Brain injury accelerates the onset of a reversible age-related microglial phenotype associated with inflammatory neurodegeneration

Author:

Ritzel Rodney M.1ORCID,Li Yun1ORCID,Jiao Yun2ORCID,Lei Zhuofan1ORCID,Doran Sarah J.1,He Junyun1,Shahror Rami A.1,Henry Rebecca J.1,Khan Romeesa3ORCID,Tan Chunfeng3ORCID,Liu Shaolin4,Stoica Bogdan A.1ORCID,Faden Alan I.15,Szeto Gregory26ORCID,Loane David J.17ORCID,Wu Junfang15ORCID

Affiliation:

1. Department of Anesthesiology and Shock, Trauma and Anesthesiology Research (STAR) Center, University of Maryland School of Medicine, Baltimore, MD 21201, USA.

2. Department of Chemical, Biochemical, and Environmental Engineering, University of Maryland, Baltimore, MD 21250, USA.

3. Department of Neurology, McGovern Medical School, University of Texas Health Science Center at Houston, 6431 Fannin Street, Houston, TX 77370, USA.

4. Department of Anatomy, Howard University, Washington, DC 20059, USA.

5. University of Maryland Center to Advance Chronic Pain Research, University of Maryland, Baltimore, MD 21201, USA.

6. Allen Institute for Immunology and Department of Pediatrics, University of Washington, Seattle, WA 98109, USA.

7. School of Biochemistry and Immunology, Trinity Biomedical Sciences Institute, Trinity College, Dublin, Ireland.

Abstract

Lipofuscin is an autofluorescent (AF) pigment formed by lipids and misfolded proteins, which accumulates in postmitotic cells with advanced age. Here, we immunophenotyped microglia in the brain of old C57BL/6 mice (>18 months old) and demonstrate that in comparison to young mice, one-third of old microglia are AF, characterized by profound changes in lipid and iron content, phagocytic activity, and oxidative stress. Pharmacological depletion of microglia in old mice eliminated the AF microglia following repopulation and reversed microglial dysfunction. Age-related neurological deficits and neurodegeneration after traumatic brain injury (TBI) were attenuated in old mice lacking AF microglia. Furthermore, increased phagocytic activity, lysosomal burden, and lipid accumulation in microglia persisted for up to 1 year after TBI, were modified by APOE4 genotype, and chronically driven by phagocyte-mediated oxidative stress. Thus, AF may reflect a pathological state in aging microglia associated with increased phagocytosis of neurons and myelin and inflammatory neurodegeneration that can be further accelerated by TBI.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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