Microglia-specific IL-10 gene delivery inhibits neuroinflammation and neurodegeneration in a mouse model of Parkinson’s disease

Author:

Bido Simone1ORCID,Nannoni Melania1,Muggeo Sharon1ORCID,Gambarè Diana1,Ruffini Giorgia1ORCID,Bellini Edoardo1ORCID,Passeri Laura2,Iaia Silvia2ORCID,Luoni Mirko13,Provinciali Martino1ORCID,Giannelli Serena Gea1ORCID,Giannese Francesca4ORCID,Lazarevic Dejan4ORCID,Gregori Silvia2ORCID,Broccoli Vania13ORCID

Affiliation:

1. Stem Cell and Neurogenesis Unit, Division of Neuroscience, IRCCS San Raffaele Scientific Institute, 20132 Milan, Italy.

2. San Raffaele Telethon Institute for Gene Therapy (SR-TIGET), IRCCS San Raffaele Scientific Institute, 20132 Milan, Italy.

3. CNR Institute of Neuroscience, 20129 Milan, Italy.

4. Center for Omics Sciences, IRCCS San Raffaele Scientific Institute, 20132 Milan, Italy.

Abstract

Neuroinflammation plays a key role in exacerbating dopaminergic neuron (DAN) loss in Parkinson’s disease (PD). However, it remains unresolved how to effectively normalize this immune response given the complex interplay between the innate and adaptive immune responses occurring within a scarcely accessible organ like the brain. In this study, we uncovered a consistent correlation between neuroinflammation, brain parenchymal lymphocytes, and DAN loss among several commonly used mouse models of PD generated by a variety of pathological triggers. We validated a viral therapeutic approach for the microglia-specific expression of interleukin 10 (IL-10) to selectively mitigate the excessive inflammatory response. We found that this approach induced a local nigral IL-10 release that alleviated DAN loss in mice overexpressing the human SNCA gene in the substantia nigra. Single-cell transcriptomics revealed that IL-10 induced the emergence of a molecularly distinct microglial cell state, enriched in markers of cell activation with enhanced expression of prophagocytic pathways. IL-10 promoted microglial phagocytotic and clearance activities in vitro and reduced αSYN aggregate burden in the nigral area in mice overexpressing SNCA . Furthermore, IL-10 stimulated the differentiation of CD4 + T lymphocytes into active T regulatory cells and promoted inhibitory characteristics in CD8 + T cells. In summary, our results show that local and microglia-specific IL-10 transduction elicited strong immunomodulation in the nigral tissue with enhanced suppression of lymphocyte toxicity that was associated with DAN survival. These results offer insights into the therapeutic benefits of IL-10 and showcase a promising gene delivery approach that could minimize undesired side effects.

Publisher

American Association for the Advancement of Science (AAAS)

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