4.6 Article

Hippocampal expression of murine IL-4 results in exacerbation of amyloid deposition

期刊

MOLECULAR NEURODEGENERATION
卷 7, 期 -, 页码 -

出版社

BMC
DOI: 10.1186/1750-1326-7-36

关键词

Interleukin 4; Inflammation; Adeno-associated virus; Hippocampus; Amyloid plaque; Amyloid precursor protein

资金

  1. Mayo Clinic
  2. National Institutes of Health/National Institute on Aging Grants [RO1AG18454, RO1AG29886, P01AG25531]
  3. American Health Assistance Foundation Grant [A2009061]

向作者/读者索取更多资源

Background: Pro-inflammatory stimuli, including cytokines like Interleukin-1 beta, Interleukin-6 and Interferon-gamma, in the brain have been proposed to exacerbate existing Alzheimer's disease (AD) neuropathology by increasing amyloidogenic processing of APP and promoting further A beta accumulation in AD. On the other hand, anti-inflammatory cytokines have been suggested to be neuroprotective by reducing neuroinflammation and clearing A beta. To test this hypothesis, we used adeno-associated virus serotype 1 (AAV2/1) to express an anti-inflammatory cytokine, murine Interleukin-4 (mIL-4), in the hippocampus of APP transgenic TgCRND8 mice with pre-existing plaques. Results: mIL-4 expression resulted in establishment of an M2-like phenotype in the brain and was accompanied by exacerbated A beta deposition in TgCRND8 mice brains. No change in holo APP or APP C terminal fragment or phosphorylated tau levels were detected in mIL-4 expressing CRND8 cohorts. Biochemical analysis shows increases in both SDS soluble and insoluble A beta. mIL-4 treatment attenuates soluble A beta 40 uptake by microglia but does not affect aggregated A beta 42 internalization by microglia or soluble A beta 40 internalization by astrocytes. Conclusions: Short term focal mIL-4 expression in the hippocampus leads to exacerbation of amyloid deposition in vivo, possibly mediated by acute suppression of glial clearance mechanisms. Given that recent preclinical data from independent groups indicate engagement of the innate immune system early on during disease pathogenesis may be beneficial, our present study strongly argues for a cautious re-examination of unwarranted side-effects of anti-inflammatory therapies for neurodegenerative diseases, including AD.

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