TY - JOUR
T1 - Carbon ion irradiated neural injury induced the peripheral immune effects in vitro or in vivo
AU - Lei, Runhong
AU - Zhao, Tuo
AU - Li, Qiang
AU - Wang, Xiao
AU - Ma, Hong
AU - Deng, Yulin
N1 - Publisher Copyright:
© 2015 by the authors; licensee MDPI, Basel, Switzerland.
PY - 2015/11/30
Y1 - 2015/11/30
N2 - Carbon ion radiation is a promising treatment for brain cancer; however, the immune system involved long-term systemic effects evoke a concern of complementary and alternative therapies in clinical treatment. To clarify radiotherapy caused fundamental changes in peripheral immune system, examinations were performed based on established models in vitro and in vivo. We found that brain-localized carbon ion radiation of neural cells induced complex changes in the peripheral blood, thymus, and spleen at one, two, and three months after its application. Atrophy, apoptosis, and abnormal T-cell distributions were observed in rats receiving a single high dose of radiation. Radiation downregulated the expression of proteins involved in T-cell development at the transcriptional level and increased the proportion of CD3+CD4-CD8+ T-cells in the thymus and the proportion of CD3+CD4+CD8- T-cells in the spleen. These data show that brain irradiation severely affects the peripheral immune system, even at relatively long times after irradiation. In addition, they provide valuable information that will implement the design of biological-based strategies that will aid brain cancer patients suffering from the long-term side effects of radiation.
AB - Carbon ion radiation is a promising treatment for brain cancer; however, the immune system involved long-term systemic effects evoke a concern of complementary and alternative therapies in clinical treatment. To clarify radiotherapy caused fundamental changes in peripheral immune system, examinations were performed based on established models in vitro and in vivo. We found that brain-localized carbon ion radiation of neural cells induced complex changes in the peripheral blood, thymus, and spleen at one, two, and three months after its application. Atrophy, apoptosis, and abnormal T-cell distributions were observed in rats receiving a single high dose of radiation. Radiation downregulated the expression of proteins involved in T-cell development at the transcriptional level and increased the proportion of CD3+CD4-CD8+ T-cells in the thymus and the proportion of CD3+CD4+CD8- T-cells in the spleen. These data show that brain irradiation severely affects the peripheral immune system, even at relatively long times after irradiation. In addition, they provide valuable information that will implement the design of biological-based strategies that will aid brain cancer patients suffering from the long-term side effects of radiation.
KW - Carbon ions
KW - Neural injury
KW - Peripheral immune system
KW - Side effects
KW - T-cell development
UR - http://www.scopus.com/inward/record.url?scp=84949009057&partnerID=8YFLogxK
U2 - 10.3390/ijms161226109
DO - 10.3390/ijms161226109
M3 - Article
C2 - 26633364
AN - SCOPUS:84949009057
SN - 1661-6596
VL - 16
SP - 28334
EP - 28346
JO - International Journal of Molecular Sciences
JF - International Journal of Molecular Sciences
IS - 12
ER -