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The Effects of Platelet Gel on Cultured Human Retinal Pigment Epithelial (Hrpe) Cells Publisher Pubmed



Balagholi S1 ; Alizadeh S1 ; Bagheri A2, 3 ; Amizadeh Y2 ; Kanavi MR2
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Authors Affiliations
  1. 1. Department of Hematology, School of Allied Medicine, Tehran University of Medical Sciences, Tehran, Iran
  2. 2. Ocular Tissue Engineering Research Center, Shahid Beheshti University of Medical Sciences, Tehran, Iran
  3. 3. Genetic Research Center, University of Social Welfare and Rehabilitation Sciences, Tehran, Iran

Source: Bosnian Journal of Basic Medical Sciences Published:2017


Abstract

The positive role of platelet gel (PG) in tissue regeneration is well known, however, other characteristics of PG still remain to be determined. We investigated cellular and molecular changes in cultured human retinal pigment epithelial (hRPE) cells when treated with different concentrations of PG named PG1, PG2, and PG3. hRPE cells were isolated from donor eyes of two newborn children, within 24 hours after their death. The cells were treated with three concentrations of PG for 7 days: 3 × 104/ml (PG1), 6 × 104/ml (PG2), and 9 × 104/ml (PG3). Fetal bovine serum was used as a control. Immunocytochemistry was performed with anti‑RPE65 (H‑85), anti‑Cytokeratin 8/18 (NCL‑5D3), and anti‑PAX6 anti­body. We used MTT assay to determine cell viability. Gene expressions of PAX6, MMP2, RPE65, ACTA2, MKI67, MMP9, and KDR were ana­lyzed using real‑time PCR. A significant increase in viability was observed for PG3‑treated cells compared to control (P = 0.044) and compared to PG1 group (P = 0.027), on day 7. Cellular elongation together with dendritiform extensions were observed in PG‑treated cells on days 1 and 3, while epithelioid morphology was observed on day 7. All cells were immunoreactive for RPE65, cytokeratin 8/18, and PAX6. No significant change was observed in the expression of MKI67 and PAX6, but the expressions of MMP2, MMP9, ACTA2, and KDR were significantly higher in PG2‑treated cells compared to controls (P < 0.05). Our results indicate that increased concentration of PG and extended exposure time have positive effects on viability of hRPE cells. PG may be useful for hRPE cell encapsulation in retinal cell replacement therapy. © 2017 ABMSFBIH.
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