose weeks to months thereafter. Exposure to ion fluences resulting in less than one ion traversal per cell was sufficient to elicit radiation-induced oxidative stress. Whole body irradiation triggered a compensatory response in the rodent brain that led to a significant increase in antioxidant capacity 2 weeks following exposure, before returning to background levels at week 4. Low dose irradiation was also found to significantly impair novel object recognition in mice 2 and 12 weeks following irradiation. INNOVATION: Data provide evidence that acute exposure of neural stem cells and the CNS to very low doses and fluences of charged particles can elicit a persisting oxidative stress lasting weeks to months that is associated with impaired cognition. CONCLUSIONS: Exposure to low doses of charged particles causes a persistent oxidative stress and cognitive impairment over protracted times. Data suggest that astronauts subjected to space radiation may develop a heightened risk for mission critical performance decrements in space, along with a risk of developing long-term neurocognitive sequelae.
Authors: Juan M Encinas; Marcelo E Vazquez; Robert C Switzer; Dennis W Chamberland; Harry Nick; Howard G Levine; Philip J Scarpa; Grigori Enikolopov; Dennis A Steindler Journal: Exp Neurol Date: 2007-11-17 Impact factor: 5.330
Authors: Radoslaw Rola; Kelly Fishman; Jennifer Baure; Susanna Rosi; Kathleen R Lamborn; Andre Obenaus; Gregory A Nelson; John R Fike Journal: Radiat Res Date: 2008-06 Impact factor: 2.841
Authors: Disha Dayal; Sean M Martin; Kjerstin M Owens; Nukhet Aykin-Burns; Yueming Zhu; Amutha Boominathan; Debkumar Pain; Charles L Limoli; Prabhat C Goswami; Frederick E Domann; Douglas R Spitz Journal: Radiat Res Date: 2009-12 Impact factor: 2.841
Authors: Kelly Fishman; Jennifer Baure; Yani Zou; Ting-Ting Huang; Marta Andres-Mach; Radoslaw Rola; Tatiana Suarez; Munjal Acharya; Charles L Limoli; Kathleen R Lamborn; John R Fike Journal: Free Radic Biol Med Date: 2009-08-22 Impact factor: 7.376
Authors: Erina Vlashi; Kwanghee Kim; Chann Lagadec; Lorenza Della Donna; John Tyson McDonald; Mansoureh Eghbali; James W Sayre; Encrico Stefani; William McBride; Frank Pajonk Journal: J Natl Cancer Inst Date: 2009-02-24 Impact factor: 13.506
Authors: Deblina Dey; Vipan K Parihar; Gergely G Szabo; Peter M Klein; Jenny Tran; Jonathan Moayyad; Faizy Ahmed; Quynh-Anh Nguyen; Alexandria Murry; David Merriott; Brandon Nguyen; Jodi Goldman; Maria C Angulo; Daniele Piomelli; Ivan Soltesz; Janet E Baulch; Charles L Limoli Journal: Radiat Res Date: 2020-03-05 Impact factor: 2.841
Authors: Deepa M Sridharan; Aroumougame Asaithamby; Steve R Blattnig; Sylvain V Costes; Paul W Doetsch; William S Dynan; Philip Hahnfeldt; Lynn Hlatky; Yared Kidane; Amy Kronenberg; Mamta D Naidu; Leif E Peterson; Ianik Plante; Artem L Ponomarev; Janapriya Saha; Antoine M Snijders; Kalayarasan Srinivasan; Jonathan Tang; Erica Werner; Janice M Pluth Journal: Life Sci Space Res (Amst) Date: 2016-05-21
Authors: Vipan K Parihar; Junaid Pasha; Katherine K Tran; Brianna M Craver; Munjal M Acharya; Charles L Limoli Journal: Brain Struct Funct Date: 2014-01-21 Impact factor: 3.270
Authors: Munjal M Acharya; Vahan Martirosian; Nicole N Chmielewski; Nevine Hanna; Katherine K Tran; Alicia C Liao; Lori-Ann Christie; Vipan K Parihar; Charles L Limoli Journal: Cancer Res Date: 2015-02-15 Impact factor: 12.701
Authors: Joshua M Dewe; Benjamin L Fuller; Jenna M Lentini; Stefanie M Kellner; Dragony Fu Journal: Mol Cell Biol Date: 2017-10-13 Impact factor: 4.272
Authors: Elizabeth R Sharlow; Stephanie Leimgruber; Ana Lira; Michael J McConnell; Andrés Norambuena; George S Bloom; Michael W Epperly; Joel S Greenberger; John S Lazo Journal: ACS Chem Biol Date: 2016-03-14 Impact factor: 5.100