4.5 Article

Effects of heat-treatment on plasma rich in growth factors-derived autologous eye drop

期刊

EXPERIMENTAL EYE RESEARCH
卷 119, 期 -, 页码 27-34

出版社

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.exer.2013.12.005

关键词

PRGF; platelet-rich plasma; PRP; wound healing; autoimmune diseases; ocular surface; heat-inactivation; heat-treatment

资金

  1. Customized Eye Care, CEYEC [CEN20091021]
  2. Centre for Industrial Technological Development (CDTI)

向作者/读者索取更多资源

We have developed and characterized a new type of plasma rich in growth factors (PRGF) derived eye drop therapy for patients suffering from autoimmune diseases. To determine the concentration of several growth factors, proteins, immunoglobulins and complement activity of the heat-inactivated eye-drop and to study its biological effects on cell proliferation and migration of different ocular surface cells, blood from healthy donors was collected, centrifuged and PRGF was prepared avoiding the huffy coat. The half volume of the obtained plasma supernatant from each donor was heat-inactivated at 56 C for 1 h (heat-inactivated PRGF). The concentration of several proteins involved on corneal wound healing, immunoglubolins G, M and E and functional integrity of the complement system assayed by CH50 test were determined. The proliferative and migratory potential of inactivated and non-inactivated PRGF eye drops were assayed on corneal epithelial cells (HCE), keratocytes (HK) and conjunctival fibroblasts (HConF). Heat-inactivated PRGF preserves the content of most of the proteins and morphogens involved in its wound healing effects while reduces drastically the content of IgE and complement activity. Heat inactivated PRGF eye drops increased proliferation and migration potential of ocular surface cells with regard to PRGF showing significant differences on proliferation and migration rate of HCE and HConF respectively. In summary, heat-inactivation of PRGF eye drops completely reduced complement activity and deceased significantly the presence of IgE, maintaining the biological activity of PRGF on ocular surface cells. (c) 2013 Elsevier Ltd. All rights reserved.

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