Sex- and region-biased depletion of microglia/macrophages attenuates CLN1 disease in mice
Abstract Background The neuronal ceroid lipofuscinoses (CLN diseases) are fatal lysosomal storage diseases causing neurodegeneration in the CNS. We have previously shown that neuroinflammation comprising innate and adaptive immune reactions drives axonal damage and neuron loss in the CNS of palmitoy...
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doaj-b8358bf282224f5fb998dc47e1719ab02020-11-25T03:44:05ZengBMCJournal of Neuroinflammation1742-20942020-10-0117111710.1186/s12974-020-01996-xSex- and region-biased depletion of microglia/macrophages attenuates CLN1 disease in miceKristina Berve0Brian L. West1Rudolf Martini2Janos Groh3Department of Neurology, Section of Developmental Neurobiology, University Hospital WürzburgPlexxikon Inc.Department of Neurology, Section of Developmental Neurobiology, University Hospital WürzburgDepartment of Neurology, Section of Developmental Neurobiology, University Hospital WürzburgAbstract Background The neuronal ceroid lipofuscinoses (CLN diseases) are fatal lysosomal storage diseases causing neurodegeneration in the CNS. We have previously shown that neuroinflammation comprising innate and adaptive immune reactions drives axonal damage and neuron loss in the CNS of palmitoyl protein thioesterase 1-deficient (Ppt1 −/−) mice, a model of the infantile form of the diseases (CLN1). Therefore, we here explore whether pharmacological targeting of innate immune cells modifies disease outcome in CLN1 mice. Methods We applied treatment with PLX3397 (150 ppm in the chow), a potent inhibitor of the colony stimulating factor-1 receptor (CSF-1R) to target innate immune cells in CLN1 mice. Experimental long-term treatment was non-invasively monitored by longitudinal optical coherence tomography and rotarod analysis, as well as analysis of visual acuity, myoclonic jerks, and survival. Treatment effects regarding neuroinflammation, neural damage, and neurodegeneration were subsequently analyzed by histology and immunohistochemistry. Results We show that PLX3397 treatment attenuates neuroinflammation in CLN1 mice by depleting pro-inflammatory microglia/macrophages. This leads to a reduction of T lymphocyte recruitment, an amelioration of axon damage and neuron loss in the retinotectal system, as well as reduced thinning of the inner retina and total brain atrophy. Accordingly, long-term treatment with the inhibitor also ameliorates clinical outcomes in CLN1 mice, such as impaired motor coordination, visual acuity, and myoclonic jerks. However, we detected a sex- and region-biased efficacy of CSF-1R inhibition, with male microglia/macrophages showing higher responsiveness toward depletion, especially in the gray matter of the CNS. This results in a better treatment outcome in male Ppt1 −/− mice regarding some histopathological and clinical readouts and reflects heterogeneity of innate immune reactions in the diseased CNS. Conclusions Our results demonstrate a detrimental impact of innate immune reactions in the CNS of CLN1 mice. These findings provide insights into CLN pathogenesis and may guide in the design of immunomodulatory treatment strategies.http://link.springer.com/article/10.1186/s12974-020-01996-xNeuronal ceroid lipofuscinosisMicrogliaMacrophagesT lymphocytesNeurodegenerationAxon degeneration |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kristina Berve Brian L. West Rudolf Martini Janos Groh |
spellingShingle |
Kristina Berve Brian L. West Rudolf Martini Janos Groh Sex- and region-biased depletion of microglia/macrophages attenuates CLN1 disease in mice Journal of Neuroinflammation Neuronal ceroid lipofuscinosis Microglia Macrophages T lymphocytes Neurodegeneration Axon degeneration |
author_facet |
Kristina Berve Brian L. West Rudolf Martini Janos Groh |
author_sort |
Kristina Berve |
title |
Sex- and region-biased depletion of microglia/macrophages attenuates CLN1 disease in mice |
title_short |
Sex- and region-biased depletion of microglia/macrophages attenuates CLN1 disease in mice |
title_full |
Sex- and region-biased depletion of microglia/macrophages attenuates CLN1 disease in mice |
title_fullStr |
Sex- and region-biased depletion of microglia/macrophages attenuates CLN1 disease in mice |
title_full_unstemmed |
Sex- and region-biased depletion of microglia/macrophages attenuates CLN1 disease in mice |
title_sort |
sex- and region-biased depletion of microglia/macrophages attenuates cln1 disease in mice |
publisher |
BMC |
series |
Journal of Neuroinflammation |
issn |
1742-2094 |
publishDate |
2020-10-01 |
description |
Abstract Background The neuronal ceroid lipofuscinoses (CLN diseases) are fatal lysosomal storage diseases causing neurodegeneration in the CNS. We have previously shown that neuroinflammation comprising innate and adaptive immune reactions drives axonal damage and neuron loss in the CNS of palmitoyl protein thioesterase 1-deficient (Ppt1 −/−) mice, a model of the infantile form of the diseases (CLN1). Therefore, we here explore whether pharmacological targeting of innate immune cells modifies disease outcome in CLN1 mice. Methods We applied treatment with PLX3397 (150 ppm in the chow), a potent inhibitor of the colony stimulating factor-1 receptor (CSF-1R) to target innate immune cells in CLN1 mice. Experimental long-term treatment was non-invasively monitored by longitudinal optical coherence tomography and rotarod analysis, as well as analysis of visual acuity, myoclonic jerks, and survival. Treatment effects regarding neuroinflammation, neural damage, and neurodegeneration were subsequently analyzed by histology and immunohistochemistry. Results We show that PLX3397 treatment attenuates neuroinflammation in CLN1 mice by depleting pro-inflammatory microglia/macrophages. This leads to a reduction of T lymphocyte recruitment, an amelioration of axon damage and neuron loss in the retinotectal system, as well as reduced thinning of the inner retina and total brain atrophy. Accordingly, long-term treatment with the inhibitor also ameliorates clinical outcomes in CLN1 mice, such as impaired motor coordination, visual acuity, and myoclonic jerks. However, we detected a sex- and region-biased efficacy of CSF-1R inhibition, with male microglia/macrophages showing higher responsiveness toward depletion, especially in the gray matter of the CNS. This results in a better treatment outcome in male Ppt1 −/− mice regarding some histopathological and clinical readouts and reflects heterogeneity of innate immune reactions in the diseased CNS. Conclusions Our results demonstrate a detrimental impact of innate immune reactions in the CNS of CLN1 mice. These findings provide insights into CLN pathogenesis and may guide in the design of immunomodulatory treatment strategies. |
topic |
Neuronal ceroid lipofuscinosis Microglia Macrophages T lymphocytes Neurodegeneration Axon degeneration |
url |
http://link.springer.com/article/10.1186/s12974-020-01996-x |
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