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Lithium-mediated protection of hippocampal cells involves enhancement of DNA-PK–dependent repair in mice
Eddy S. Yang, Hong Wang, Guochun Jiang, Somaira Nowsheen, Allie Fu, Dennis E. Hallahan, Fen Xia
Eddy S. Yang, Hong Wang, Guochun Jiang, Somaira Nowsheen, Allie Fu, Dennis E. Hallahan, Fen Xia
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Research Article Neuroscience

Lithium-mediated protection of hippocampal cells involves enhancement of DNA-PK–dependent repair in mice

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Abstract

Long-term neurological deficiencies resulting from hippocampal cytotoxicity induced by cranial irradiation (IR) present a challenge in the treatment of primary and metastatic brain cancers, especially in children. Previously, we showed that lithium protected hippocampal neurons from IR-induced apoptosis and improved neurocognitive function in treated mice. Here, we demonstrate accelerated repair of IR-induced chromosomal double-strand breaks (DSBs) in lithium-treated neurons. Lithium treatment not only increased IR-induced DNA-dependent protein kinase (DNA-PK) threonine 2609 foci, a surrogate marker for activated nonhomologous end-joining (NHEJ) repair, but also enhanced double-strand DNA end-rejoining activity in hippocampal neurons. The increased NHEJ repair coincided with reduced numbers of IR-induced γ-H2AX foci, well-characterized in situ markers of DSBs. These findings were confirmed in vivo in irradiated mice. Consistent with a role of NHEJ repair in lithium-mediated neuroprotection, attenuation of IR-induced apoptosis of hippocampal neurons by lithium was dramatically abrogated when DNA-PK function was abolished genetically in SCID mice or inhibited biochemically by the DNA-PK inhibitor IC86621. Importantly, none of these findings were evident in glioma cancer cells. These results support our hypothesis that lithium protects hippocampal neurons by promoting the NHEJ repair–mediated DNA repair pathway and warrant future investigation of lithium-mediated neuroprotection during cranial IR, especially in the pediatric population.

Authors

Eddy S. Yang, Hong Wang, Guochun Jiang, Somaira Nowsheen, Allie Fu, Dennis E. Hallahan, Fen Xia

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Figure 6

Lithium-mediated effects in C57BL/6J mice.

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Lithium-mediated effects in C57BL/6J mice.
(A) Representative H&E-st...
(A) Representative H&E-stained hippocampal tissue section. Original magnification, ×100. (B–D) Foci immunofluorescence in irradiated mice with or without lithium prophylaxis. Mice were given 40 mg/kg lithium via i.p. injection beginning on P7 for 7 days. Following the prophylactic treatment period, mice were exposed to 3 Gy. At the indicated times, mouse hippocampal tissue was processed for immunofluorescence staining for (B) γ-H2AX, indicative of DSBs, (C) DNA-PK T2609, indicative of active NHEJ repair, or (D) Rad51, indicative of active HR repair. Data (mean ± SEM) show the percentage of cells containing greater than 10 foci. For each foci analysis, 5 sections per mouse from a total of 5 mice were used. The upper panels show representative corresponding foci immunofluorescence staining in irradiated mice. Arrows indicate cells with foci. Original magnification, ×400. *P < 0.05, ***P < 0.001 versus control.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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