RRC ID 74812
著者 Ong HS, Riau AK, Yam GH, Yusoff NZBM, Han EJY, Goh TW, Lai RC, Lim SK, Mehta JS.
タイトル Mesenchymal Stem Cell Exosomes as Immunomodulatory Therapy for Corneal Scarring.
ジャーナル Int J Mol Sci
Abstract Corneal scarring is a leading cause of worldwide blindness. Human mesenchymal stem cells (MSC) have been reported to promote corneal wound healing through secreted exosomes. This study investigated the wound healing and immunomodulatory effects of MSC-derived exosomes (MSC-exo) in corneal injury through an established rat model of corneal scarring. After induction of corneal scarring by irregular phototherapeutic keratectomy (irrPTK), MSC exosome preparations (MSC-exo) or PBS vehicle as controls were applied to the injured rat corneas for five days. The animals were assessed for corneal clarity using a validated slit-lamp haze grading score. Stromal haze intensity was quantified using in-vivo confocal microscopy imaging. Corneal vascularization, fibrosis, variations in macrophage phenotypes, and inflammatory cytokines were evaluated using immunohistochemistry techniques and enzyme-linked immunosorbent assays (ELISA) of the excised corneas. Compared to the PBS control group, MSC-exo treatment group had faster epithelial wound closure (0.041), lower corneal haze score (p = 0.002), and reduced haze intensity (p = 0.004) throughout the follow-up period. Attenuation of corneal vascularisation based on CD31 and LYVE-1 staining and reduced fibrosis as measured by fibronectin and collagen 3A1 staining was also observed in the MSC-exo group. MSC-exo treated corneas also displayed a regenerative immune phenotype characterized by a higher infiltration of CD163+, CD206+ M2 macrophages over CD80+, CD86+ M1 macrophages (p = 0.023), reduced levels of pro-inflammatory IL-1β, IL-8, and TNF-α, and increased levels of anti-inflammatory IL-10. In conclusion, topical MSC-exo could alleviate corneal insults by promoting wound closure and reducing scar development, possibly through anti-angiogenesis and immunomodulation towards a regenerative and anti-inflammatory phenotype.
巻・号 24(8)
公開日 2023-4-18
DOI 10.3390/ijms24087456
PII ijms24087456
PMID 37108619
PMC PMC10144287
MeSH Animals Cicatrix Corneal Injuries* / therapy Exosomes* Fibrosis Humans Immunomodulation Mesenchymal Stem Cells* Rats
IF 4.556
リソース情報
ヒト・動物細胞 HCE-T(RCB2280)