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Background: Retinitis pigmentosa is a rod-cone degenerative disease that induces irreversible vision loss. This study probed the protective capacity of mesenchymal stem cell-derived small EVs (MSC-EVs) on the retinas of rd10 mice and the underlying mechanism.
Methods: MSC-EVs were injected into the vitreous of rd10 mice at postnatal day 14 and P21; morphology and function were examined at P28. The mechanism of action was explored by using co-culture of photoreceptor cell line 661 W and microglia cell line BV2.
Results: Treatment with MSC-EVs increased the survival of photoreceptors and preserved their structure. Visual function, as reflected by optomotor and electroretinogram responses, was significantly enhanced in MSC-EVs-treated rd10 mice. Mechanistically, staining for Iba1, GFAP, F4/80, CD68 and CD206 showed that MSC-EVs suppressed the activation of microglial, Müller glial and macrophages. Furthermore, western blotting showed that the treatment inhibited the NF-κB pathway. RNA-seq and qPCR showed that MSC-EVs upregulated anti-inflammatory cytokines while downregulating pro-inflammatory cytokines. MSC-EVs application in vitro decreased the number of TUNEL-positive 661 W cells co-cultured with LPS-stimulated BV2, with similar impact on the cytokine expression as in vivo study. Genetic screening predicted miR-146a to be the downstream target of MSC-EVs, which was detected in MSC-EVs and upregulated in co-cultured 661 W cells and BV2 cells after MSC-EVs treatment. Upregulation of miR-146a by using its mimic decreased the expression of the transcription factor Nr4a3, and its downregulation inhibition promoted Nr4a3 expression in both 661 W and BV2 cells. Nr4a3 was further identified as the target gene of miR-146a by dual-luciferase assay. Furthermore, overexpressing miR-146a significantly decreased the expression of LPS-induced pro-inflammatory cytokines in BV2 cells.
Conclusions: MSC-EVs delays retinal degeneration in rd10 mice mainly by its anti-inflammatory effect via the miR-146a-Nr4a3axis. Hence, MSC-EVs may be used in the treatment of neurodegenerative diseases.
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http://dx.doi.org/10.1186/s13287-022-03100-x | DOI Listing |
ACS Chem Neurosci
September 2025
Department of Biotechnology, Chemistry and Pharmacy, University of Siena, Via Aldo Moro 2, 53100 Siena, Italy.
Among genetic retinal disorders, retinitis pigmentosa (RP) is characterized by degeneration of rod photoreceptors caused by a large number of diverse mutations, most of which act through different pathways to which epigenetic targets also contribute. The eraser enzymes lysine demethylase 1 (LSD1) and histone deacetylase 1 (HDAC1) play major roles in the development of rod photoreceptors, and their inhibitors were shown to block inherited rod degeneration, preserving vision and contributing to a general anti-inflammatory profile at the retinal level. In this work, we proposed the development of polypharmacological agents targeting class I HDAC/LSD1 enzymes with the aim of treating the mice model of RP.
View Article and Find Full Text PDFInvest Ophthalmol Vis Sci
August 2025
Department of Biology, University of Pisa, Pisa, Italy.
Purpose: Retinitis pigmentosa (RP) is characterized by primary rod degeneration followed by secondary cone death. The urokinase-type plasminogen activator (uPA) and its cognate receptor (uPAR) have been recently suggested to regulate pro-inflammatory events in RP possibly through the interaction of uPAR with its lateral partners, including formyl peptide receptors (FPRs). This study explored whether the inhibition of the crosstalk between uPAR and FPR1 may counteract photoreceptor degeneration in the rd10 mouse model of RP.
View Article and Find Full Text PDFGene Ther
August 2025
SparingVision, Paris, France.
Rod-cone dystrophies (RCD) are caused by mutations in over 100 genes associated with photoreceptor function, leading to progressive and sequential loss of rod and cone photoreceptors. These mutations generally disrupt retinal metabolism and oxidative stress response accelerating disease progression and vision loss. SPVN06 is an adeno-associated virus (AAV)-based gene- and mutation-agnostic investigational therapy designed to slow cone degeneration by delivering long-term expression of rod-derived cone viability factor (RdCVF) and its full-length isoform, thioredoxin RdCVFL, following a single subretinal administration.
View Article and Find Full Text PDFJ Neuroinflammation
July 2025
School of Optometry, The Hong Kong Polytechnic University, Kowloon, Hong Kong.
Retinitis pigmentosa (RP), a group of inherited retinal diseases characterized by progressive photoreceptor degeneration, features prominent microglial activation and monocyte-derived macrophage infiltration. While colony-stimulating factor 1 receptor (CSF1R) shows diverse roles in regulating microglial survival and behaviors in various neurodegenerative diseases, its functional significance in RP pathogenesis remains unclear. In this study, we observed upregulated CSF1R signaling specifically within disease-associated myeloid cells in the rd10 mouse model of RP.
View Article and Find Full Text PDFCells
June 2025
Department of Neuroscience, Penn State University College of Medicine, Hershey, PA 17033, USA.
We have previously demonstrated the ability of inhibitors of LSD1 and HDAC1 to block rod degeneration, preserve vision, maintain transcription of rod photoreceptor genes, and downregulate transcripts involved in cell death, gliosis, and inflammation in the mouse model of Retinitis Pigmentosa (RP), rd10. To extend our findings, we tested the hypothesis that this effect was due to altered chromatin structure by using a range of inhibitors of chromatin condensation to prevent photoreceptor degeneration in the rd10 mouse model. We used inhibitors for both G9A/GLP, which catalyzes methylation of H3K9, and EZH2, which catalyzes trimethylation of H3K27, and compared them to the actions of inhibitors of LSD1 and HDAC.
View Article and Find Full Text PDF