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Polysaccharide hydrogel combined with mesenchymal stem cells promotes the healing of corneal alkali burn in rats.

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Academic year: 2017

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Fig 1. Characterization of Hardy Orchid-derived polysaccharide and examination of its impacts on migration and proliferation of rat corneal epithelial cells (rCECs)
Fig 2. Re-epithelialization examination of alkali burn injured cornea. (A-D) Fluorescence staining of corneal epithelium 3 days after injury in control, MSCs treatment, polysaccharide treatment and polysaccharide-MSCs combination (PM) groups, (E-H) Fluores
Fig 3. Corneal opacity evaluation of alkali burn injured corneas. (A-D) Corneal surface observation 3 days after injury in control, MSCs treatment, polysaccharide treatment and polysaccharide-MSCs combination (PM) groups, (E-H) Corneal surface observation
Fig 4. Analysis of corneal neovascularization after corneal alkali burn. (A) Ratio of neovascularization area to corneal area in control, MSC,
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